ProteinSeq=raw_input("Input protein sequence using capitalized, single letter abbreviations: ") #Read in Protein Sequence as a string #Define AA codes A=["GCG","GCA","GCT","GCC"] #alanine C = ["TGT","TGC"] #cysteine D = ["GAT","GAC"] #aspartic acid E = ["GAG","GAA"] #glutamic acid F = ["TTT","TTC"] #phenylalanine G = ["GGG","GGA","GGT","GGC"] #Glycine H = ["CAT","CAC"]#histidine I = ["ATA","ATT","ATC"] #isoleucine K = ["AAG","AAA"] #Lysine L = ["TTG","TTA","CTG","CTA","CTT","CTC"] #Leucine M = ["ATG"] #Methionine N = ["AAT","AAC"] #Asparagine P = ["CCG","CCA","CCT","CCC"] #proline Q = ["CAG","CAA"] #glutamine R = ["AGG","AGA","CGG","CGA","CGT","CGC"] #Arginine S = ["AGT","AGC","TCG","TCA","TCT","TCC"] #serine T = ["ACG","ACA","ACT","ACC"] #threonine V = ["GTG","GTA","GTT","GTC"] #valine W = ["TGG"] #tryptophan Y = ["TAT","TAC"] #tyrosine #Create an 8x8 matrix in which to store the probability values, Prob_list Prob_list=61*[0] #Read data from the csv file and unpack values, in same order, into the Prob_list matrix_file=raw_input("Provide the file name containing the probability distribution, remember to include .csv! ") import csv ifile = open(matrix_file, "rb") reader = csv.reader(ifile) rownum=0 j=0 for row in reader: Prob_list[j]=row j=j+1 #Convert the strings to floats for a in range(61): for b in range(61): Prob_list[a][b]=float(Prob_list[a][b]) #Define the GCGA list (Ala1 followed by Ala) GCGA = [ [ 0 for i in range(2) ] for j in range(4) ] #Fill the AA list, first element is the 3bp string followed by the probability #Probability is read in from the Prob_list #Strings are read in from the 'A' list at the begining of the script #create a placeholder variable for the Prob_list m=0 n=0 for i in range(len(A)): GCGA[i][0]=A[i] GCGA[i][1]=Prob_list[n][m] m=m+1 GCGC = [ [ 0 for i in range(2) ] for j in range(2) ] GCGD = [ [ 0 for i in range(2) ] for j in range(2) ] GCGE = [ [ 0 for i in range(2) ] for j in range(2) ] GCGF = [ [ 0 for i in range(2) ] for j in range(2) ] GCGG = [ [ 0 for i in range(2) ] for j in range(4) ] GCGH = [ [ 0 for i in range(2) ] for j in range(2) ] GCGI = [ [ 0 for i in range(2) ] for j in range(3) ] GCGK = [ [ 0 for i in range(2) ] for j in range(2) ] GCGL = [ [ 0 for i in range(2) ] for j in range(6) ] GCGM = [ [ 0 for i in range(2) ] for j in range(1) ] GCGN = [ [ 0 for i in range(2) ] for j in range(2) ] GCGP = [ [ 0 for i in range(2) ] for j in range(4) ] GCGQ = [ [ 0 for i in range(2) ] for j in range(2) ] GCGR = [ [ 0 for i in range(2) ] for j in range(6) ] GCGS = [ [ 0 for i in range(2) ] for j in range(6) ] GCGT = [ [ 0 for i in range(2) ] for j in range(4) ] GCGV = [ [ 0 for i in range(2) ] for j in range(4) ] GCGW = [ [ 0 for i in range(2) ] for j in range(1) ] GCGY = [ [ 0 for i in range(2) ] for j in range(2) ] GCAA= [ [ 0 for i in range(2) ] for j in range(4) ] GCAC= [ [ 0 for i in range(2) ] for j in range(2) ] GCAD= [ [ 0 for i in range(2) ] for j in range(2) ] GCAE = [ [ 0 for i in range(2) ] for j in range(2) ] GCAF = [ [ 0 for i in range(2) ] for j in range(2) ] GCAG = [ [ 0 for i in range(2) ] for j in range(4) ] GCAH = [ [ 0 for i in range(2) ] for j in range(2) ] GCAI = [ [ 0 for i in range(2) ] for j in range(3) ] GCAK = [ [ 0 for i in range(2) ] for j in range(2) ] GCAL = [ [ 0 for i in range(2) ] for j in range(6) ] GCAM = [ [ 0 for i in range(2) ] for j in range(1) ] GCAN = [ [ 0 for i in range(2) ] for j in range(2) ] GCAP = [ [ 0 for i in range(2) ] for j in range(4) ] GCAQ = [ [ 0 for i in range(2) ] for j in range(2) ] GCAR = [ [ 0 for i in range(2) ] for j in range(6) ] GCAS = [ [ 0 for i in range(2) ] for j in range(6) ] GCAT = [ [ 0 for i in range(2) ] for j in range(4) ] GCAV = [ [ 0 for i in range(2) ] for j in range(4) ] GCAW = [ [ 0 for i in range(2) ] for j in range(1) ] GCAY = [ [ 0 for i in range(2) ] for j in range(2) ] GCTA= [ [ 0 for i in range(2) ] for j in range(4) ] GCTC= [ [ 0 for i in range(2) ] for j in range(2) ] GCTD= [ [ 0 for i in range(2) ] for j in range(2) ] GCTE = [ [ 0 for i in range(2) ] for j in range(2) ] GCTF = [ [ 0 for i in range(2) ] for j in range(2) ] GCTG = [ [ 0 for i in range(2) ] for j in range(4) ] GCTH = [ [ 0 for i in range(2) ] for j in range(2) ] GCTI = [ [ 0 for i in range(2) ] for j in range(3) ] GCTK = [ [ 0 for i in range(2) ] for j in range(2) ] GCTL = [ [ 0 for i in range(2) ] for j in range(6) ] GCTM = [ [ 0 for i in range(2) ] for j in range(1) ] GCTN = [ [ 0 for i in range(2) ] for j in range(2) ] GCTP = [ [ 0 for i in range(2) ] for j in range(4) ] GCTQ = [ [ 0 for i in range(2) ] for j in range(2) ] GCTR = [ [ 0 for i in range(2) ] for j in range(6) ] GCTS = [ [ 0 for i in range(2) ] for j in range(6) ] GCTT = [ [ 0 for i in range(2) ] for j in range(4) ] GCTV = [ [ 0 for i in range(2) ] for j in range(4) ] GCTW = [ [ 0 for i in range(2) ] for j in range(1) ] GCTY = [ [ 0 for i in range(2) ] for j in range(2) ] GCCA= [ [ 0 for i in range(2) ] for j in range(4) ] GCCC= [ [ 0 for i in range(2) ] for j in range(2) ] GCCD= [ [ 0 for i in range(2) ] for j in range(2) ] GCCE = [ [ 0 for i in range(2) ] for j in range(2) ] GCCF = [ [ 0 for i in range(2) ] for j in range(2) ] GCCG = [ [ 0 for i in range(2) ] for j in range(4) ] GCCH = [ [ 0 for i in range(2) ] for j in range(2) ] GCCI = [ [ 0 for i in range(2) ] for j in range(3) ] GCCK = [ [ 0 for i in range(2) ] for j in range(2) ] GCCL = [ [ 0 for i in range(2) ] for j in range(6) ] GCCM = [ [ 0 for i in range(2) ] for j in range(1) ] GCCN = [ [ 0 for i in range(2) ] for j in range(2) ] GCCP = [ [ 0 for i in range(2) ] for j in range(4) ] GCCQ = [ [ 0 for i in range(2) ] for j in range(2) ] GCCR = [ [ 0 for i in range(2) ] for j in range(6) ] GCCS = [ [ 0 for i in range(2) ] for j in range(6) ] GCCT = [ [ 0 for i in range(2) ] for j in range(4) ] GCCV = [ [ 0 for i in range(2) ] for j in range(4) ] GCCW = [ [ 0 for i in range(2) ] for j in range(1) ] GCCY = [ [ 0 for i in range(2) ] for j in range(2) ] TGTA = [ [ 0 for i in range(2) ] for j in range(4) ] TGTC = [ [ 0 for i in range(2) ] for j in range(2) ] TGTD = [ [ 0 for i in range(2) ] for j in range(2) ] TGTE = [ [ 0 for i in range(2) ] for j in range(2) ] TGTF = [ [ 0 for i in range(2) ] for j in range(2) ] TGTG = [ [ 0 for i in range(2) ] for j in range(4) ] TGTH = [ [ 0 for i in range(2) ] for j in range(2) ] TGTI = [ [ 0 for i in range(2) ] for j in range(3) ] TGTK = [ [ 0 for i in range(2) ] for j in range(2) ] TGTL = [ [ 0 for i in range(2) ] for j in range(6) ] TGTM = [ [ 0 for i in range(2) ] for j in range(1) ] TGTN = [ [ 0 for i in range(2) ] for j in range(2) ] TGTP = [ [ 0 for i in range(2) ] for j in range(4) ] TGTQ = [ [ 0 for i in range(2) ] for j in range(2) ] TGTR = [ [ 0 for i in range(2) ] for j in range(6) ] TGTS = [ [ 0 for i in range(2) ] for j in range(6) ] TGTT = [ [ 0 for i in range(2) ] for j in range(4) ] TGTV = [ [ 0 for i in range(2) ] for j in range(4) ] TGTW = [ [ 0 for i in range(2) ] for j in range(1) ] TGTY = [ [ 0 for i in range(2) ] for j in range(2) ] TGCA = [ [ 0 for i in range(2) ] for j in range(4) ] TGCC = [ [ 0 for i in range(2) ] for j in range(2) ] TGCD = [ [ 0 for i in range(2) ] for j in range(2) ] TGCE = [ [ 0 for i in range(2) ] for j in range(2) ] TGCF = [ [ 0 for i in range(2) ] for j in range(2) ] TGCG = [ [ 0 for i in range(2) ] for j in range(4) ] TGCH = [ [ 0 for i in range(2) ] for j in range(2) ] TGCI = [ [ 0 for i in range(2) ] for j in range(3) ] TGCK = [ [ 0 for i in range(2) ] for j in range(2) ] TGCL = [ [ 0 for i in range(2) ] for j in range(6) ] TGCM = [ [ 0 for i in range(2) ] for j in range(1) ] TGCN = [ [ 0 for i in range(2) ] for j in range(2) ] TGCP = [ [ 0 for i in range(2) ] for j in range(4) ] TGCQ = [ [ 0 for i in range(2) ] for j in range(2) ] TGCR = [ [ 0 for i in range(2) ] for j in range(6) ] TGCS = [ [ 0 for i in range(2) ] for j in range(6) ] TGCT = [ [ 0 for i in range(2) ] for j in range(4) ] TGCV = [ [ 0 for i in range(2) ] for j in range(4) ] TGCW = [ [ 0 for i in range(2) ] for j in range(1) ] TGCY = [ [ 0 for i in range(2) ] for j in range(2) ] GATA = [ [ 0 for i in range(2) ] for j in range(4) ] GATC = [ [ 0 for i in range(2) ] for j in range(2) ] GATD = [ [ 0 for i in range(2) ] for j in range(2) ] GATE = [ [ 0 for i in range(2) ] for j in range(2) ] GATF = [ [ 0 for i in range(2) ] for j in range(2) ] GATG = [ [ 0 for i in range(2) ] for j in range(4) ] GATH = [ [ 0 for i in range(2) ] for j in range(2) ] GATI = [ [ 0 for i in range(2) ] for j in range(3) ] GATK = [ [ 0 for i in range(2) ] for j in range(2) ] GATL = [ [ 0 for i in range(2) ] for j in range(6) ] GATM = [ [ 0 for i in range(2) ] for j in range(1) ] GATN = [ [ 0 for i in range(2) ] for j in range(2) ] GATP = [ [ 0 for i in range(2) ] for j in range(4) ] GATQ = [ [ 0 for i in range(2) ] for j in range(2) ] GATR = [ [ 0 for i in range(2) ] for j in range(6) ] GATS = [ [ 0 for i in range(2) ] for j in range(6) ] GATT = [ [ 0 for i in range(2) ] for j in range(4) ] GATV = [ [ 0 for i in range(2) ] for j in range(4) ] GATW = [ [ 0 for i in range(2) ] for j in range(1) ] GATY = [ [ 0 for i in range(2) ] for j in range(2) ] GACA = [ [ 0 for i in range(2) ] for j in range(4) ] GACC = [ [ 0 for i in range(2) ] for j in range(2) ] GACD = [ [ 0 for i in range(2) ] for j in range(2) ] GACE = [ [ 0 for i in range(2) ] for j in range(2) ] GACF = [ [ 0 for i in range(2) ] for j in range(2) ] GACG = [ [ 0 for i in range(2) ] for j in range(4) ] GACH = [ [ 0 for i in range(2) ] for j in range(2) ] GACI = [ [ 0 for i in range(2) ] for j in range(3) ] GACK = [ [ 0 for i in range(2) ] for j in range(2) ] GACL = [ [ 0 for i in range(2) ] for j in range(6) ] GACM = [ [ 0 for i in range(2) ] for j in range(1) ] GACN = [ [ 0 for i in range(2) ] for j in range(2) ] GACP = [ [ 0 for i in range(2) ] for j in range(4) ] GACQ = [ [ 0 for i in range(2) ] for j in range(2) ] GACR = [ [ 0 for i in range(2) ] for j in range(6) ] GACS = [ [ 0 for i in range(2) ] for j in range(6) ] GACT = [ [ 0 for i in range(2) ] for j in range(4) ] GACV = [ [ 0 for i in range(2) ] for j in range(4) ] GACW = [ [ 0 for i in range(2) ] for j in range(1) ] GACY = [ [ 0 for i in range(2) ] for j in range(2) ] GAGA = [ [ 0 for i in range(2) ] for j in range(4) ] GAGC = [ [ 0 for i in range(2) ] for j in range(2) ] GAGD = [ [ 0 for i in range(2) ] for j in range(2) ] GAGE = [ [ 0 for i in range(2) ] for j in range(2) ] GAGF = [ [ 0 for i in range(2) ] for j in range(2) ] GAGG = [ [ 0 for i in range(2) ] for j in range(4) ] GAGH = [ [ 0 for i in range(2) ] for j in range(2) ] GAGI = [ [ 0 for i in range(2) ] for j in range(3) ] GAGK = [ [ 0 for i in range(2) ] for j in range(2) ] GAGL = [ [ 0 for i in range(2) ] for j in range(6) ] GAGM = [ [ 0 for i in range(2) ] for j in range(1) ] GAGN = [ [ 0 for i in range(2) ] for j in range(2) ] GAGP = [ [ 0 for i in range(2) ] for j in range(4) ] GAGQ = [ [ 0 for i in range(2) ] for j in range(2) ] GAGR = [ [ 0 for i in range(2) ] for j in range(6) ] GAGS = [ [ 0 for i in range(2) ] for j in range(6) ] GAGT = [ [ 0 for i in range(2) ] for j in range(4) ] GAGV = [ [ 0 for i in range(2) ] for j in range(4) ] GAGW = [ [ 0 for i in range(2) ] for j in range(1) ] GAGY = [ [ 0 for i in range(2) ] for j in range(2) ] GAAA = [ [ 0 for i in range(2) ] for j in range(4) ] GAAC = [ [ 0 for i in range(2) ] for j in range(2) ] GAAD = [ [ 0 for i in range(2) ] for j in range(2) ] GAAE = [ [ 0 for i in range(2) ] for j in range(2) ] GAAF = [ [ 0 for i in range(2) ] for j in range(2) ] GAAG = [ [ 0 for i in range(2) ] for j in range(4) ] GAAH = [ [ 0 for i in range(2) ] for j in range(2) ] GAAI = [ [ 0 for i in range(2) ] for j in range(3) ] GAAK = [ [ 0 for i in range(2) ] for j in range(2) ] GAAL = [ [ 0 for i in range(2) ] for j in range(6) ] GAAM = [ [ 0 for i in range(2) ] for j in range(1) ] GAAN = [ [ 0 for i in range(2) ] for j in range(2) ] GAAP = [ [ 0 for i in range(2) ] for j in range(4) ] GAAQ = [ [ 0 for i in range(2) ] for j in range(2) ] GAAR = [ [ 0 for i in range(2) ] for j in range(6) ] GAAS = [ [ 0 for i in range(2) ] for j in range(6) ] GAAT = [ [ 0 for i in range(2) ] for j in range(4) ] GAAV = [ [ 0 for i in range(2) ] for j in range(4) ] GAAW = [ [ 0 for i in range(2) ] for j in range(1) ] GAAY = [ [ 0 for i in range(2) ] for j in range(2) ] TTTA = [ [ 0 for i in range(2) ] for j in range(4) ] TTTC = [ [ 0 for i in range(2) ] for j in range(2) ] TTTD = [ [ 0 for i in range(2) ] for j in range(2) ] TTTE = [ [ 0 for i in range(2) ] for j in range(2) ] TTTF = [ [ 0 for i in range(2) ] for j in range(2) ] TTTG = [ [ 0 for i in range(2) ] for j in range(4) ] TTTH = [ [ 0 for i in range(2) ] for j in range(2) ] TTTI = [ [ 0 for i in range(2) ] for j in range(3) ] TTTK = [ [ 0 for i in range(2) ] for j in range(2) ] TTTL = [ [ 0 for i in range(2) ] for j in range(6) ] TTTM = [ [ 0 for i in range(2) ] for j in range(1) ] TTTN = [ [ 0 for i in range(2) ] for j in range(2) ] TTTP = [ [ 0 for i in range(2) ] for j in range(4) ] TTTQ = [ [ 0 for i in range(2) ] for j in range(2) ] TTTR = [ [ 0 for i in range(2) ] for j in range(6) ] TTTS = [ [ 0 for i in range(2) ] for j in range(6) ] TTTT = [ [ 0 for i in range(2) ] for j in range(4) ] TTTV = [ [ 0 for i in range(2) ] for j in range(4) ] TTTW = [ [ 0 for i in range(2) ] for j in range(1) ] TTTY = [ [ 0 for i in range(2) ] for j in range(2) ] TTCA = [ [ 0 for i in range(2) ] for j in range(4) ] TTCC = [ [ 0 for i in range(2) ] for j in range(2) ] TTCD = [ [ 0 for i in range(2) ] for j in range(2) ] TTCE = [ [ 0 for i in range(2) ] for j in range(2) ] TTCF = [ [ 0 for i in range(2) ] for j in range(2) ] TTCG = [ [ 0 for i in range(2) ] for j in range(4) ] TTCH = [ [ 0 for i in range(2) ] for j in range(2) ] TTCI = [ [ 0 for i in range(2) ] for j in range(3) ] TTCK = [ [ 0 for i in range(2) ] for j in range(2) ] TTCL = [ [ 0 for i in range(2) ] for j in range(6) ] TTCM = [ [ 0 for i in range(2) ] for j in range(1) ] TTCN = [ [ 0 for i in range(2) ] for j in range(2) ] TTCP = [ [ 0 for i in range(2) ] for j in range(4) ] TTCQ = [ [ 0 for i in range(2) ] for j in range(2) ] TTCR = [ [ 0 for i in range(2) ] for j in range(6) ] TTCS = [ [ 0 for i in range(2) ] for j in range(6) ] TTCT = [ [ 0 for i in range(2) ] for j in range(4) ] TTCV = [ [ 0 for i in range(2) ] for j in range(4) ] TTCW = [ [ 0 for i in range(2) ] for j in range(1) ] TTCY = [ [ 0 for i in range(2) ] for j in range(2) ] GGGA = [ [ 0 for i in range(2) ] for j in range(4) ] GGGC = [ [ 0 for i in range(2) ] for j in range(2) ] GGGD = [ [ 0 for i in range(2) ] for j in range(2) ] GGGE = [ [ 0 for i in range(2) ] for j in range(2) ] GGGF = [ [ 0 for i in range(2) ] for j in range(2) ] GGGG = [ [ 0 for i in range(2) ] for j in range(4) ] GGGH = [ [ 0 for i in range(2) ] for j in range(2) ] GGGI = [ [ 0 for i in range(2) ] for j in range(3) ] GGGK = [ [ 0 for i in range(2) ] for j in range(2) ] GGGL = [ [ 0 for i in range(2) ] for j in range(6) ] GGGM = [ [ 0 for i in range(2) ] for j in range(1) ] GGGN = [ [ 0 for i in range(2) ] for j in range(2) ] GGGP = [ [ 0 for i in range(2) ] for j in range(4) ] GGGQ = [ [ 0 for i in range(2) ] for j in range(2) ] GGGR = [ [ 0 for i in range(2) ] for j in range(6) ] GGGS = [ [ 0 for i in range(2) ] for j in range(6) ] GGGT = [ [ 0 for i in range(2) ] for j in range(4) ] GGGV = [ [ 0 for i in range(2) ] for j in range(4) ] GGGW = [ [ 0 for i in range(2) ] for j in range(1) ] GGGY = [ [ 0 for i in range(2) ] for j in range(2) ] GGAA = [ [ 0 for i in range(2) ] for j in range(4) ] GGAC = [ [ 0 for i in range(2) ] for j in range(2) ] GGAD = [ [ 0 for i in range(2) ] for j in range(2) ] GGAE = [ [ 0 for i in range(2) ] for j in range(2) ] GGAF = [ [ 0 for i in range(2) ] for j in range(2) ] GGAG = [ [ 0 for i in range(2) ] for j in range(4) ] GGAH = [ [ 0 for i in range(2) ] for j in range(2) ] GGAI = [ [ 0 for i in range(2) ] for j in range(3) ] GGAK = [ [ 0 for i in range(2) ] for j in range(2) ] GGAL = [ [ 0 for i in range(2) ] for j in range(6) ] GGAM = [ [ 0 for i in range(2) ] for j in range(1) ] GGAN = [ [ 0 for i in range(2) ] for j in range(2) ] GGAP = [ [ 0 for i in range(2) ] for j in range(4) ] GGAQ = [ [ 0 for i in range(2) ] for j in range(2) ] GGAR = [ [ 0 for i in range(2) ] for j in range(6) ] GGAS = [ [ 0 for i in range(2) ] for j in range(6) ] GGAT = [ [ 0 for i in range(2) ] for j in range(4) ] GGAV = [ [ 0 for i in range(2) ] for j in range(4) ] GGAW = [ [ 0 for i in range(2) ] for j in range(1) ] GGAY = [ [ 0 for i in range(2) ] for j in range(2) ] GGTA = [ [ 0 for i in range(2) ] for j in range(4) ] GGTC = [ [ 0 for i in range(2) ] for j in range(2) ] GGTD = [ [ 0 for i in range(2) ] for j in range(2) ] GGTE = [ [ 0 for i in range(2) ] for j in range(2) ] GGTF = [ [ 0 for i in range(2) ] for j in range(2) ] GGTG = [ [ 0 for i in range(2) ] for j in range(4) ] GGTH = [ [ 0 for i in range(2) ] for j in range(2) ] GGTI = [ [ 0 for i in range(2) ] for j in range(3) ] GGTK = [ [ 0 for i in range(2) ] for j in range(2) ] GGTL = [ [ 0 for i in range(2) ] for j in range(6) ] GGTM = [ [ 0 for i in range(2) ] for j in range(1) ] GGTN = [ [ 0 for i in range(2) ] for j in range(2) ] GGTP = [ [ 0 for i in range(2) ] for j in range(4) ] GGTQ = [ [ 0 for i in range(2) ] for j in range(2) ] GGTR = [ [ 0 for i in range(2) ] for j in range(6) ] GGTS = [ [ 0 for i in range(2) ] for j in range(6) ] GGTT = [ [ 0 for i in range(2) ] for j in range(4) ] GGTV = [ [ 0 for i in range(2) ] for j in range(4) ] GGTW = [ [ 0 for i in range(2) ] for j in range(1) ] GGTY = [ [ 0 for i in range(2) ] for j in range(2) ] GGCA = [ [ 0 for i in range(2) ] for j in range(4) ] GGCC = [ [ 0 for i in range(2) ] for j in range(2) ] GGCD = [ [ 0 for i in range(2) ] for j in range(2) ] GGCE = [ [ 0 for i in range(2) ] for j in range(2) ] GGCF = [ [ 0 for i in range(2) ] for j in range(2) ] GGCG = [ [ 0 for i in range(2) ] for j in range(4) ] GGCH = [ [ 0 for i in range(2) ] for j in range(2) ] GGCI = [ [ 0 for i in range(2) ] for j in range(3) ] GGCK = [ [ 0 for i in range(2) ] for j in range(2) ] GGCL = [ [ 0 for i in range(2) ] for j in range(6) ] GGCM = [ [ 0 for i in range(2) ] for j in range(1) ] GGCN = [ [ 0 for i in range(2) ] for j in range(2) ] GGCP = [ [ 0 for i in range(2) ] for j in range(4) ] GGCQ = [ [ 0 for i in range(2) ] for j in range(2) ] GGCR = [ [ 0 for i in range(2) ] for j in range(6) ] GGCS = [ [ 0 for i in range(2) ] for j in range(6) ] GGCT = [ [ 0 for i in range(2) ] for j in range(4) ] GGCV = [ [ 0 for i in range(2) ] for j in range(4) ] GGCW = [ [ 0 for i in range(2) ] for j in range(1) ] GGCY = [ [ 0 for i in range(2) ] for j in range(2) ] CATA = [ [ 0 for i in range(2) ] for j in range(4) ] CATC = [ [ 0 for i in range(2) ] for j in range(2) ] CATD = [ [ 0 for i in range(2) ] for j in range(2) ] CATE = [ [ 0 for i in range(2) ] for j in range(2) ] CATF = [ [ 0 for i in range(2) ] for j in range(2) ] CATG = [ [ 0 for i in range(2) ] for j in range(4) ] CATH = [ [ 0 for i in range(2) ] for j in range(2) ] CATI = [ [ 0 for i in range(2) ] for j in range(3) ] CATK = [ [ 0 for i in range(2) ] for j in range(2) ] CATL = [ [ 0 for i in range(2) ] for j in range(6) ] CATM = [ [ 0 for i in range(2) ] for j in range(1) ] CATN = [ [ 0 for i in range(2) ] for j in range(2) ] CATP = [ [ 0 for i in range(2) ] for j in range(4) ] CATQ = [ [ 0 for i in range(2) ] for j in range(2) ] CATR = [ [ 0 for i in range(2) ] for j in range(6) ] CATS = [ [ 0 for i in range(2) ] for j in range(6) ] CATT = [ [ 0 for i in range(2) ] for j in range(4) ] CATV = [ [ 0 for i in range(2) ] for j in range(4) ] CATW = [ [ 0 for i in range(2) ] for j in range(1) ] CATY = [ [ 0 for i in range(2) ] for j in range(2) ] CACA = [ [ 0 for i in range(2) ] for j in range(4) ] CACC = [ [ 0 for i in range(2) ] for j in range(2) ] CACD = [ [ 0 for i in range(2) ] for j in range(2) ] CACE = [ [ 0 for i in range(2) ] for j in range(2) ] CACF = [ [ 0 for i in range(2) ] for j in range(2) ] CACG = [ [ 0 for i in range(2) ] for j in range(4) ] CACH = [ [ 0 for i in range(2) ] for j in range(2) ] CACI = [ [ 0 for i in range(2) ] for j in range(3) ] CACK = [ [ 0 for i in range(2) ] for j in range(2) ] CACL = [ [ 0 for i in range(2) ] for j in range(6) ] CACM = [ [ 0 for i in range(2) ] for j in range(1) ] CACN = [ [ 0 for i in range(2) ] for j in range(2) ] CACP = [ [ 0 for i in range(2) ] for j in range(4) ] CACQ = [ [ 0 for i in range(2) ] for j in range(2) ] CACR = [ [ 0 for i in range(2) ] for j in range(6) ] CACS = [ [ 0 for i in range(2) ] for j in range(6) ] CACT = [ [ 0 for i in range(2) ] for j in range(4) ] CACV = [ [ 0 for i in range(2) ] for j in range(4) ] CACW = [ [ 0 for i in range(2) ] for j in range(1) ] CACY = [ [ 0 for i in range(2) ] for j in range(2) ] ATAA = [ [ 0 for i in range(2) ] for j in range(4) ] ATAC = [ [ 0 for i in range(2) ] for j in range(2) ] ATAD = [ [ 0 for i in range(2) ] for j in range(2) ] ATAE = [ [ 0 for i in range(2) ] for j in range(2) ] ATAF = [ [ 0 for i in range(2) ] for j in range(2) ] ATAG = [ [ 0 for i in range(2) ] for j in range(4) ] ATAH = [ [ 0 for i in range(2) ] for j in range(2) ] ATAI = [ [ 0 for i in range(2) ] for j in range(3) ] ATAK = [ [ 0 for i in range(2) ] for j in range(2) ] ATAL = [ [ 0 for i in range(2) ] for j in range(6) ] ATAM = [ [ 0 for i in range(2) ] for j in range(1) ] ATAN = [ [ 0 for i in range(2) ] for j in range(2) ] ATAP = [ [ 0 for i in range(2) ] for j in range(4) ] ATAQ = [ [ 0 for i in range(2) ] for j in range(2) ] ATAR = [ [ 0 for i in range(2) ] for j in range(6) ] ATAS = [ [ 0 for i in range(2) ] for j in range(6) ] ATAT = [ [ 0 for i in range(2) ] for j in range(4) ] ATAV = [ [ 0 for i in range(2) ] for j in range(4) ] ATAW = [ [ 0 for i in range(2) ] for j in range(1) ] ATAY = [ [ 0 for