--- EXPERIMENT NOTES --- EXPERIMENT PROPERTIES #Mon Feb 19 15:33:50 WET 2018 codeml.models=0 1 2 3 7 8 mrbayes.mpich= mrbayes.ngen=1000000 tcoffee.alignMethod=MUSCLE tcoffee.params= tcoffee.maxSeqs=0 codeml.bin=codeml mrbayes.tburnin=2500 codeml.dir=/usr/bin/ input.sequences= mrbayes.pburnin=2500 mrbayes.bin=mb tcoffee.bin=t_coffee mrbayes.dir=/usr/bin/ tcoffee.dir= tcoffee.minScore=3 input.fasta=/opt/ADOPS/HIV1_N3/VIF_1_1/input.fasta input.names= mrbayes.params= codeml.params= --- PSRF SUMMARY Estimated marginal likelihoods for runs sampled in files "/opt/ADOPS/HIV1_N3/VIF_1_1/batch/allfiles/mrbayes/input.fasta.fasta.mrb.run1.p" and "/opt/ADOPS/HIV1_N3/VIF_1_1/batch/allfiles/mrbayes/input.fasta.fasta.mrb.run2.p": (Use the harmonic mean for Bayes factor comparisons of models) (Values are saved to the file /opt/ADOPS/HIV1_N3/VIF_1_1/batch/allfiles/mrbayes/input.fasta.fasta.mrb.lstat) Run Arithmetic mean Harmonic mean -------------------------------------- 1 -7885.54 -7927.18 2 -7883.48 -7932.51 -------------------------------------- TOTAL -7884.05 -7931.83 -------------------------------------- Model parameter summaries over the runs sampled in files "/opt/ADOPS/HIV1_N3/VIF_1_1/batch/allfiles/mrbayes/input.fasta.fasta.mrb.run1.p" and "/opt/ADOPS/HIV1_N3/VIF_1_1/batch/allfiles/mrbayes/input.fasta.fasta.mrb.run2.p": Summaries are based on a total of 3002 samples from 2 runs. Each run produced 2001 samples of which 1501 samples were included. Parameter summaries saved to file "/opt/ADOPS/HIV1_N3/VIF_1_1/batch/allfiles/mrbayes/input.fasta.fasta.mrb.pstat". 95% HPD Interval -------------------- Parameter Mean Variance Lower Upper Median min ESS* avg ESS PSRF+ ------------------------------------------------------------------------------------------------------ TL{all} 4.933694 0.090152 4.376295 5.537879 4.927720 1089.20 1240.21 1.000 r(A<->C){all} 0.139944 0.000160 0.116063 0.165275 0.139765 676.30 696.49 1.000 r(A<->G){all} 0.260902 0.000518 0.218886 0.306702 0.260313 309.39 386.72 1.001 r(A<->T){all} 0.030976 0.000029 0.020449 0.040989 0.030574 577.59 633.26 1.000 r(C<->G){all} 0.035167 0.000064 0.020850 0.051294 0.034638 705.46 729.10 1.000 r(C<->T){all} 0.470491 0.000764 0.416407 0.524328 0.470463 296.64 366.23 1.001 r(G<->T){all} 0.062519 0.000077 0.045104 0.078765 0.062091 810.65 817.31 1.000 pi(A){all} 0.391102 0.000237 0.362065 0.421509 0.390836 659.59 719.91 1.000 pi(C){all} 0.157984 0.000121 0.137203 0.180123 0.157709 543.28 605.43 1.000 pi(G){all} 0.236017 0.000178 0.209216 0.261429 0.235594 517.62 629.38 1.000 pi(T){all} 0.214897 0.000181 0.189448 0.241443 0.214761 339.54 528.99 1.000 alpha{1,2} 0.481057 0.003702 0.367272 0.599500 0.476896 886.19 909.03 1.000 alpha{3} 1.497252 0.059768 1.066969 1.985975 1.474427 1174.69 1240.06 1.001 pinvar{all} 0.199824 0.001109 0.133086 0.260285 0.200169 769.85 965.36 1.000 ------------------------------------------------------------------------------------------------------ * Convergence diagnostic (ESS = Estimated Sample Size); min and avg values correspond to minimal and average ESS among runs. ESS value below 100 may indicate that the parameter is undersampled. + Convergence diagnostic (PSRF = Potential Scale Reduction Factor; Gelman and Rubin, 1992) should approach 1.0 as runs converge. Setting sumt conformat to Simple --- CODEML SUMMARY Model 1: NearlyNeutral -8094.145824 Model 2: PositiveSelection -8052.398191 Model 0: one-ratio -8511.698531 Model 3: discrete -8030.337767 Model 7: beta -8056.119608 Model 8: beta&w>1 -8015.649599 Model 0 vs 1 835.1054139999997 Model 2 vs 1 83.4952659999999 Additional information for M1 vs M2: Naive Empirical Bayes (NEB) analysis Positively selected sites (*: P>95%; **: P>99%) (amino acids refer to 1st sequence: 02A1.GH.97.97GH_AG2.AB052867_) Pr(w>1) post mean +- SE for w 31 I 0.997** 2.413 33 K 0.995** 2.410 37 G 1.000** 2.416 39 F 1.000** 2.417 47 R 0.992** 2.405 61 D 0.543 1.770 63 R 0.986* 2.396 91 Q 0.913 2.294 92 R 0.929 2.317 95 S 0.506 1.717 101 D 0.893 2.265 109 L 0.886 2.255 127 E 0.756 2.070 130 S 