i in range(2) ] for j in range(2) ] ATTA = [ [ 0 for i in range(2) ] for j in range(4) ] ATTC = [ [ 0 for i in range(2) ] for j in range(2) ] ATTD = [ [ 0 for i in range(2) ] for j in range(2) ] ATTE = [ [ 0 for i in range(2) ] for j in range(2) ] ATTF = [ [ 0 for i in range(2) ] for j in range(2) ] ATTG = [ [ 0 for i in range(2) ] for j in range(4) ] ATTH = [ [ 0 for i in range(2) ] for j in range(2) ] ATTI = [ [ 0 for i in range(2) ] for j in range(3) ] ATTK = [ [ 0 for i in range(2) ] for j in range(2) ] ATTL = [ [ 0 for i in range(2) ] for j in range(6) ] ATTM = [ [ 0 for i in range(2) ] for j in range(1) ] ATTN = [ [ 0 for i in range(2) ] for j in range(2) ] ATTP = [ [ 0 for i in range(2) ] for j in range(4) ] ATTQ = [ [ 0 for i in range(2) ] for j in range(2) ] ATTR = [ [ 0 for i in range(2) ] for j in range(6) ] ATTS = [ [ 0 for i in range(2) ] for j in range(6) ] ATTT = [ [ 0 for i in range(2) ] for j in range(4) ] ATTV = [ [ 0 for i in range(2) ] for j in range(4) ] ATTW = [ [ 0 for i in range(2) ] for j in range(1) ] ATTY = [ [ 0 for i in range(2) ] for j in range(2) ] ATCA = [ [ 0 for i in range(2) ] for j in range(4) ] ATCC = [ [ 0 for i in range(2) ] for j in range(2) ] ATCD = [ [ 0 for i in range(2) ] for j in range(2) ] ATCE = [ [ 0 for i in range(2) ] for j in range(2) ] ATCF = [ [ 0 for i in range(2) ] for j in range(2) ] ATCG = [ [ 0 for i in range(2) ] for j in range(4) ] ATCH = [ [ 0 for i in range(2) ] for j in range(2) ] ATCI = [ [ 0 for i in range(2) ] for j in range(3) ] ATCK = [ [ 0 for i in range(2) ] for j in range(2) ] ATCL = [ [ 0 for i in range(2) ] for j in range(6) ] ATCM = [ [ 0 for i in range(2) ] for j in range(1) ] ATCN = [ [ 0 for i in range(2) ] for j in range(2) ] ATCP = [ [ 0 for i in range(2) ] for j in range(4) ] ATCQ = [ [ 0 for i in range(2) ] for j in range(2) ] ATCR = [ [ 0 for i in range(2) ] for j in range(6) ] ATCS = [ [ 0 for i in range(2) ] for j in range(6) ] ATCT = [ [ 0 for i in range(2) ] for j in range(4) ] ATCV = [ [ 0 for i in range(2) ] for j in range(4) ] ATCW = [ [ 0 for i in range(2) ] for j in range(1) ] ATCY = [ [ 0 for i in range(2) ] for j in range(2) ] AAGA = [ [ 0 for i in range(2) ] for j in range(4) ] AAGC = [ [ 0 for i in range(2) ] for j in range(2) ] AAGD = [ [ 0 for i in range(2) ] for j in range(2) ] AAGE = [ [ 0 for i in range(2) ] for j in range(2) ] AAGF = [ [ 0 for i in range(2) ] for j in range(2) ] AAGG = [ [ 0 for i in range(2) ] for j in range(4) ] AAGH = [ [ 0 for i in range(2) ] for j in range(2) ] AAGI = [ [ 0 for i in range(2) ] for j in range(3) ] AAGK = [ [ 0 for i in range(2) ] for j in range(2) ] AAGL = [ [ 0 for i in range(2) ] for j in range(6) ] AAGM = [ [ 0 for i in range(2) ] for j in range(1) ] AAGN = [ [ 0 for i in range(2) ] for j in range(2) ] AAGP = [ [ 0 for i in range(2) ] for j in range(4) ] AAGQ = [ [ 0 for i in range(2) ] for j in range(2) ] AAGR = [ [ 0 for i in range(2) ] for j in range(6) ] AAGS = [ [ 0 for i in range(2) ] for j in range(6) ] AAGT = [ [ 0 for i in range(2) ] for j in range(4) ] AAGV = [ [ 0 for i in range(2) ] for j in range(4) ] AAGW = [ [ 0 for i in range(2) ] for j in range(1) ] AAGY = [ [ 0 for i in range(2) ] for j in range(2) ] AAAA = [ [ 0 for i in range(2) ] for j in range(4) ] AAAC = [ [ 0 for i in range(2) ] for j in range(2) ] AAAD = [ [ 0 for i in range(2) ] for j in range(2) ] AAAE = [ [ 0 for i in range(2) ] for j in range(2) ] AAAF = [ [ 0 for i in range(2) ] for j in range(2) ] AAAG = [ [ 0 for i in range(2) ] for j in range(4) ] AAAH = [ [ 0 for i in range(2) ] for j in range(2) ] AAAI = [ [ 0 for i in range(2) ] for j in range(3) ] AAAK = [ [ 0 for i in range(2) ] for j in range(2) ] AAAL = [ [ 0 for i in range(2) ] for j in range(6) ] AAAM = [ [ 0 for i in range(2) ] for j in range(1) ] AAAN = [ [ 0 for i in range(2) ] for j in range(2) ] AAAP = [ [ 0 for i in range(2) ] for j in range(4) ] AAAQ = [ [ 0 for i in range(2) ] for j in range(2) ] AAAR = [ [ 0 for i in range(2) ] for j in range(6) ] AAAS = [ [ 0 for i in range(2) ] for j in range(6) ] AAAT = [ [ 0 for i in range(2) ] for j in range(4) ] AAAV = [ [ 0 for i in range(2) ] for j in range(4) ] AAAW = [ [ 0 for i in range(2) ] for j in range(1) ] AAAY = [ [ 0 for i in range(2) ] for j in range(2) ] TTGA = [ [ 0 for i in range(2) ] for j in range(4) ] TTGC = [ [ 0 for i in range(2) ] for j in range(2) ] TTGD = [ [ 0 for i in range(2) ] for j in range(2) ] TTGE = [ [ 0 for i in range(2) ] for j in range(2) ] TTGF = [ [ 0 for i in range(2) ] for j in range(2) ] TTGG = [ [ 0 for i in range(2) ] for j in range(4) ] TTGH = [ [ 0 for i in range(2) ] for j in range(2) ] TTGI = [ [ 0 for i in range(2) ] for j in range(3) ] TTGK = [ [ 0 for i in range(2) ] for j in range(2) ] TTGL = [ [ 0 for i in range(2) ] for j in range(6) ] TTGM = [ [ 0 for i in range(2) ] for j in range(1) ] TTGN = [ [ 0 for i in range(2) ] for j in range(2) ] TTGP = [ [ 0 for i in range(2) ] for j in range(4) ] TTGQ = [ [ 0 for i in range(2) ] for j in range(2) ] TTGR = [ [ 0 for i in range(2) ] for j in range(6) ] TTGS = [ [ 0 for i in range(2) ] for j in range(6) ] TTGT = [ [ 0 for i in range(2) ] for j in range(4) ] TTGV = [ [ 0 for i in range(2) ] for j in range(4) ] TTGW = [ [ 0 for i in range(2) ] for j in range(1) ] TTGY = [ [ 0 for i in range(2) ] for j in range(2) ] TTAA = [ [ 0 for i in range(2) ] for j in range(4) ] TTAC = [ [ 0 for i in range(2) ] for j in range(2) ] TTAD = [ [ 0 for i in range(2) ] for j in range(2) ] TTAE = [ [ 0 for i in range(2) ] for j in range(2) ] TTAF = [ [ 0 for i in range(2) ] for j in range(2) ] TTAG = [ [ 0 for i in range(2) ] for j in range(4) ] TTAH = [ [ 0 for i in range(2) ] for j in range(2) ] TTAI = [ [ 0 for i in range(2) ] for j in range(3) ] TTAK = [ [ 0 for i in range(2) ] for j in range(2) ] TTAL = [ [ 0 for i in range(2) ] for j in range(6) ] TTAM = [ [ 0 for i in range(2) ] for j in range(1) ] TTAN = [ [ 0 for i in range(2) ] for j in range(2) ] TTAP = [ [ 0 for i in range(2) ] for j in range(4) ] TTAQ = [ [ 0 for i in range(2) ] for j in range(2) ] TTAR = [ [ 0 for i in range(2) ] for j in range(6) ] TTAS = [ [ 0 for i in range(2) ] for j in range(6) ] TTAT = [ [ 0 for i in range(2) ] for j in range(4) ] TTAV = [ [ 0 for i in range(2) ] for j in range(4) ] TTAW = [ [ 0 for i in range(2) ] for j in range(1) ] TTAY = [ [ 0 for i in range(2) ] for j in range(2) ] TTGA = [ [ 0 for i in range(2) ] for j in range(4) ] TTGC = [ [ 0 for i in range(2) ] for j in range(2) ] TTGD = [ [ 0 for i in range(2) ] for j in range(2) ] TTGE = [ [ 0 for i in range(2) ] for j in range(2) ] TTGF = [ [ 0 for i in range(2) ] for j in range(2) ] TTGG = [ [ 0 for i in range(2) ] for j in range(4) ] TTGH = [ [ 0 for i in range(2) ] for j in range(2) ] TTGI = [ [ 0 for i in range(2) ] for j in range(3) ] TTGK = [ [ 0 for i in range(2) ] for j in range(2) ] TTGL = [ [ 0 for i in range(2) ] for j in range(6) ] TTGM = [ [ 0 for i in range(2) ] for j in range(1) ] TTGN = [ [ 0 for i in range(2) ] for j in range(2) ] TTGP = [ [ 0 for i in range(2) ] for j in range(4) ] TTGQ = [ [ 0 for i in range(2) ] for j in range(2) ] TTGR = [ [ 0 for i in range(2) ] for j in range(6) ] TTGS = [ [ 0 for i in range(2) ] for j in range(6) ] TTGT = [ [ 0 for i in range(2) ] for j in range(4) ] TTGV = [ [ 0 for i in range(2) ] for j in range(4) ] TTGW = [ [ 0 for i in range(2) ] for j in range(1) ] TTGY = [ [ 0 for i in range(2) ] for j in range(2) ] TTAA = [ [ 0 for i in range(2) ] for j in range(4) ] TTAC = [ [ 0 for i in range(2) ] for j in range(2) ] TTAD = [ [ 0 for i in range(2) ] for j in range(2) ] TTAE = [ [ 0 for i in range(2) ] for j in range(2) ] TTAF = [ [ 0 for i in range(2) ] for j in range(2) ] TTAG = [ [ 0 for i in range(2) ] for j in range(4) ] TTAH = [ [ 0 for i in range(2) ] for j in range(2) ] TTAI = [ [ 0 for i in range(2) ] for j in range(3) ] TTAK = [ [ 0 for i in range(2) ] for j in range(2) ] TTAL = [ [ 0 for i in range(2) ] for j in range(6) ] TTAM = [ [ 0 for i in range(2) ] for j in range(1) ] TTAN = [ [ 0 for i in range(2) ] for j in range(2) ] TTAP = [ [ 0 for i in range(2) ] for j in range(4) ] TTAQ = [ [ 0 for i in range(2) ] for j in range(2) ] TTAR = [ [ 0 for i in range(2) ] for j in range(6) ] TTAS = [ [ 0 for i in range(2) ] for j in range(6) ] TTAT = [ [ 0 for i in range(2) ] for j in range(4) ] TTAV = [ [ 0 for i in range(2) ] for j in range(4) ] TTAW = [ [ 0 for i in range(2) ] for j in range(1) ] TTAY = [ [ 0 for i in range(2) ] for j in range(2) ] CTGA = [ [ 0 for i in range(2) ] for j in range(4) ] CTGC = [ [ 0 for i in range(2) ] for j in range(2) ] CTGD = [ [ 0 for i in range(2) ] for j in range(2) ] CTGE = [ [ 0 for i in range(2) ] for j in range(2) ] CTGF = [ [ 0 for i in range(2) ] for j in range(2) ] CTGG = [ [ 0 for i in range(2) ] for j in range(4) ] CTGH = [ [ 0 for i in range(2) ] for j in range(2) ] CTGI = [ [ 0 for i in range(2) ] for j in range(3) ] CTGK = [ [ 0 for i in range(2) ] for j in range(2) ] CTGL = [ [ 0 for i in range(2) ] for j in range(6) ] CTGM = [ [ 0 for i in range(2) ] for j in range(1) ] CTGN = [ [ 0 for i in range(2) ] for j in range(2) ] CTGP = [ [ 0 for i in range(2) ] for j in range(4) ] CTGQ = [ [ 0 for i in range(2) ] for j in range(2) ] CTGR = [ [ 0 for i in range(2) ] for j in range(6) ] CTGS = [ [ 0 for i in range(2) ] for j in range(6) ] CTGT = [ [ 0 for i in range(2) ] for j in range(4) ] CTGV = [ [ 0 for i in range(2) ] for j in range(4) ] CTGW = [ [ 0 for i in range(2) ] for j in range(1) ] CTGY = [ [ 0 for i in range(2) ] for j in range(2) ] CTAA = [ [ 0 for i in range(2) ] for j in range(4) ] CTAC = [ [ 0 for i in range(2) ] for j in range(2) ] CTAD = [ [ 0 for i in range(2) ] for j in range(2) ] CTAE = [ [ 0 for i in range(2) ] for j in range(2) ] CTAF = [ [ 0 for i in range(2) ] for j in range(2) ] CTAG = [ [ 0 for i in range(2) ] for j in range(4) ] CTAH = [ [ 0 for i in range(2) ] for j in range(2) ] CTAI = [ [ 0 for i in range(2) ] for j in range(3) ] CTAK = [ [ 0 for i in range(2) ] for j in range(2) ] CTAL = [ [ 0 for i in range(2) ] for j in range(6) ] CTAM = [ [ 0 for i in range(2) ] for j in range(1) ] CTAN = [ [ 0 for i in range(2) ] for j in range(2) ] CTAP = [ [ 0 for i in range(2) ] for j in range(4) ] CTAQ = [ [ 0 for i in range(2) ] for j in range(2) ] CTAR = [ [ 0 for i in range(2) ] for j in range(6) ] CTAS = [ [ 0 for i in range(2) ] for j in range(6) ] CTAT = [ [ 0 for i in range(2) ] for j in range(4) ] CTAV = [ [ 0 for i in range(2) ] for j in range(4) ] CTAW = [ [ 0 for i in range(2) ] for j in range(1) ] CTAY = [ [ 0 for i in range(2) ] for j in range(2) ] CTTA = [ [ 0 for i in range(2) ] for j in range(4) ] CTTC = [ [ 0 for i in range(2) ] for j in range(2) ] CTTD = [ [ 0 for i in range(2) ] for j in range(2) ] CTTE = [ [ 0 for i in range(2) ] for j in range(2) ] CTTF = [ [ 0 for i in range(2) ] for j in range(2) ] CTTG = [ [ 0 for i in range(2) ] for j in range(4) ] CTTH = [ [ 0 for i in range(2) ] for j in range(2) ] CTTI = [ [ 0 for i in range(2) ] for j in range(3) ] CTTK = [ [ 0 for i in range(2) ] for j in range(2) ] CTTL = [ [ 0 for i in range(2) ] for j in range(6) ] CTTM = [ [ 0 for i in range(2) ] for j in range(1) ] CTTN = [ [ 0 for i in range(2) ] for j in range(2) ] CTTP = [ [ 0 for i in range(2) ] for j in range(4) ] CTTQ = [ [ 0 for i in range(2) ] for j in range(2) ] CTTR = [ [ 0 for i in range(2) ] for j in range(6) ] CTTS = [ [ 0 for i in range(2) ] for j in range(6) ] CTTT = [ [ 0 for i in range(2) ] for j in range(4) ] CTTV = [ [ 0 for i in range(2) ] for j in range(4) ] CTTW = [ [ 0 for i in range(2) ] for j in range(1) ] CTTY = [ [ 0 for i in range(2) ] for j in range(2) ] CTCA = [ [ 0 for i in range(2) ] for j in range(4) ] CTCC = [ [ 0 for i in range(2) ] for j in range(2) ] CTCD = [ [ 0 for i in range(2) ] for j in range(2) ] CTCE = [ [ 0 for i in range(2) ] for j in range(2) ] CTCF = [ [ 0 for i in range(2) ] for j in range(2) ] CTCG = [ [ 0 for i in range(2) ] for j in range(4) ] CTCH = [ [ 0 for i in range(2) ] for j in range(2) ] CTCI = [ [ 0 for i in range(2) ] for j in range(3) ] CTCK = [ [ 0 for i in range(2) ] for j in range(2) ] CTCL = [ [ 0 for i in range(2) ] for j in range(6) ] CTCM = [ [ 0 for i in range(2) ] for j in range(1) ] CTCN = [ [ 0 for i in range(2) ] for j in range(2) ] CTCP = [ [ 0 for i in range(2) ] for j in range(4) ] CTCQ = [ [ 0 for i in range(2) ] for j in range(2) ] CTCR = [ [ 0 for i in range(2) ] for j in range(6) ] CTCS = [ [ 0 for i in range(2) ] for j in range(6) ] CTCT = [ [ 0 for i in range(2) ] for j in range(4) ] CTCV = [ [ 0 for i in range(2) ] for j in range(4) ] CTCW = [ [ 0 for i in range(2) ] for j in range(1) ] CTCY = [ [ 0 for i in range(2) ] for j in range(2) ] ATGA = [ [ 0 for i in range(2) ] for j in range(4) ] ATGC = [ [ 0 for i in range(2) ] for j in range(2) ] ATGD = [ [ 0 for i in range(2) ] for j in range(2) ] ATGE = [ [ 0 for i in range(2) ] for j in range(2) ] ATGF = [ [ 0 for i in range(2) ] for j in range(2) ] ATGG = [ [ 0 for i in range(2) ] for j in range(4) ] ATGH = [ [ 0 for i in range(2) ] for j in range(2) ] ATGI = [ [ 0 for i in range(2) ] for j in range(3) ] ATGK = [ [ 0 for i in range(2) ] for j in range(2) ] ATGL = [ [ 0 for i in range(2) ] for j in range(6) ] ATGM = [ [ 0 for i in range(2) ] for j in range(1) ] ATGN = [ [ 0 for i in range(2) ] for j in range(2) ] ATGP = [ [ 0 for i in range(2) ] for j in range(4) ] ATGQ = [ [ 0 for i in range(2) ] for j in range(2) ] ATGR = [ [ 0 for i in range(2) ] for j in range(6) ] ATGS = [ [ 0 for i in range(2) ] for j in range(6) ] ATGT = [ [ 0 for i in range(2) ] for j in range(4) ] ATGV = [ [ 0 for i in range(2) ] for j in range(4) ] ATGW = [ [ 0 for i in range(2) ] for j in range(1) ] ATGY = [ [ 0 for i in range(2) ] for j in range(2) ] AATA = [ [ 0 for i in range(2) ] for j in range(4) ] AATC = [ [ 0 for i in range(2) ] for j in range(2) ] AATD = [ [ 0 for i in range(2) ] for j in range(2) ] AATE = [ [ 0 for i in range(2) ] for j in range(2) ] AATF = [ [ 0 for i in range(2) ] for j in range(2) ] AATG = [ [ 0 for i in range(2) ] for j in range(4) ] AATH = [ [ 0 for i in range(2) ] for j in range(2) ] AATI = [ [ 0 for i in range(2) ] for j in range(3) ] AATK = [ [ 0 for i in range(2) ] for j in range(2) ] AATL = [ [ 0 for i in range(2) ] for j in range(6) ] AATM = [ [ 0 for i in range(2) ] for j in range(1) ] AATN = [ [ 0 for i in range(2) ] for j in range(2) ] AATP = [ [ 0 for i in range(2) ] for j in range(4) ] AATQ = [ [ 0 for i in range(2) ] for j in range(2) ] AATR = [ [ 0 for i in range(2) ] for j in range(6) ] AATS = [ [ 0 for i in range(2) ] for j in range(6) ] AATT = [ [ 0 for i in range(2) ] for j in range(4) ] AATV = [ [ 0 for i in range(2) ] for j in range(4) ] AATW = [ [ 0 for i in range(2) ] for j in range(1) ] AATY = [ [ 0 for i in range(2) ] for j in range(2) ] AACA = [ [ 0 for i in range(2) ] for j in range(4) ] AACC = [ [ 0 for i in range(2) ] for j in range(2) ] AACD = [ [ 0 for i in range(2) ] for j in range(2) ] AACE = [ [ 0 for i in range(2) ] for j in range(2) ] AACF = [ [ 0 for i in range(2) ] for j in range(2) ] AACG = [ [ 0 for i in range(2) ] for j in range(4) ] AACH = [ [ 0 for i in range(2) ] for j in range(2) ] AACI = [ [ 0 for i in range(2) ] for j in range(3) ] AACK = [ [ 0 for i in range(2) ] for j in range(2) ] AACL = [ [ 0 for i in range(2) ] for j in range(6) ] AACM = [ [ 0 for i in range(2) ] for j in range(1) ] AACN = [ [ 0 for i in range(2) ] for j in range(2) ] AACP = [ [ 0 for i in range(2) ] for j in range(4) ] AACQ = [ [ 0 for i in range(2) ] for j in range(2) ] AACR = [ [ 0 for i in range(2) ] for j in range(6) ] AACS = [ [ 0 for i in range(2) ] for j in range(6) ] AACT = [ [ 0 for i in range(2) ] for j in range(4) ] AACV = [ [ 0 for i in range(2) ] for j in range(4) ] AACW = [ [ 0 for i in range(2) ] for j in range(1) ] AACY = [ [ 0 for i in range(2) ] for j in range(2) ] CCGA = [ [ 0 for i in range(2) ] for j in range(4) ] CCGC = [ [ 0 for i in range(2) ] for j in range(2) ] CCGD = [ [ 0 for i in range(2) ] for j in range(2) ] CCGE = [ [ 0 for i in range(2) ] for j in range(2) ] CCGF = [ [ 0 for i in range(2) ] for j in range(2) ] CCGG = [ [ 0 for i in range(2) ] for j in range(4) ] CCGH = [ [ 0 for i in range(2) ] for j in range(2) ] CCGI = [ [ 0 for i in range(2) ] for j in range(3) ] CCGK = [ [ 0 for i in range(2) ] for j in range(2) ] CCGL = [ [ 0 for i in range(2) ] for j in range(6) ] CCGM = [ [ 0 for i in range(2) ] for j in range(1) ] CCGN = [ [ 0 for i in range(2) ] for j in range(2) ] CCGP = [ [ 0 for i in range(2) ] for j in range(4) ] CCGQ = [ [ 0 for i in range(2) ] for j in range(2) ] CCGR = [ [ 0 for i in range(2) ] for j in range(6) ] CCGS = [ [ 0 for i in range(2) ] for j in range(6) ] CCGT = [ [ 0 for i in range(2) ] for j in range(4) ] CCGV = [ [ 0 for i in range(2) ] for j in range(4) ] CCGW = [ [ 0 for i in range(2) ] for j in range(1) ] CCGY = [ [ 0 for i in range(2) ] for j in range(2) ] CCAA = [ [ 0 for i in range(2) ] for j in range(4) ] CCAC = [ [ 0 for i in range(2) ] for j in range(2) ] CCAD = [ [ 0 for i in range(2) ] for j in range(2) ] CCAE = [ [ 0 for i in range(2) ] for j in range(2) ] CCAF = [ [ 0 for i in range(2) ] for j in range(2) ] CCAG = [ [ 0 for i in range(2) ] for j in range(4) ] CCAH = [ [ 0 for i in range(2) ] for j in range(2) ] CCAI = [ [ 0 for i in range(2) ] for j in range(3) ] CCAK = [ [ 0 for i in range(2) ] for j in range(2) ] CCAL = [ [ 0 for i in range(2) ] for j in range(6) ] CCAM = [ [ 0 for i in range(2) ] for j in range(1) ] CCAN = [ [ 0 for i in range(2) ] for j in range(2) ] CCAP = [ [ 0 for i in range(2) ] for j in range(4) ] CCAQ = [ [ 0 for i in range(2) ] for j in range(2) ] CCAR = [ [ 0 for i in range(2) ] for j in range(6) ] CCAS = [ [ 0 for i in range(2) ] for j in range(6) ] CCAT = [ [ 0 for i in range(2) ] for j in range(4) ] CCAV = [ [ 0 for i in range(2) ] for j in range(4) ] CCAW = [ [ 0 for i in range(2) ] for j in range(1) ] CCAY = [ [ 0 for i in range(2) ] for j in range(2) ] CCTA = [ [ 0 for i in range(2) ] for j in range(4) ] CCTC = [ [ 0 for i in range(2) ] for j in range(2) ] CCTD = [ [ 0 for i in range(2) ] for j in range(2) ] CCTE = [ [ 0 for i in range(2) ] for j in range(2) ] CCTF = [ [ 0 for i in range(2) ] for j in range(2) ] CCTG = [ [ 0 for i in range(2) ] for j in range(4) ] CCTH = [ [ 0 for i in range(2) ] for j in range(2) ] CCTI = [ [ 0 for i in range(2) ] for j in range(3) ] CCTK = [ [ 0 for i in range(2) ] for j in range(2) ] CCTL = [ [ 0 for i in range(2) ] for j in range(6) ] CCTM = [ [ 0 for i in range(2) ] for j in range(1) ] CCTN = [ [ 0 for i in range(2) ] for j in range(2) ] CCTP = [ [ 0 for i in range(2) ] for j in range(4) ] CCTQ = [ [ 0 for i in range(2) ] for j in range(2) ] CCTR = [ [ 0 for i in range(2) ] for j in range(6) ] CCTS = [ [ 0 for i in range(2) ] for j in range(6) ] CCTT = [ [ 0 for i in range(2) ] for j in range(4) ] CCTV = [ [ 0 for i in range(2) ] for j in range(4) ] CCTW = [ [ 0 for i in range(2) ] for j in range(1) ] CCTY = [ [ 0 for i in range(2) ] for j in range(2) ] CCCA = [ [ 0 for i in range(2) ] for j in range(4) ] CCCC = [ [ 0 for i in range(2) ] for j in range(2) ] CCCD = [ [ 0 for i in range(2) ] for j in range(2) ] CCCE = [ [ 0 for i in range(2) ] for j in range(2) ] CCCF = [ [ 0 for i in range(2) ] for j in range(2) ] CCCG = [ [ 0 for i in range(2) ] for j in range(4) ] CCCH = [ [ 0 for i in range(2) ] for j in range(2) ] CCCI = [ [ 0 for i in range(2) ] for j in range(3) ] CCCK = [ [ 0 for i in range(2) ] for j in range(2) ] CCCL = [ [ 0 for i in range(2) ] for j in range(6) ] CCCM = [ [ 0 for i in range(2) ] for j in range(1) ] CCCN = [ [ 0 for i in range(2) ] for j in range(2) ] CCCP = [ [ 0 for i in range(2) ] for j in range(4) ] CCCQ = [ [ 0 for i in range(2) ] for j in range(2) ] CCCR = [ [ 0 for i in range(2) ] for j in range(6) ] CCCS = [ [ 0 for i in range(2) ] for j in range(6) ] CCCT = [ [ 0 for i in range(2) ] for j in range(4) ] CCCV = [ [ 0 for i in range(2) ] for j in range(4) ] CCCW = [ [ 0 for i in range(2) ] for j in range(1) ] CCCY = [ [ 0 for i in range(2) ] for j in range(2) ] CAGA = [ [ 0 for i in range(2) ] for j in range(4) ] CAGC = [ [ 0 for i in range(2) ] for j in range(2) ] CAGD = [ [ 0 for i in range(2) ] for j in range(2) ] CAGE = [ [ 0 for i in range(2) ] for j in range(2) ] CAGF = [ [ 0 for i in range(2) ] for j in range(2) ] CAGG = [ [ 0 for i in range(2) ] for j in range(4) ] CAGH = [ [ 0 for i in range(2) ] for j in range(2) ] CAGI = [ [ 0 for i in range(2) ] for j in range(3) ] CAGK = [ [ 0 for i in range(2) ] for j in range(2) ] CAGL = [ [ 0 for i in range(2) ] for j in range(6) ] CAGM = [ [ 0 for i in range(2) ] for j in range(1) ] CAGN = [ [ 0 for i in range(2) ] for j in range(2) ] CAGP = [ [ 0 for i in range(2) ] for j in range(4) ] CAGQ = [ [ 0 for i in range(2) ] for j in range(2) ] CAGR = [ [ 0 for i in range(2) ] for j in range(6) ] CAGS = [ [ 0 for i in range(2) ] for j in range(6) ] CAGT = [ [ 0 for i in range(2) ] for j in range(4) ] CAGV = [ [ 0 for i in range(2) ] for j in range(4) ] CAGW = [ [ 0 for i in range(2) ] for j in range(1) ] CAGY = [ [ 0 for i in range(2) ] for j in range(2) ] CAAA = [ [ 0 for i in range(2) ] for j in range(4) ] CAAC = [ [ 0 for i in range(2) ] for j in range(2) ] CAAD = [ [ 0 for i in range(2) ] for j in range(2) ] CAAE = [ [ 0 for i in range(2) ] for j in range(2) ] CAAF = [ [ 0 for i in range(2) ] for j in range(2) ] CAAG = [ [ 0 for i in range(2) ] for j in range(4) ] CAAH = [ [ 0 for i in range(2) ] for j in range(2) ] CAAI = [ [ 0 for i in range(2) ] for j in range(3) ] CAAK = [ [ 0 for i in range(2) ] for j in range(2) ] CAAL = [ [ 0 for i in range(2) ] for j in range(6) ] CAAM = [ [ 0 for i in range(2) ] for j in range(1) ] CAAN = [ [ 0 for