0.930 2.318 158 K 0.704 1.997 159 T 1.000** 2.416 167 K 1.000** 2.417 186 S 0.904 2.282 Bayes Empirical Bayes (BEB) analysis (Yang, Wong & Nielsen 2005. Mol. Biol. Evol. 22:1107-1118) Positively selected sites (*: P>95%; **: P>99%) (amino acids refer to 1st sequence: 02A1.GH.97.97GH_AG2.AB052867_) Pr(w>1) post mean +- SE for w 31 I 0.997** 2.495 +- 0.086 33 K 0.993** 2.489 +- 0.126 37 G 0.999** 2.499 +- 0.038 39 F 1.000** 2.500 +- 0.009 47 R 0.988* 2.483 +- 0.161 63 R 0.978* 2.468 +- 0.219 91 Q 0.876 2.314 +- 0.494 92 R 0.894 2.340 +- 0.463 101 D 0.847 2.270 +- 0.541 109 L 0.837 2.255 +- 0.554 127 E 0.661 1.992 +- 0.710 130 S 0.895 2.343 +- 0.459 158 K 0.599 1.899 +- 0.735 159 T 1.000** 2.500 +- 0.030 167 K 1.000** 2.500 +- 0.010 186 S 0.859 2.289 +- 0.521 Model 8 vs 7 80.94001799999933 Additional information for M7 vs M8: Naive Empirical Bayes (NEB) analysis Positively selected sites (*: P>95%; **: P>99%) (amino acids refer to 1st sequence: 02A1.GH.97.97GH_AG2.AB052867_) Pr(w>1) post mean +- SE for w 31 I 0.998** 2.052 33 K 0.996** 2.051 36 K 0.651 1.659 37 G 0.999** 2.054 39 F 1.000** 2.055 47 R 0.993** 2.047 61 D 0.725 1.745 63 R 0.990* 2.044 91 Q 0.942 1.989 92 R 0.958* 2.008 95 S 0.685 1.696 101 D 0.936 1.982 109 L 0.929 1.975 127 E 0.845 1.879 130 S 0.958* 2.008 158 K 0.826 1.859 159 T 1.000** 2.055 167 K 1.000** 2.055 186 S 0.942 1.990 Bayes Empirical Bayes (BEB) analysis (Yang, Wong & Nielsen 2005. Mol. Biol. Evol. 22:1107-1118) Positively selected sites (*: P>95%; **: P>99%) (amino acids refer to 1st sequence: 02A1.GH.97.97GH_AG2.AB052867_) Pr(w>1) post mean +- SE for w 31 I 0.997** 2.429 +- 0.262 33 K 0.993** 2.423 +- 0.278 37 G 0.999** 2.432 +- 0.253 39 F 1.000** 2.433 +- 0.251 47 R 0.989* 2.416 +- 0.295 63 R 0.972* 2.390 +- 0.350 91 Q 0.859 2.212 +- 0.579 92 R 0.872 2.232 +- 0.559 101 D 0.836 2.175 +- 0.610 109 L 0.817 2.145 +- 0.632 127 E 0.571 1.756 +- 0.769 130 S 0.869 2.228 +- 0.563 158 K 0.538 1.703 +- 0.771 159 T 1.000** 2.432 +- 0.252 167 K 1.000** 2.433 +- 0.251 186 S 0.829 2.164 +- 0.617