i in range(2) ] for j in range(2) ] CAAP = [ [ 0 for i in range(2) ] for j in range(4) ] CAAQ = [ [ 0 for i in range(2) ] for j in range(2) ] CAAR = [ [ 0 for i in range(2) ] for j in range(6) ] CAAS = [ [ 0 for i in range(2) ] for j in range(6) ] CAAT = [ [ 0 for i in range(2) ] for j in range(4) ] CAAV = [ [ 0 for i in range(2) ] for j in range(4) ] CAAW = [ [ 0 for i in range(2) ] for j in range(1) ] CAAY = [ [ 0 for i in range(2) ] for j in range(2) ] AGGA = [ [ 0 for i in range(2) ] for j in range(4) ] AGGC = [ [ 0 for i in range(2) ] for j in range(2) ] AGGD = [ [ 0 for i in range(2) ] for j in range(2) ] AGGE = [ [ 0 for i in range(2) ] for j in range(2) ] AGGF = [ [ 0 for i in range(2) ] for j in range(2) ] AGGG = [ [ 0 for i in range(2) ] for j in range(4) ] AGGH = [ [ 0 for i in range(2) ] for j in range(2) ] AGGI = [ [ 0 for i in range(2) ] for j in range(3) ] AGGK = [ [ 0 for i in range(2) ] for j in range(2) ] AGGL = [ [ 0 for i in range(2) ] for j in range(6) ] AGGM = [ [ 0 for i in range(2) ] for j in range(1) ] AGGN = [ [ 0 for i in range(2) ] for j in range(2) ] AGGP = [ [ 0 for i in range(2) ] for j in range(4) ] AGGQ = [ [ 0 for i in range(2) ] for j in range(2) ] AGGR = [ [ 0 for i in range(2) ] for j in range(6) ] AGGS = [ [ 0 for i in range(2) ] for j in range(6) ] AGGT = [ [ 0 for i in range(2) ] for j in range(4) ] AGGV = [ [ 0 for i in range(2) ] for j in range(4) ] AGGW = [ [ 0 for i in range(2) ] for j in range(1) ] AGGY = [ [ 0 for i in range(2) ] for j in range(2) ] AGAA = [ [ 0 for i in range(2) ] for j in range(4) ] AGAC = [ [ 0 for i in range(2) ] for j in range(2) ] AGAD = [ [ 0 for i in range(2) ] for j in range(2) ] AGAE = [ [ 0 for i in range(2) ] for j in range(2) ] AGAF = [ [ 0 for i in range(2) ] for j in range(2) ] AGAG = [ [ 0 for i in range(2) ] for j in range(4) ] AGAH = [ [ 0 for i in range(2) ] for j in range(2) ] AGAI = [ [ 0 for i in range(2) ] for j in range(3) ] AGAK = [ [ 0 for i in range(2) ] for j in range(2) ] AGAL = [ [ 0 for i in range(2) ] for j in range(6) ] AGAM = [ [ 0 for i in range(2) ] for j in range(1) ] AGAN = [ [ 0 for i in range(2) ] for j in range(2) ] AGAP = [ [ 0 for i in range(2) ] for j in range(4) ] AGAQ = [ [ 0 for i in range(2) ] for j in range(2) ] AGAR = [ [ 0 for i in range(2) ] for j in range(6) ] AGAS = [ [ 0 for i in range(2) ] for j in range(6) ] AGAT = [ [ 0 for i in range(2) ] for j in range(4) ] AGAV = [ [ 0 for i in range(2) ] for j in range(4) ] AGAW = [ [ 0 for i in range(2) ] for j in range(1) ] AGAY = [ [ 0 for i in range(2) ] for j in range(2) ] CGGA = [ [ 0 for i in range(2) ] for j in range(4) ] CGGC = [ [ 0 for i in range(2) ] for j in range(2) ] CGGD = [ [ 0 for i in range(2) ] for j in range(2) ] CGGE = [ [ 0 for i in range(2) ] for j in range(2) ] CGGF = [ [ 0 for i in range(2) ] for j in range(2) ] CGGG = [ [ 0 for i in range(2) ] for j in range(4) ] CGGH = [ [ 0 for i in range(2) ] for j in range(2) ] CGGI = [ [ 0 for i in range(2) ] for j in range(3) ] CGGK = [ [ 0 for i in range(2) ] for j in range(2) ] CGGL = [ [ 0 for i in range(2) ] for j in range(6) ] CGGM = [ [ 0 for i in range(2) ] for j in range(1) ] CGGN = [ [ 0 for i in range(2) ] for j in range(2) ] CGGP = [ [ 0 for i in range(2) ] for j in range(4) ] CGGQ = [ [ 0 for i in range(2) ] for j in range(2) ] CGGR = [ [ 0 for i in range(2) ] for j in range(6) ] CGGS = [ [ 0 for i in range(2) ] for j in range(6) ] CGGT = [ [ 0 for i in range(2) ] for j in range(4) ] CGGV = [ [ 0 for i in range(2) ] for j in range(4) ] CGGW = [ [ 0 for i in range(2) ] for j in range(1) ] CGGY = [ [ 0 for i in range(2) ] for j in range(2) ] CGAA = [ [ 0 for i in range(2) ] for j in range(4) ] CGAC = [ [ 0 for i in range(2) ] for j in range(2) ] CGAD = [ [ 0 for i in range(2) ] for j in range(2) ] CGAE = [ [ 0 for i in range(2) ] for j in range(2) ] CGAF = [ [ 0 for i in range(2) ] for j in range(2) ] CGAG = [ [ 0 for i in range(2) ] for j in range(4) ] CGAH = [ [ 0 for i in range(2) ] for j in range(2) ] CGAI = [ [ 0 for i in range(2) ] for j in range(3) ] CGAK = [ [ 0 for i in range(2) ] for j in range(2) ] CGAL = [ [ 0 for i in range(2) ] for j in range(6) ] CGAM = [ [ 0 for i in range(2) ] for j in range(1) ] CGAN = [ [ 0 for i in range(2) ] for j in range(2) ] CGAP = [ [ 0 for i in range(2) ] for j in range(4) ] CGAQ = [ [ 0 for i in range(2) ] for j in range(2) ] CGAR = [ [ 0 for i in range(2) ] for j in range(6) ] CGAS = [ [ 0 for i in range(2) ] for j in range(6) ] CGAT = [ [ 0 for i in range(2) ] for j in range(4) ] CGAV = [ [ 0 for i in range(2) ] for j in range(4) ] CGAW = [ [ 0 for i in range(2) ] for j in range(1) ] CGAY = [ [ 0 for i in range(2) ] for j in range(2) ] CGTA = [ [ 0 for i in range(2) ] for j in range(4) ] CGTC = [ [ 0 for i in range(2) ] for j in range(2) ] CGTD = [ [ 0 for i in range(2) ] for j in range(2) ] CGTE = [ [ 0 for i in range(2) ] for j in range(2) ] CGTF = [ [ 0 for i in range(2) ] for j in range(2) ] CGTG = [ [ 0 for i in range(2) ] for j in range(4) ] CGTH = [ [ 0 for i in range(2) ] for j in range(2) ] CGTI = [ [ 0 for i in range(2) ] for j in range(3) ] CGTK = [ [ 0 for i in range(2) ] for j in range(2) ] CGTL = [ [ 0 for i in range(2) ] for j in range(6) ] CGTM = [ [ 0 for i in range(2) ] for j in range(1) ] CGTN = [ [ 0 for i in range(2) ] for j in range(2) ] CGTP = [ [ 0 for i in range(2) ] for j in range(4) ] CGTQ = [ [ 0 for i in range(2) ] for j in range(2) ] CGTR = [ [ 0 for i in range(2) ] for j in range(6) ] CGTS = [ [ 0 for i in range(2) ] for j in range(6) ] CGTT = [ [ 0 for i in range(2) ] for j in range(4) ] CGTV = [ [ 0 for i in range(2) ] for j in range(4) ] CGTW = [ [ 0 for i in range(2) ] for j in range(1) ] CGTY = [ [ 0 for i in range(2) ] for j in range(2) ] CGCA = [ [ 0 for i in range(2) ] for j in range(4) ] CGCC = [ [ 0 for i in range(2) ] for j in range(2) ] CGCD = [ [ 0 for i in range(2) ] for j in range(2) ] CGCE = [ [ 0 for i in range(2) ] for j in range(2) ] CGCF = [ [ 0 for i in range(2) ] for j in range(2) ] CGCG = [ [ 0 for i in range(2) ] for j in range(4) ] CGCH = [ [ 0 for i in range(2) ] for j in range(2) ] CGCI = [ [ 0 for i in range(2) ] for j in range(3) ] CGCK = [ [ 0 for i in range(2) ] for j in range(2) ] CGCL = [ [ 0 for i in range(2) ] for j in range(6) ] CGCM = [ [ 0 for i in range(2) ] for j in range(1) ] CGCN = [ [ 0 for i in range(2) ] for j in range(2) ] CGCP = [ [ 0 for i in range(2) ] for j in range(4) ] CGCQ = [ [ 0 for i in range(2) ] for j in range(2) ] CGCR = [ [ 0 for i in range(2) ] for j in range(6) ] CGCS = [ [ 0 for i in range(2) ] for j in range(6) ] CGCT = [ [ 0 for i in range(2) ] for j in range(4) ] CGCV = [ [ 0 for i in range(2) ] for j in range(4) ] CGCW = [ [ 0 for i in range(2) ] for j in range(1) ] CGCY = [ [ 0 for i in range(2) ] for j in range(2) ] AGTA = [ [ 0 for i in range(2) ] for j in range(4) ] AGTC = [ [ 0 for i in range(2) ] for j in range(2) ] AGTD = [ [ 0 for i in range(2) ] for j in range(2) ] AGTE = [ [ 0 for i in range(2) ] for j in range(2) ] AGTF = [ [ 0 for i in range(2) ] for j in range(2) ] AGTG = [ [ 0 for i in range(2) ] for j in range(4) ] AGTH = [ [ 0 for i in range(2) ] for j in range(2) ] AGTI = [ [ 0 for i in range(2) ] for j in range(3) ] AGTK = [ [ 0 for i in range(2) ] for j in range(2) ] AGTL = [ [ 0 for i in range(2) ] for j in range(6) ] AGTM = [ [ 0 for i in range(2) ] for j in range(1) ] AGTN = [ [ 0 for i in range(2) ] for j in range(2) ] AGTP = [ [ 0 for i in range(2) ] for j in range(4) ] AGTQ = [ [ 0 for i in range(2) ] for j in range(2) ] AGTR = [ [ 0 for i in range(2) ] for j in range(6) ] AGTS = [ [ 0 for i in range(2) ] for j in range(6) ] AGTT = [ [ 0 for i in range(2) ] for j in range(4) ] AGTV = [ [ 0 for i in range(2) ] for j in range(4) ] AGTW = [ [ 0 for i in range(2) ] for j in range(1) ] AGTY = [ [ 0 for i in range(2) ] for j in range(2) ] AGCA = [ [ 0 for i in range(2) ] for j in range(4) ] AGCC = [ [ 0 for i in range(2) ] for j in range(2) ] AGCD = [ [ 0 for i in range(2) ] for j in range(2) ] AGCE = [ [ 0 for i in range(2) ] for j in range(2) ] AGCF = [ [ 0 for i in range(2) ] for j in range(2) ] AGCG = [ [ 0 for i in range(2) ] for j in range(4) ] AGCH = [ [ 0 for i in range(2) ] for j in range(2) ] AGCI = [ [ 0 for i in range(2) ] for j in range(3) ] AGCK = [ [ 0 for i in range(2) ] for j in range(2) ] AGCL = [ [ 0 for i in range(2) ] for j in range(6) ] AGCM = [ [ 0 for i in range(2) ] for j in range(1) ] AGCN = [ [ 0 for i in range(2) ] for j in range(2) ] AGCP = [ [ 0 for i in range(2) ] for j in range(4) ] AGCQ = [ [ 0 for i in range(2) ] for j in range(2) ] AGCR = [ [ 0 for i in range(2) ] for j in range(6) ] AGCS = [ [ 0 for i in range(2) ] for j in range(6) ] AGCT = [ [ 0 for i in range(2) ] for j in range(4) ] AGCV = [ [ 0 for i in range(2) ] for j in range(4) ] AGCW = [ [ 0 for i in range(2) ] for j in range(1) ] AGCY = [ [ 0 for i in range(2) ] for j in range(2) ] TCGA = [ [ 0 for i in range(2) ] for j in range(4) ] TCGC = [ [ 0 for i in range(2) ] for j in range(2) ] TCGD = [ [ 0 for i in range(2) ] for j in range(2) ] TCGE = [ [ 0 for i in range(2) ] for j in range(2) ] TCGF = [ [ 0 for i in range(2) ] for j in range(2) ] TCGG = [ [ 0 for i in range(2) ] for j in range(4) ] TCGH = [ [ 0 for i in range(2) ] for j in range(2) ] TCGI = [ [ 0 for i in range(2) ] for j in range(3) ] TCGK = [ [ 0 for i in range(2) ] for j in range(2) ] TCGL = [ [ 0 for i in range(2) ] for j in range(6) ] TCGM = [ [ 0 for i in range(2) ] for j in range(1) ] TCGN = [ [ 0 for i in range(2) ] for j in range(2) ] TCGP = [ [ 0 for i in range(2) ] for j in range(4) ] TCGQ = [ [ 0 for i in range(2) ] for j in range(2) ] TCGR = [ [ 0 for i in range(2) ] for j in range(6) ] TCGS = [ [ 0 for i in range(2) ] for j in range(6) ] TCGT = [ [ 0 for i in range(2) ] for j in range(4) ] TCGV = [ [ 0 for i in range(2) ] for j in range(4) ] TCGW = [ [ 0 for i in range(2) ] for j in range(1) ] TCGY = [ [ 0 for i in range(2) ] for j in range(2) ] TCAA = [ [ 0 for i in range(2) ] for j in range(4) ] TCAC = [ [ 0 for i in range(2) ] for j in range(2) ] TCAD = [ [ 0 for i in range(2) ] for j in range(2) ] TCAE = [ [ 0 for i in range(2) ] for j in range(2) ] TCAF = [ [ 0 for i in range(2) ] for j in range(2) ] TCAG = [ [ 0 for i in range(2) ] for j in range(4) ] TCAH = [ [ 0 for i in range(2) ] for j in range(2) ] TCAI = [ [ 0 for i in range(2) ] for j in range(3) ] TCAK = [ [ 0 for i in range(2) ] for j in range(2) ] TCAL = [ [ 0 for i in range(2) ] for j in range(6) ] TCAM = [ [ 0 for i in range(2) ] for j in range(1) ] TCAN = [ [ 0 for i in range(2) ] for j in range(2) ] TCAP = [ [ 0 for i in range(2) ] for j in range(4) ] TCAQ = [ [ 0 for i in range(2) ] for j in range(2) ] TCAR = [ [ 0 for i in range(2) ] for j in range(6) ] TCAS = [ [ 0 for i in range(2) ] for j in range(6) ] TCAT = [ [ 0 for i in range(2) ] for j in range(4) ] TCAV = [ [ 0 for i in range(2) ] for j in range(4) ] TCAW = [ [ 0 for i in range(2) ] for j in range(1) ] TCAY = [ [ 0 for i in range(2) ] for j in range(2) ] TCTA = [ [ 0 for i in range(2) ] for j in range(4) ] TCTC = [ [ 0 for i in range(2) ] for j in range(2) ] TCTD = [ [ 0 for i in range(2) ] for j in range(2) ] TCTE = [ [ 0 for i in range(2) ] for j in range(2) ] TCTF = [ [ 0 for i in range(2) ] for j in range(2) ] TCTG = [ [ 0 for i in range(2) ] for j in range(4) ] TCTH = [ [ 0 for i in range(2) ] for j in range(2) ] TCTI = [ [ 0 for i in range(2) ] for j in range(3) ] TCTK = [ [ 0 for i in range(2) ] for j in range(2) ] TCTL = [ [ 0 for i in range(2) ] for j in range(6) ] TCTM = [ [ 0 for i in range(2) ] for j in range(1) ] TCTN = [ [ 0 for i in range(2) ] for j in range(2) ] TCTP = [ [ 0 for i in range(2) ] for j in range(4) ] TCTQ = [ [ 0 for i in range(2) ] for j in range(2) ] TCTR = [ [ 0 for i in range(2) ] for j in range(6) ] TCTS = [ [ 0 for i in range(2) ] for j in range(6) ] TCTT = [ [ 0 for i in range(2) ] for j in range(4) ] TCTV = [ [ 0 for i in range(2) ] for j in range(4) ] TCTW = [ [ 0 for i in range(2) ] for j in range(1) ] TCTY = [ [ 0 for i in range(2) ] for j in range(2) ] TCCA = [ [ 0 for i in range(2) ] for j in range(4) ] TCCC = [ [ 0 for i in range(2) ] for j in range(2) ] TCCD = [ [ 0 for i in range(2) ] for j in range(2) ] TCCE = [ [ 0 for i in range(2) ] for j in range(2) ] TCCF = [ [ 0 for i in range(2) ] for j in range(2) ] TCCG = [ [ 0 for i in range(2) ] for j in range(4) ] TCCH = [ [ 0 for i in range(2) ] for j in range(2) ] TCCI = [ [ 0 for i in range(2) ] for j in range(3) ] TCCK = [ [ 0 for i in range(2) ] for j in range(2) ] TCCL = [ [ 0 for i in range(2) ] for j in range(6) ] TCCM = [ [ 0 for i in range(2) ] for j in range(1) ] TCCN = [ [ 0 for i in range(2) ] for j in range(2) ] TCCP = [ [ 0 for i in range(2) ] for j in range(4) ] TCCQ = [ [ 0 for i in range(2) ] for j in range(2) ] TCCR = [ [ 0 for i in range(2) ] for j in range(6) ] TCCS = [ [ 0 for i in range(2) ] for j in range(6) ] TCCT = [ [ 0 for i in range(2) ] for j in range(4) ] TCCV = [ [ 0 for i in range(2) ] for j in range(4) ] TCCW = [ [ 0 for i in range(2) ] for j in range(1) ] TCCY = [ [ 0 for i in range(2) ] for j in range(2) ] ACGA = [ [ 0 for i in range(2) ] for j in range(4) ] ACGC = [ [ 0 for i in range(2) ] for j in range(2) ] ACGD = [ [ 0 for i in range(2) ] for j in range(2) ] ACGE = [ [ 0 for i in range(2) ] for j in range(2) ] ACGF = [ [ 0 for i in range(2) ] for j in range(2) ] ACGG = [ [ 0 for i in range(2) ] for j in range(4) ] ACGH = [ [ 0 for i in range(2) ] for j in range(2) ] ACGI = [ [ 0 for i in range(2) ] for j in range(3) ] ACGK = [ [ 0 for i in range(2) ] for j in range(2) ] ACGL = [ [ 0 for i in range(2) ] for j in range(6) ] ACGM = [ [ 0 for i in range(2) ] for j in range(1) ] ACGN = [ [ 0 for i in range(2) ] for j in range(2) ] ACGP = [ [ 0 for i in range(2) ] for j in range(4) ] ACGQ = [ [ 0 for i in range(2) ] for j in range(2) ] ACGR = [ [ 0 for i in range(2) ] for j in range(6) ] ACGS = [ [ 0 for i in range(2) ] for j in range(6) ] ACGT = [ [ 0 for i in range(2) ] for j in range(4) ] ACGV = [ [ 0 for i in range(2) ] for j in range(4) ] ACGW = [ [ 0 for i in range(2) ] for j in range(1) ] ACGY = [ [ 0 for i in range(2) ] for j in range(2) ] ACAA = [ [ 0 for i in range(2) ] for j in range(4) ] ACAC = [ [ 0 for i in range(2) ] for j in range(2) ] ACAD = [ [ 0 for i in range(2) ] for j in range(2) ] ACAE = [ [ 0 for i in range(2) ] for j in range(2) ] ACAF = [ [ 0 for i in range(2) ] for j in range(2) ] ACAG = [ [ 0 for i in range(2) ] for j in range(4) ] ACAH = [ [ 0 for i in range(2) ] for j in range(2) ] ACAI = [ [ 0 for i in range(2) ] for j in range(3) ] ACAK = [ [ 0 for i in range(2) ] for j in range(2) ] ACAL = [ [ 0 for i in range(2) ] for j in range(6) ] ACAM = [ [ 0 for i in range(2) ] for j in range(1) ] ACAN = [ [ 0 for i in range(2) ] for j in range(2) ] ACAP = [ [ 0 for i in range(2) ] for j in range(4) ] ACAQ = [ [ 0 for i in range(2) ] for j in range(2) ] ACAR = [ [ 0 for i in range(2) ] for j in range(6) ] ACAS = [ [ 0 for i in range(2) ] for j in range(6) ] ACAT = [ [ 0 for i in range(2) ] for j in range(4) ] ACAV = [ [ 0 for i in range(2) ] for j in range(4) ] ACAW = [ [ 0 for i in range(2) ] for j in range(1) ] ACAY = [ [ 0 for i in range(2) ] for j in range(2) ] ACTA = [ [ 0 for i in range(2) ] for j in range(4) ] ACTC = [ [ 0 for i in range(2) ] for j in range(2) ] ACTD = [ [ 0 for i in range(2) ] for j in range(2) ] ACTE = [ [ 0 for i in range(2) ] for j in range(2) ] ACTF = [ [ 0 for i in range(2) ] for j in range(2) ] ACTG = [ [ 0 for i in range(2) ] for j in range(4) ] ACTH = [ [ 0 for i in range(2) ] for j in range(2) ] ACTI = [ [ 0 for i in range(2) ] for j in range(3) ] ACTK = [ [ 0 for i in range(2) ] for j in range(2) ] ACTL = [ [ 0 for i in range(2) ] for j in range(6) ] ACTM = [ [ 0 for i in range(2) ] for j in range(1) ] ACTN = [ [ 0 for i in range(2) ] for j in range(2) ] ACTP = [ [ 0 for i in range(2) ] for j in range(4) ] ACTQ = [ [ 0 for i in range(2) ] for j in range(2) ] ACTR = [ [ 0 for i in range(2) ] for j in range(6) ] ACTS = [ [ 0 for i in range(2) ] for j in range(6) ] ACTT = [ [ 0 for i in range(2) ] for j in range(4) ] ACTV = [ [ 0 for i in range(2) ] for j in range(4) ] ACTW = [ [ 0 for i in range(2) ] for j in range(1) ] ACTY = [ [ 0 for i in range(2) ] for j in range(2) ] ACCA = [ [ 0 for i in range(2) ] for j in range(4) ] ACCC = [ [ 0 for i in range(2) ] for j in range(2) ] ACCD = [ [ 0 for i in range(2) ] for j in range(2) ] ACCE = [ [ 0 for i in range(2) ] for j in range(2) ] ACCF = [ [ 0 for i in range(2) ] for j in range(2) ] ACCG = [ [ 0 for i in range(2) ] for j in range(4) ] ACCH = [ [ 0 for i in range(2) ] for j in range(2) ] ACCI = [ [ 0 for i in range(2) ] for j in range(3) ] ACCK = [ [ 0 for i in range(2) ] for j in range(2) ] ACCL = [ [ 0 for i in range(2) ] for j in range(6) ] ACCM = [ [ 0 for i in range(2) ] for j in range(1) ] ACCN = [ [ 0 for i in range(2) ] for j in range(2) ] ACCP = [ [ 0 for i in range(2) ] for j in range(4) ] ACCQ = [ [ 0 for i in range(2) ] for j in range(2) ] ACCR = [ [ 0 for i in range(2) ] for j in range(6) ] ACCS = [ [ 0 for i in range(2) ] for j in range(6) ] ACCT = [ [ 0 for i in range(2) ] for j in range(4) ] ACCV = [ [ 0 for i in range(2) ] for j in range(4) ] ACCW = [ [ 0 for i in range(2) ] for j in range(1) ] ACCY = [ [ 0 for i in range(2) ] for j in range(2) ] GTGA = [ [ 0 for i in range(2) ] for j in range(4) ] GTGC = [ [ 0 for i in range(2) ] for j in range(2) ] GTGD = [ [ 0 for i in range(2) ] for j in range(2) ] GTGE = [ [ 0 for i in range(2) ] for j in range(2) ] GTGF = [ [ 0 for i in range(2) ] for j in range(2) ] GTGG = [ [ 0 for i in range(2) ] for j in range(4) ] GTGH = [ [ 0 for i in range(2) ] for j in range(2) ] GTGI = [ [ 0 for i in range(2) ] for j in range(3) ] GTGK = [ [ 0 for i in range(2) ] for j in range(2) ] GTGL = [ [ 0 for i in range(2) ] for j in range(6) ] GTGM = [ [ 0 for i in range(2) ] for j in range(1) ] GTGN = [ [ 0 for i in range(2) ] for j in range(2) ] GTGP = [ [ 0 for i in range(2) ] for j in range(4) ] GTGQ = [ [ 0 for i in range(2) ] for j in range(2) ] GTGR = [ [ 0 for i in range(2) ] for j in range(6) ] GTGS = [ [ 0 for i in range(2) ] for j in range(6) ] GTGT = [ [ 0 for i in range(2) ] for j in range(4) ] GTGV = [ [ 0 for i in range(2) ] for j in range(4) ] GTGW = [ [ 0 for i in range(2) ] for j in range(1) ] GTGY = [ [ 0 for i in range(2) ] for j in range(2) ] GTAA = [ [ 0 for i in range(2) ] for j in range(4) ] GTAC = [ [ 0 for i in range(2) ] for j in range(2) ] GTAD = [ [ 0 for i in range(2) ] for j in range(2) ] GTAE = [ [ 0 for i in range(2) ] for j in range(2) ] GTAF = [ [ 0 for i in range(2) ] for j in range(2) ] GTAG = [ [ 0 for i in range(2) ] for j in range(4) ] GTAH = [ [ 0 for i in range(2) ] for j in range(2) ] GTAI = [ [ 0 for i in range(2) ] for j in range(3) ] GTAK = [ [ 0 for i in range(2) ] for j in range(2) ] GTAL = [ [ 0 for i in range(2) ] for j in range(6) ] GTAM = [ [ 0 for i in range(2) ] for j in range(1) ] GTAN = [ [ 0 for i in range(2) ] for j in range(2) ] GTAP = [ [ 0 for i in range(2) ] for j in range(4) ] GTAQ = [ [ 0 for i in range(2) ] for j in range(2) ] GTAR = [ [ 0 for i in range(2) ] for j in range(6) ] GTAS = [ [ 0 for i in range(2) ] for j in range(6) ] GTAT = [ [ 0 for i in range(2) ] for j in range(4) ] GTAV = [ [ 0 for i in range(2) ] for j in range(4) ] GTAW = [ [ 0 for i in range(2) ] for j in range(1) ] GTAY = [ [ 0 for i in range(2) ] for j in range(2) ] GTTA = [ [ 0 for i in range(2) ] for j in range(4) ] GTTC = [ [ 0 for i in range(2) ] for j in range(2) ] GTTD = [ [ 0 for i in range(2) ] for j in range(2) ] GTTE = [ [ 0 for i in range(2) ] for j in range(2) ] GTTF = [ [ 0 for i in range(2) ] for j in range(2) ] GTTG = [ [ 0 for i in range(2) ] for j in range(4) ] GTTH = [ [ 0 for i in range(2) ] for j in range(2) ] GTTI = [ [ 0 for i in range(2) ] for j in range(3) ] GTTK = [ [ 0 for i in range(2) ] for j in range(2) ] GTTL = [ [ 0 for i in range(2) ] for j in range(6) ] GTTM = [ [ 0 for i in range(2) ] for j in range(1) ] GTTN = [ [ 0 for i in range(2) ] for j in range(2) ] GTTP = [ [ 0 for i in range(2) ] for j in range(4) ] GTTQ = [ [ 0 for i in range(2) ] for j in range(2) ] GTTR = [ [ 0 for i in range(2) ] for j in range(6) ] GTTS = [ [ 0 for i in range(2) ] for j in range(6) ] GTTT = [ [ 0 for i in range(2) ] for j in range(4) ] GTTV = [ [ 0 for i in range(2) ] for j in range(4) ] GTTW = [ [ 0 for i in range(2) ] for j in range(1) ] GTTY = [ [ 0 for i in range(2) ] for j in range(2) ] GTCA = [ [ 0 for i in range(2) ] for j in range(4) ] GTCC = [ [ 0 for i in range(2) ] for j in range(2) ] GTCD = [ [ 0 for i in range(2) ] for j in range(2) ] GTCE = [ [ 0 for i in range(2) ] for j in range(2) ] GTCF = [ [ 0 for i in range(2) ] for j in range(2) ] GTCG = [ [ 0 for i in range(2) ] for j in range(4) ] GTCH = [ [ 0 for i in range(2) ] for j in range(2) ] GTCI = [ [ 0 for i in range(2) ] for j in range(3) ] GTCK = [ [ 0 for i in range(2) ] for j in range(2) ] GTCL = [ [ 0 for i in range(2) ] for j in range(6) ] GTCM = [ [ 0 for i in range(2) ] for j in range(1) ] GTCN = [ [ 0 for i in range(2) ] for j in range(2) ] GTCP = [ [ 0 for i in range(2) ] for j in range(4) ] GTCQ = [ [ 0 for i in range(2) ] for j in range(2) ] GTCR = [ [ 0 for i in range(2) ] for j in range(6) ] GTCS = [ [ 0 for i in range(2) ] for j in range(6) ] GTCT = [ [ 0 for i in range(2) ] for j in range(4) ] GTCV = [ [ 0 for i in range(2) ] for j in range(4) ] GTCW = [ [ 0 for i in range(2) ] for j in range(1) ] GTCY = [ [ 0 for i in range(2) ] for j in range(2) ] TGGA = [ [ 0 for i in range(2) ] for j in range(4) ] TGGC = [ [ 0 for i in range(2) ] for j in range(2) ] TGGD = [ [ 0 for i in range(2) ] for j in range(2) ] TGGE = [ [ 0 for i in range(2) ] for j in range(2) ] TGGF = [ [ 0 for i in range(2) ] for j in range(2) ] TGGG = [ [ 0 for i in range(2) ] for j in range(4) ] TGGH = [ [ 0 for i in range(2) ] for j in range(2) ] TGGI = [ [ 0 for i in range(2) ] for j in range(3) ] TGGK = [ [ 0 for i in range(2) ] for j in range(2) ] TGGL = [ [ 0 for i in range(2) ] for j in range(6) ] TGGM = [ [ 0 for i in range(2) ] for j in range(1) ] TGGN = [ [ 0 for i in range(2) ] for j in range(2) ] TGGP = [ [ 0 for i in range(2) ] for j in range(4) ] TGGQ = [ [ 0 for i in range(2) ] for j in range(2) ] TGGR = [ [ 0 for i in range(2) ] for j in range(6) ] TGGS = [ [ 0 for i in range(2) ] for j in range(6) ] TGGT = [ [ 0 for i in range(2) ] for j in range(4) ] TGGV = [ [ 0 for i in range(2) ] for j in range(4) ] TGGW = [ [ 0 for i in range(2) ] for j in range(1) ] TGGY = [ [ 0 for i in range(2) ] for j in range(2) ] TATA = [ [ 0 for i in range(2) ] for j in range(4) ] TATC = [ [ 0 for i in range(2) ] for j in range(2) ] TATD = [ [ 0 for i in range(2) ] for j in range(2) ] TATE = [ [ 0 for i in range(2) ] for j in range(2) ] TATF = [ [ 0 for i in range(2) ] for j in range(2) ] TATG = [ [ 0 for i in range(2) ] for j in range(4) ] TATH = [ [ 0 for i in range(2) ] for j in range(2) ] TATI = [ [ 0 for i in range(2) ] for j in range(3) ] TATK = [ [ 0 for i in range(2) ] for j in range(2) ] TATL = [ [ 0 for i in range(2) ] for j in range(6) ] TATM = [ [ 0 for i in range(2) ] for j in range(1) ] TATN = [ [ 0 for i in range(2) ] for j in range(2) ] TATP = [ [ 0 for i in range(2) ] for j in range(4) ] TATQ = [ [ 0 for i in range(2) ] for j in range(2) ] TATR = [ [ 0 for i in range(2) ] for j in range(6) ] TATS = [ [ 0 for i in range(2) ] for j in range(6) ] TATT = [ [ 0 for i in range(2) ] for j in range(4) ] TATV = [ [ 0 for i in range(2) ] for j in range(4) ] TATW = [ [ 0 for i in range(2) ] for j in range(1) ] TATY = [ [ 0 for i in range(2) ] for j in range(2) ] TACA = [ [ 0 for i in range(2) ] for j in range(4) ] TACC = [ [ 0 for i in range(2) ] for j in range(2) ] TACD = [ [ 0 for i in range(2) ] for j in range(2) ] TACE = [ [ 0 for i in range(2) ] for j in range(2) ] TACF = [ [ 0 for i in range(2) ] for j in range(2) ] TACG = [ [ 0 for i in range(2) ] for j in range(4) ] TACH = [ [ 0 for i in range(2) ] for j in range(2) ] TACI = [ [ 0 for i in range(2) ] for j in range(3) ] TACK = [ [ 0 for i in range(2) ] for j in range(2) ] TACL = [ [ 0 for i in range(2) ] for j in range(6) ] TACM = [ [ 0 for i in range(2) ] for j in range(1) ] TACN = [ [ 0 for i in range(2) ] for j in range(2) ] TACP = [ [ 0 for i in range(2) ] for j in range(4) ] TACQ = [ [ 0 for i in range(2) ] for j in range(2) ] TACR = [ [ 0 for i in range(2) ] for j in range(6) ] TACS = [ [ 0 for i in range(2) ] for j in range(6) ] TACT = [ [ 0 for i in range(2) ] for j in range(4) ] TACV = [ [ 0 for i in range(2) ] for j in range(4) ] TACW = [ [ 0 for i in range(2) ] for j in range(1) ] TACY = [ [ 0 for i in range(2) ] for j in range(2) ] #Create a dictionary, Master, that pairs each list with the corresponding string Master = {'GCGA':GCGA,'GCGC':GCGC,'GCGD':GCGD,'GCGE':GCGE,'GCGF':GCGF,'GCGG':GCGG,'GCGH':GCGH,'GCGI':GCGI,'GCGK':GCGK,'GCGL':GCGL, 'GCGM':GCGM,'GCGN':GCGN,'GCGP':GCGP,'GCGQ':GCGQ,'GCGR':GCGR,'GCGS':GCGS,'GCGT':GCGT,'GCGV':GCGV,'GCGW':GCGW,'GCGY':GCGY, 'GCAA':GCAA,'GCAC':GCAC,'GCAD':GCAD,'GCAE':GCAE,'GCAF':GCAF,'GCAG':GCAG,'GCAH':GCAH,'GCAI':GCAI,'GCAK':GCAK,'GCAL':GCAL, 'GCAM':GCAM,'GCAN':GCAN,'GCAP':GCAP,'GCAQ':GCAQ,'GCAR':GCAR,'GCAS':GCAS,'GCAT':GCAT,'GCAV':GCAV,'GCAW':GCAW,'GCAY':GCAY, 'GCTA':GCTA,'GCTC':GCTC,'GCTD':GCTD,'GCTE':GCTE,'GCTF':GCTF,'GCTG':GCTG,'GCTH':GCTH,'GCTI':GCTI,'GCTK':GCTK,'GCTL':GCTL, 'GCTM':GCTM,'GCTN':GCTN,'GCTP':GCTP,'GCTQ':GCTQ,'GCTR':GCTR,'GCTS':GCTS,'GCTT':GCTT,'GCTV':GCTV,'GCTW':GCTW,'GCTY':GCTY, 'GCCA':GCCA,'GCCC':GCCC,'GCCD':GCCD,'GCCE':GCCE,'GCCF':GCCF,'GCCG':GCCG,'GCCH':GCCH,'GCCI':GCCI,'GCCK':GCCK,'GCCL':GCCL, 'GCCM':GCCM,'GCCN':GCCN,'GCCP':GCCP,'GCCQ':GCCQ,'GCCR':GCCR,'GCCS':GCCS,'GCCT':GCCT,'GCCV':GCCV,'GCCW':GCCW,'GCCY':GCCY, 'TGTA':TGTA,'TGTC':TGTC,'TGTD':TGTD,'TGTE':TGTE,'TGTF':TGTF,'TGTG':TGTG,'TGTH':TGTH,'TGTI':TGTI,'TGTK':TGTK,'TGTL':TGTL, 'TGTM':TGTM,'TGTN':TGTN,'TGTP':TGTP,'TGTQ':TGTQ,'TGTR':TGTR,'TGTS':TGTS,'TGTT':TGTT,'TGTV':TGTV,'TGTW':TGTW,'TGTY':TGTY, 'TGCA':TGCA,'TGCC':TGCC,'TGCD':TGCD,'TGCE':TGCE,'TGCF':TGCF,'TGCG':TGCG,'TGCH':TGCH,'TGCI':TGCI,'TGCK':TGCK,'TGCL':TGCL, 'TGCM':TGCM,'TGCN':TGCN,'TGCP':TGCP,'TGCQ':TGCQ,'TGCR':TGCR,'TGCS':TGCS,'TGCT':TGCT,'TGCV':TGCV,'TGCW':TGCW,'TGCY':TGCY, 'GATA':GATA,'GATC':GATC,'GATD':GATD,'GATE':GATE,'GATF':GATF,'GATG':GATG,'GATH':GATH,'GATI':GATI,'GATK':GATK,'GATL':GATL, 'GATM':GATM,'GATN':GATN,'GATP':GATP,'GATQ':GATQ,'GATR':GATR,'GATS':GATS,'GATT':GATT,'GATV':GATV,'GATW':GATW,'GATY':GATY, 'GACA':GACA,'GACC':GACC,'GACD':GACD,'GACE':GACE,'GACF':GACF,'GACG':GACG,'GACH':GACH,'GACI':GACI,'GACK':GACK,'GACL':GACL, 'GACM':GACM,'GACN':GACN,'GACP':GACP,'GACQ':GACQ,'GACR':GACR,'GACS':GACS,'GACT':GACT,'GACV':GACV,'GACW':GACW,'GACY':GACY, 'GAGA':GAGA,'GAGC':GAGC,'GAGD':GAGD,'GAGE':GAGE,'GAGF':GAGF,'GAGG':GAGG,'GAGH':GAGH,'GAGI':GAGI,'GAGK':GAGK,'GAGL':GAGL, 'GAGM':GAGM,'GAGN':GAGN,'GAGP':GAGP,'GAGQ':GAGQ,'GAGR':GAGR,'GAGS':GAGS,'GAGT':GAGT,'GAGV':GAGV,'GAGW':GAGW,'GAGY':GAGY, 'GAAA':GAAA,'GAAC':GAAC,'GAAD':GAAD,'GAAE':GAAE,'GAAF':GAAF,'GAAG':GAAG,'GAAH':GAAH,'GAAI':GAAI,'GAAK':GAAK,'GAAL':GAAL, 'GAAM':GAAM,'GAAN':GAAN,'GAAP':GAAP,'GAAQ':GAAQ,'GAAR':GAAR,'GAAS':GAAS,'GAAT':GAAT,'GAAV':GAAV,'GAAW':GAAW,'GAAY':GAAY, 'TTTA':TTTA,'TTTC':TTTC,'TTTD':TTTD,'TTTE':TTTE,'TTTF':TTTF,'TTTG':TTTG,'TTTH':TTTH,'TTTI':TTTI,'TTTK':TTTK,'TTTL':TTTL, 'TTTM':TTTM,'TTTN':TTTN,'TTTP':TTTP,'TTTQ':TTTQ,'TTTR':TTTR,'TTTS':TTTS,'TTTT':TTTT,'TTTV':TTTV,'TTTW':TTTW,'TTTY':TTTY, 'TTCA':TTCA,'TTCC':TTCC,'TTCD':TTCD,'TTCE':TTCE,'TTCF':TTCF,'TTCG':TTCG,'TTCH':TTCH,'TTCI':TTCI,'TTCK':TTCK,'TTCL':TTCL, 'TTCM':TTCM,'TTCN':TTCN,'TTCP':TTCP,'TTCQ':TTCQ,'TTCR':TTCR,'TTCS':TTCS,'TTCT':TTCT,'TTCV':TTCV,'TTCW':TTCW,'TTCY':TTCY, 'GGGA':GGGA,'GGGC':GGGC,'GGGD':GGGD,'GGGE':GGGE,'GGGF':GGGF,'GGGG':GGGG,'GGGH':GGGH,'GGGI':GGGI,'GGGK':GGGK,'GGGL':GGGL, 'GGGM':GGGM,'GGGN':GGGN,'GGGP':GGGP,'GGGQ':GGGQ,'GGGR':GGGR,'GGGS':GGGS,'GGGT':GGGT,'GGGV':GGGV,'GGGW':GGGW,'GGGY':GGGY, 'GGAA':GGAA,'GGAC':GGAC,'GGAD':GGAD,'GGAE':GGAE,'GGAF':GGAF,'GGAG':GGAG,'GGAH':GGAH,'GGAI':GGAI,'GGAK':GGAK,'GGAL':GGAL, 'GGAM':GGAM,'GGAN':GGAN,'GGAP':GGAP,'GGAQ':GGAQ,'GGAR':GGAR,'GGAS':GGAS,'GGAT':GGAT,'GGAV':GGAV,'GGAW':GGAW,'GGAY':GGAY, 'GGTA':GGTA,'GGTC':GGTC,'GGTD':GGTD,'GGTE':GGTE,'GGTF':GGTF,'GGTG':GGTG,'GGTH':GGTH,'GGTI':GGTI,'GGTK':GGTK,'GGTL':GGTL, 'GGTM':GGTM,'GGTN':GGTN,'GGTP':GGTP,'GGTQ':GGTQ,'GGTR':GGTR,'GGTS':GGTS,'GGTT':GGTT,'GGTV':GGTV,'GGTW':GGTW,'GGTY':GGTY, 'GGCA':GGCA,'GGCC':GGCC,'GGCD':GGCD,'GGCE':GGCE,'GGCF':GGCF,'GGCG':GGCG,'GGCH':GGCH,'GGCI':GGCI,'GGCK':GGCK,'GGCL':GGCL, 'GGCM':GGCM,'GGCN':GGCN,'GGCP':GGCP,'GGCQ':GGCQ,'GGCR':GGCR,'GGCS':GGCS,'GGCT':GGCT,'GGCV':GGCV,'GGCW':GGCW,'GGCY':GGCY, 'CATA':CATA,'CATC':CATC,'CATD':CATD,'CATE':CATE,'CATF':CATF,'CATG':CATG,'CATH':CATH,'CATI':CATI,'CATK':CATK,'CATL':CATL, 'CATM':CATM,'CATN':CATN,'CATP':CATP,'CATQ':CATQ,'CATR':CATR,'CATS':CATS,'CATT':CATT,'CATV':CATV,'CATW':CATW,'CATY':CATY, 'CACA':CACA,'CACC':CACC,'CACD':CACD,'CACE':CACE,'CACF':CACF,'CACG':CACG,'CACH':CACH,'CACI':CACI,'CACK':CACK,'CACL':CACL, 'CACM':CACM,'CACN':CACN,'CACP':CACP,'CACQ':CACQ,'CACR':CACR,'CACS':CACS,'CACT':CACT,'CACV':CACV,'CACW':CACW,'CACY':CACY, 'ATAA':ATAA,'ATAC':ATAC,'ATAD':ATAD,'ATAE':ATAE,'ATAF':ATAF,'ATAG':ATAG,'ATAH':ATAH,'ATAI':ATAI,'ATAK':ATAK,'ATAL':ATAL, 'ATAM':ATAM,'ATAN':ATAN,'ATAP':ATAP,'ATAQ':ATAQ,'ATAR':ATAR,'ATAS':ATAS,'ATAT':ATAT,'ATAV':ATAV,'ATAW':ATAW,'ATAY':ATAY, 'ATTA':ATTA,'ATTC':ATTC,'ATTD':ATTD,'ATTE':ATTE,'ATTF':ATTF,'ATTG':ATTG,'ATTH':ATTH,'ATTI':ATTI,'ATTK':ATTK,'ATTL':ATTL, 'ATTM':ATTM,'ATTN':ATTN,'ATTP':ATTP,'ATTQ':ATTQ,'ATTR':ATTR,'ATTS':ATTS,'ATTT':ATTT,'ATTV':ATTV,'ATTW':ATTW,'ATTY':ATTY, 'ATCA':ATCA,'ATCC':ATCC,'ATCD':ATCD,'ATCE':ATCE,'ATCF':ATCF,'ATCG':ATCG,'ATCH':ATCH,'ATCI':ATCI,'ATCK':ATCK,'ATCL':ATCL, 'ATCM':ATCM,'ATCN':ATCN,'ATCP':ATCP,'ATCQ':ATCQ,'ATCR':ATCR,'ATCS':ATCS,'ATCT':ATCT,'ATCV':ATCV,'ATCW':ATCW,'ATCY':ATCY, 'AAGA':AAGA,'AAGC':AAGC,'AAGD':AAGD,'AAGE':AAGE,'AAGF':AAGF,'AAGG':AAGG,'AAGH':AAGH,'AAGI':AAGI,'AAGK':AAGK,'AAGL':AAGL, 'AAGM':AAGM,'AAGN':AAGN,'AAGP':AAGP,'AAGQ':AAGQ,'AAGR':AAGR,'AAGS':AAGS,'AAGT':AAGT,'AAGV':AAGV,'AAGW':AAGW,'AAGY':AAGY, 'AAAA':AAAA,'AAAC':AAAC,'AAAD':AAAD,'AAAE':AAAE,'AAAF':AAAF,'AAAG':AAAG,'AAAH':AAAH,'AAAI':AAAI,'AAAK':AAAK,'AAAL':AAAL, 'AAAM':AAAM,'AAAN':AAAN,'AAAP':AAAP,'AAAQ':AAAQ,'AAAR':AAAR,'AAAS':AAAS,'AAAT':AAAT,'AAAV':AAAV,'AAAW':AAAW,'AAAY':AAAY, 'TTGA':TTGA,'TTGC':TTGC,'TTGD':TTGD,'TTGE':TTGE,'TTGF':TTGF,'TTGG':TTGG,'TTGH':TTGH,'TTGI':TTGI,'TTGK':TTGK,'TTGL':TTGL, 'TTGM':TTGM,'TTGN':TTGN,'TTGP':TTGP,'TTGQ':TTGQ,'TTGR':TTGR,'TTGS':TTGS,'TTGT':TTGT,'TTGV':TTGV,'TTGW':TTGW,'TTGY':TTGY, 'TTAA':TTAA,'TTAC':TTAC,'TTAD':TTAD,'TTAE':TTAE,'TTAF':TTAF,'TTAG':TTAG,'TTAH':TTAH,'TTAI':TTAI,'TTAK':TTAK,'TTAL':TTAL, 'TTAM':TTAM,'TTAN':TTAN,'TTAP':TTAP,'TTAQ':TTAQ,'TTAR':TTAR,'TTAS':TTAS,'TTAT':TTAT,'TTAV':TTAV,'TTAW':TTAW,'TTAY':TTAY, 'CTGA':CTGA,'CTGC':CTGC,'CTGD':CTGD,'CTGE':CTGE,'CTGF':CTGF,'CTGG':CTGG,'CTGH':CTGH,'CTGI':CTGI,'CTGK':CTGK,'CTGL':CTGL, 'CTGM':CTGM,'CTGN':CTGN,'CTGP':CTGP,'CTGQ':CTGQ,'CTGR':CTGR,'CTGS':CTGS,'CTGT':CTGT,'CTGV':CTGV,'CTGW':CTGW,'CTGY':CTGY, 'CTAA':CTAA,'CTAC':CTAC,'CTAD':CTAD,'CTAE':CTAE,'CTAF':CTAF,'CTAG':CTAG,'CTAH':CTAH,'CTAI':CTAI,'CTAK':CTAK,'CTAL':CTAL, 'CTAM':CTAM,'CTAN':CTAN,'CTAP':CTAP,'CTAQ':CTAQ,'CTAR':CTAR,'CTAS':CTAS,'CTAT':CTAT,'CTAV':CTAV,'CTAW':CTAW,'CTAY':CTAY, 'CTTA':CTTA,'CTTC':CTTC,'CTTD':CTTD,'CTTE':CTTE,'CTTF':CTTF,'CTTG':CTTG,'CTTH':CTTH,'CTTI':CTTI,'CTTK':CTTK,'CTTL':CTTL, 'CTTM':CTTM,'CTTN':CTTN,'CTTP':CTTP,'CTTQ':CTTQ,'CTTR':CTTR,'CTTS':CTTS,'CTTT':CTTT,'CTTV':CTTV,'CTTW':CTTW,'CTTY':CTTY, 'CTCA':CTCA,'CTCC':CTCC,'CTCD':CTCD,'CTCE':CTCE,'CTCF':CTCF,'CTCG':CTCG,'CTCH':CTCH,'CTCI':CTCI,'CTCK':CTCK,'CTCL':CTCL, 'CTCM':CTCM,'CTCN':CTCN,'CTCP':CTCP,'CTCQ':CTCQ,'CTCR':CTCR,'CTCS':CTCS,'CTCT':CTCT,'CTCV':CTCV,'CTCW':CTCW,'CTCY':CTCY, 'ATGA':ATGA,'ATGC':ATGC,'ATGD':ATGD,'ATGE':ATGE,'ATGF':ATGF,'ATGG':ATGG,'ATGH':ATGH,'ATGI':ATGI,'ATGK':ATGK,'ATGL':ATGL, 'ATGM':ATGM,'ATGN':ATGN,'ATGP':ATGP,'ATGQ':ATGQ,'ATGR':ATGR,'ATGS':ATGS,'ATGT':ATGT,'ATGV':ATGV,'ATGW':ATGW,'ATGY':ATGY, 'AATA':AATA,'AATC':AATC,'AATD':AATD,'AATE':AATE,'AATF':AATF,'AATG':AATG,'AATH':AATH,'AATI':AATI,'AATK':AATK,'AATL':AATL, 'AATM':AATM,'AATN':AATN,'AATP':AATP,'AATQ':AATQ,'AATR':AATR,'AATS':AATS,'AATT':AATT,'AATV':AATV,'AATW':AATW,'AATY':AATY, 'AACA':AACA,'AACC':AACC,'AACD':AACD,'AACE':AACE,'AACF':AACF,'AACG':AACG,'AACH':AACH,'AACI':AACI,'AACK':AACK,'AACL':AACL, 'AACM':AACM,'AACN':AACN,'AACP':AACP,'AACQ':AACQ,'AACR':AACR,'AACS':AACS,'AACT':AACT,'AACV':AACV,'AACW':AACW,'AACY':AACY, 'CCGA':CCGA,'CCGC':CCGC,'CCGD':CCGD,'CCGE':CCGE,'CCGF':CCGF,'CCGG':CCGG,'CCGH':CCGH,'CCGI':CCGI,'CCGK':CCGK,'CCGL':CCGL, 'CCGM':CCGM,'CCGN':CCGN,'CCGP':CCGP,'CCGQ':CCGQ,'CCGR':CCGR,'CCGS':CCGS,'CCGT':CCGT,'CCGV':CCGV,'CCGW':CCGW,'CCGY':CCGY, 'CCAA':CCAA,'CCAC':CCAC,'CCAD':CCAD,'CCAE':CCAE,'CCAF':CCAF,'CCAG':CCAG,'CCAH':CCAH,'CCAI':CCAI,'CCAK':CCAK,'CCAL':CCAL, 'CCAM':CCAM,'CCAN':CCAN,'CCAP':CCAP,'CCAQ':CCAQ,'CCAR':CCAR,'CCAS':CCAS,'CCAT':CCAT,'CCAV':CCAV,'CCAW':CCAW,'CCAY':CCAY, 'CCTA':CCTA,'CCTC':CCTC,'CCTD':CCTD,'CCTE':CCTE,'CCTF':CCTF,'CCTG':CCTG,'CCTH':CCTH,'CCTI':CCTI,'CCTK':CCTK,'CCTL':CCTL, 'CCTM':CCTM,'CCTN':CCTN,'CCTP':CCTP,'CCTQ':CCTQ,'CCTR':CCTR,'CCTS':CCTS,'CCTT':CCTT,'CCTV':CCTV,'CCTW':CCTW,'CCTY':CCTY, 'CCCA':CCCA,'CCCC':CCCC,'CCCD':CCCD,'CCCE':CCCE,'CCCF':CCCF,'CCCG':CCCG,'CCCH':CCCH,'CCCI':CCCI,'CCCK':CCCK,'CCCL':CCCL, 'CCCM':CCCM,'CCCN':CCCN,'CCCP':CCCP,'CCCQ':CCCQ,'CCCR':CCCR,'CCCS':CCCS,'CCCT':CCCT,'CCCV':CCCV,'CCCW':CCCW,'CCCY':CCCY, 'CAGA':CAGA,'CAGC':CAGC,'CAGD':CAGD,'CAGE':CAGE,'CAGF':CAGF,'CAGG':CAGG,'CAGH':CAGH,'CAGI':CAGI,'CAGK':CAGK,'CAGL':CAGL, 'CAGM':CAGM,'CAGN':CAGN,'CAGP':CAGP,'CAGQ':CAGQ,'CAGR':CAGR,'CAGS':CAGS,'CAGT':CAGT,'CAGV':CAGV,'CAGW':CAGW,'CAGY':CAGY, 'CAAA':CAAA,'CAAC':CAAC,'CAAD':CAAD,'CAAE':CAAE,'CAAF':CAAF,'CAAG':CAAG,'CAAH':CAAH,'CAAI':CAAI,'CAAK':CAAK,'CAAL':CAAL, 'CAAM':CAAM,'CAAN':CAAN,'CAAP':CAAP,'CAAQ':CAAQ,'CAAR':CAAR,'CAAS':CAAS,'CAAT':CAAT,'CAAV':CAAV,'CAAW':CAAW,'CAAY':CAAY, 'AGGA':AGGA,'AGGC':AGGC,'AGGD':AGGD,'AGGE':AGGE,'AGGF':AGGF,'AGGG':AGGG,'AGGH':AGGH,'AGGI':AGGI,'AGGK':AGGK,'AGGL':AGGL, 'AGGM':AGGM,'AGGN':AGGN,'AGGP':AGGP,'AGGQ':AGGQ,'AGGR':AGGR,'AGGS':AGGS,'AGGT':AGGT,'AGGV':AGGV,'AGGW':AGGW,'AGGY':AGGY, 'AGAA':AGAA,'AGAC':AGAC,'AGAD':AGAD,'AGAE':AGAE,'AGAF':AGAF,'AGAG':AGAG,'AGAH':AGAH,'AGAI':AGAI,'AGAK':AGAK,'AGAL':AGAL, 'AGAM':AGAM,'AGAN':AGAN,'AGAP':AGAP,'AGAQ':AGAQ,'AGAR':AGAR,'AGAS':AGAS,'AGAT':AGAT,'AGAV':AGAV,'AGAW':AGAW,'AGAY':AGAY, 'CGGA':CGGA,'CGGC':CGGC,'CGGD':CGGD,'CGGE':CGGE,'CGGF':CGGF,'CGGG':CGGG,'CGGH':CGGH,'CGGI':CGGI,'CGGK':CGGK,'CGGL':CGGL, 'CGGM':CGGM,'CGGN':CGGN,'CGGP':CGGP,'CGGQ':CGGQ,'CGGR':CGGR,'CGGS':CGGS,'CGGT':CGGT,'CGGV':CGGV,'CGGW':CGGW,'CGGY':CGGY, 'CGAA':CGAA,'CGAC':CGAC,'CGAD':CGAD,'CGAE':CGAE,'CGAF':CGAF,'CGAG':CGAG,'CGAH':CGAH,'CGAI':CGAI,'CGAK':CGAK,'CGAL':CGAL, 'CGAM':CGAM,'CGAN':CGAN,'CGAP':CGAP,'CGAQ':CGAQ,'CGAR':CGAR,'CGAS':CGAS,'CGAT':CGAT,'CGAV':CGAV,'CGAW':CGAW,'CGAY':CGAY, 'CGTA':CGTA,'CGTC':CGTC,'CGTD':CGTD,'CGTE':CGTE,'CGTF':CGTF,'CGTG':CGTG,'CGTH':CGTH,'CGTI':CGTI,'CGTK':CGTK,'CGTL':CGTL, 'CGTM':CGTM,'CGTN':CGTN,'CGTP':CGTP,'CGTQ':CGTQ,'CGTR':CGTR,'CGTS':CGTS,'CGTT':CGTT,'CGTV':CGTV,'CGTW':CGTW,'CGTY':CGTY, 'CGCA':CGCA,'CGCC':CGCC,'CGCD':CGCD,'CGCE':CGCE,'CGCF':CGCF,'CGCG':CGCG,'CGCH':CGCH,'CGCI':CGCI,'CGCK':CGCK,'CGCL':CGCL, 'CGCM':CGCM,'CGCN':CGCN,'CGCP':CGCP,'CGCQ':CGCQ,'CGCR':CGCR,'CGCS':CGCS,'CGCT':CGCT,'CGCV':CGCV,'CGCW':CGCW,'CGCY':CGCY, 'AGTA':AGTA,'AGTC':AGTC,'AGTD':AGTD,'AGTE':AGTE,'AGTF':AGTF,'AGTG':AGTG,'AGTH':AGTH,'AGTI':AGTI,'AGTK':AGTK,'AGTL':AGTL, 'AGTM':AGTM,'AGTN':AGTN,'AGTP':AGTP,'AGTQ':AGTQ,'AGTR':AGTR,'AGTS':AGTS,'AGTT':AGTT,'AGTV':AGTV,'AGTW':AGTW,'AGTY':AGTY, 'AGCA':AGCA,'AGCC':AGCC,'AGCD':AGCD,'AGCE':AGCE,'AGCF':AGCF,'AGCG':AGCG,'AGCH':AGCH,'AGCI':AGCI,'AGCK':AGCK,'AGCL':AGCL, 'AGCM':AGCM,'AGCN':AGCN,'AGCP':AGCP,'AGCQ':AGCQ,'AGCR':AGCR,'AGCS':AGCS,'AGCT':AGCT,'AGCV':AGCV,'AGCW':AGCW,'AGCY':AGCY, 'TCGA':TCGA,'TCGC':TCGC,'TCGD':TCGD,'TCGE':TCGE,'TCGF':TCGF,'TCGG':TCGG,'TCGH':TCGH,'TCGI':TCGI,'TCGK':TCGK,'TCGL':TCGL, 'TCGM':TCGM,'TCGN':TCGN,'TCGP':TCGP,'TCGQ':TCGQ,'TCGR':TCGR,'TCGS':TCGS,'TCGT':TCGT,'TCGV':TCGV,'TCGW':TCGW,'TCGY':TCGY, 'TCAA':TCAA,'TCAC':TCAC,'TCAD':TCAD,'TCAE':TCAE,'TCAF':TCAF,'TCAG':TCAG,'TCAH':TCAH,'TCAI':TCAI,'TCAK':TCAK,'TCAL':TCAL, 'TCAM':TCAM,'TCAN':TCAN,'TCAP':TCAP,'TCAQ':TCAQ,'TCAR':TCAR,'TCAS':TCAS,'TCAT':TCAT,'TCAV':TCAV,'TCAW':TCAW,'TCAY':TCAY, 'TCTA':TCTA,'TCTC':TCTC,'TCTD':TCTD,'TCTE':TCTE,'TCTF':TCTF,'TCTG':TCTG,'TCTH':TCTH,'TCTI':TCTI,'TCTK':TCTK,'TCTL':TCTL, 'TCTM':TCTM,'TCTN':TCTN,'TCTP':TCTP,'TCTQ':TCTQ,'TCTR':TCTR,'TCTS':TCTS,'TCTT':TCTT,'TCTV':TCTV,'TCTW':TCTW,'TCTY':TCTY, 'TCCA':TCCA,'TCCC':TCCC,'TCCD':TCCD,'TCCE':TCCE,'TCCF':TCCF,'TCCG':TCCG,'TCCH':TCCH,'TCCI':TCCI,'TCCK':TCCK,'TCCL':TCCL, 'TCCM':TCCM,'TCCN':TCCN,'TCCP':TCCP,'TCCQ':TCCQ,'TCCR':TCCR,'TCCS':TCCS,'TCCT':TCCT,'TCCV':TCCV,'TCCW':TCCW,'TCCY':TCCY, 'TCCA':TCCA,'TCCC':TCCC,'TCCD':TCCD,'TCCE':TCCE,'TCCF':TCCF,'TCCG':TCCG,'TCCH':TCCH,'TCCI':TCCI,'TCCK':TCCK,'TCCL':TCCL, 'TCCM':TCCM,'TCCN':TCCN,'TCCP':TCCP,'TCCQ':TCCQ,'TCCR':TCCR,'TCCS':TCCS,'TCCT':TCCT,'TCCV':TCCV,'TCCW':TCCW,'TCCY':TCCY, 'ACGA':ACGA,'ACGC':ACGC,'ACGD':ACGD,'ACGE':ACGE,'ACGF':ACGF,'ACGG':ACGG,'ACGH':ACGH,'ACGI':ACGI,'ACGK':ACGK,'ACGL':ACGL, 'ACGM':ACGM,'ACGN':ACGN,'ACGP':ACGP,'ACGQ':ACGQ,'ACGR':ACGR,'ACGS':ACGS,'ACGT':ACGT,'ACGV':ACGV,'ACGW':ACGW,'ACGY':ACGY, 'ACAA':ACAA,'ACAC':ACAC,'ACAD':ACAD,'ACAE':ACAE,'ACAF':ACAF,'ACAG':ACAG,'ACAH':ACAH,'ACAI':ACAI,'ACAK':ACAK,'ACAL':ACAL, 'ACAM':ACAM,'ACAN':ACAN,'ACAP':ACAP,'ACAQ':ACAQ,'ACAR':ACAR,'ACAS':ACAS,'ACAT':ACAT,'ACAV':ACAV,'ACAW':ACAW,'ACAY':ACAY, 'ACTA':ACTA,'ACTC':ACTC,'ACTD':ACTD,'ACTE':ACTE,'ACTF':ACTF,'ACTG':ACTG,'ACTH':ACTH,'ACTI':ACTI,'ACTK':ACTK,'ACTL':ACTL, 'ACTM':ACTM,'ACTN':ACTN,'ACTP':ACTP,'ACTQ':ACTQ,'ACTR':ACTR,'ACTS':ACTS,'ACTT':ACTT,'ACTV':ACTV,'ACTW':ACTW,'ACTY':ACTY, 'ACCA':ACCA,'ACCC':ACCC,'ACCD':ACCD,'ACCE':ACCE,'ACCF':ACCF,'ACCG':ACCG,'ACCH':ACCH,'ACCI':ACCI,'ACCK':ACCK,'ACCL':ACCL, 'ACCM':ACCM,'ACCN':ACCN,'ACCP':ACCP,'ACCQ':ACCQ,'ACCR':ACCR,'ACCS':ACCS,'ACCT':ACCT,'ACCV':ACCV,'ACCW':ACCW,'ACCY':ACCY, 'GTGA':GTGA,'GTGC':GTGC,'GTGD':GTGD,'GTGE':GTGE,'GTGF':GTGF,'GTGG':GTGG,'GTGH':GTGH,'GTGI':GTGI,'GTGK':GTGK,'GTGL':GTGL, 'GTGM':GTGM,'GTGN':GTGN,'GTGP':GTGP,'GTGQ':GTGQ,'GTGR':GTGR,'GTGS':GTGS,'GTGT':GTGT,'GTGV':GTGV,'GTGW':GTGW,'GTGY':GTGY, 'GTAA':GTAA,'GTAC':GTAC,'GTAD':GTAD,'GTAE':GTAE,'GTAF':GTAF,'GTAG':GTAG,'GTAH':GTAH,'GTAI':GTAI,'GTAK':GTAK,'GTAL':GTAL, 'GTAM':GTAM,'GTAN':GTAN,'GTAP':GTAP,'GTAQ':GTAQ,'GTAR':GTAR,'GTAS':GTAS,'GTAT':GTAT,'GTAV':GTAV,'GTAW':GTAW,'GTAY':GTAY, 'GTTA':GTTA,'GTTC':GTTC,'GTTD':GTTD,'GTTE':GTTE,'GTTF':GTTF,'GTTG':GTTG,'GTTH':GTTH,'GTTI':GTTI,'GTTK':GTTK,'GTTL':GTTL, 'GTTM':GTTM,'GTTN':GTTN,'GTTP':GTTP,'GTTQ':GTTQ,'GTTR':GTTR,'GTTS':GTTS,'GTTT':GTTT,'GTTV':GTTV,'GTTW':GTTW,'GTTY':GTTY, 'GTCA':GTCA,'GTCC':GTCC,'GTCD':GTCD,'GTCE':GTCE,'GTCF':GTCF,'GTCG':GTCG,'GTCH':GTCH,'GTCI':GTCI,'GTCK':GTCK,'GTCL':GTCL, 'GTCM':GTCM,'GTCN':GTCN,'GTCP':GTCP,'GTCQ':GTCQ,'GTCR':GTCR,'GTCS':GTCS,'GTCT':GTCT,'GTCV':GTCV,'GTCW':GTCW,'GTCY':GTCY, 'TGGA':TGGA,'TGGC':TGGC,'TGGD':TGGD,'TGGE':TGGE,'TGGF':TGGF,'TGGG':TGGG,'TGGH':TGGH,'TGGI':TGGI,'TGGK':TGGK,'TGGL':TGGL, 'TGGM':TGGM,'TGGN':TGGN,'TGGP':TGGP,'TGGQ':TGGQ,'TGGR':TGGR,'TGGS':TGGS,'TGGT':TGGT,'TGGV':TGGV,'TGGW':TGGW,'TGGY':TGGY, 'TATA':TATA,'TATC':TATC,'TATD':TATD,'TATE':TATE,'TATF':TATF,'TATG':TATG,'TATH':TATH,'TATI':TATI,'TATK':TATK,'TATL':TATL, 'TATM':TATM,'TATN':TATN,'TATP':TATP,'TATQ':TATQ,'TATR':TATR,'TATS':TATS,'TATT':TATT,'TATV':TATV,'TATW':TATW,'TATY':TATY, 'TACA':TACA,'TACC':TACC,'TACD':TACD,'TACE':TACE,'TACF':TACF,'TACG':TACG,'TACH':TACH,'TACI':TACI,'TACK':TACK,'TACL':TACL, 'TACM':TACM,'TACN':TACN,'TACP':TACP,'TACQ':TACQ,'TACR':TACR,'TACS':TACS,'TACT':TACT,'TACV':TACV,'TACW':TACW,'TACY':TACY} for i in range(len(C)): GCGC[i][0]=C[i] GCGC[i][1]=Prob_list[n][m] m=m+1 for i in range(len(D)): GCGD[i][0]=D[i] GCGD[i][1]=Prob_list[n][m] m=m+1 for i in range(len(E)): GCGE[i][0]=E[i] GCGE[i][1]=Prob_list[n][m] m=m+1 for i in range(len(F)): GCGF[i][0]=F[i] GCGF[i][1]=Prob_list[n][m] m=m+1 for i in range(len(G)): GCGG[i][0]=G[i] GCGG[i][1]=Prob_list[n][m] m=m+1 for i in range(len(H)): GCGH[i][0]=H[i] GCGH[i][1]=Prob_list[n][m] m=m+1 for i in range(len(I)): GCGI[i][0]=I[i] GCGI[i][1]=Prob_list[n][m] m=m+1 for i in range(len(K)): GCGK[i][0]=K[i] GCGK[i][1]=Prob_list[n][m] m=m+1 for i in range(len(L)): GCGL[i][0]=L[i] GCGL[i][1]=Prob_list[n][m] m=m+1 for i in range(len(M)): GCGM[i][0]=M[i] GCGM[i][1]=Prob_list[n][m] m=m+1 for i in range(len(N)): GCGN[i][0]=N[i] GCGN[i][1]=Prob_list[n][m] m=m+1 for i in range(len(P)): GCGP[i][0]=P[i] GCGP[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Q)): GCGQ[i][0]=Q[i] GCGQ[i][1]=Prob_list[n][m] m=m+1 for i in range(len(R)): GCGR[i][0]=R[i] GCGR[i][1]=Prob_list[n][m] m=m+1 for i in range(len(S)): GCGS[i][0]=S[i] GCGS[i][1]=Prob_list[n][m] m=m+1 for i in range(len(T)): GCGT[i][0]=T[i] GCGT[i][1]=Prob_list[n][m] m=m+1 for i in range(len(V)): GCGV[i][0]=V[i] GCGV[i][1]=Prob_list[n][m] m=m+1 for i in range(len(W)): GCGW[i][0]=W[i] GCGW[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Y)): GCGY[i][0]=Y[i] GCGY[i][1]=Prob_list[n][m] m=m+1 n=n+1 m=0 for i in range(len(A)): GCAA[i][0]=A[i] GCAA[i][1]=Prob_list[n][m] m=m+1 for i in range(len(C)): GCAC[i][0]=C[i] GCAC[i][1]=Prob_list[n][m] m=m+1 for i in range(len(D)): GCAD[i][0]=D[i] GCAD[i][1]=float(Prob_list[n][m]) m=m+1 for i in range(len(E)): GCAE[i][0]=E[i] GCAE[i][1]=Prob_list[n][m] m=m+1 for i in range(len(F)): GCAF[i][0]=F[i] GCAF[i][1]=Prob_list[n][m] m=m+1 for i in range(len(G)): GCAG[i][0]=G[i] GCAG[i][1]=Prob_list[n][m] m=m+1 for i in range(len(H)): GCAH[i][0]=H[i] GCAH[i][1]=Prob_list[n][m] m=m+1 for i in range(len(I)): GCAI[i][0]=I[i] GCAI[i][1]=Prob_list[n][m] m=m+1 for i in range(len(K)): GCAK[i][0]=K[i] GCAK[i][1]=Prob_list[n][m] m=m+1 for i in range(len(L)): GCAL[i][0]=L[i] GCAL[i][1]=Prob_list[n][m] m=m+1 for i in range(len(M)): GCAM[i][0]=M[i] GCAM[i][1]=Prob_list[n][m] m=m+1 for i in range(len(N)): GCAN[i][0]=N[i] GCAN[i][1]=Prob_list[n][m] m=m+1 for i in range(len(P)): GCAP[i][0]=P[i] GCAP[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Q)): GCAQ[i][0]=Q[i] GCAQ[i][1]=Prob_list[n][m] m=m+1 for i in range(len(R)): GCAR[i][0]=R[i] GCAR[i][1]=Prob_list[n][m] m=m+1 for i in range(len(S)): GCAS[i][0]=S[i] GCAS[i][1]=Prob_list[n][m] m=m+1 for i in range(len(T)): GCAT[i][0]=T[i] GCAT[i][1]=Prob_list[n][m] m=m+1 for i in range(len(V)): GCAV[i][0]=V[i] GCAV[i][1]=Prob_list[n][m] m=m+1 for i in range(len(W)): GCAW[i][0]=W[i] GCAW[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Y)): GCAY[i][0]=Y[i] GCAY[i][1]=Prob_list[n][m] m=m+1 n=n+1 m=0 for i in range(len(A)): GCTA[i][0]=A[i] GCTA[i][1]=float(Prob_list[n][m]) m=m+1 for i in range(len(C)): GCTC[i][0]=C[i] GCTC[i][1]=float(Prob_list[n][m]) m=m+1 for i in range(len(D)): GCTD[i][0]=D[i] GCTD[i][1]=Prob_list[n][m] m=m+1 for i in range(len(E)): GCTE[i][0]=E[i] GCTE[i][1]=Prob_list[n][m] m=m+1 for i in range(len(F)): GCTF[i][0]=F[i] GCTF[i][1]=Prob_list[n][m] m=m+1 for i in range(len(G)): GCTG[i][0]=G[i] GCTG[i][1]=Prob_list[n][m] m=m+1 for i in range(len(H)): GCTH[i][0]=H[i] GCTH[i][1]=Prob_list[n][m] m=m+1 for i in range(len(I)): GCTI[i][0]=I[i] GCTI[i][1]=Prob_list[n][m] m=m+1 for i in range(len(K)): GCTK[i][0]=K[i] GCTK[i][1]=Prob_list[n][m] m=m+1 for i in range(len(L)): GCTL[i][0]=L[i] GCTL[i][1]=Prob_list[n][m] m=m+1 for i in range(len(M)): GCTM[i][0]=M[i] GCTM[i][1]=Prob_list[n][m] m=m+1 for i in