>C1 MENRWQVMIVWQIDRMRIKTWNSLVKHHMYISKKAKGWFYRHHYESRHPK VSSEVHIPLGDARLVVRTYWGLHTGERDWHLGQGVSIEWRQRRYSTQVDP DLADHLIHLHYFDCFSDSAIRKAILGEVVSPRCQYPEGHNKVGSLQYLAL KALVTPTKTKPPLPSVKKLTEDRWNKPQKTRGHRGSRPMNGHoooo >C2 MENRWQVMIVWQVDRMKIKTWNSLVKHHMYVSKKANKWFYRHHYESRHPK VSSEVHIPLGDATLVIRTYWGLQTGDKDWHLGHGVSIEWRQRRYSTQIDP DLADRLIHLQYFDCFSDSAIRKAILGQVVRRRCEYPSGHNKVGSLQYLAL KALTTPKRIRPPLPSVKKLTEDRWNKPQKARGYREHPTINGHoooo >C3 MENRWQVMIVWQVDRMRIRTWHSLVKHHMYISKKASKWFYRHHYESQHPK VSSEVRIPLGEAILVVRTYWGLQTGEKEWHLGHGVSIEWRQKNYRTQTDP DLADQLIHLHYFDCFSDSAIRKAILGQVVRRRCEYPSGHNKVGSLQYLAL KALTTPKQIRPPLPSVKKLTEDRWNKPQKIRGHREYPTMNGHoooo >C4 MENRWQVLIVWQVDRMKIRTWNSLVKHHMYISRRANGWLYRHHYNSIHPR VSSEVHIPLGAAKLVVKTYWGLQTGEREWHLGHGVSIEWKLGEYSTQVEP GLADQLIHTHYFDCFTDSAIRKAILGHIVIPRCDYQAGHNKVGSLQYLAL TALIKPKKIKPPLPSIRKLVEDRWNKPQKTRGRRGNHTMNGHoooo >C5 MENRWQVMIVWQVDRMRINTWKSLVKYHMHISKKAQRWLYRHHYDSPHPK ISSEVHIPLGDARLVVKTYWGLHTGERDWHLGQGVSIEWRKRKYSTQVDP GLADQLIHIYYFDCFSESAIRQAILGRVVSPRCDYPAGHNQVGSLQYLAL TALIASKKRKPPLPSVRKLTEDRWNKPQKTRGHRGNHTMNGHoooo >C6 MENRWQVMIVWQVDRMRIRTWNSLVKYHMYRSRKAKEWFYRHHFESRHPK VSSEVHIPLGDARLVVKTYWGLHTGEREWHLGHGVSIEWRQKRYSTQIDP DLADQLIHLHYFDCFSESAIRKAILGQVVSPRCDYQAGHNKVGSLQYLAL KALITPTKTKPPLPSVKKLAEDRWNKPQKTRGHRGSRSMNGHoooo >C7 MENRWQVMIVWQVDRMRIRTWKSLVKHHMYISKKAGKWFYRHHYESTHPK ISSEVHIPLGDAKLVITTYWGLHTGERDWHLGQGVSIEWRINRYSTQVDP GLADQLIHLYYFDCFSESAVRKAILGHRVRPRCEYQAGHNKVGSLQYLAL VALITPKKTKPPLPSVTKLTEDRWNKPQRTTGHRGSHTMNGHoooo >C8 MDNRWQVMIVWQVDRMRIKTWNSLVKYHMYVSKKANKWFYRHHYESRHPK VSSEVHIPLGDAILVVRTYWGLHPGEQDWHLGQGVSIEWRQKRYSTQIDP NLADQLIHLHYFDCFSESAIRKAILGQVVRPRCEYQTGHNKVGSLQYLAL RAVVKLRNTKPPCPSVRKLTEDRWNKPQKTRGHRGNHTMNGCoooo >C9 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYVSKKAHRWFYRHHYESRHPK VSSEVHIPLGDATLIVRTYWGLQPGERDWHLGHGVSIVWQQKRYSTQIDP DLADQLIHLHYFDCFSESAIRKALLGQVVRPKCEYQAGHNKVGSLQYLAL KALVTPTRRKPPLPSVKKLAEDRWNEPQKTRGHRGNRSMNGHoooo >C10 MENRWQVLIVWQVDRMRIRTWNSLVKHHMYVSKQAKNWFYRHHFESRHPK ISSEVHIPLGEARLVVKTYWGLHTGEREWHLGQGVSIEWRKGRYSTQVDP GLADQLIHIYYFDCFAESAIRKAILGHIVAPRCNYQAGHNKVGSLQYLAL