range(len(N)): GCTN[i][0]=N[i] GCTN[i][1]=Prob_list[n][m] m=m+1 for i in range(len(P)): GCTP[i][0]=P[i] GCTP[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Q)): GCTQ[i][0]=Q[i] GCTQ[i][1]=Prob_list[n][m] m=m+1 for i in range(len(R)): GCTR[i][0]=R[i] GCTR[i][1]=Prob_list[n][m] m=m+1 for i in range(len(S)): GCTS[i][0]=S[i] GCTS[i][1]=Prob_list[n][m] m=m+1 for i in range(len(T)): GCTT[i][0]=T[i] GCTT[i][1]=Prob_list[n][m] m=m+1 for i in range(len(V)): GCTV[i][0]=V[i] GCTV[i][1]=Prob_list[n][m] m=m+1 for i in range(len(W)): GCTW[i][0]=W[i] GCTW[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Y)): GCTY[i][0]=Y[i] GCTY[i][1]=Prob_list[n][m] m=m+1 n=n+1 m=0 for i in range(len(A)): GCCA[i][0]=A[i] GCCA[i][1]=Prob_list[n][m] m=m+1 for i in range(len(C)): GCCC[i][0]=C[i] GCCC[i][1]=Prob_list[n][m] m=m+1 for i in range(len(D)): GCCD[i][0]=D[i] GCCD[i][1]=Prob_list[n][m] m=m+1 for i in range(len(E)): GCCE[i][0]=E[i] GCCE[i][1]=Prob_list[n][m] m=m+1 for i in range(len(F)): GCCF[i][0]=F[i] GCCF[i][1]=Prob_list[n][m] m=m+1 for i in range(len(G)): GCCG[i][0]=G[i] GCCG[i][1]=Prob_list[n][m] m=m+1 for i in range(len(H)): GCCH[i][0]=H[i] GCCH[i][1]=Prob_list[n][m] m=m+1 for i in range(len(I)): GCCI[i][0]=I[i] GCCI[i][1]=Prob_list[n][m] m=m+1 for i in range(len(K)): GCCK[i][0]=K[i] GCCK[i][1]=Prob_list[n][m] m=m+1 for i in range(len(L)): GCCL[i][0]=L[i] GCCL[i][1]=Prob_list[n][m] m=m+1 for i in range(len(M)): GCCM[i][0]=M[i] GCCM[i][1]=Prob_list[n][m] m=m+1 for i in range(len(N)): GCCN[i][0]=N[i] GCCN[i][1]=Prob_list[n][m] m=m+1 for i in range(len(P)): GCCP[i][0]=P[i] GCCP[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Q)): GCCQ[i][0]=Q[i] GCCQ[i][1]=Prob_list[n][m] m=m+1 for i in range(len(R)): GCCR[i][0]=R[i] GCCR[i][1]=Prob_list[n][m] m=m+1 for i in range(len(S)): GCCS[i][0]=S[i] GCCS[i][1]=Prob_list[n][m] m=m+1 for i in range(len(T)): GCCT[i][0]=T[i] GCCT[i][1]=Prob_list[n][m] m=m+1 for i in range(len(V)): GCCV[i][0]=V[i] GCCV[i][1]=Prob_list[n][m] m=m+1 for i in range(len(W)): GCCW[i][0]=W[i] GCCW[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Y)): GCCY[i][0]=Y[i] GCCY[i][1]=Prob_list[n][m] m=m+1 n=n+1 m=0 for i in range(len(A)): TGTA[i][0]=A[i] TGTA[i][1]=Prob_list[n][m] m=m+1 for i in range(len(C)): TGTC[i][0]=C[i] TGTC[i][1]=Prob_list[n][m] m=m+1 for i in range(len(D)): TGTD[i][0]=D[i] TGTD[i][1]=Prob_list[n][m] m=m+1 for i in range(len(E)): TGTE[i][0]=E[i] TGTE[i][1]=Prob_list[n][m] m=m+1 for i in range(len(F)): TGTF[i][0]=F[i] TGTF[i][1]=Prob_list[n][m] m=m+1 for i in range(len(G)): TGTG[i][0]=G[i] TGTG[i][1]=Prob_list[n][m] m=m+1 for i in range(len(H)): TGTH[i][0]=H[i] TGTH[i][1]=Prob_list[n][m] m=m+1 for i in range(len(I)): TGTI[i][0]=I[i] TGTI[i][1]=Prob_list[n][m] m=m+1 for i in range(len(K)): TGTK[i][0]=K[i] TGTK[i][1]=Prob_list[n][m] m=m+1 for i in range(len(L)): TGTL[i][0]=L[i] TGTL[i][1]=Prob_list[n][m] m=m+1 for i in range(len(M)): TGTM[i][0]=M[i] TGTM[i][1]=Prob_list[n][m] m=m+1 for i in range(len(N)): TGTN[i][0]=N[i] TGTN[i][1]=Prob_list[n][m] m=m+1 for i in range(len(P)): TGTP[i][0]=P[i] TGTP[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Q)): TGTQ[i][0]=Q[i] TGTQ[i][1]=Prob_list[n][m] m=m+1 for i in range(len(R)): TGTR[i][0]=R[i] TGTR[i][1]=Prob_list[n][m] m=m+1 for i in range(len(S)): TGTS[i][0]=S[i] TGTS[i][1]=Prob_list[n][m] m=m+1 for i in range(len(T)): TGTT[i][0]=T[i] TGTT[i][1]=Prob_list[n][m] m=m+1 for i in range(len(V)): TGTV[i][0]=V[i] TGTV[i][1]=Prob_list[n][m] m=m+1 for i in range(len(W)): TGTW[i][0]=W[i] TGTW[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Y)): TGTY[i][0]=Y[i] TGTY[i][1]=Prob_list[n][m] m=m+1 n=n+1 m=0 for i in range(len(A)): TGCA[i][0]=A[i] TGCA[i][1]=Prob_list[n][m] m=m+1 for i in range(len(C)): TGCC[i][0]=C[i] TGCC[i][1]=Prob_list[n][m] m=m+1 for i in range(len(D)): TGCD[i][0]=D[i] TGCD[i][1]=Prob_list[n][m] m=m+1 for i in range(len(E)): TGCE[i][0]=E[i] TGCE[i][1]=Prob_list[n][m] m=m+1 for i in range(len(F)): TGCF[i][0]=F[i] TGCF[i][1]=Prob_list[n][m] m=m+1 for i in range(len(G)): TGCG[i][0]=G[i] TGCG[i][1]=Prob_list[n][m] m=m+1 for i in range(len(H)): TGCH[i][0]=H[i] TGCH[i][1]=Prob_list[n][m] m=m+1 for i in range(len(I)): TGCI[i][0]=I[i] TGCI[i][1]=Prob_list[n][m] m=m+1 for i in range(len(K)): TGCK[i][0]=K[i] TGCK[i][1]=Prob_list[n][m] m=m+1 for i in range(len(L)): TGCL[i][0]=L[i] TGCL[i][1]=Prob_list[n][m] m=m+1 for i in range(len(M)): TGCM[i][0]=M[i] TGCM[i][1]=Prob_list[n][m] m=m+1 for i in range(len(N)): TGCN[i][0]=N[i] TGCN[i][1]=Prob_list[n][m] m=m+1 for i in range(len(P)): TGCP[i][0]=P[i] TGCP[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Q)): TGCQ[i][0]=Q[i] TGCQ[i][1]=Prob_list[n][m] m=m+1 for i in range(len(R)): TGCR[i][0]=R[i] TGCR[i][1]=Prob_list[n][m] m=m+1 for i in range(len(S)): TGCS[i][0]=S[i] TGCS[i][1]=Prob_list[n][m] m=m+1 for i in range(len(T)): TGCT[i][0]=T[i] TGCT[i][1]=Prob_list[n][m] m=m+1 for i in range(len(V)): TGCV[i][0]=V[i] TGCV[i][1]=Prob_list[n][m] m=m+1 for i in range(len(W)): TGCW[i][0]=W[i] TGCW[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Y)): TGCY[i][0]=Y[i] TGCY[i][1]=Prob_list[n][m] m=m+1 n=n+1 m=0 for i in range(len(A)): GATA[i][0]=A[i] GATA[i][1]=Prob_list[n][m] m=m+1 for i in range(len(C)): GATC[i][0]=C[i] GATC[i][1]=Prob_list[n][m] m=m+1 for i in range(len(D)): GATD[i][0]=D[i] GATD[i][1]=Prob_list[n][m] m=m+1 for i in range(len(E)): GATE[i][0]=E[i] GATE[i][1]=Prob_list[n][m] m=m+1 for i in range(len(F)): GATF[i][0]=F[i] GATF[i][1]=Prob_list[n][m] m=m+1 for i in range(len(G)): GATG[i][0]=G[i] GATG[i][1]=Prob_list[n][m] m=m+1 for i in range(len(H)): GATH[i][0]=H[i] GATH[i][1]=Prob_list[n][m] m=m+1 for i in range(len(I)): GATI[i][0]=I[i] GATI[i][1]=Prob_list[n][m] m=m+1 for i in range(len(K)): GATK[i][0]=K[i] GATK[i][1]=Prob_list[n][m] m=m+1 for i in range(len(L)): GATL[i][0]=L[i] GATL[i][1]=Prob_list[n][m] m=m+1 for i in range(len(M)): GATM[i][0]=M[i] GATM[i][1]=Prob_list[n][m] m=m+1 for i in range(len(N)): GATN[i][0]=N[i] GATN[i][1]=Prob_list[n][m] m=m+1 for i in range(len(P)): GATP[i][0]=P[i] GATP[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Q)): GATQ[i][0]=Q[i] GATQ[i][1]=Prob_list[n][m] m=m+1 for i in range(len(R)): GATR[i][0]=R[i] GATR[i][1]=Prob_list[n][m] m=m+1 for i in range(len(S)): GATS[i][0]=S[i] GATS[i][1]=Prob_list[n][m] m=m+1 for i in range(len(T)): GATT[i][0]=T[i] GATT[i][1]=Prob_list[n][m] m=m+1 for i in range(len(V)): GATV[i][0]=V[i] GATV[i][1]=Prob_list[n][m] m=m+1 for i in range(len(W)): GATW[i][0]=W[i] GATW[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Y)): GATY[i][0]=Y[i] GATY[i][1]=Prob_list[n][m] m=m+1 n=n+1 m=0 for i in range(len(A)): GACA[i][0]=A[i] GACA[i][1]=Prob_list[n][m] m=m+1 for i in range(len(C)): GACC[i][0]=C[i] GACC[i][1]=Prob_list[n][m] m=m+1 for i in range(len(D)): GACD[i][0]=D[i] GACD[i][1]=Prob_list[n][m] m=m+1 for i in range(len(E)): GACE[i][0]=E[i] GACE[i][1]=Prob_list[n][m] m=m+1 for i in range(len(F)): GACF[i][0]=F[i] GACF[i][1]=Prob_list[n][m] m=m+1 for i in range(len(G)): GACG[i][0]=G[i] GACG[i][1]=Prob_list[n][m] m=m+1 for i in range(len(H)): GACH[i][0]=H[i] GACH[i][1]=Prob_list[n][m] m=m+1 for i in range(len(I)): GACI[i][0]=I[i] GACI[i][1]=Prob_list[n][m] m=m+1 for i in range(len(K)): GACK[i][0]=K[i] GACK[i][1]=Prob_list[n][m] m=m+1 for i in range(len(L)): GACL[i][0]=L[i] GACL[i][1]=Prob_list[n][m] m=m+1 for i in range(len(M)): GACM[i][0]=M[i] GACM[i][1]=Prob_list[n][m] m=m+1 for i in range(len(N)): GACN[i][0]=N[i] GACN[i][1]=Prob_list[n][m] m=m+1 for i in range(len(P)): GACP[i][0]=P[i] GACP[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Q)): GACQ[i][0]=Q[i] GACQ[i][1]=Prob_list[n][m] m=m+1 for i in range(len(R)): GACR[i][0]=R[i] GACR[i][1]=Prob_list[n][m] m=m+1 for i in range(len(S)): GACS[i][0]=S[i] GACS[i][1]=Prob_list[n][m] m=m+1 for i in range(len(T)): GACT[i][0]=T[i] GACT[i][1]=Prob_list[n][m] m=m+1 for i in range(len(V)): GACV[i][0]=V[i] GACV[i][1]=Prob_list[n][m] m=m+1 for i in range(len(W)): GACW[i][0]=W[i] GACW[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Y)): GACY[i][0]=Y[i] GACY[i][1]=Prob_list[n][m] m=m+1 n=n+1 m=0 for i in range(len(A)): GAGA[i][0]=A[i] GAGA[i][1]=Prob_list[n][m] m=m+1 for i in range(len(C)): GAGC[i][0]=C[i] GAGC[i][1]=Prob_list[n][m] m=m+1 for i in range(len(D)): GAGD[i][0]=D[i] GAGD[i][1]=Prob_list[n][m] m=m+1 for i in range(len(E)): GAGE[i][0]=E[i] GAGE[i][1]=Prob_list[n][m] m=m+1 for i in range(len(F)): GAGF[i][0]=F[i] GAGF[i][1]=Prob_list[n][m] m=m+1 for i in range(len(G)): GAGG[i][0]=G[i] GAGG[i][1]=Prob_list[n][m] m=m+1 for i in range(len(H)): GAGH[i][0]=H[i] GAGH[i][1]=Prob_list[n][m] m=m+1 for i in range(len(I)): GAGI[i][0]=I[i] GAGI[i][1]=Prob_list[n][m] m=m+1 for i in range(len(K)): GAGK[i][0]=K[i] GAGK[i][1]=Prob_list[n][m] m=m+1 for i in range(len(L)): GAGL[i][0]=L[i] GAGL[i][1]=Prob_list[n][m] m=m+1 for i in range(len(M)): GAGM[i][0]=M[i] GAGM[i][1]=Prob_list[n][m] m=m+1 for i in range(len(N)): GAGN[i][0]=N[i] GAGN[i][1]=Prob_list[n][m] m=m+1 for i in range(len(P)): GAGP[i][0]=P[i] GAGP[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Q)): GAGQ[i][0]=Q[i] GAGQ[i][1]=Prob_list[n][m] m=m+1 for i in range(len(R)): GAGR[i][0]=R[i] GAGR[i][1]=Prob_list[n][m] m=m+1 for i in range(len(S)): GAGS[i][0]=S[i] GAGS[i][1]=Prob_list[n][m] m=m+1 for i in range(len(T)): GAGT[i][0]=T[i] GAGT[i][1]=Prob_list[n][m] m=m+1 for i in range(len(V)): GAGV[i][0]=V[i] GAGV[i][1]=Prob_list[n][m] m=m+1 for i in range(len(W)): GAGW[i][0]=W[i] GAGW[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Y)): GAGY[i][0]=Y[i] GAGY[i][1]=Prob_list[n][m] m=m+1 n=n+1 m=0 for i in range(len(A)): GAAA[i][0]=A[i] GAAA[i][1]=Prob_list[n][m] m=m+1 for i in range(len(C)): GAAC[i][0]=C[i] GAAC[i][1]=Prob_list[n][m] m=m+1 for i in range(len(D)): GAAD[i][0]=D[i] GAAD[i][1]=Prob_list[n][m] m=m+1 for i in range(len(E)): GAAE[i][0]=E[i] GAAE[i][1]=Prob_list[n][m] m=m+1 for i in range(len(F)): GAAF[i][0]=F[i] GAAF[i][1]=Prob_list[n][m] m=m+1 for i in range(len(G)): GAAG[i][0]=G[i] GAAG[i][1]=Prob_list[n][m] m=m+1 for i in range(len(H)): GAAH[i][0]=H[i] GAAH[i][1]=Prob_list[n][m] m=m+1 for i in range(len(I)): GAAI[i][0]=I[i] GAAI[i][1]=Prob_list[n][m] m=m+1 for i in range(len(K)): GAAK[i][0]=K[i] GAAK[i][1]=Prob_list[n][m] m=m+1 for i in range(len(L)): GAAL[i][0]=L[i] GAAL[i][1]=Prob_list[n][m] m=m+1 for i in range(len(M)): GAAM[i][0]=M[i] GAAM[i][1]=Prob_list[n][m] m=m+1 for i in range(len(N)): GAAN[i][0]=N[i] GAAN[i][1]=Prob_list[n][m] m=m+1 for i in range(len(P)): GAAP[i][0]=P[i] GAAP[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Q)): GAAQ[i][0]=Q[i] GAAQ[i][1]=Prob_list[n][m] m=m+1 for i in range(len(R)): GAAR[i][0]=R[i] GAAR[i][1]=Prob_list[n][m] m=m+1 for i in range(len(S)): GAAS[i][0]=S[i] GAAS[i][1]=Prob_list[n][m] m=m+1 for i in range(len(T)): GAAT[i][0]=T[i] GAAT[i][1]=Prob_list[n][m] m=m+1 for i in range(len(V)): GAAV[i][0]=V[i] GAAV[i][1]=Prob_list[n][m] m=m+1 for i in range(len(W)): GAAW[i][0]=W[i] GAAW[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Y)): GAAY[i][0]=Y[i] GAAY[i][1]=Prob_list[n][m] m=m+1 n=n+1 m=0 for i in range(len(A)): TTTA[i][0]=A[i] TTTA[i][1]=Prob_list[n][m] m=m+1 for i in range(len(C)): TTTC[i][0]=C[i] TTTC[i][1]=Prob_list[n][m] m=m+1 for i in range(len(D)): TTTD[i][0]=D[i] TTTD[i][1]=Prob_list[n][m] m=m+1 for i in range(len(E)): TTTE[i][0]=E[i] TTTE[i][1]=Prob_list[n][m] m=m+1 for i in range(len(F)): TTTF[i][0]=F[i] TTTF[i][1]=Prob_list[n][m] m=m+1 for i in range(len(G)): TTTG[i][0]=G[i] TTTG[i][1]=Prob_list[n][m] m=m+1 for i in range(len(H)): TTTH[i][0]=H[i] TTTH[i][1]=Prob_list[n][m] m=m+1 for i in range(len(I)): TTTI[i][0]=I[i] TTTI[i][1]=Prob_list[n][m] m=m+1 for i in range(len(K)): TTTK[i][0]=K[i] TTTK[i][1]=Prob_list[n][m] m=m+1 for i in range(len(L)): TTTL[i][0]=L[i] TTTL[i][1]=Prob_list[n][m] m=m+1 for i in range(len(M)): TTTM[i][0]=M[i] TTTM[i][1]=Prob_list[n][m] m=m+1 for i in range(len(N)): TTTN[i][0]=N[i] TTTN[i][1]=Prob_list[n][m] m=m+1 for i in range(len(P)): TTTP[i][0]=P[i] TTTP[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Q)): TTTQ[i][0]=Q[i] TTTQ[i][1]=Prob_list[n][m] m=m+1 for i in range(len(R)): TTTR[i][0]=R[i] TTTR[i][1]=Prob_list[n][m] m=m+1 for i in range(len(S)): TTTS[i][0]=S[i] TTTS[i][1]=Prob_list[n][m] m=m+1 for i in range(len(T)): TTTT[i][0]=T[i] TTTT[i][1]=Prob_list[n][m] m=m+1 for i in range(len(V)): TTTV[i][0]=V[i] TTTV[i][1]=Prob_list[n][m] m=m+1 for i in range(len(W)): TTTW[i][0]=W[i] TTTW[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Y)): TTTY[i][0]=Y[i] TTTY[i][1]=Prob_list[n][m] m=m+1 n=n+1 m=0 for i in range(len(A)): TTCA[i][0]=A[i] TTCA[i][1]=Prob_list[n][m] m=m+1 for i in range(len(C)): TTCC[i][0]=C[i] TTCC[i][1]=Prob_list[n][m] m=m+1 for i in range(len(D)): TTCD[i][0]=D[i] TTCD[i][1]=Prob_list[n][m] m=m+1 for i in range(len(E)): TTCE[i][0]=E[i] TTCE[i][1]=Prob_list[n][m] m=m+1 for i in range(len(F)): TTCF[i][0]=F[i] TTCF[i][1]=Prob_list[n][m] m=m+1 for i in range(len(G)): TTCG[i][0]=G[i] TTCG[i][1]=Prob_list[n][m] m=m+1 for i in range(len(H)): TTCH[i][0]=H[i] TTCH[i][1]=Prob_list[n][m] m=m+1 for i in range(len(I)): TTCI[i][0]=I[i] TTCI[i][1]=Prob_list[n][m] m=m+1 for i in range(len(K)): TTCK[i][0]=K[i] TTCK[i][1]=Prob_list[n][m] m=m+1 for i in range(len(L)): TTCL[i][0]=L[i] TTCL[i][1]=Prob_list[n][m] m=m+1 for i in range(len(M)): TTCM[i][0]=M[i] TTCM[i][1]=Prob_list[n][m] m=m+1 for i in range(len(N)): TTCN[i][0]=N[i] TTCN[i][1]=Prob_list[n][m] m=m+1 for i in range(len(P)): TTCP[i][0]=P[i] TTCP[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Q)): TTCQ[i][0]=Q[i] TTCQ[i][1]=Prob_list[n][m] m=m+1 for i in range(len(R)): TTCR[i][0]=R[i] TTCR[i][1]=Prob_list[n][m] m=m+1 for i in range(len(S)): TTCS[i][0]=S[i] TTCS[i][1]=Prob_list[n][m] m=m+1 for i in range(len(T)): TTCT[i][0]=T[i] TTCT[i][1]=Prob_list[n][m] m=m+1 for i in range(len(V)): TTCV[i][0]=V[i] TTCV[i][1]=Prob_list[n][m] m=m+1 for i in range(len(W)): TTCW[i][0]=W[i] TTCW[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Y)): TTCY[i][0]=Y[i] TTCY[i][1]=Prob_list[n][m] m=m+1 n=n+1 m=0 for i in range(len(A)): GGGA[i][0]=A[i] GGGA[i][1]=Prob_list[n][m] m=m+1 for i in range(len(C)): GGGC[i][0]=C[i] GGGC[i][1]=Prob_list[n][m] m=m+1 for i in range(len(D)): GGGD[i][0]=D[i] GGGD[i][1]=Prob_list[n][m] m=m+1 for i in range(len(E)): GGGE[i][0]=E[i] GGGE[i][1]=Prob_list[n][m] m=m+1 for i in range(len(F)): GGGF[i][0]=F[i] GGGF[i][1]=Prob_list[n][m] m=m+1 for i in range(len(G)): GGGG[i][0]=G[i] GGGG[i][1]=Prob_list[n][m] m=m+1 for i in range(len(H)): GGGH[i][0]=H[i] GGGH[i][1]=Prob_list[n][m] m=m+1 for i in range(len(I)): GGGI[i][0]=I[i] GGGI[i][1]=Prob_list[n][m] m=m+1 for i in range(len(K)): GGGK[i][0]=K[i] GGGK[i][1]=Prob_list[n][m] m=m+1 for i in range(len(L)): GGGL[i][0]=L[i] GGGL[i][1]=Prob_list[n][m] m=m+1 for i in range(len(M)): GGGM[i][0]=M[i] GGGM[i][1]=Prob_list[n][m] m=m+1 for i in range(len(N)): GGGN[i][0]=N[i] GGGN[i][1]=Prob_list[n][m] m=m+1 for i in range(len(P)): GGGP[i][0]=P[i] GGGP[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Q)): GGGQ[i][0]=Q[i] GGGQ[i][1]=Prob_list[n][m] m=m+1 for i in range(len(R)): GGGR[i][0]=R[i] GGGR[i][1]=Prob_list[n][m] m=m+1 for i in range(len(S)): GGGS[i][0]=S[i] GGGS[i][1]=Prob_list[n][m] m=m+1 for i in range(len(T)): GGGT[i][0]=T[i] GGGT[i][1]=Prob_list[n][m] m=m+1 for i in range(len(V)): GGGV[i][0]=V[i] GGGV[i][1]=Prob_list[n][m] m=m+1 for i in range(len(W)): GGGW[i][0]=W[i] GGGW[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Y)): GGGY[i][0]=Y[i] GGGY[i][1]=Prob_list[n][m] m=m+1 n=n+1 m=0 for i in range(len(A)): GGAA[i][0]=A[i] GGAA[i][1]=Prob_list[n][m] m=m+1 for i in range(len(C)): GGAC[i][0]=C[i] GGAC[i][1]=Prob_list[n][m] m=m+1 for i in range(len(D)): GGAD[i][0]=D[i] GGAD[i][1]=Prob_list[n][m] m=m+1 for i in range(len(E)): GGAE[i][0]=E[i] GGAE[i][1]=Prob_list[n][m] m=m+1 for i in range(len(F)): GGAF[i][0]=F[i] GGAF[i][1]=Prob_list[n][m] m=m+1 for i in range(len(G)): GGAG[i][0]=G[i] GGAG[i][1]=Prob_list[n][m] m=m+1 for i in range(len(H)): GGAH[i][0]=H[i] GGAH[i][1]=Prob_list[n][m] m=m+1 for i in range(len(I)): GGAI[i][0]=I[i] GGAI[i][1]=Prob_list[n][m] m=m+1 for i in range(len(K)): GGAK[i][0]=K[i] GGAK[i][1]=Prob_list[n][m] m=m+1 for i in range(len(L)): GGAL[i][0]=L[i] GGAL[i][1]=Prob_list[n][m] m=m+1 for i in range(len(M)): GGAM[i][0]=M[i] GGAM[i][1]=Prob_list[n][m] m=m+1 for i in range(len(N)): GGAN[i][0]=N[i] GGAN[i][1]=Prob_list[n][m] m=m+1 for i in range(len(P)): GGAP[i][0]=P[i] GGAP[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Q)): GGAQ[i][0]=Q[i] GGAQ[i][1]=Prob_list[n][m] m=m+1 for i in range(len(R)): GGAR[i][0]=R[i] GGAR[i][1]=Prob_list[n][m] m=m+1 for i in range(len(S)): GGAS[i][0]=S[i] GGAS[i][1]=Prob_list[n][m] m=m+1 for i in range(len(T)): GGAT[i][0]=T[i] GGAT[i][1]=Prob_list[n][m] m=m+1 for i in range(len(V)): GGAV[i][0]=V[i] GGAV[i][1]=Prob_list[n][m] m=m+1 for i in range(len(W)): GGAW[i][0]=W[i] GGAW[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Y)): GGAY[i][0]=Y[i] GGAY[i][1]=Prob_list[n][m] m=m+1 n=n+1 m=0 for i in range(len(A)): GGTA[i][0]=A[i] GGTA[i][1]=Prob_list[n][m] m=m+1 for i in range(len(C)): GGTC[i][0]=C[i] GGTC[i][1]=Prob_list[n][m] m=m+1 for i in range(len(D)): GGTD[i][0]=D[i] GGTD[i][1]=Prob_list[n][m] m=m+1 for i in range(len(E)): GGTE[i][0]=E[i] GGTE[i][1]=Prob_list[n][m] m=m+1 for i in range(len(F)): GGTF[i][0]=F[i] GGTF[i][1]=Prob_list[n][m] m=m+1 for i in range(len(G)): GGTG[i][0]=G[i] GGTG[i][1]=Prob_list[n][m] m=m+1 for i in range(len(H)): GGTH[i][0]=H[i] GGTH[i][1]=Prob_list[n][m] m=m+1 for i in range(len(I)): GGTI[i][0]=I[i] GGTI[i][1]=Prob_list[n][m] m=m+1 for i in range(len(K)): GGTK[i][0]=K[i] GGTK[i][1]=Prob_list[n][m] m=m+1 for i in range(len(L)): GGTL[i][0]=L[i] GGTL[i][1]=Prob_list[n][m] m=m+1 for i in range(len(M)): GGTM[i][0]=M[i] GGTM[i][1]=Prob_list[n][m] m=m+1 for i in range(len(N)): GGTN[i][0]=N[i] GGTN[i][1]=Prob_list[n][m] m=m+1 for i in range(len(P)): GGTP[i][0]=P[i] GGTP[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Q)): GGTQ[i][0]=Q[i] GGTQ[i][1]=Prob_list[n][m] m=m+1 for i in range(len(R)): GGTR[i][0]=R[i] GGTR[i][1]=Prob_list[n][m] m=m+1 for i in range(len(S)): GGTS[i][0]=S[i] GGTS[i][1]=Prob_list[n][m] m=m+1 for i in range(len(T)): GGTT[i][0]=T[i] GGTT[i][1]=Prob_list[n][m] m=m+1 for i in range(len(V)): GGTV[i][0]=V[i] GGTV[i][1]=Prob_list[n][m] m=m+1 for i in range(len(W)): GGTW[i][0]=W[i] GGTW[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Y)): GGTY[i][0]=Y[i] GGTY[i][1]=Prob_list[n][m] m=m+1 n=n+1 m=0 for i in range(len(A)): GGCA[i][0]=A[i] GGCA[i][1]=Prob_list[n][m] m=m+1 for i in range(len(C)): GGCC[i][0]=C[i] GGCC[i][1]=Prob_list[n][m] m=m+1 for i in range(len(D)): GGCD[i][0]=D[i] GGCD[i][1]=Prob_list[n][m] m=m+1 for i in range(len(E)): GGCE[i][0]=E[i] GGCE[i][1]=Prob_list[n][m] m=m+1 for i in range(len(F)): GGCF[i][0]=F[i] GGCF[i][1]=Prob_list[n][m] m=m+1 for i in range(len(G)): GGCG[i][0]=G[i] GGCG[i][1]=Prob_list[n][m] m=m+1 for i in range(len(H)): GGCH[i][0]=H[i] GGCH[i][1]=Prob_list[n][m] m=m+1 for i in range(len(I)): GGCI[i][0]=I[i] GGCI[i][1]=Prob_list[n][m] m=m+1 for i in range(len(K)): GGCK[i][0]=K[i] GGCK[i][1]=Prob_list[n][m] m=m+1 for i in range(len(L)): GGCL[i][0]=L[i] GGCL[i][1]=Prob_list[n][m] m=m+1 for i in range(len(M)): GGCM[i][0]=M[i] GGCM[i][1]=Prob_list[n][m] m=m+1 for i in range(len(N)): GGCN[i][0]=N[i] GGCN[i][1]=Prob_list[n][m] m=m+1 for i in range(len(P)): GGCP[i][0]=P[i] GGCP[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Q)): GGCQ[i][0]=Q[i] GGCQ[i][1]=Prob_list[n][m] m=m+1 for i in range(len(R)): GGCR[i][0]=R[i] GGCR[i][1]=Prob_list[n][m] m=m+1 for i in range(len(S)): GGCS[i][0]=S[i] GGCS[i][1]=Prob_list[n][m] m=m+1 for i in range(len(T)): GGCT[i][0]=T[i] GGCT[i][1]=Prob_list[n][m] m=m+1 for i in range(len(V)): GGCV[i][0]=V[i] GGCV[i][1]=Prob_list[n][m] m=m+1 for i in range(len(W)): GGCW[i][0]=W[i] GGCW[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Y)): GGCY[i][0]=Y[i] GGCY[i][1]=Prob_list[n][m] m=m+1 n=n+1 m=0 for i in range(len(A)): CATA[i][0]=A[i] CATA[i][1]=Prob_list[n][m] m=m+1 for i in range(len(C)): CATC[i][0]=C[i] CATC[i][1]=Prob_list[n][m] m=m+1 for i in range(len(D)): CATD[i][0]=D[i] CATD[i][1]=Prob_list[n][m] m=m+1 for i in range(len(E)): CATE[i][0]=E[i] CATE[i][1]=Prob_list[n][m] m=m+1 for i in range(len(F)): CATF[i][0]=F[i] CATF[i][1]=Prob_list[n][m] m=m+1 for i in range(len(G)): CATG[i][0]=G[i] CATG[i][1]=Prob_list[n][m] m=m+1 for i in range(len(H)): CATH[i][0]=H[i] CATH[i][1]=Prob_list[n][m] m=m+1 for i in range(len(I)): CATI[i][0]=I[i] CATI[i][1]=Prob_list[n][m] m=m+1 for i in range(len(K)): CATK[i][0]=K[i] CATK[i][1]=Prob_list[n][m] m=m+1 for i in range(len(L)): CATL[i][0]=L[i] CATL[i][1]=Prob_list[n][m] m=m+1 for i in range(len(M)): CATM[i][0]=M[i] CATM[i][1]=Prob_list[n][m] m=m+1 for i in range(len(N)): CATN[i][0]=N[i] CATN[i][1]=Prob_list[n][m] m=m+1 for i in range(len(P)): CATP[i][0]=P[i] CATP[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Q)): CATQ[i][0]=Q[i] CATQ[i][1]=Prob_list[n][m] m=m+1 for i in range(len(R)): CATR[i][0]=R[i] CATR[i][1]=Prob_list[n][m] m=m+1 for i in range(len(S)): CATS[i][0]=S[i] CATS[i][1]=Prob_list[n][m] m=m+1 for i in range(len(T)): CATT[i][0]=T[i] CATT[i][1]=Prob_list[n][m] m=m+1 for i in range(len(V)): CATV[i][0]=V[i] CATV[i][1]=Prob_list[n][m] m=m+1 for i in range(len(W)): CATW[i][0]=W[i] CATW[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Y)): CATY[i][0]=Y[i] CATY[i][1]=Prob_list[n][m] m=m+1 n=n+1 m=0 for i in range(len(A)): CACA[i][0]=A[i] CACA[i][1]=Prob_list[n][m] m=m+1 for i in range(len(C)): CACC[i][0]=C[i] CACC[i][1]=Prob_list[n][m] m=m+1 for i in range(len(D)): CACD[i][0]=D[i] CACD[i][1]=Prob_list[n][m] m=m+1 for i in range(len(E)): CACE[i][0]=E[i] CACE[i][1]=Prob_list[n][m] m=m+1 for i in range(len(F)): CACF[i][0]=F[i] CACF[i][1]=Prob_list[n][m] m=m+1 for i in range(len(G)): CACG[i][0]=G[i] CACG[i][1]=Prob_list[n][m] m=m+1 for i in range(len(H)): CACH[i][0]=H[i] CACH[i][1]=Prob_list[n][m] m=m+1 for i in range(len(I)): CACI[i][0]=I[i] CACI[i][1]=Prob_list[n][m] m=m+1 for i in range(len(K)): CACK[i][0]=K[i] CACK[i][1]=Prob_list[n][m] m=m+1 for i in range(len(L)): CACL[i][0]=L[i] CACL[i][1]=Prob_list[n][m] m=m+1 for i in range(len(M)): CACM[i][0]=M[i] CACM[i][1]=Prob_list[n][m] m=m+1 for i in range(len(N)): CACN[i][0]=N[i] CACN[i][1]=Prob_list[n][m] m=m+1 for i in range(len(P)): CACP[i][0]=P[i] CACP[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Q)): CACQ[i][0]=Q[i] CACQ[i][1]=Prob_list[n][m] m=m+1 for i in range(len(R)): CACR[i][0]=R[i] CACR[i][1]=Prob_list[n][m] m=m+1 for i in range(len(S)): CACS[i][0]=S[i] CACS[i][1]=Prob_list[n][m] m=m+1 for i in range(len(T)): CACT[i][0]=T[i] CACT[i][1]=Prob_list[n][m] m=m+1 for i in range(len(V)): CACV[i][0]=V[i] CACV[i][1]=Prob_list[n][m] m=m+1 for i in range(len(W)): CACW[i][0]=W[i] CACW[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Y)): CACY[i][0]=Y[i] CACY[i][1]=Prob_list[n][m] m=m+1 n=n+1 m=0 for i in range(len(A)): ATAA[i][0]=A[i] ATAA[i][1]=Prob_list[n][m] m=m+1 for i in range(len(C)): ATAC[i][0]=C[i] ATAC[i][1]=Prob_list[n][m] m=m+1 for i in range(len(D)): ATAD[i][0]=D[i] ATAD[i][1]=Prob_list[n][m] m=m+1 for i in range(len(E)): ATAE[i][0]=E[i] ATAE[i][1]=Prob_list[n][m] m=m+1 for i in range(len(F)): ATAF[i][0]=F[i] ATAF[i][1]=Prob_list[n][m] m=m+1 for i in range(len(G)): ATAG[i][0]=G[i] ATAG[i][1]=Prob_list[n][m] m=m+1 for i in range(len(H)): ATAH[i][0]=H[i] ATAH[i][1]=Prob_list[n][m] m=m+1 for i in range(len(I)): ATAI[i][0]=I[i] ATAI[i][1]=Prob_list[n][m] m=m+1 for i in range(len(K)): ATAK[i][0]=K[i] ATAK[i][1]=Prob_list[n][m] m=m+1 for i in range(len(L)): ATAL[i][0]=L[i] ATAL[i][1]=Prob_list[n][m] m=m+1 for i in range(len(M)): ATAM[i][0]=M[i] ATAM[i][1]=Prob_list[n][m] m=m+1 for i in range(len(N)): ATAN[i][0]=N[i] ATAN[i][1]=Prob_list[n][m] m=m+1 for i in range(len(P)): ATAP[i][0]=P[i] ATAP[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Q)): ATAQ[i][0]=Q[i] ATAQ[i][1]=Prob_list[n][m] m=m+1 for i in range(len(R)): ATAR[i][0]=R[i] ATAR[i][1]=Prob_list[n][m] m=m+1 for i in range(len(S)): ATAS[i][0]=S[i] ATAS[i][1]=Prob_list[n][m] m=m+1 for i in range(len(T)): ATAT[i][0]=T[i] ATAT[i][1]=Prob_list[n][m] m=m+1 for i in range(len(V)): ATAV[i][0]=V[i] ATAV[i][1]=Prob_list[n][m] m=m+1 for i in range(len(W)): ATAW[i][0]=W[i] ATAW[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Y)): ATAY[i][0]=Y[i] ATAY[i][1]=Prob_list[n][m] m=m+1 n=n+1 m=0 for i in range(len(A)): ATTA[i][0]=A[i] ATTA[i][1]=Prob_list[n][m] m=m+1 for i in range(len(C)): ATTC[i][0]=C[i] ATTC[i][1]=Prob_list[n][m] m=m+1 for i in range(len(D)): ATTD[i][0]=D[i] ATTD[i][1]=Prob_list[n][m] m=m+1 for i in range(len(E)): ATTE[i][0]=E[i] ATTE[i][1]=Prob_list[n][m] m=m+1 for i in range(len(F)): ATTF[i][0]=F[i] ATTF[i][1]=Prob_list[n][m] m=m+1 for i in range(len(G)): ATTG[i][0]=G[i] ATTG[i][1]=Prob_list[n][m] m=m+1 for i in range(len(H)): ATTH[i][0]=H[i] ATTH[i][1]=Prob_list[n][m] m=m+1 for i in range(len(I)): ATTI[i][0]=I[i] ATTI[i][1]=Prob_list[n][m] m=m+1 for i in range(len(K)): ATTK[i][0]=K[i] ATTK[i][1]=Prob_list[n][m] m=m+1 for i in range(len(L)): ATTL[i][0]=L[i] ATTL[i][1]=Prob_list[n][m] m=m+1 for i in range(len(M)): ATTM[i][0]=M[i] ATTM[i][1]=Prob_list[n][m] m=m+1 for i in range(len(N)): ATTN[i][0]=N[i] ATTN[i][1]=Prob_list[n][m] m=m+1 for i in range(len(P)): ATTP[i][0]=P[i] ATTP[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Q)): ATTQ[i][0]=Q[i] ATTQ[i][1]=Prob_list[n][m] m=m+1 for i in range(len(R)): ATTR[i][0]=R[i] ATTR[i][1]=Prob_list[n][m] m=m+1 for i in range(len(S)): ATTS[i][0]=S[i] ATTS[i][1]=Prob_list[n][m] m=m+1 for i in range(len(T)): ATTT[i][0]=T[i] ATTT[i][1]=Prob_list[n][m] m=m+1 for i in range(len(V)): ATTV[i][0]=V[i] ATTV[i][1]=Prob_list[n][m] m=m+1 for i in range(len(W)): ATTW[i][0]=W[i] ATTW[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Y)): ATTY[i][0]=Y[i] ATTY[i][1]=Prob_list[n][m] m=m+1 n=n+1 m=0 for i in range(len(A)): ATCA[i][0]=A[i] ATCA[i][1]=Prob_list[n][m] m=m+1 for i in range(len(C)): ATCC[i][0]=C[i] ATCC[i][1]=Prob_list[n][m] m=m+1 for i in range(len(D)): ATCD[i][0]=D[i] ATCD[i][1]=Prob_list[n][m] m=m+1 for i in range(len(E)): ATCE[i][0]=E[i] ATCE[i][1]=Prob_list[n][m] m=m+1 for i in range(len(F)): ATCF[i][0]=F[i] ATCF[i][1]=Prob_list[n][m] m=m+1 for i in range(len(G)): ATCG[i][0]=G[i] ATCG[i][1]=Prob_list[n][m] m=m+1 for i in range(len(H)): ATCH[i][0]=H[i] ATCH[i][1]=Prob_list[n][m] m=m+1 for i in range(len(I)): ATCI[i][0]=I[i] ATCI[i][1]=Prob_list[n][m] m=m+1 for i in range(len(K)): ATCK[i][0]=K[i] ATCK[i][1]=Prob_list[n][m] m=m+1 for i in range(len(L)): ATCL[i][0]=L[i] ATCL[i][1]=Prob_list[n][m] m=m+1 for i in range(len(M)): ATCM[i][0]=M[i] ATCM[i][1]=Prob_list[n][m] m=m+1 for i in range(len(N)): ATCN[i][0]=N[i] ATCN[i][1]=Prob_list[n][m] m=m+1 for i in range(len(P)): ATCP[i][0]=P[i] ATCP[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Q)): ATCQ[i][0]=Q[i] ATCQ[i][1]=Prob_list[n][m] m=m+1 for i in range(len(R)): ATCR[i][0]=R[i] ATCR[i][1]=Prob_list[n][m] m=m+1 for i in range(len(S)): ATCS[i][0]=S[i] ATCS[i][1]=Prob_list[n][m] m=m+1 for i in range(len(T)): ATCT[i][0]=T[i] ATCT[i][1]=Prob_list[n][m] m=m+1 for i in range(len(V)): ATCV[i][0]=V[i] ATCV[i][1]=Prob_list[n][m] m=m+1 for i in range(len(W)): ATCW[i][0]=W[i] ATCW[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Y)): ATCY[i][0]=Y[i] ATCY[i][1]=Prob_list[n][m] m=m+1 n=n+1 m=0 for i in range(len(A)): AAGA[i][0]=A[i] AAGA[i][1]=Prob_list[n][m] m=m+1 for i in range(len(C)): AAGC[i][0]=C[i] AAGC[i][1]=Prob_list[n][m] m=m+1 for i in range(len(D)): AAGD[i][0]=D[i] AAGD[i][1]=Prob_list[n][m] m=m+1 for i in range(len(E)): AAGE[i][0]=E[i] AAGE[i][1]=Prob_list[n][m] m=m+1 for i in range(len(F)): AAGF[i][0]=F[i] AAGF[i][1]=Prob_list[n][m] m=m+1 for i in range(len(G)): AAGG[i][0]=G[i] AAGG[i][1]=Prob_list[n][m] m=m+1 for i in range(len(H)): AAGH[i][0]=H[i] AAGH[i][1]=Prob_list[n][m] m=m+1 for i in range(len(I)): AAGI[i][0]=I[i] AAGI[i][1]=Prob_list[n][m] m=m+1 for i in range(len(K)): AAGK[i][0]=K[i] AAGK[i][1]=Prob_list[n][m] m=m+1 for i in range(len(L)): AAGL[i][0]=L[i] AAGL[i][1]=Prob_list[n][m] m=m+1 for i in range(len(M)): AAGM[i][0]=M[i] AAGM[i][1]=Prob_list[n][m] m=m+1 for i in range(len(N)): AAGN[i][0]=N[i] AAGN[i][1]=Prob_list[n][m] m=m+1 for i in range(len(P)): AAGP[i][0]=P[i] AAGP[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Q)): AAGQ[i][0]=Q[i] AAGQ[i][1]=Prob_list[n][m] m=m+1 for i in range(len(R)): AAGR[i][0]=R[i] AAGR[i][1]=Prob_list[n][m] m=m+1 for i in range(len(S)): AAGS[i][0]=S[i] AAGS[i][1]=Prob_list[n][m] m=m+1 for i in range(len(T)): AAGT[i][0]=T[i] AAGT[i][1]=Prob_list[n][m] m=m+1 for i in range(len(V)): AAGV[i][0]=V[i] AAGV[i][1]=Prob_list[n][m] m=m+1 for i in range(len(W)): AAGW[i][0]=W[i] AAGW[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Y)): AAGY[i][0]=Y[i] AAGY[i][1]=Prob_list[n][m] m=m+1 n=n+1 m=0 for i in range(len(A)): AAAA[i][0]=A[i] AAAA[i][1]=Prob_list[n][m] m=m+1 for i in range(len(C)): AAAC[i][0]=C[i] AAAC[i][1]=Prob_list[n][m] m=m+1 for i in range(len(D)): AAAD[i][0]=D[i] AAAD[i][1]=Prob_list[n][m] m=m+1 for i in range(len(E)): AAAE[i][0]=E[i] AAAE[i][1]=Prob_list[n][m] m=m+1 for i in range(len(F)): AAAF[i][0]=F[i] AAAF[i][1]=Prob_list[n][m] m=m+1 for i in range(len(G)): AAAG[i][0]=G[i] AAAG[i][1]=Prob_list[n][m] m=m+1 for i in range(len(H)): AAAH[i][0]=H[i] AAAH[i][1]=Prob_list[n][m] m=m+1 for i in range(len(I)): AAAI[i][0]=I[i] AAAI[i][1]=Prob_list[n][m] m=m+1 for i in range(len(K)): AAAK[i][0]=K[i] AAAK[i][1]=Prob_list[n][m] m=m+1 for i in range(len(L)): AAAL[i][0]=L[i] AAAL[i][1]=Prob_list[n][m] m=m+1 for i in range(len(M)): AAAM[i][0]=M[i] AAAM[i][1]=Prob_list[n][m] m=m+1 for i in range(len(N)): AAAN[i][0]=N[i] AAAN[i][1]=Prob_list[n][m] m=m+1 for i in range(len(P)): AAAP[i][0]=P[i] AAAP[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Q)): AAAQ[i][0]=Q[i] AAAQ[i][1]=Prob_list[n][m] m=m+1 for i in range(len(R)): AAAR[i][0]=R[i] AAAR[i][1]=Prob_list[n][m] m=m+1 for i in range(len(S)): AAAS[i][0]=S[i] AAAS[i][1]=Prob_list[n][m] m=m+1 for i in range(len(T)): AAAT[i][0]=T[i] AAAT[i][1]=Prob_list[n][m] m=m+1 for i in range(len(V)): AAAV[i][0]=V[i] AAAV[i][1]=Prob_list[n][m] m=m+1 for i in range(len(W)): AAAW[i][0]=W[i] AAAW[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Y)): AAAY[i][0]=Y[i] AAAY[i][1]=Prob_list[n][m] m=m+1 n=n+1 m=0 for i in range(len(A)): TTGA[i][0]=A[i] TTGA[i][1]=Prob_list[n][m] m=m+1 for i in range(len(C)): TTGC[i][0]=C[i] TTGC[i][1]=Prob_list[n][m] m=m+1 for i in range(len(D)): TTGD[i][0]=D[i] TTGD[i][1]=Prob_list[n][m] m=m+1 for i in range(len(E)): TTGE[i][0]=E[i] TTGE[i][1]=Prob_list[n][m] m=m+1 for i in range(len(F)): TTGF[i][0]=F[i] TTGF[i][1]=Prob_list[n][m] m=m+1 for i in range(len(G)): TTGG[i][0]=G[i] TTGG[i][1]=Prob_list[n][m] m=m+1 for i in range(len(H)): TTGH[i][0]=H[i] TTGH[i][1]=Prob_list[n][m] m=m+1 for i in range(len(I)): TTGI[i][0]=I[i] TTGI[i][1]=Prob_list[n][m] m=m+1 for i in range(len(K)): TTGK[i][0]=K[i] TTGK[i][1]=Prob_list[n][m] m=m+1 for i in range(len(L)): TTGL[i][0]=L[i] TTGL[i][1]=Prob_list[n][m] m=m+1 for i in range(len(M)): TTGM[i][0]=M[i] TTGM[i][1]=Prob_list[n][m] m=m+1 for i in range(len(N)): TTGN[i][0]=N[i] TTGN[i][1]=Prob_list[n][m] m=m+1 for i in range(len(P)): TTGP[i][0]=P[i] TTGP[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Q)): TTGQ[i][0]=Q[i] TTGQ[i][1]=Prob_list[n][m] m=m+1 for i in range(len(R)): TTGR[i][0]=R[i] TTGR[i][1]=Prob_list[n][m] m=m+1 for i in range(len(S)): TTGS[i][0]=S[i] TTGS[i][1]=Prob_list[n][m] m=m+1 for i in range(len(T)): TTGT[i][0]=T[i] TTGT[i][1]=Prob_list[n][m] m=m+1 for i in range(len(V)): TTGV[i][0]=V[i] TTGV[i][1]=Prob_list[n][m] m=m+1 for i in range(len(W)): TTGW[i][0]=W[i] TTGW[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Y)): TTGY[i][0]=Y[i] TTGY[i][1]=Prob_list[n][m] m=m+1 n=n+1 m=0 for i in range(len(A)): TTAA[i][0]=A[i] TTAA[i][1]=Prob_list[n][m] m=m+1 for i in range(len(C)): TTAC[i][0]=C[i] TTAC[i][1]=Prob_list[n][m] m=m+1 for i in range(len(D)): TTAD[i][0]=D[i] TTAD[i][1]=Prob_list[n][m] m=m+1 for i in range(len(E)): TTAE[i][0]=E[i] TTAE[i][1]=Prob_list[n][m] m=m+1 for i in range(len(F)): TTAF[i][0]=F[i] TTAF[i][1]=Prob_list[n][m] m=m+1 for i in range(len(G)): TTAG[i][0]=G[i] TTAG[i][1]=Prob_list[n][m] m=m+1 for i in range(len(H)): TTAH[i][0]=H[i] TTAH[i][1]=Prob_list[n][m] m=m+1 for i in range(len(I)): TTAI[i][0]=I[i] TTAI[i][1]=Prob_list[n][m] m=m+1 for i in range(len(K)): TTAK[i][0]=K[i] TTAK[i][1]=Prob_list[n][m] m=m+1 for i in range(len(L)): TTAL[i][0]=L[i] TTAL[i][1]=Prob_list[n][m] m=m+1 for i in range(len(M)): TTAM[i][0]=M[i] TTAM[i][1]=Prob_list[n][m] m=m+1 for i in range(len(N)): TTAN[i][0]=N[i] TTAN[i][1]=Prob_list[n][m] m=m+1 for i in range(len(P)): TTAP[i][0]=P[i] TTAP[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Q)): TTAQ[i][0]=Q[i] TTAQ[i][1]=Prob_list[n][m] m=m+1 for i in range(len(R)): TTAR[i][0]=R[i] TTAR[i][1]=Prob_list[n][m] m=m+1 for i in range(len(S)): TTAS[i][0]=S[i] TTAS[i][1]=Prob_list[n][m] m=m+1 for i in range(len(T)): TTAT[i][0]=T[i] TTAT[i][1]=Prob_list[n][m] m=m+1 for i in range(len(V)): TTAV[i][0]=V[i] TTAV[i][1]=Prob_list[n][m] m=m+1 for i in range(len(W)): TTAW[i][0]=W[i] TTAW[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Y)): TTAY[i][0]=Y[i] TTAY[i][1]=Prob_list[n][m] m=m+1 n=n+1 m=0 for i in range(len(A)): CTGA[i][0]=A[i] CTGA[i][1]=Prob_list[n][m] m=m+1 for i in range(len(C)): CTGC[i][0]=C[i] CTGC[i][1]=Prob_list[n][m] m=m+1 for i in range(len(D)): CTGD[i][0]=D[i] CTGD[i][1]=Prob_list[n][m] m=m+1 for i in range(len(E)): CTGE[i][0]=E[i] CTGE[i][1]=Prob_list[n][m] m=m+1 for i in range(len(F)): CTGF[i][0]=F[i] CTGF[i][1]=Prob_list[n][m] m=m+1 for i in range(len(G)): CTGG[i][0]=G[i] CTGG[i][1]=Prob_list[n][m] m=m+1 for i in range(len(H)): CTGH[i][0]=H[i] CTGH[i][1]=Prob_list[n][m] m=m+1 for i in range(len(I)): CTGI[i][0]=I[i] CTGI[i][1]=Prob_list[n][m] m=m+1 for i in range(len(K)): CTGK[i][0]=K[i] CTGK[i][1]=Prob_list[n][m] m=m+1 for i in range(len(L)): CTGL[i][0]=L[i] CTGL[i][1]=Prob_list[n][m] m=m+1 for i in range(len(M)): CTGM[i][0]=M[i] CTGM[i][1]=Prob_list[n][m] m=m+1 for i in range(len(N)): CTGN[i][0]=N[i] CTGN[i][1]=Prob_list[n][m] m=m+1 for i in range(len(P)): CTGP[i][0]=P[i] CTGP[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Q)): CTGQ[i][0]=Q[i] CTGQ[i][1]=Prob_list[n][m] m=m+1 for i in range(len(R)): CTGR[i][0]=R[i] CTGR[i][1]=Prob_list[n][m] m=m+1 for i in range(len(S)): CTGS[i][0]=S[i] CTGS[i][1]=Prob_list[n][m] m=m+1 for i in range(len(T)): CTGT[i][0]=T[i] CTGT[i][1]=Prob_list[n][m] m=m+1 for i in range(len(V)): CTGV[i][0]=V[i] CTGV[i][1]=Prob_list[n][m] m=m+1 for i in range(len(W)): CTGW[i][0]=W[i] CTGW[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Y)): CTGY[i][0]=Y[i] CTGY[i][1]=Prob_list[n][m] m=m+1 n=n+1 m=0 for i in range(len(A)): CTAA[i][0]=A[i] CTAA[i][1]=Prob_list[n][m] m=m+1 for i in range(len(C)): CTAC[i][0]=C[i] CTAC[i][1]=Prob_list[n][m] m=m+1 for i in range(len(D)): CTAD[i][0]=D[i] CTAD[i][1]=Prob_list[n][m] m=m+1 for i in range(len(E)): CTAE[i][0]=E[i] CTAE[i][1]=Prob_list[n][m] m=m+1 for i in range(len(F)): CTAF[i][0]=F[i] CTAF[i][1]=Prob_list[n][m] m=m+1 for i in range(len(G)): CTAG[i][0]=G[i] CTAG[i][1]=Prob_list[n][m] m=m+1 for i in range(len(H)): CTAH[i][0]=H[i] CTAH[i][1]=Prob_list[n][m] m=m+1 for i in range(len(I)): CTAI[i][0]=I[i] CTAI[i][1]=Prob_list[n][m] m=m+1 for i in range(len(K)): CTAK[i][0]=K[i] CTAK[i][1]=Prob_list[n][m] m=m+1 for i in range(len(L)): CTAL[i][0]=L[i] CTAL[i][1]=Prob_list[n][m] m=m+1 for i in range(len(M)): CTAM[i][0]=M[i] CTAM[i][1]=Prob_list[n][m] m=m+1 for i in range(len(N)): CTAN[i][0]=N[i] CTAN[i][1]=Prob_list[n][m] m=m+1 for i in range(len(P)): CTAP[i][0]=P[i] CTAP[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Q)): CTAQ[i][0]=Q[i] CTAQ[i][1]=Prob_list[n][m] m=m+1 for i in range(len(R)): CTAR[i][0]=R[i] CTAR[i][1]=Prob_list[n][m] m=m+1 for i in range(len(S)): CTAS[i][0]=S[i] CTAS[i][1]=Prob_list[n][m] m=m+1 for i in range(len(T)): CTAT[i][0]=T[i] CTAT[i][1]=Prob_list[n][m] m=m+1 for i in range(len(V)): CTAV[i][0]=V[i] CTAV[i][1]=Prob_list[n][m] m=m+1 for i in range(len(W)): CTAW[i][0]=W[i] CTAW[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Y)): CTAY[i][0]=Y[i] CTAY[i][1]=Prob_list[n][m] m=m+1 n=n+1 m=0 for i in range(len(A)): CTTA[i][0]=A[i] CTTA[i][1]=Prob_list[n][m] m=m+1 for i in range(len(C)): CTTC[i][0]=C[i] CTTC[i][1]=Prob_list[n][m] m=m+1 for i in range(len(D)): CTTD[i][0]=D[i] CTTD[i][1]=Prob_list[n][m] m=m+1 for i in range(len(E)): CTTE[i][0]=E[i] CTTE[i][1]=Prob_list[n][m] m=m+1 for i in range(len(F)): CTTF[i][0]=F[i] CTTF[i][1]=Prob_list[n][m] m=m+1 for i in range(len(G)): CTTG[i][0]=G[i] CTTG[i][1]=Prob_list[n][m] m=m+1 for i in range(len(H)): CTTH[i][0]=H[i] CTTH[i][1]=Prob_list[n][m] m=m+1 for i in range(len(I)): CTTI[i][0]=I[i] CTTI[i][1]=Prob_list[n][m] m=m+1 for i in range(len(K)): CTTK[i][0]=K[i] CTTK[i][1]=Prob_list[n][m] m=m+1 for i in range(len(L)): CTTL[i][0]=L[i] CTTL[i][1]=Prob_list[n][m] m=m+1 for i in range(len(M)): CTTM[i][0]=M[i] CTTM[i][1]=Prob_list[n][m] m=m+1 for i in range(len(N)): CTTN[i][0]=N[i] CTTN[i][1]=Prob_list[n][m] m=m+1 for i in range(len(P)): CTTP[i][0]=P[i] CTTP[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Q)): CTTQ[i][0]=Q[i] CTTQ[i][1]=Prob_list[n][m] m=m+1 for i in range(len(R)): CTTR[i][0]=R[i] CTTR[i][1]=Prob_list[n][m] m=m+1 for i in range(len(S)): CTTS[i][0]=S[i] CTTS[i][1]=Prob_list[n][m] m=m+1 for i in range(len(T)): CTTT[i][0]=T[i] CTTT[i][1]=Prob_list[n][m] m=m+1 for i in range(len(V)): CTTV[i][0]=V[i] CTTV[i][1]=Prob_list[n][m] m=m+1 for i in range(len(W)): CTTW[i][0]=W[i] CTTW[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Y)): CTTY[i][0]=Y[i] CTTY[i][1]=Prob_list[n][m] m=m+1 n=n+1 m=0 for i in range(len(A)): CTCA[i][0]=A[i] CTCA[i][1]=Prob_list[n][m] m=m+1 for i in range(len(C)): CTCC[i][0]=C[i] CTCC[i][1]=Prob_list[n][m] m=m+1 for i in range(len(D)): CTCD[i][0]=D[i] CTCD[i][1]=Prob_list[n][m] m=m+1 for i in range(len(E)): CTCE[i][0]=E[i] CTCE[i][1]=Prob_list[n][m] m=m+1 for i in range(len(F)): CTCF[i][0]=F[i] CTCF[i][1]=Prob_list[n][m] m=m+1 for i in range(len(G)): CTCG[i][0]=G[i] CTCG[i][1]=Prob_list[n][m] m=m+1 for i in range(len(H)): CTCH[i][0]=H[i] CTCH[i][1]=Prob_list[n][m] m=m+1 for i in range(len(I)): CTCI[i][0]=I[i] CTCI[i][1]=Prob_list[n][m] m=m+1 for i in range(len(K)): CTCK[i][0]=K[i] CTCK[i][1]=Prob_list[n][m] m=m+1 for i in range(len(L)): CTCL[i][0]=L[i] CTCL[i][1]=Prob_list[n][m] m=m+1 for i in range(len(M)): CTCM[i][0]=M[i] CTCM[i][1]=Prob_list[n][m] m=m+1 for i in range(len(N)): CTCN[i][0]=N[i] CTCN[i][1]=Prob_list[n][m] m=m+1 for i in range(len(P)): CTCP[i][0]=P[i] CTCP[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Q)): CTCQ[i][0]=Q[i] CTCQ[i][1]=Prob_list[n][m] m=m+1 for i in range(len(R)): CTCR[i][0]=R[i] CTCR[i][1]=Prob_list[n][m] m=m+1 for i in range(len(S)): CTCS[i][0]=S[i] CTCS[i][1]=Prob_list[n][m] m=m+1 for i in range(len(T)): CTCT[i][0]=T[i] CTCT[i][1]=Prob_list[n][m] m=m+1 for i in range(len(V)): CTCV[i][0]=V[i] CTCV[i][1]=Prob_list[n][m] m=m+1 for i in range(len(W)): CTCW[i][0]=W[i] CTCW[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Y)): CTCY[i][0]=Y[i] CTCY[i][1]=Prob_list[n][m] m=m+1 n=n+1 m=0 for i in range(len(A)): ATGA[i][0]=A[i] ATGA[i][1]=Prob_list[n][m] m=m+1 for i in range(len(C)): ATGC[i][0]=C[i] ATGC[i][1]=Prob_list[n][m] m=m+1 for i in range(len(D)): ATGD[i][0]=D[i] ATGD[i][1]=Prob_list[n][m] m=m+1 for i in range(len(E)): ATGE[i][0]=E[i] ATGE[i][1]=Prob_list[n][m] m=m+1 for i in range(len(F)): ATGF[i][0]=F[i] ATGF[i][1]=Prob_list[n][m] m=m+1 for i in range(len(G)): ATGG[i][0]=G[i] ATGG[i][1]=Prob_list[n][m] m=m+1 for i in range(len(H)): ATGH[i][0]=H[i] ATGH[i][1]=Prob_list[n][m] m=m+1 for i in range(len(I)): ATGI[i][0]=I[i] ATGI[i][1]=Prob_list[n][m] m=m+1 for i in range(len(K)): ATGK[i][0]=K[i] ATGK[i][1]=Prob_list[n][m] m=m+1 for i in range(len(L)): ATGL[i][0]=L[i] ATGL[i][1]=Prob_list[n][m] m=m+1 for i in range(len(M)): ATGM[i][0]=M[i] ATGM[i][1]=Prob_list[n][m] m=m+1 for i in range(len(N)): ATGN[i][0]=N[i] ATGN[i][1]=Prob_list[n][m] m=m+1 for i in range(len(P)): ATGP[i][0]=P[i] ATGP[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Q)): ATGQ[i][0]=Q[i] ATGQ[i][1]=Prob_list[n][m] m=m+1 for i in range(len(R)): ATGR[i][0]=R[i] ATGR[i][1]=Prob_list[n][m] m=m+1 for i in range(len(S)): ATGS[i][0]=S[i] ATGS[i][1]=Prob_list[n][m] m=m+1 for i in range(len(T)): ATGT[i][0]=T[i] ATGT[i][1]=Prob_list[n][m] m=m+1 for i in range(len(V)): ATGV[i][0]=V[i] ATGV[i][1]=Prob_list[n][m] m=m+1 for i in range(len(W)): ATGW[i][0]=W[i] ATGW[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Y)): ATGY[i][0]=Y[i] ATGY[i][1]=Prob_list[n][m] m=m+1 n=n+1 m=0 for i in range(len(A)): AATA[i][0]=A[i] AATA[i][1]=Prob_list[n][m] m=m+1 for i in range(len(C)): AATC[i][0]=C[i] AATC[i][1]=Prob_list[n][m] m=m+1 for i in range(len(D)): AATD[i][0]=D[i] AATD[i][1]=Prob_list[n][m] m=m+1 for i in range(len(E)): AATE[i][0]=E[i] AATE[i][1]=Prob_list[n][m] m=m+1 for i in range(len(F)): AATF[i][0]=F[i] AATF[i][1]=Prob_list[n][m] m=m+1 for i in range(len(G)): AATG[i][0]=G[i] AATG[i][1]=Prob_list[n][m] m=m+1 for i in range(len(H)): AATH[i][0]=H[i] AATH[i][1]=Prob_list[n][m] m=m+1 for i in range(len(I)): AATI[i][0]=I[i] AATI[i][1]=Prob_list[n][m] m=m+1 for i in range(len(K)): AATK[i][0]=K[i] AATK[i][1]=Prob_list[n][m] m=m+1 for i in range(len(L)): AATL[i][0]=L[i] AATL[i][1]=Prob_list[n][m] m=m+1 for i in range(len(M)): AATM[i][0]=M[i] AATM[i][1]=Prob_list[n][m] m=m+1 for i in range(len(N)): AATN[i][0]=N[i] AATN[i][1]=Prob_list[n][m] m=m+1 for i in range(len(P)): AATP[i][0]=P[i] AATP[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Q)): AATQ[i][0]=Q[i] AATQ[i][1]=Prob_list[n][m] m=m+1 for i in range(len(R)): AATR[i][0]=R[i] AATR[i][1]=Prob_list[n][m] m=m+1 for i in range(len(S)): AATS[i][0]=S[i] AATS[i][1]=Prob_list[n][m] m=m+1 for i in range(len(T)): AATT[i][0]=T[i] AATT[i][1]=Prob_list[n][m] m=m+1 for i in range(len(V)): AATV[i][0]=V[i] AATV[i][1]=Prob_list[n][m] m=m+1 for i in range(len(W)): AATW[i][0]=W[i] AATW[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Y)): AATY[i][0]=Y[i] AATY[i][1]=Prob_list[n][m] m=m+1 n=n+1 m=0 for i in range(len(A)): AACA[i][0]=A[i] AACA[i][1]=Prob_list[n][m] m=m+1 for i in range(len(C)): AACC[i][0]=C[i] AACC[i][1]=Prob_list[n][m] m=m+1 for i in range(len(D)): AACD[i][0]=D[i] AACD[i][1]=Prob_list[n][m] m=m+1 for i in range(len(E)): AACE[i][0]=E[i] AACE[i][1]=Prob_list[n][m] m=m+1 for i in range(len(F)): AACF[i][0]=F[i] AACF[i][1]=Prob_list[n][m] m=m+1 for i in range(len(G)): AACG[i][0]=G[i] AACG[i][1]=Prob_list[n][m] m=m+1 for i in range(len(H)): AACH[i][0]=H[i] AACH[i][1]=Prob_list[n][m] m=m+1 for i in range(len(I)): AACI[i][0]=I[i] AACI[i][1]=Prob_list[n][m] m=m+1 for i in range(len(K)): AACK[i][0]=K[i] AACK[i][1]=Prob_list[n][m] m=m+1 for i in range(len(L)): AACL[i][0]=L[i] AACL[i][1]=Prob_list[n][m] m=m+1 for i in range(len(M)): AACM[i][0]=M[i] AACM[i][1]=Prob_list[n][m] m=m+1 for i in range(len(N)): AACN[i][0]=N[i] AACN[i][1]=Prob_list[n][m] m=m+1 for i in range(len(P)): AACP[i][0]=P[i] AACP[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Q)): AACQ[i][0]=Q[i] AACQ[i][1]=Prob_list[n][m] m=m+1 for i in range(len(R)): AACR[i][0]=R[i] AACR[i][1]=Prob_list[n][m] m=m+1 for i in range(len(S)): AACS[i][0]=S[i] AACS[i][1]=Prob_list[n][m] m=m+1 for i in range(len(T)): AACT[i][0]=T[i] AACT[i][1]=Prob_list[n][m] m=m+1 for i in range(len(V)): AACV[i][0]=V[i] AACV[i][1]=Prob_list[n][m] m=m+1 for i in range(len(W)): AACW[i][0]=W[i] AACW[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Y)): AACY[i][0]=Y[i] AACY[i][1]=Prob_list[n][m] m=m+1 n=n+1 m=0 for i in