TALIKPKKIKPPLPSVRKLTEDRWNKPQKTRGPRESHTMNGCoooo >C11 MENRWQVMIVWQVDRMRIRAWKSLVKHHIYISKKARGWSYKHHYESTNPR TSSEVHIPLGDAKLVIATYWGLHTGERDWHLGQGVSIEWKKESYSTQVDP DLADQLIHLYYFNCFSDSAIRKAIVGHIVSPSCEYLSGHNKVGSLQYLAL TALITPKRRKPPLPSVAKLTEDRWNKPQKTKGHKGSHTMNGHoooo >C12 MENRWQVMIVWQVDRMRINTWKSLVKYHIHISKKAKGWIYKHHYESTNPR ISSEVHIPLGEARLVVKTYWGLHTGERDWHLGQGASIEWRKNRYSTQVAP DLADRLIHLYYFDCFSDSAIRKAILGKIVSPRCEYQAGHNKVGSLQYLAL VALTTPKKTKPPLPSVKKLTEDRWNKPQKTKGHRGSHTMNGHoooo >C13 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYVSKKAKNWFYRHHFESRHPK VSSEVHVPLGDAKLVVRTYWGLHTGEKEWHLGHGVSIEWRLKRYSTQIDP DLADQLIHLHYFNCFSDSAIRRAILGQVVSPSCEYQAGHNKVGSLQYLAL KALVTPKKTKPPLPSVRKLTEDRWNKPQKTKGHRGNHTMHGQoooo >C14 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYVSKKANRWFYRHHYEAQHPK VSSEVHIPLGDAKIVVRTYWGLHTGEKDWHLGHGVSIEWRLKRYNTQIDP DLADQLIHLYYFDCFSDSAIRKAILGQVVSPICEYQTGHNKVGSLQYLAL KALVTPTKAKPPLPSVRKLTEDRWNKPQKTKGHRGCHTMNGHoooo >C15 MENRWQGLIVWQVDRMKIRTWNSLVKHHMYISKRASGWFYRHHYESRHPK VSSEVHIPLGDARLVVITYWGLHTGEREWHLGHGVSMEWRWKRYSTQVDP GLADQLIHLHYFDCFADSAIRKAILGHIVIPRCDYQAGHKKVGSLQYLAL TALIKPKKRKPPLPSISKLTEDRWNNPQKIRGRRGNHTMNGHoooo >C16 MENRWQVMIVWQVDRMRIRTWNSLVKHHIYVSKKAKKWFYRHHYESQHPK VSSEVHIPLGEAKLVIRTYWGLQTGEKDWHLGHGVSIEWRQGNYNTQIDP DLADQLIHLQYFDCFSESAIRKAILGQVVRRRCEYPTGHNKVGSLQYLAL KALTTPKRIKPPLPSVKKLTEDRWNEPQKIRGHRENHTMNGHoooo >C17 MENRWQVMIVWQVDRMRIRTWNSIVKHHMYVSRRAKGWFYRHHYESPHPK VSSEVHIPLGEAKLVIITYWGLQTGEKDWQLGHGVSIEWRMRKYSTQVDP DLADQLIHLHYFNCFSGSAIRNAILGQVVRSRCDYPSGHNKVGSLQYLAL KALTTSKRIKPPLPSVRKLTEDRWNKPQKIRGHPENPTMNGHoooo >C18 MENRWQVMIVWQVDRMRIRAWKSLVKHHMYISGKARGWSYRHHYESPHPR ISSEVHIPLGDAKLVVTTYWGLHTGERDWHLGQGVSIEWRKRRYSTQVDP DLADQLIHVYYFDCFSETAIRNTLLGRRVSPRCEYQAGHNKVGSLQYLAL VALIKPKRTKPPLPSVKKLTEDRWNKPQRTKGHRGNHTMNGHoooo >C19 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYISKKAKKWVYRHHYENQHPK VSSEVHIPLGEARLVIRTYWGLQTGEKDWHLGHGVSIEWRQGNYNTQIDP DLADQLIHLNYFDCFSDSAIRKAILGQVVRRRCEYPSGHNKVGSLQYLAL KALTTQKKTRPPLPSVKKLTEDRWNEPQKIRGHRGNPTMSGHoooo >C20 MENRWQVLIVWQVDRMKIRTWNSLVKHHMYISRRANGWLYRHHYDSRHPK