range(len(A)): CCGA[i][0]=A[i] CCGA[i][1]=Prob_list[n][m] m=m+1 for i in range(len(C)): CCGC[i][0]=C[i] CCGC[i][1]=Prob_list[n][m] m=m+1 for i in range(len(D)): CCGD[i][0]=D[i] CCGD[i][1]=Prob_list[n][m] m=m+1 for i in range(len(E)): CCGE[i][0]=E[i] CCGE[i][1]=Prob_list[n][m] m=m+1 for i in range(len(F)): CCGF[i][0]=F[i] CCGF[i][1]=Prob_list[n][m] m=m+1 for i in range(len(G)): CCGG[i][0]=G[i] CCGG[i][1]=Prob_list[n][m] m=m+1 for i in range(len(H)): CCGH[i][0]=H[i] CCGH[i][1]=Prob_list[n][m] m=m+1 for i in range(len(I)): CCGI[i][0]=I[i] CCGI[i][1]=Prob_list[n][m] m=m+1 for i in range(len(K)): CCGK[i][0]=K[i] CCGK[i][1]=Prob_list[n][m] m=m+1 for i in range(len(L)): CCGL[i][0]=L[i] CCGL[i][1]=Prob_list[n][m] m=m+1 for i in range(len(M)): CCGM[i][0]=M[i] CCGM[i][1]=Prob_list[n][m] m=m+1 for i in range(len(N)): CCGN[i][0]=N[i] CCGN[i][1]=Prob_list[n][m] m=m+1 for i in range(len(P)): CCGP[i][0]=P[i] CCGP[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Q)): CCGQ[i][0]=Q[i] CCGQ[i][1]=Prob_list[n][m] m=m+1 for i in range(len(R)): CCGR[i][0]=R[i] CCGR[i][1]=Prob_list[n][m] m=m+1 for i in range(len(S)): CCGS[i][0]=S[i] CCGS[i][1]=Prob_list[n][m] m=m+1 for i in range(len(T)): CCGT[i][0]=T[i] CCGT[i][1]=Prob_list[n][m] m=m+1 for i in range(len(V)): CCGV[i][0]=V[i] CCGV[i][1]=Prob_list[n][m] m=m+1 for i in range(len(W)): CCGW[i][0]=W[i] CCGW[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Y)): CCGY[i][0]=Y[i] CCGY[i][1]=Prob_list[n][m] m=m+1 n=n+1 m=0 for i in range(len(A)): CCAA[i][0]=A[i] CCAA[i][1]=Prob_list[n][m] m=m+1 for i in range(len(C)): CCAC[i][0]=C[i] CCAC[i][1]=Prob_list[n][m] m=m+1 for i in range(len(D)): CCAD[i][0]=D[i] CCAD[i][1]=Prob_list[n][m] m=m+1 for i in range(len(E)): CCAE[i][0]=E[i] CCAE[i][1]=Prob_list[n][m] m=m+1 for i in range(len(F)): CCAF[i][0]=F[i] CCAF[i][1]=Prob_list[n][m] m=m+1 for i in range(len(G)): CCAG[i][0]=G[i] CCAG[i][1]=Prob_list[n][m] m=m+1 for i in range(len(H)): CCAH[i][0]=H[i] CCAH[i][1]=Prob_list[n][m] m=m+1 for i in range(len(I)): CCAI[i][0]=I[i] CCAI[i][1]=Prob_list[n][m] m=m+1 for i in range(len(K)): CCAK[i][0]=K[i] CCAK[i][1]=Prob_list[n][m] m=m+1 for i in range(len(L)): CCAL[i][0]=L[i] CCAL[i][1]=Prob_list[n][m] m=m+1 for i in range(len(M)): CCAM[i][0]=M[i] CCAM[i][1]=Prob_list[n][m] m=m+1 for i in range(len(N)): CCAN[i][0]=N[i] CCAN[i][1]=Prob_list[n][m] m=m+1 for i in range(len(P)): CCAP[i][0]=P[i] CCAP[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Q)): CCAQ[i][0]=Q[i] CCAQ[i][1]=Prob_list[n][m] m=m+1 for i in range(len(R)): CCAR[i][0]=R[i] CCAR[i][1]=Prob_list[n][m] m=m+1 for i in range(len(S)): CCAS[i][0]=S[i] CCAS[i][1]=Prob_list[n][m] m=m+1 for i in range(len(T)): CCAT[i][0]=T[i] CCAT[i][1]=Prob_list[n][m] m=m+1 for i in range(len(V)): CCAV[i][0]=V[i] CCAV[i][1]=Prob_list[n][m] m=m+1 for i in range(len(W)): CCAW[i][0]=W[i] CCAW[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Y)): CCAY[i][0]=Y[i] CCAY[i][1]=Prob_list[n][m] m=m+1 n=n+1 m=0 for i in range(len(A)): CCTA[i][0]=A[i] CCTA[i][1]=Prob_list[n][m] m=m+1 for i in range(len(C)): CCTC[i][0]=C[i] CCTC[i][1]=Prob_list[n][m] m=m+1 for i in range(len(D)): CCTD[i][0]=D[i] CCTD[i][1]=Prob_list[n][m] m=m+1 for i in range(len(E)): CCTE[i][0]=E[i] CCTE[i][1]=Prob_list[n][m] m=m+1 for i in range(len(F)): CCTF[i][0]=F[i] CCTF[i][1]=Prob_list[n][m] m=m+1 for i in range(len(G)): CCTG[i][0]=G[i] CCTG[i][1]=Prob_list[n][m] m=m+1 for i in range(len(H)): CCTH[i][0]=H[i] CCTH[i][1]=Prob_list[n][m] m=m+1 for i in range(len(I)): CCTI[i][0]=I[i] CCTI[i][1]=Prob_list[n][m] m=m+1 for i in range(len(K)): CCTK[i][0]=K[i] CCTK[i][1]=Prob_list[n][m] m=m+1 for i in range(len(L)): CCTL[i][0]=L[i] CCTL[i][1]=Prob_list[n][m] m=m+1 for i in range(len(M)): CCTM[i][0]=M[i] CCTM[i][1]=Prob_list[n][m] m=m+1 for i in range(len(N)): CCTN[i][0]=N[i] CCTN[i][1]=Prob_list[n][m] m=m+1 for i in range(len(P)): CCTP[i][0]=P[i] CCTP[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Q)): CCTQ[i][0]=Q[i] CCTQ[i][1]=Prob_list[n][m] m=m+1 for i in range(len(R)): CCTR[i][0]=R[i] CCTR[i][1]=Prob_list[n][m] m=m+1 for i in range(len(S)): CCTS[i][0]=S[i] CCTS[i][1]=Prob_list[n][m] m=m+1 for i in range(len(T)): CCTT[i][0]=T[i] CCTT[i][1]=Prob_list[n][m] m=m+1 for i in range(len(V)): CCTV[i][0]=V[i] CCTV[i][1]=Prob_list[n][m] m=m+1 for i in range(len(W)): CCTW[i][0]=W[i] CCTW[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Y)): CCTY[i][0]=Y[i] CCTY[i][1]=Prob_list[n][m] m=m+1 n=n+1 m=0 for i in range(len(A)): CCCA[i][0]=A[i] CCCA[i][1]=Prob_list[n][m] m=m+1 for i in range(len(C)): CCCC[i][0]=C[i] CCCC[i][1]=Prob_list[n][m] m=m+1 for i in range(len(D)): CCCD[i][0]=D[i] CCCD[i][1]=Prob_list[n][m] m=m+1 for i in range(len(E)): CCCE[i][0]=E[i] CCCE[i][1]=Prob_list[n][m] m=m+1 for i in range(len(F)): CCCF[i][0]=F[i] CCCF[i][1]=Prob_list[n][m] m=m+1 for i in range(len(G)): CCCG[i][0]=G[i] CCCG[i][1]=Prob_list[n][m] m=m+1 for i in range(len(H)): CCCH[i][0]=H[i] CCCH[i][1]=Prob_list[n][m] m=m+1 for i in range(len(I)): CCCI[i][0]=I[i] CCCI[i][1]=Prob_list[n][m] m=m+1 for i in range(len(K)): CCCK[i][0]=K[i] CCCK[i][1]=Prob_list[n][m] m=m+1 for i in range(len(L)): CCCL[i][0]=L[i] CCCL[i][1]=Prob_list[n][m] m=m+1 for i in range(len(M)): CCCM[i][0]=M[i] CCCM[i][1]=Prob_list[n][m] m=m+1 for i in range(len(N)): CCCN[i][0]=N[i] CCCN[i][1]=Prob_list[n][m] m=m+1 for i in range(len(P)): CCCP[i][0]=P[i] CCCP[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Q)): CCCQ[i][0]=Q[i] CCCQ[i][1]=Prob_list[n][m] m=m+1 for i in range(len(R)): CCCR[i][0]=R[i] CCCR[i][1]=Prob_list[n][m] m=m+1 for i in range(len(S)): CCCS[i][0]=S[i] CCCS[i][1]=Prob_list[n][m] m=m+1 for i in range(len(T)): CCCT[i][0]=T[i] CCCT[i][1]=Prob_list[n][m] m=m+1 for i in range(len(V)): CCCV[i][0]=V[i] CCCV[i][1]=Prob_list[n][m] m=m+1 for i in range(len(W)): CCCW[i][0]=W[i] CCCW[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Y)): CCCY[i][0]=Y[i] CCCY[i][1]=Prob_list[n][m] m=m+1 n=n+1 m=0 for i in range(len(A)): CAGA[i][0]=A[i] CAGA[i][1]=Prob_list[n][m] m=m+1 for i in range(len(C)): CAGC[i][0]=C[i] CAGC[i][1]=Prob_list[n][m] m=m+1 for i in range(len(D)): CAGD[i][0]=D[i] CAGD[i][1]=Prob_list[n][m] m=m+1 for i in range(len(E)): CAGE[i][0]=E[i] CAGE[i][1]=Prob_list[n][m] m=m+1 for i in range(len(F)): CAGF[i][0]=F[i] CAGF[i][1]=Prob_list[n][m] m=m+1 for i in range(len(G)): CAGG[i][0]=G[i] CAGG[i][1]=Prob_list[n][m] m=m+1 for i in range(len(H)): CAGH[i][0]=H[i] CAGH[i][1]=Prob_list[n][m] m=m+1 for i in range(len(I)): CAGI[i][0]=I[i] CAGI[i][1]=Prob_list[n][m] m=m+1 for i in range(len(K)): CAGK[i][0]=K[i] CAGK[i][1]=Prob_list[n][m] m=m+1 for i in range(len(L)): CAGL[i][0]=L[i] CAGL[i][1]=Prob_list[n][m] m=m+1 for i in range(len(M)): CAGM[i][0]=M[i] CAGM[i][1]=Prob_list[n][m] m=m+1 for i in range(len(N)): CAGN[i][0]=N[i] CAGN[i][1]=Prob_list[n][m] m=m+1 for i in range(len(P)): CAGP[i][0]=P[i] CAGP[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Q)): CAGQ[i][0]=Q[i] CAGQ[i][1]=Prob_list[n][m] m=m+1 for i in range(len(R)): CAGR[i][0]=R[i] CAGR[i][1]=Prob_list[n][m] m=m+1 for i in range(len(S)): CAGS[i][0]=S[i] CAGS[i][1]=Prob_list[n][m] m=m+1 for i in range(len(T)): CAGT[i][0]=T[i] CAGT[i][1]=Prob_list[n][m] m=m+1 for i in range(len(V)): CAGV[i][0]=V[i] CAGV[i][1]=Prob_list[n][m] m=m+1 for i in range(len(W)): CAGW[i][0]=W[i] CAGW[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Y)): CAGY[i][0]=Y[i] CAGY[i][1]=Prob_list[n][m] m=m+1 n=n+1 m=0 for i in range(len(A)): CAAA[i][0]=A[i] CAAA[i][1]=Prob_list[n][m] m=m+1 for i in range(len(C)): CAAC[i][0]=C[i] CAAC[i][1]=Prob_list[n][m] m=m+1 for i in range(len(D)): CAAD[i][0]=D[i] CAAD[i][1]=Prob_list[n][m] m=m+1 for i in range(len(E)): CAAE[i][0]=E[i] CAAE[i][1]=Prob_list[n][m] m=m+1 for i in range(len(F)): CAAF[i][0]=F[i] CAAF[i][1]=Prob_list[n][m] m=m+1 for i in range(len(G)): CAAG[i][0]=G[i] CAAG[i][1]=Prob_list[n][m] m=m+1 for i in range(len(H)): CAAH[i][0]=H[i] CAAH[i][1]=Prob_list[n][m] m=m+1 for i in range(len(I)): CAAI[i][0]=I[i] CAAI[i][1]=Prob_list[n][m] m=m+1 for i in range(len(K)): CAAK[i][0]=K[i] CAAK[i][1]=Prob_list[n][m] m=m+1 for i in range(len(L)): CAAL[i][0]=L[i] CAAL[i][1]=Prob_list[n][m] m=m+1 for i in range(len(M)): CAAM[i][0]=M[i] CAAM[i][1]=Prob_list[n][m] m=m+1 for i in range(len(N)): CAAN[i][0]=N[i] CAAN[i][1]=Prob_list[n][m] m=m+1 for i in range(len(P)): CAAP[i][0]=P[i] CAAP[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Q)): CAAQ[i][0]=Q[i] CAAQ[i][1]=Prob_list[n][m] m=m+1 for i in range(len(R)): CAAR[i][0]=R[i] CAAR[i][1]=Prob_list[n][m] m=m+1 for i in range(len(S)): CAAS[i][0]=S[i] CAAS[i][1]=Prob_list[n][m] m=m+1 for i in range(len(T)): CAAT[i][0]=T[i] CAAT[i][1]=Prob_list[n][m] m=m+1 for i in range(len(V)): CAAV[i][0]=V[i] CAAV[i][1]=Prob_list[n][m] m=m+1 for i in range(len(W)): CAAW[i][0]=W[i] CAAW[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Y)): CAAY[i][0]=Y[i] CAAY[i][1]=Prob_list[n][m] m=m+1 n=n+1 m=0 for i in range(len(A)): AGGA[i][0]=A[i] AGGA[i][1]=Prob_list[n][m] m=m+1 for i in range(len(C)): AGGC[i][0]=C[i] AGGC[i][1]=Prob_list[n][m] m=m+1 for i in range(len(D)): AGGD[i][0]=D[i] AGGD[i][1]=Prob_list[n][m] m=m+1 for i in range(len(E)): AGGE[i][0]=E[i] AGGE[i][1]=Prob_list[n][m] m=m+1 for i in range(len(F)): AGGF[i][0]=F[i] AGGF[i][1]=Prob_list[n][m] m=m+1 for i in range(len(G)): AGGG[i][0]=G[i] AGGG[i][1]=Prob_list[n][m] m=m+1 for i in range(len(H)): AGGH[i][0]=H[i] AGGH[i][1]=Prob_list[n][m] m=m+1 for i in range(len(I)): AGGI[i][0]=I[i] AGGI[i][1]=Prob_list[n][m] m=m+1 for i in range(len(K)): AGGK[i][0]=K[i] AGGK[i][1]=Prob_list[n][m] m=m+1 for i in range(len(L)): AGGL[i][0]=L[i] AGGL[i][1]=Prob_list[n][m] m=m+1 for i in range(len(M)): AGGM[i][0]=M[i] AGGM[i][1]=Prob_list[n][m] m=m+1 for i in range(len(N)): AGGN[i][0]=N[i] AGGN[i][1]=Prob_list[n][m] m=m+1 for i in range(len(P)): AGGP[i][0]=P[i] AGGP[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Q)): AGGQ[i][0]=Q[i] AGGQ[i][1]=Prob_list[n][m] m=m+1 for i in range(len(R)): AGGR[i][0]=R[i] AGGR[i][1]=Prob_list[n][m] m=m+1 for i in range(len(S)): AGGS[i][0]=S[i] AGGS[i][1]=Prob_list[n][m] m=m+1 for i in range(len(T)): AGGT[i][0]=T[i] AGGT[i][1]=Prob_list[n][m] m=m+1 for i in range(len(V)): AGGV[i][0]=V[i] AGGV[i][1]=Prob_list[n][m] m=m+1 for i in range(len(W)): AGGW[i][0]=W[i] AGGW[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Y)): AGGY[i][0]=Y[i] AGGY[i][1]=Prob_list[n][m] m=m+1 n=n+1 m=0 for i in range(len(A)): AGAA[i][0]=A[i] AGAA[i][1]=Prob_list[n][m] m=m+1 for i in range(len(C)): AGAC[i][0]=C[i] AGAC[i][1]=Prob_list[n][m] m=m+1 for i in range(len(D)): AGAD[i][0]=D[i] AGAD[i][1]=Prob_list[n][m] m=m+1 for i in range(len(E)): AGAE[i][0]=E[i] AGAE[i][1]=Prob_list[n][m] m=m+1 for i in range(len(F)): AGAF[i][0]=F[i] AGAF[i][1]=Prob_list[n][m] m=m+1 for i in range(len(G)): AGAG[i][0]=G[i] AGAG[i][1]=Prob_list[n][m] m=m+1 for i in range(len(H)): AGAH[i][0]=H[i] AGAH[i][1]=Prob_list[n][m] m=m+1 for i in range(len(I)): AGAI[i][0]=I[i] AGAI[i][1]=Prob_list[n][m] m=m+1 for i in range(len(K)): AGAK[i][0]=K[i] AGAK[i][1]=Prob_list[n][m] m=m+1 for i in range(len(L)): AGAL[i][0]=L[i] AGAL[i][1]=Prob_list[n][m] m=m+1 for i in range(len(M)): AGAM[i][0]=M[i] AGAM[i][1]=Prob_list[n][m] m=m+1 for i in range(len(N)): AGAN[i][0]=N[i] AGAN[i][1]=Prob_list[n][m] m=m+1 for i in range(len(P)): AGAP[i][0]=P[i] AGAP[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Q)): AGAQ[i][0]=Q[i] AGAQ[i][1]=Prob_list[n][m] m=m+1 for i in range(len(R)): AGAR[i][0]=R[i] AGAR[i][1]=Prob_list[n][m] m=m+1 for i in range(len(S)): AGAS[i][0]=S[i] AGAS[i][1]=Prob_list[n][m] m=m+1 for i in range(len(T)): AGAT[i][0]=T[i] AGAT[i][1]=Prob_list[n][m] m=m+1 for i in range(len(V)): AGAV[i][0]=V[i] AGAV[i][1]=Prob_list[n][m] m=m+1 for i in range(len(W)): AGAW[i][0]=W[i] AGAW[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Y)): AGAY[i][0]=Y[i] AGAY[i][1]=Prob_list[n][m] m=m+1 n=n+1 m=0 for i in range(len(A)): CGGA[i][0]=A[i] CGGA[i][1]=Prob_list[n][m] m=m+1 for i in range(len(C)): CGGC[i][0]=C[i] CGGC[i][1]=Prob_list[n][m] m=m+1 for i in range(len(D)): CGGD[i][0]=D[i] CGGD[i][1]=Prob_list[n][m] m=m+1 for i in range(len(E)): CGGE[i][0]=E[i] CGGE[i][1]=Prob_list[n][m] m=m+1 for i in range(len(F)): CGGF[i][0]=F[i] CGGF[i][1]=Prob_list[n][m] m=m+1 for i in range(len(G)): CGGG[i][0]=G[i] CGGG[i][1]=Prob_list[n][m] m=m+1 for i in range(len(H)): CGGH[i][0]=H[i] CGGH[i][1]=Prob_list[n][m] m=m+1 for i in range(len(I)): CGGI[i][0]=I[i] CGGI[i][1]=Prob_list[n][m] m=m+1 for i in range(len(K)): CGGK[i][0]=K[i] CGGK[i][1]=Prob_list[n][m] m=m+1 for i in range(len(L)): CGGL[i][0]=L[i] CGGL[i][1]=Prob_list[n][m] m=m+1 for i in range(len(M)): CGGM[i][0]=M[i] CGGM[i][1]=Prob_list[n][m] m=m+1 for i in range(len(N)): CGGN[i][0]=N[i] CGGN[i][1]=Prob_list[n][m] m=m+1 for i in range(len(P)): CGGP[i][0]=P[i] CGGP[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Q)): CGGQ[i][0]=Q[i] CGGQ[i][1]=Prob_list[n][m] m=m+1 for i in range(len(R)): CGGR[i][0]=R[i] CGGR[i][1]=Prob_list[n][m] m=m+1 for i in range(len(S)): CGGS[i][0]=S[i] CGGS[i][1]=Prob_list[n][m] m=m+1 for i in range(len(T)): CGGT[i][0]=T[i] CGGT[i][1]=Prob_list[n][m] m=m+1 for i in range(len(V)): CGGV[i][0]=V[i] CGGV[i][1]=Prob_list[n][m] m=m+1 for i in range(len(W)): CGGW[i][0]=W[i] CGGW[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Y)): CGGY[i][0]=Y[i] CGGY[i][1]=Prob_list[n][m] m=m+1 n=n+1 m=0 for i in range(len(A)): CGAA[i][0]=A[i] CGAA[i][1]=Prob_list[n][m] m=m+1 for i in range(len(C)): CGAC[i][0]=C[i] CGAC[i][1]=Prob_list[n][m] m=m+1 for i in range(len(D)): CGAD[i][0]=D[i] CGAD[i][1]=Prob_list[n][m] m=m+1 for i in range(len(E)): CGAE[i][0]=E[i] CGAE[i][1]=Prob_list[n][m] m=m+1 for i in range(len(F)): CGAF[i][0]=F[i] CGAF[i][1]=Prob_list[n][m] m=m+1 for i in range(len(G)): CGAG[i][0]=G[i] CGAG[i][1]=Prob_list[n][m] m=m+1 for i in range(len(H)): CGAH[i][0]=H[i] CGAH[i][1]=Prob_list[n][m] m=m+1 for i in range(len(I)): CGAI[i][0]=I[i] CGAI[i][1]=Prob_list[n][m] m=m+1 for i in range(len(K)): CGAK[i][0]=K[i] CGAK[i][1]=Prob_list[n][m] m=m+1 for i in range(len(L)): CGAL[i][0]=L[i] CGAL[i][1]=Prob_list[n][m] m=m+1 for i in range(len(M)): CGAM[i][0]=M[i] CGAM[i][1]=Prob_list[n][m] m=m+1 for i in range(len(N)): CGAN[i][0]=N[i] CGAN[i][1]=Prob_list[n][m] m=m+1 for i in range(len(P)): CGAP[i][0]=P[i] CGAP[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Q)): CGAQ[i][0]=Q[i] CGAQ[i][1]=Prob_list[n][m] m=m+1 for i in range(len(R)): CGAR[i][0]=R[i] CGAR[i][1]=Prob_list[n][m] m=m+1 for i in range(len(S)): CGAS[i][0]=S[i] CGAS[i][1]=Prob_list[n][m] m=m+1 for i in range(len(T)): CGAT[i][0]=T[i] CGAT[i][1]=Prob_list[n][m] m=m+1 for i in range(len(V)): CGAV[i][0]=V[i] CGAV[i][1]=Prob_list[n][m] m=m+1 for i in range(len(W)): CGAW[i][0]=W[i] CGAW[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Y)): CGAY[i][0]=Y[i] CGAY[i][1]=Prob_list[n][m] m=m+1 n=n+1 m=0 for i in range(len(A)): CGTA[i][0]=A[i] CGTA[i][1]=Prob_list[n][m] m=m+1 for i in range(len(C)): CGTC[i][0]=C[i] CGTC[i][1]=Prob_list[n][m] m=m+1 for i in range(len(D)): CGTD[i][0]=D[i] CGTD[i][1]=Prob_list[n][m] m=m+1 for i in range(len(E)): CGTE[i][0]=E[i] CGTE[i][1]=Prob_list[n][m] m=m+1 for i in range(len(F)): CGTF[i][0]=F[i] CGTF[i][1]=Prob_list[n][m] m=m+1 for i in range(len(G)): CGTG[i][0]=G[i] CGTG[i][1]=Prob_list[n][m] m=m+1 for i in range(len(H)): CGTH[i][0]=H[i] CGTH[i][1]=Prob_list[n][m] m=m+1 for i in range(len(I)): CGTI[i][0]=I[i] CGTI[i][1]=Prob_list[n][m] m=m+1 for i in range(len(K)): CGTK[i][0]=K[i] CGTK[i][1]=Prob_list[n][m] m=m+1 for i in range(len(L)): CGTL[i][0]=L[i] CGTL[i][1]=Prob_list[n][m] m=m+1 for i in range(len(M)): CGTM[i][0]=M[i] CGTM[i][1]=Prob_list[n][m] m=m+1 for i in range(len(N)): CGTN[i][0]=N[i] CGTN[i][1]=Prob_list[n][m] m=m+1 for i in range(len(P)): CGTP[i][0]=P[i] CGTP[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Q)): CGTQ[i][0]=Q[i] CGTQ[i][1]=Prob_list[n][m] m=m+1 for i in range(len(R)): CGTR[i][0]=R[i] CGTR[i][1]=Prob_list[n][m] m=m+1 for i in range(len(S)): CGTS[i][0]=S[i] CGTS[i][1]=Prob_list[n][m] m=m+1 for i in range(len(T)): CGTT[i][0]=T[i] CGTT[i][1]=Prob_list[n][m] m=m+1 for i in range(len(V)): CGTV[i][0]=V[i] CGTV[i][1]=Prob_list[n][m] m=m+1 for i in range(len(W)): CGTW[i][0]=W[i] CGTW[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Y)): CGTY[i][0]=Y[i] CGTY[i][1]=Prob_list[n][m] m=m+1 n=n+1 m=0 for i in range(len(A)): CGCA[i][0]=A[i] CGCA[i][1]=Prob_list[n][m] m=m+1 for i in range(len(C)): CGCC[i][0]=C[i] CGCC[i][1]=Prob_list[n][m] m=m+1 for i in range(len(D)): CGCD[i][0]=D[i] CGCD[i][1]=Prob_list[n][m] m=m+1 for i in range(len(E)): CGCE[i][0]=E[i] CGCE[i][1]=Prob_list[n][m] m=m+1 for i in range(len(F)): CGCF[i][0]=F[i] CGCF[i][1]=Prob_list[n][m] m=m+1 for i in range(len(G)): CGCG[i][0]=G[i] CGCG[i][1]=Prob_list[n][m] m=m+1 for i in range(len(H)): CGCH[i][0]=H[i] CGCH[i][1]=Prob_list[n][m] m=m+1 for i in range(len(I)): CGCI[i][0]=I[i] CGCI[i][1]=Prob_list[n][m] m=m+1 for i in range(len(K)): CGCK[i][0]=K[i] CGCK[i][1]=Prob_list[n][m] m=m+1 for i in range(len(L)): CGCL[i][0]=L[i] CGCL[i][1]=Prob_list[n][m] m=m+1 for i in range(len(M)): CGCM[i][0]=M[i] CGCM[i][1]=Prob_list[n][m] m=m+1 for i in range(len(N)): CGCN[i][0]=N[i] CGCN[i][1]=Prob_list[n][m] m=m+1 for i in range(len(P)): CGCP[i][0]=P[i] CGCP[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Q)): CGCQ[i][0]=Q[i] CGCQ[i][1]=Prob_list[n][m] m=m+1 for i in range(len(R)): CGCR[i][0]=R[i] CGCR[i][1]=Prob_list[n][m] m=m+1 for i in range(len(S)): CGCS[i][0]=S[i] CGCS[i][1]=Prob_list[n][m] m=m+1 for i in range(len(T)): CGCT[i][0]=T[i] CGCT[i][1]=Prob_list[n][m] m=m+1 for i in range(len(V)): CGCV[i][0]=V[i] CGCV[i][1]=Prob_list[n][m] m=m+1 for i in range(len(W)): CGCW[i][0]=W[i] CGCW[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Y)): CGCY[i][0]=Y[i] CGCY[i][1]=Prob_list[n][m] m=m+1 n=n+1 m=0 for i in range(len(A)): AGTA[i][0]=A[i] AGTA[i][1]=Prob_list[n][m] m=m+1 for i in range(len(C)): AGTC[i][0]=C[i] AGTC[i][1]=Prob_list[n][m] m=m+1 for i in range(len(D)): AGTD[i][0]=D[i] AGTD[i][1]=Prob_list[n][m] m=m+1 for i in range(len(E)): AGTE[i][0]=E[i] AGTE[i][1]=Prob_list[n][m] m=m+1 for i in range(len(F)): AGTF[i][0]=F[i] AGTF[i][1]=Prob_list[n][m] m=m+1 for i in range(len(G)): AGTG[i][0]=G[i] AGTG[i][1]=Prob_list[n][m] m=m+1 for i in range(len(H)): AGTH[i][0]=H[i] AGTH[i][1]=Prob_list[n][m] m=m+1 for i in range(len(I)): AGTI[i][0]=I[i] AGTI[i][1]=Prob_list[n][m] m=m+1 for i in range(len(K)): AGTK[i][0]=K[i] AGTK[i][1]=Prob_list[n][m] m=m+1 for i in range(len(L)): AGTL[i][0]=L[i] AGTL[i][1]=Prob_list[n][m] m=m+1 for i in range(len(M)): AGTM[i][0]=M[i] AGTM[i][1]=Prob_list[n][m] m=m+1 for i in range(len(N)): AGTN[i][0]=N[i] AGTN[i][1]=Prob_list[n][m] m=m+1 for i in range(len(P)): AGTP[i][0]=P[i] AGTP[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Q)): AGTQ[i][0]=Q[i] AGTQ[i][1]=Prob_list[n][m] m=m+1 for i in range(len(R)): AGTR[i][0]=R[i] AGTR[i][1]=Prob_list[n][m] m=m+1 for i in range(len(S)): AGTS[i][0]=S[i] AGTS[i][1]=Prob_list[n][m] m=m+1 for i in range(len(T)): AGTT[i][0]=T[i] AGTT[i][1]=Prob_list[n][m] m=m+1 for i in range(len(V)): AGTV[i][0]=V[i] AGTV[i][1]=Prob_list[n][m] m=m+1 for i in range(len(W)): AGTW[i][0]=W[i] AGTW[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Y)): AGTY[i][0]=Y[i] AGTY[i][1]=Prob_list[n][m] m=m+1 n=n+1 m=0 for i in range(len(A)): AGCA[i][0]=A[i] AGCA[i][1]=Prob_list[n][m] m=m+1 for i in range(len(C)): AGCC[i][0]=C[i] AGCC[i][1]=Prob_list[n][m] m=m+1 for i in range(len(D)): AGCD[i][0]=D[i] AGCD[i][1]=Prob_list[n][m] m=m+1 for i in range(len(E)): AGCE[i][0]=E[i] AGCE[i][1]=Prob_list[n][m] m=m+1 for i in range(len(F)): AGCF[i][0]=F[i] AGCF[i][1]=Prob_list[n][m] m=m+1 for i in range(len(G)): AGCG[i][0]=G[i] AGCG[i][1]=Prob_list[n][m] m=m+1 for i in range(len(H)): AGCH[i][0]=H[i] AGCH[i][1]=Prob_list[n][m] m=m+1 for i in range(len(I)): AGCI[i][0]=I[i] AGCI[i][1]=Prob_list[n][m] m=m+1 for i in range(len(K)): AGCK[i][0]=K[i] AGCK[i][1]=Prob_list[n][m] m=m+1 for i in range(len(L)): AGCL[i][0]=L[i] AGCL[i][1]=Prob_list[n][m] m=m+1 for i in range(len(M)): AGCM[i][0]=M[i] AGCM[i][1]=Prob_list[n][m] m=m+1 for i in range(len(N)): AGCN[i][0]=N[i] AGCN[i][1]=Prob_list[n][m] m=m+1 for i in range(len(P)): AGCP[i][0]=P[i] AGCP[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Q)): AGCQ[i][0]=Q[i] AGCQ[i][1]=Prob_list[n][m] m=m+1 for i in range(len(R)): AGCR[i][0]=R[i] AGCR[i][1]=Prob_list[n][m] m=m+1 for i in range(len(S)): AGCS[i][0]=S[i] AGCS[i][1]=Prob_list[n][m] m=m+1 for i in range(len(T)): AGCT[i][0]=T[i] AGCT[i][1]=Prob_list[n][m] m=m+1 for i in range(len(V)): AGCV[i][0]=V[i] AGCV[i][1]=Prob_list[n][m] m=m+1 for i in range(len(W)): AGCW[i][0]=W[i] AGCW[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Y)): AGCY[i][0]=Y[i] AGCY[i][1]=Prob_list[n][m] m=m+1 n=n+1 m=0 for i in range(len(A)): TCGA[i][0]=A[i] TCGA[i][1]=Prob_list[n][m] m=m+1 for i in range(len(C)): TCGC[i][0]=C[i] TCGC[i][1]=Prob_list[n][m] m=m+1 for i in range(len(D)): TCGD[i][0]=D[i] TCGD[i][1]=Prob_list[n][m] m=m+1 for i in range(len(E)): TCGE[i][0]=E[i] TCGE[i][1]=Prob_list[n][m] m=m+1 for i in range(len(F)): TCGF[i][0]=F[i] TCGF[i][1]=Prob_list[n][m] m=m+1 for i in range(len(G)): TCGG[i][0]=G[i] TCGG[i][1]=Prob_list[n][m] m=m+1 for i in range(len(H)): TCGH[i][0]=H[i] TCGH[i][1]=Prob_list[n][m] m=m+1 for i in range(len(I)): TCGI[i][0]=I[i] TCGI[i][1]=Prob_list[n][m] m=m+1 for i in range(len(K)): TCGK[i][0]=K[i] TCGK[i][1]=Prob_list[n][m] m=m+1 for i in range(len(L)): TCGL[i][0]=L[i] TCGL[i][1]=Prob_list[n][m] m=m+1 for i in range(len(M)): TCGM[i][0]=M[i] TCGM[i][1]=Prob_list[n][m] m=m+1 for i in range(len(N)): TCGN[i][0]=N[i] TCGN[i][1]=Prob_list[n][m] m=m+1 for i in range(len(P)): TCGP[i][0]=P[i] TCGP[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Q)): TCGQ[i][0]=Q[i] TCGQ[i][1]=Prob_list[n][m] m=m+1 for i in range(len(R)): TCGR[i][0]=R[i] TCGR[i][1]=Prob_list[n][m] m=m+1 for i in range(len(S)): TCGS[i][0]=S[i] TCGS[i][1]=Prob_list[n][m] m=m+1 for i in range(len(T)): TCGT[i][0]=T[i] TCGT[i][1]=Prob_list[n][m] m=m+1 for i in range(len(V)): TCGV[i][0]=V[i] TCGV[i][1]=Prob_list[n][m] m=m+1 for i in range(len(W)): TCGW[i][0]=W[i] TCGW[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Y)): TCGY[i][0]=Y[i] TCGY[i][1]=Prob_list[n][m] m=m+1 n=n+1 m=0 for i in range(len(A)): TCAA[i][0]=A[i] TCAA[i][1]=Prob_list[n][m] m=m+1 for i in range(len(C)): TCAC[i][0]=C[i] TCAC[i][1]=Prob_list[n][m] m=m+1 for i in range(len(D)): TCAD[i][0]=D[i] TCAD[i][1]=Prob_list[n][m] m=m+1 for i in range(len(E)): TCAE[i][0]=E[i] TCAE[i][1]=Prob_list[n][m] m=m+1 for i in range(len(F)): TCAF[i][0]=F[i] TCAF[i][1]=Prob_list[n][m] m=m+1 for i in range(len(G)): TCAG[i][0]=G[i] TCAG[i][1]=Prob_list[n][m] m=m+1 for i in range(len(H)): TCAH[i][0]=H[i] TCAH[i][1]=Prob_list[n][m] m=m+1 for i in range(len(I)): TCAI[i][0]=I[i] TCAI[i][1]=Prob_list[n][m] m=m+1 for i in range(len(K)): TCAK[i][0]=K[i] TCAK[i][1]=Prob_list[n][m] m=m+1 for i in range(len(L)): TCAL[i][0]=L[i] TCAL[i][1]=Prob_list[n][m] m=m+1 for i in range(len(M)): TCAM[i][0]=M[i] TCAM[i][1]=Prob_list[n][m] m=m+1 for i in range(len(N)): TCAN[i][0]=N[i] TCAN[i][1]=Prob_list[n][m] m=m+1 for i in range(len(P)): TCAP[i][0]=P[i] TCAP[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Q)): TCAQ[i][0]=Q[i] TCAQ[i][1]=Prob_list[n][m] m=m+1 for i in range(len(R)): TCAR[i][0]=R[i] TCAR[i][1]=Prob_list[n][m] m=m+1 for i in range(len(S)): TCAS[i][0]=S[i] TCAS[i][1]=Prob_list[n][m] m=m+1 for i in range(len(T)): TCAT[i][0]=T[i] TCAT[i][1]=Prob_list[n][m] m=m+1 for i in range(len(V)): TCAV[i][0]=V[i] TCAV[i][1]=Prob_list[n][m] m=m+1 for i in range(len(W)): TCAW[i][0]=W[i] TCAW[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Y)): TCAY[i][0]=Y[i] TCAY[i][1]=Prob_list[n][m] m=m+1 n=n+1 m=0 for i in range(len(A)): TCTA[i][0]=A[i] TCTA[i][1]=Prob_list[n][m] m=m+1 for i in range(len(C)): TCTC[i][0]=C[i] TCTC[i][1]=Prob_list[n][m] m=m+1 for i in range(len(D)): TCTD[i][0]=D[i] TCTD[i][1]=Prob_list[n][m] m=m+1 for i in range(len(E)): TCTE[i][0]=E[i] TCTE[i][1]=Prob_list[n][m] m=m+1 for i in range(len(F)): TCTF[i][0]=F[i] TCTF[i][1]=Prob_list[n][m] m=m+1 for i in range(len(G)): TCTG[i][0]=G[i] TCTG[i][1]=Prob_list[n][m] m=m+1 for i in range(len(H)): TCTH[i][0]=H[i] TCTH[i][1]=Prob_list[n][m] m=m+1 for i in range(len(I)): TCTI[i][0]=I[i] TCTI[i][1]=Prob_list[n][m] m=m+1 for i in range(len(K)): TCTK[i][0]=K[i] TCTK[i][1]=Prob_list[n][m] m=m+1 for i in range(len(L)): TCTL[i][0]=L[i] TCTL[i][1]=Prob_list[n][m] m=m+1 for i in range(len(M)): TCTM[i][0]=M[i] TCTM[i][1]=Prob_list[n][m] m=m+1 for i in range(len(N)): TCTN[i][0]=N[i] TCTN[i][1]=Prob_list[n][m] m=m+1 for i in range(len(P)): TCTP[i][0]=P[i] TCTP[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Q)): TCTQ[i][0]=Q[i] TCTQ[i][1]=Prob_list[n][m] m=m+1 for i in range(len(R)): TCTR[i][0]=R[i] TCTR[i][1]=Prob_list[n][m] m=m+1 for i in range(len(S)): TCTS[i][0]=S[i] TCTS[i][1]=Prob_list[n][m] m=m+1 for i in range(len(T)): TCTT[i][0]=T[i] TCTT[i][1]=Prob_list[n][m] m=m+1 for i in range(len(V)): TCTV[i][0]=V[i] TCTV[i][1]=Prob_list[n][m] m=m+1 for i in range(len(W)): TCTW[i][0]=W[i] TCTW[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Y)): TCTY[i][0]=Y[i] TCTY[i][1]=Prob_list[n][m] m=m+1 n=n+1 m=0 for i in range(len(A)): TCCA[i][0]=A[i] TCCA[i][1]=Prob_list[n][m] m=m+1 for i in range(len(C)): TCCC[i][0]=C[i] TCCC[i][1]=Prob_list[n][m] m=m+1 for i in range(len(D)): TCCD[i][0]=D[i] TCCD[i][1]=Prob_list[n][m] m=m+1 for i in range(len(E)): TCCE[i][0]=E[i] TCCE[i][1]=Prob_list[n][m] m=m+1 for i in range(len(F)): TCCF[i][0]=F[i] TCCF[i][1]=Prob_list[n][m] m=m+1 for i in range(len(G)): TCCG[i][0]=G[i] TCCG[i][1]=Prob_list[n][m] m=m+1 for i in range(len(H)): TCCH[i][0]=H[i] TCCH[i][1]=Prob_list[n][m] m=m+1 for i in range(len(I)): TCCI[i][0]=I[i] TCCI[i][1]=Prob_list[n][m] m=m+1 for i in range(len(K)): TCCK[i][0]=K[i] TCCK[i][1]=Prob_list[n][m] m=m+1 for i in range(len(L)): TCCL[i][0]=L[i] TCCL[i][1]=Prob_list[n][m] m=m+1 for i in range(len(M)): TCCM[i][0]=M[i] TCCM[i][1]=Prob_list[n][m] m=m+1 for i in range(len(N)): TCCN[i][0]=N[i] TCCN[i][1]=Prob_list[n][m] m=m+1 for i in range(len(P)): TCCP[i][0]=P[i] TCCP[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Q)): TCCQ[i][0]=Q[i] TCCQ[i][1]=Prob_list[n][m] m=m+1 for i in range(len(R)): TCCR[i][0]=R[i] TCCR[i][1]=Prob_list[n][m] m=m+1 for i in range(len(S)): TCCS[i][0]=S[i] TCCS[i][1]=Prob_list[n][m] m=m+1 for i in range(len(T)): TCCT[i][0]=T[i] TCCT[i][1]=Prob_list[n][m] m=m+1 for i in range(len(V)): TCCV[i][0]=V[i] TCCV[i][1]=Prob_list[n][m] m=m+1 for i in range(len(W)): TCCW[i][0]=W[i] TCCW[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Y)): TCCY[i][0]=Y[i] TCCY[i][1]=Prob_list[n][m] m=m+1 n=n+1 m=0 for i in range(len(A)): ACGA[i][0]=A[i] ACGA[i][1]=Prob_list[n][m] m=m+1 for i in range(len(C)): ACGC[i][0]=C[i] ACGC[i][1]=Prob_list[n][m] m=m+1 for i in range(len(D)): ACGD[i][0]=D[i] ACGD[i][1]=Prob_list[n][m] m=m+1 for i in range(len(E)): ACGE[i][0]=E[i] ACGE[i][1]=Prob_list[n][m] m=m+1 for i in range(len(F)): ACGF[i][0]=F[i] ACGF[i][1]=Prob_list[n][m] m=m+1 for i in range(len(G)): ACGG[i][0]=G[i] ACGG[i][1]=Prob_list[n][m] m=m+1 for i in range(len(H)): ACGH[i][0]=H[i] ACGH[i][1]=Prob_list[n][m] m=m+1 for i in range(len(I)): ACGI[i][0]=I[i] ACGI[i][1]=Prob_list[n][m] m=m+1 for i in range(len(K)): ACGK[i][0]=K[i] ACGK[i][1]=Prob_list[n][m] m=m+1 for i in range(len(L)): ACGL[i][0]=L[i] ACGL[i][1]=Prob_list[n][m] m=m+1 for i in range(len(M)): ACGM[i][0]=M[i] ACGM[i][1]=Prob_list[n][m] m=m+1 for i in range(len(N)): ACGN[i][0]=N[i] ACGN[i][1]=Prob_list[n][m] m=m+1 for i in range(len(P)): ACGP[i][0]=P[i] ACGP[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Q)): ACGQ[i][0]=Q[i] ACGQ[i][1]=Prob_list[n][m] m=m+1 for i in range(len(R)): ACGR[i][0]=R[i] ACGR[i][1]=Prob_list[n][m] m=m+1 for i in range(len(S)): ACGS[i][0]=S[i] ACGS[i][1]=Prob_list[n][m] m=m+1 for i in range(len(T)): ACGT[i][0]=T[i] ACGT[i][1]=Prob_list[n][m] m=m+1 for i in range(len(V)): ACGV[i][0]=V[i] ACGV[i][1]=Prob_list[n][m] m=m+1 for i in range(len(W)): ACGW[i][0]=W[i] ACGW[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Y)): ACGY[i][0]=Y[i] ACGY[i][1]=Prob_list[n][m] m=m+1 n=n+1 m=0 for i in range(len(A)): ACAA[i][0]=A[i] ACAA[i][1]=Prob_list[n][m] m=m+1 for i in range(len(C)): ACAC[i][0]=C[i] ACAC[i][1]=Prob_list[n][m] m=m+1 for i in range(len(D)): ACAD[i][0]=D[i] ACAD[i][1]=Prob_list[n][m] m=m+1 for i in range(len(E)): ACAE[i][0]=E[i] ACAE[i][1]=Prob_list[n][m] m=m+1 for i in range(len(F)): ACAF[i][0]=F[i] ACAF[i][1]=Prob_list[n][m] m=m+1 for i in range(len(G)): ACAG[i][0]=G[i] ACAG[i][1]=Prob_list[n][m] m=m+1 for i in range(len(H)): ACAH[i][0]=H[i] ACAH[i][1]=Prob_list[n][m] m=m+1 for i in range(len(I)): ACAI[i][0]=I[i] ACAI[i][1]=Prob_list[n][m] m=m+1 for i in range(len(K)): ACAK[i][0]=K[i] ACAK[i][1]=Prob_list[n][m] m=m+1 for i in range(len(L)): ACAL[i][0]=L[i] ACAL[i][1]=Prob_list[n][m] m=m+1 for i in range(len(M)): ACAM[i][0]=M[i] ACAM[i][1]=Prob_list[n][m] m=m+1 for i in range(len(N)): ACAN[i][0]=N[i] ACAN[i][1]=Prob_list[n][m] m=m+1 for i in range(len(P)): ACAP[i][0]=P[i] ACAP[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Q)): ACAQ[i][0]=Q[i] ACAQ[i][1]=Prob_list[n][m] m=m+1 for i in range(len(R)): ACAR[i][0]=R[i] ACAR[i][1]=Prob_list[n][m] m=m+1 for i in range(len(S)): ACAS[i][0]=S[i] ACAS[i][1]=Prob_list[n][m] m=m+1 for i in range(len(T)): ACAT[i][0]=T[i] ACAT[i][1]=Prob_list[n][m] m=m+1 for i in range(len(V)): ACAV[i][0]=V[i] ACAV[i][1]=Prob_list[n][m] m=m+1 for i in range(len(W)): ACAW[i][0]=W[i] ACAW[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Y)): ACAY[i][0]=Y[i] ACAY[i][1]=Prob_list[n][m] m=m+1 n=n+1 m=0 for i in range(len(A)): ACTA[i][0]=A[i] ACTA[i][1]=Prob_list[n][m] m=m+1 for i in range(len(C)): ACTC[i][0]=C[i] ACTC[i][1]=Prob_list[n][m] m=m+1 for i in range(len(D)): ACTD[i][0]=D[i] ACTD[i][1]=Prob_list[n][m] m=m+1 for i in range(len(E)): ACTE[i][0]=E[i] ACTE[i][1]=Prob_list[n][m] m=m+1 for i in range(len(F)): ACTF[i][0]=F[i] ACTF[i][1]=Prob_list[n][m] m=m+1 for i in range(len(G)): ACTG[i][0]=G[i] ACTG[i][1]=Prob_list[n][m] m=m+1 for i in range(len(H)): ACTH[i][0]=H[i] ACTH[i][1]=Prob_list[n][m] m=m+1 for i in range(len(I)): ACTI[i][0]=I[i] ACTI[i][1]=Prob_list[n][m] m=m+1 for i in range(len(K)): ACTK[i][0]=K[i] ACTK[i][1]=Prob_list[n][m] m=m+1 for i in range(len(L)): ACTL[i][0]=L[i] ACTL[i][1]=Prob_list[n][m] m=m+1 for i in range(len(M)): ACTM[i][0]=M[i] ACTM[i][1]=Prob_list[n][m] m=m+1 for i in range(len(N)): ACTN[i][0]=N[i] ACTN[i][1]=Prob_list[n][m] m=m+1 for i in range(len(P)): ACTP[i][0]=P[i] ACTP[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Q)): ACTQ[i][0]=Q[i] ACTQ[i][1]=Prob_list[n][m] m=m+1 for i in range(len(R)): ACTR[i][0]=R[i] ACTR[i][1]=Prob_list[n][m] m=m+1 for i in range(len(S)): ACTS[i][0]=S[i] ACTS[i][1]=Prob_list[n][m] m=m+1 for i in range(len(T)): ACTT[i][0]=T[i] ACTT[i][1]=Prob_list[n][m] m=m+1 for i in range(len(V)): ACTV[i][0]=V[i] ACTV[i][1]=Prob_list[n][m] m=m+1 for i in range(len(W)): ACTW[i][0]=W[i] ACTW[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Y)): ACTY[i][0]=Y[i] ACTY[i][1]=Prob_list[n][m] m=m+1 n=n+1 m=0 for i in range(len(A)): ACCA[i][0]=A[i] ACCA[i][1]=Prob_list[n][m] m=m+1 for i in range(len(C)): ACCC[i][0]=C[i] ACCC[i][1]=Prob_list[n][m] m=m+1 for i in range(len(D)): ACCD[i][0]=D[i] ACCD[i][1]=Prob_list[n][m] m=m+1 for i in range(len(E)): ACCE[i][0]=E[i] ACCE[i][1]=Prob_list[n][m] m=m+1 for i in range(len(F)): ACCF[i][0]=F[i] ACCF[i][1]=Prob_list[n][m] m=m+1 for i in range(len(G)): ACCG[i][0]=G[i] ACCG[i][1]=Prob_list[n][m] m=m+1 for i in range(len(H)): ACCH[i][0]=H[i] ACCH[i][1]=Prob_list[n][m] m=m+1 for i in range(len(I)): ACCI[i][0]=I[i] ACCI[i][1]=Prob_list[n][m] m=m+1 for i in range(len(K)): ACCK[i][0]=K[i] ACCK[i][1]=Prob_list[n][m] m=m+1 for i in range(len(L)): ACCL[i][0]=L[i] ACCL[i][1]=Prob_list[n][m] m=m+1 for i in range(len(M)): ACCM[i][0]=M[i] ACCM[i][1]=Prob_list[n][m] m=m+1 for i in range(len(N)): ACCN[i][0]=N[i] ACCN[i][1]=Prob_list[n][m] m=m+1 for i in range(len(P)): ACCP[i][0]=P[i] ACCP[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Q)): ACCQ[i][0]=Q[i] ACCQ[i][1]=Prob_list[n][m] m=m+1 for i in range(len(R)): ACCR[i][0]=R[i] ACCR[i][1]=Prob_list[n][m] m=m+1 for i in range(len(S)): ACCS[i][0]=S[i] ACCS[i][1]=Prob_list[n][m] m=m+1 for i in range(len(T)): ACCT[i][0]=T[i] ACCT[i][1]=Prob_list[n][m] m=m+1 for i in range(len(V)): ACCV[i][0]=V[i] ACCV[i][1]=Prob_list[n][m] m=m+1 for i in range(len(W)): ACCW[i][0]=W[i] ACCW[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Y)): ACCY[i][0]=Y[i] ACCY[i][1]=Prob_list[n][m] m=m+1 n=n+1 m=0 for i in range(len(A)): GTGA[i][0]=A[i] GTGA[i][1]=Prob_list[n][m] m=m+1 for i in range(len(C)): GTGC[i][0]=C[i] GTGC[i][1]=Prob_list[n][m] m=m+1 for i in range(len(D)): GTGD[i][0]=D[i] GTGD[i][1]=Prob_list[n][m] m=m+1 for i in range(len(E)): GTGE[i][0]=E[i] GTGE[i][1]=Prob_list[n][m] m=m+1 for i in range(len(F)): GTGF[i][0]=F[i] GTGF[i][1]=Prob_list[n][m] m=m+1 for i in range(len(G)): GTGG[i][0]=G[i] GTGG[i][1]=Prob_list[n][m] m=m+1 for i in range(len(H)): GTGH[i][0]=H[i] GTGH[i][1]=Prob_list[n][m] m=m+1 for i in range(len(I)): GTGI[i][0]=I[i] GTGI[i][1]=Prob_list[n][m] m=m+1 for i in range(len(K)): GTGK[i][0]=K[i] GTGK[i][1]=Prob_list[n][m] m=m+1 for i in range(len(L)): GTGL[i][0]=L[i] GTGL[i][1]=Prob_list[n][m] m=m+1 for i in range(len(M)): GTGM[i][0]=M[i] GTGM[i][1]=Prob_list[n][m] m=m+1 for i in range(len(N)): GTGN[i][0]=N[i] GTGN[i][1]=Prob_list[n][m] m=m+1 for i in range(len(P)): GTGP[i][0]=P[i] GTGP[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Q)): GTGQ[i][0]=Q[i] GTGQ[i][1]=Prob_list[n][m] m=m+1 for i in range(len(R)): GTGR[i][0]=R[i] GTGR[i][1]=Prob_list[n][m] m=m+1 for i in range(len(S)): GTGS[i][0]=S[i] GTGS[i][1]=Prob_list[n][m] m=m+1 for i in range(len(T)): GTGT[i][0]=T[i] GTGT[i][1]=Prob_list[n][m] m=m+1 for i in range(len(V)): GTGV[i][0]=V[i] GTGV[i][1]=Prob_list[n][m] m=m+1 for i in range(len(W)): GTGW[i][0]=W[i] GTGW[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Y)): GTGY[i][0]=Y[i] GTGY[i][1]=Prob_list[n][m] m=m+1 n=n+1 m=0 for i in range(len(A)): GTAA[i][0]=A[i] GTAA[i][1]=Prob_list[n][m] m=m+1 for i in range(len(C)): GTAC[i][0]=C[i] GTAC[i][1]=Prob_list[n][m] m=m+1 for i in range(len(D)): GTAD[i][0]=D[i] GTAD[i][1]=Prob_list[n][m] m=m+1 for i in range(len(E)): GTAE[i][0]=E[i] GTAE[i][1]=Prob_list[n][m] m=m+1 for i in range(len(F)): GTAF[i][0]=F[i] GTAF[i][1]=Prob_list[n][m] m=m+1 for i in range(len(G)): GTAG[i][0]=G[i] GTAG[i][1]=Prob_list[n][m] m=m+1 for i in range(len(H)): GTAH[i][0]=H[i] GTAH[i][1]=Prob_list[n][m] m=m+1 for i in range(len(I)): GTAI[i][0]=I[i] GTAI[i][1]=Prob_list[n][m] m=m+1 for i in range(len(K)): GTAK[i][0]=K[i] GTAK[i][1]=Prob_list[n][m] m=m+1 for i in range(len(L)): GTAL[i][0]=L[i] GTAL[i][1]=Prob_list[n][m] m=m+1 for i in range(len(M)): GTAM[i][0]=M[i] GTAM[i][1]=Prob_list[n][m] m=m+1 for i in range(len(N)): GTAN[i][0]=N[i] GTAN[i][1]=Prob_list[n][m] m=m+1 for i in range(len(P)): GTAP[i][0]=P[i] GTAP[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Q)): GTAQ[i][0]=Q[i] GTAQ[i][1]=Prob_list[n][m] m=m+1 for i in range(len(R)): GTAR[i][0]=R[i] GTAR[i][1]=Prob_list[n][m] m=m+1 for i in range(len(S)): GTAS[i][0]=S[i] GTAS[i][1]=Prob_list[n][m] m=m+1 for i in range(len(T)): GTAT[i][0]=T[i] GTAT[i][1]=Prob_list[n][m] m=m+1 for i in range(len(V)): GTAV[i][0]=V[i] GTAV[i][1]=Prob_list[n][m] m=m+1 for i in range(len(W)): GTAW[i][0]=W[i] GTAW[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Y)): GTAY[i][0]=Y[i] GTAY[i][1]=Prob_list[n][m] m=m+1 n=n+1 m=0 for i in range(len(A)): GTTA[i][0]=A[i] GTTA[i][1]=Prob_list[n][m] m=m+1 for i in range(len(C)): GTTC[i][0]=C[i] GTTC[i][1]=Prob_list[n][m] m=m+1 for i in range(len(D)): GTTD[i][0]=D[i] GTTD[i][1]=Prob_list[n][m] m=m+1 for i in range(len(E)): GTTE[i][0]=E[i] GTTE[i][1]=Prob_list[n][m] m=m+1 for i in range(len(F)): GTTF[i][0]=F[i] GTTF[i][1]=Prob_list[n][m] m=m+1 for i in range(len(G)): GTTG[i][0]=G[i] GTTG[i][1]=Prob_list[n][m] m=m+1 for i in range(len(H)): GTTH[i][0]=H[i] GTTH[i][1]=Prob_list[n][m] m=m+1 for i in range(len(I)): GTTI[i][0]=I[i] GTTI[i][1]=Prob_list[n][m] m=m+1 for i in range(len(K)): GTTK[i][0]=K[i] GTTK[i][1]=Prob_list[n][m] m=m+1 for i in range(len(L)): GTTL[i][0]=L[i] GTTL[i][1]=Prob_list[n][m] m=m+1 for i in range(len(M)): GTTM[i][0]=M[i] GTTM[i][1]=Prob_list[n][m] m=m+1 for i in range(len(N)): GTTN[i][0]=N[i] GTTN[i][1]=Prob_list[n][m] m=m+1 for i in range(len(P)): GTTP[i][0]=P[i] GTTP[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Q)): GTTQ[i][0]=Q[i] GTTQ[i][1]=Prob_list[n][m] m=m+1 for i in range(len(R)): GTTR[i][0]=R[i] GTTR[i][1]=Prob_list[n][m] m=m+1 for i in range(len(S)): GTTS[i][0]=S[i] GTTS[i][1]=Prob_list[n][m] m=m+1 for i in range(len(T)): GTTT[i][0]=T[i] GTTT[i][1]=Prob_list[n][m] m=m+1 for i in range(len(V)): GTTV[i][0]=V[i] GTTV[i][1]=Prob_list[n][m] m=m+1 for i in range(len(W)): GTTW[i][0]=W[i] GTTW[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Y)): GTTY[i][0]=Y[i] GTTY[i][1]=Prob_list[n][m] m=m+1 n=n+1 m=0 for i in range(len(A)): GTCA[i][0]=A[i] GTCA[i][1]=Prob_list[n][m] m=m+1 for i in range(len(C)): GTCC[i][0]=C[i] GTCC[i][1]=Prob_list[n][m] m=m+1 for i in range(len(D)): GTCD[i][0]=D[i] GTCD[i][1]=Prob_list[n][m] m=m+1 for i in range(len(E)): GTCE[i][0]=E[i] GTCE[i][1]=Prob_list[n][m] m=m+1 for i in range(len(F)): GTCF[i][0]=F[i] GTCF[i][1]=Prob_list[n][m] m=m+1 for i in range(len(G)): GTCG[i][0]=G[i] GTCG[i][1]=Prob_list[n][m] m=m+1 for i in range(len(H)): GTCH[i][0]=H[i] GTCH[i][1]=Prob_list[n][m] m=m+1 for i in range(len(I)): GTCI[i][0]=I[i] GTCI[i][1]=Prob_list[n][m] m=m+1 for i in range(len(K)): GTCK[i][0]=K[i] GTCK[i][1]=Prob_list[n][m] m=m+1 for i in range(len(L)): GTCL[i][0]=L[i] GTCL[i][1]=Prob_list[n][m] m=m+1 for i in range(len(M)): GTCM[i][0]=M[i] GTCM[i][1]=Prob_list[n][m] m=m+1 for i in range(len(N)): GTCN[i][0]=N[i] GTCN[i][1]=Prob_list[n][m] m=m+1 for i in range(len(P)): GTCP[i][0]=P[i] GTCP[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Q)): GTCQ[i][0]=Q[i] GTCQ[i][1]=Prob_list[n][m] m=m+1 for i in range(len(R)): GTCR[i][0]=R[i] GTCR[i][1]=Prob_list[n][m] m=m+1 for i in range(len(S)): GTCS[i][0]=S[i] GTCS[i][1]=Prob_list[n][m] m=m+1 for i in range(len(T)): GTCT[i][0]=T[i] GTCT[i][1]=Prob_list[n][m] m=m+1 for i in range(len(V)): GTCV[i][0]=V[i] GTCV[i][1]=Prob_list[n][m] m=m+1 for i in range(len(W)): GTCW[i][0]=W[i] GTCW[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Y)): GTCY[i][0]=Y[i] GTCY[i][1]=Prob_list[n][m] m=m+1 n=n+1 m=0 for i in range(len(A)): TGGA[i][0]=A[i] TGGA[i][1]=Prob_list[n][m] m=m+1 for i in range(len(C)): TGGC[i][0]=C[i] TGGC[i][1]=Prob_list[n][m] m=m+1 for i in range(len(D)): TGGD[i][0]=D[i] TGGD[i][1]=Prob_list[n][m] m=m+1 for i in range(len(E)): TGGE[i][0]=E[i] TGGE[i][1]=Prob_list[n][m] m=m+1 for i in range(len(F)): TGGF[i][0]=F[i] TGGF[i][1]=Prob_list[n][m] m=m+1 for i in range(len(G)): TGGG[i][0]=G[i] TGGG[i][1]=Prob_list[n][m] m=m+1 for i in range(len(H)): TGGH[i][0]=H[i] TGGH[i][1]=Prob_list[n][m] m=m+1 for i in range(len(I)): TGGI[i][0]=I[i] TGGI[i][1]=Prob_list[n][m] m=m+1 for i in range(len(K)): TGGK[i][0]=K[i] TGGK[i][1]=Prob_list[n][m] m=m+1 for i in range(len(L)): TGGL[i][0]=L[i] TGGL[i][1]=Prob_list[n][m] m=m+1 for i in range(len(M)): TGGM[i][0]=M[i] TGGM[i][1]=Prob_list[n][m] m=m+1 for i in range(len(N)): TGGN[i][0]=N[i] TGGN[i][1]=Prob_list[n][m] m=m+1 for i in range(len(P)): TGGP[i][0]=P[i] TGGP[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Q)): TGGQ[i][0]=Q[i] TGGQ[i][1]=Prob_list[n][m] m=m+1 for i in range(len(R)): TGGR[i][0]=R[i] TGGR[i][1]=Prob_list[n][m] m=m+1 for i in range(len(S)): TGGS[i][0]=S[i] TGGS[i][1]=Prob_list[n][m] m=m+1 for i in range(len(T)): TGGT[i][0]=T[i] TGGT[i][1]=Prob_list[n][m] m=m+1 for i in range(len(V)): TGGV[i][0]=V[i] TGGV[i][1]=Prob_list[n][m] m=m+1 for i in range(len(W)): TGGW[i][0]=W[i] TGGW[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Y)): TGGY[i][0]=Y[i] TGGY[i][1]=Prob_list[n][m] m=m+1 n=n+1 m=0 for i in range(len(A)): TATA[i][0]=A[i] TATA[i][1]=Prob_list[n][m] m=m+1 for i in range(len(C)): TATC[i][0]=C[i] TATC[i][1]=Prob_list[n][m] m=m+1 for i in range(len(D)): TATD[i][0]=D[i] TATD[i][1]=Prob_list[n][m] m=m+1 for i in range(len(E)): TATE[i][0]=E[i] TATE[i][1]=Prob_list[n][m] m=m+1 for i in range(len(F)): TATF[i][0]=F[i] TATF[i][1]=Prob_list[n][m] m=m+1 for i in range(len(G)): TATG[i][0]=G[i] TATG[i][1]=Prob_list[n][m] m=m+1 for i in range(len(H)): TATH[i][0]=H[i] TATH[i][1]=Prob_list[n][m] m=m+1 for i in range(len(I)): TATI[i][0]=I[i] TATI[i][1]=Prob_list[n][m] m=m+1 for i in range(len(K)): TATK[i][0]=K[i] TATK[i][1]=Prob_list[n][m] m=m+1 for i in range(len(L)): TATL[i][0]=L[i] TATL[i][1]=Prob_list[n][m] m=m+1 for i in range(len(M)): TATM[i][0]=M[i] TATM[i][1]=Prob_list[n][m] m=m+1 for i in range(len(N)): TATN[i][0]=N[i] TATN[i][1]=Prob_list[n][m] m=m+1 for i in range(len(P)): TATP[i][0]=P[i] TATP[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Q)): TATQ[i][0]=Q[i] TATQ[i][1]=Prob_list[n][m] m=m+1 for i in range(len(R)): TATR[i][0]=R[i] TATR[i][1]=Prob_list[n][m] m=m+1 for i in range(len(S)): TATS[i][0]=S[i] TATS[i][1]=Prob_list[n][m] m=m+1 for i in range(len(T)): TATT[i][0]=T[i] TATT[i][1]=Prob_list[n][m] m=m+1 for i in range(len(V)): TATV[i][0]=V[i] TATV[i][1]=Prob_list[n][m] m=m+1 for i in range(len(W)): TATW[i][0]=W[i] TATW[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Y)): TATY[i][0]=Y[i] TATY[i][1]=Prob_list[n][m] m=m+1 n=n+1 m=0 for i in range(len(A)): TACA[i][0]=A[i] TACA[i][1]=Prob_list[n][m] m=m+1 for i in range(len(C)): TACC[i][0]=C[i] TACC[i][1]=Prob_list[n][m] m=m+1 for i in range(len(D)): TACD[i][0]=D[i] TACD[i][1]=Prob_list[n][m] m=m+1 for i in range(len(E)): TACE[i][0]=E[i] TACE[i][1]=Prob_list[n][m] m=m+1 for i in range(len(F)): TACF[i][0]=F[i] TACF[i][1]=Prob_list[n][m] m=m+1 for i in range(len(G)): TACG[i][0]=G[i] TACG[i][1]=Prob_list[n][m] m=m+1 for i in range(len(H)): TACH[i][0]=H[i] TACH[i][1]=Prob_list[n][m] m=m+1 for i in range(len(I)): TACI[i][0]=I[i] TACI[i][1]=Prob_list[n][m] m=m+1 for i in range(len(K)): TACK[i][0]=K[i] TACK[i][1]=Prob_list[n][m] m=m+1 for i in range(len(L)): TACL[i][0]=L[i] TACL[i][1]=Prob_list[n][m] m=m+1 for i in range(len(M)): TACM[i][0]=M[i] TACM[i][1]=Prob_list[n][m] m=m+1 for i in range(len(N)): TACN[i][0]=N[i] TACN[i][1]=Prob_list[n][m] m=m+1 for i in range(len(P)): TACP[i][0]=P[i] TACP[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Q)): TACQ[i][0]=Q[i] TACQ[i][1]=Prob_list[n][m] m=m+1 for i in range(len(R)): TACR[i][0]=R[i] TACR[i][1]=Prob_list[n][m] m=m+1 for i in range(len(S)): TACS[i][0]=S[i] TACS[i][1]=Prob_list[n][m] m=m+1 for i in range(len(T)): TACT[i][0]=T[i] TACT[i][1]=Prob_list[n][m] m=m+1 for i in range(len(V)): TACV[i][0]=V[i] TACV[i][1]=Prob_list[n][m] m=m+1 for i in range(len(W)): TACW[i][0]=W[i] TACW[i][1]=Prob_list[n][m] m=m+1 for i in range(len(Y)): TACY[i][0]=Y[i] TACY[i][1]=Prob_list[n][m] m=m+1 n=n+1 m=0 DNASeq='ATG' #Save DNASeq in a DNASeq string ##couplet=DNASeq+ProteinSeq[1:2] #Look at one couplet at a time import random #Define the pick_random function import sys def pick_random(prob_list): r, s = random.random(), 0 for num in prob_list: s += num[1] if s >= r: return num[0] print >> sys.stderr, "Error: shouldn't get here" ###Send the couplet to the pick_random function ##correct_list= Master[couplet] ##new = pick_random(correct_list) ##DNASeq=DNASeq+new new=DNASeq for i in range(len(ProteinSeq)-1): #take the last 3 bases, add the AA in ProteinSeq couplet = new+ProteinSeq[i+1:i+2] correct_list= Master[couplet] new = pick_random(correct_list) DNASeq=DNASeq+new DNASeq=DNASeq+'TAA' print "DNA sequence: " print DNASeq