ISSEVHIPLGEARLVIKTYWGLQTGERDWHLGHGVSIEWRLRSYNTQIEP GLADQLIHMYYFDCFADSAIRKAILGHVVIPRCDYQAGHNNKVGSLQYLA LTALIKPKRIRPPLPSIKKLVEDRWNNPQEIRGRRGNHTMNGQWSF >C21 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYISKKAKGWAYRHHYESRHPK ISSEVHIPLRDAELVITTYWGLHTGERDWHLGQGVSIEWRKKRYSTQVDP NLADHLIHLHYFDCFSESAIRNAILGHIVSPSCEYQAGHNKVGSLQYLAL AALTTPKKKKPPLPSVTKLTEDRWNKPQKTKGHRGNRTMNGHoooo >C22 MENRWQVMIVWQVDRMRIKTWNSLVKHHMYVSKKAKKWFYRHHYESQHPK VSSEVHIPLGEARLVIRTYWGLQTGEKDWQLGHGVSIEWRQRNYSTQIDP DLADQLIHLQYFDCFSDSAIRRAILGQVVRRRCEYPSGHNKVGSLQYLAL RALTTPKRIRPPLPSVKKLTEDRWNKPQRTKGHQGSHTMHGHoooo >C23 MENRWQGLIVWQVDRMRIRTWNSLVKHHMYISRRANGWFYRHHYESRHPK VSSEVHIPLGDARLVIKTYWGLQTGERDWHLGHGVSIEWRLKRYSTQVDP GLADQLIHMHYFDCFADSAIRQAIVGHRVSSRCDYQAGHNKVGSLQYLAL TALIKPKKIKPPLPSVKKLVEDRWNKPQKTRGRRGNHTMNGYoooo >C24 MENRWQVMIVWQVDRMRIRTWKSLVKHHMHVSGKAKKWLYKHHYESINPR KSSEVHIPLGDARLVITTYWGLHTGERDWHLGQGVSIEWRKERYRTQVTP DMADQLIHMYYFDCFSDSAIRNAILGYRVSPRCEYQAGHSKVGSLQYLAL AALVTPKQTKPPLPSVTKLTEDRWNKPRKTKGHRGNHTMNGRoooo >C25 MENRWQVMIVWQVDRMRIRTWKSLVKHHMYISGKAKEWFYRHHYESTHPR ISSEVHIPLGDARLVITTYWGLHTGERDWHLGQGVSIEWRKRRYSTQVDP DLADQLIHLYYFNCFSESAIRNAILGRIVSPKCEYQAGHNRVGSLQYLAL AALITPRRVKPPLPSVRKLTEDRWNKPHKTKGHRGNHSMNGHoooo >C26 MENRWQVLIVWQVDRMRIRTWNSLVKHHMYVSRRASGWFYRHHYESRHPK VSSEVHIPLGEARLVVRTYWGLQTGEREWHLGHGVSIEWRLRKYSTQVDP GLADQLIHMHYFDCFADSAIRKAILGHIVKPRCDYQAGHNKVGSLQYLAL TALIKTKKIKPPLPSINKLVEDRWNKPQKTRGRRGNHTMNGHoooo >C27 MENRWQVMIVWQVDRMRIRTWKSLVKHHMYISRKAKGWVYRHHYENTHPR VSSEVHIPLRDAKLVVTTYWGLHTGERDWHLGQGVSIEWRKERYNTQVDP ELADQLIHLYYFDCFSESAIRNAILGNRVSPSCEYQAGHNKVGSLQYLAL SALITPKKIKPPLPSVTKLTEDRWNKPRKTKGHRGSHTMNGHoooo >C28 MENRWQVLIVWQVDRMRIRTWNSLVKHHMYVSRKANGWVYRHHYDSRHPK VSSEVHIPLGEAKLEIKTYWGLQTGERDWHLGHGVSIEWRWRRYSTQVDP GLADQLIHMYYFDCFAESAIRKAILGHIVTPRCDYQAGHNKVGSLQYLAL TAIIKPKRRKPPLPSIKKLVEDRWNNPQKIRARRGNHTMNGHoooo >C29 MENRWQVVIVWQVDRMRIRTWNSLVKHHMYISKKAKKWFYRHHYESQHPK VSSEVHIPLGEARLVIRTYWGLQTGEKDWHLGHGVSIEWRQGKYNTQIDP DLADQLIHLHYFDCFSDSAIRKAILGQVVRRRCEYPSGHNKVGSLQYLAL KALTTPKRIRPPLPSVKKLTEDRWNKPQRTTGHRGSHTMSGHoooo >C30 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYVSKKAKGWSYRHHYESRNLR VSSEVHIPLGDAKLVVITYWGLHTGEKDWQLGHGVSIEWRQKRYSTQIDP DLADQLIHLHYFDCFSDSAIRKAILGQLVSPRCEYQAGHNKVGSLQYLAL KALVTPTRRKPPLPSVRKLTEDRWNKPQKTKGHRENPTMSGHWNCo >C31 MENRWQVLIVWQVDRMKIRTWNSLVKHHMYVSRRANGWLYRHHYDSRNPK VSSEVHIPVGEAKLVIKTYWGLQTGERDWHLGHGVSIEWRLRRYHTQIEP DLADQLIHLHYFDCFADSAIRKAILGHIVIPRCDYQAGHNNKVGSLQYLA LTALIKPKKIKPPLPSIKKLVEDRWNNPQKIRGRRGNHTMNGHooo >C32 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYVSKRAKGWFYRHHYESRHPR VSSEVHIPLGDARLIIKTYWGLLPGEREWHLGHGVSIEWRCRRYSTQVDP GLADQLIHMHYFDCFADSAIRKAILGHIVTPRCNYQAGHNKVGSLQYLAL TALITPKKIKPPLPSVRKLTEDRWNKPQRTKGHRESHTMSGHoooo >C33 MENRWQVLIVWQVDRMRIRTWNSLVKHHMYISRRASGWFYRHHYESRNPK VSSEVHIPLGEARVIIKTYWNLQTGERAWHLGQGVSIEWRLRRYSTQIDP GLADQLIHMHYFDCFADSAIRKAILGHIVIPRCDYQAGHNKVGSLQYLAL TALIKPKKRKPPLPSVQKLVEDRWNNPQKTRGRRGNHTMNGHoooo >C34 MENRWQVMIVWQVDRMRINAWKSLVKYHMHISKKAKRWCYRHHFESRNPR ISSEVHIPLEEAKLVITTYWGLHTGERDWHLGQGVSIEWRQGRYKTQIDP GLADQLIHIYYFDCFSESAIRKAILGHKISPRCNYQAGHNKVGSLQYLAL TALIAPKKTRPPLPSVKKLVEDRWNKPQETRGHRGSHTMNGHoooo >C35 MENRWQVMIAWQVDRMRIKAWNRLVKHHMYISKKTKGWVYKHHYENANPR VSSEVHIPLGDAALVVTTYWGLHTGERDWHLGQGVSIEWRKRSYRTQVTP DLADHLIHLYYFDCFSESAIRNAILGRIVSPSCEYQAGHNKVGSLQYLAL SALITPKKRKPPLPSVRKLTEDRWHKPQKTTGHKGNHTMNGHoooo >C36 MENRWQVMIVWQVDRMRINTWKSLVKYHMHVSKKAKKWSYRHHFESRHPK ISSEVHIPLEADELVITTYWGLHTGERDWHLGQGVSIEWRQGRYRTQIDP GLADQLIHIYYFDCFSESAIRKAILGHTISPRCNYQAGHNKVGSLQYLAL TALITPKKTKPPLPSVQKLVEDRWNKPQETRGHRGSRTTNGHoooo >C37 MENRWQVMIVWQVDRMRIRTWKSLVKHHMYISGKAKRWFYKHHYESTNPR ISSEVHIPLGEASLVITTYWGLHTGERDWHLGQGVSIEWRKKGYSTQIDP GLADQLIHLYYFDCFSESAIRNAILGHRVRPSCEYQAGHNKVGSLQYLAL AALLTPKKIKPPLPGVTKLTEDRWNKPQKTKGHRGSHTMNGHoooo >C38 MENRWQVMIVWQVDRMRIRTWNSIVKHHMYVSKKAKGWIYKHHYESTNPR ISSEVYIPLGDAKLVITTYWGLHTGERDWQLGHGVSIEWRKERYSTQADP DLADQLIHLYYFDCFSDSAIRQAILGHRVSPRCEYQAGHNKVGSLQYLAL TALITPKRRKPPLPSVKKLTEDRWNEPQKTRGHRGSHTMNGHoooo >C39 MENRWQVMIVWQVDRMRINAWKSLVKYHMHISRKAKGWLYRHHYDSYHPK ISSEVHIPLGCAELVITTYWGLNTGEREWHLGQGVSIEWRMRRYRTQIDP VLADQLIHVHYFDCFSESAIRKAILGHIVSPRCEYQAGHNKVGSLQYLAL TALLKPKKRKPPLPSVQKLVEDRWNKPQKTRDHRDSHTMHGHoooo >C40 MENRWQVMIVWQVDRMRIRTWHSLVKHHMYISRKAKGWFYKHHYESRHPK VSSEVHIPINEARLIIRTYWGLQTGEKDWHLGHGVSVEWRQRRYSTQVDP DLADQLIHLQYFDCFSESAIRKAILGQKIIHRCEYQTGHKKVGSLQYLAL KALVAPKGAKPPLPSVRKLTEDRWNKPQKTKGHRESHTMNGCoooo >C41 MENRWQVMIVWQVDRMRIQAWHSLVKHHMYISKKAKGWAYRHHYESNHPR ISSEVRIPVGDATLVITTYWGLQTGERDWHLGRGVSVEWRKRKYRTQVDP DIADHLIHLYYFDCFSESAIRNAILGHVVNPKCEYHTGHDKVGSLQYLAL VALTKPKRRKPPLPSVRKLTEDRWNKPQKTKDHKESHTMNGHoooo >C42 MENRWQVMIVWQVDRMRIRTWKSLVKHHMYISKKAKGWFYRHHYENPHPR VSSEVHIPLGDAKLVITTYWGLHTGERDWHLGQGVSIEWRKRRYSTQVDP NRADQLIHLYYFDCFSDSAIRNTLLGHRVSPRCEYQAGHNKVGSLQYLAL AALRKPKKTKPPLPSVAKLTEDRWNKPQKTKGHKGNHIMNGHoooo >C43 MENRWQVMVVWQVDRMKIRIWNSLVKHHMHVSKKAKGWYYRHHYETRHPK ISSEVHIPVGQARLVIVTYWGLTTGEQPWHLGHGVSIEWRLRKYKTQVDP EMADKLIHLYYFDCFTASAIRQAILGRQVFPRCEYPAGHNQVGTLQYLAL TAWVGIKKRKPPLPSVAKLTEDRWNKHQKTQGHRGNPTMNGHoooo >C44 MENRWQVMIVWQVDRMRIRTWHGLVKHHMYVSKKAKNWLYRHHYDCPHPK IISEVHIPLGKARLVVKTYWVLHTGERKWHLVHGVSIEWRLKRYSTQIDP DQADQLIHLHYFDCFSESAIRKAILGEVVSPRCEYQTGHNKVGSLQYLAL KALVAPTKKKPPLPSVKILAEDRWNKPQRTKGHRGSHTMNGHoooo >C45 MENRWQVMIVWQVDRMRIRTWKSLVKHHIYISKKARGWFYRHHYESTHPK ISSEVHIPLEAARLVITTYWGLHTGERDWHLGQGVSIEWRKKRYSTQIDP DLADQLIHLYYFDCFSDSAIRNAILGRIGSPRCEYQAGHNKVGSLQYLAL TALVKPKKTKPPLPSVRKLTEDRWNEPQKTKGRRGSRTMNGQoooo >C46 MENRWQGLIVWQVDRMKIRTWNSLVKHHMYVSKRANGWFYRHHYESRHPK ISSEVHIPLGDARLVIKTYWGLHTGEREWHLGHGVSIEWRLRRYSTQVDP DLADQLIHIHYFDCFTDSAIRKAILGHIVFPRCDYQAGHNKVGSLQYLAL TALIKPKRIKPPLPSVKKLVEDRWNNPQKTKGRRGNHTMNGHoooo >C47 MENRWQVMIVWQVDRMRIRTWKSLVKHHMYVSGKAKGWCYRHHYESTNPR ISSEVHIPLGEAKLVIVTYWGLHTGERDWHLGQGVSIEWRKKRYSTQVGP DLADQLIHLYYFDCFSESAIRKALLGHRVSPRCEYQAGHNKVGSLQYLAL AALITPKKIKPPLPSVTKLTEDRWNKPQKIKGHRGSHIMNGHoooo >C48 MENRWQVMIVWQVDRMRINKWKSLVKHHMYISRKAKDWFYRHHHESTHPR ISSEVHIPLGDAKLVVTTYWGLHTGERDWHLGQGVSIEWRMRRYSTQVDP LMADQLIHLYYFDCFTESAIRNAILGHIVRPRCEYPAGHNQVGSLQYLAL TALIKPKKRKPPLPSVQKLTEDRWNKPRKTKGHRGNRTMNGHoooo >C49 MENRWQVMIVWQVDRMRIKTWNSLVKHHMYISGKAREWTYRHHYESTNPR ASSEVHIPLGDARLVVTTYWGLHTGERDWHLGQGVSIEWRKRRYSTQVDP ELADQLIHMYYFDCFSETAIRQAILGRIVSPRCEFQAGHNKVGSLQYLAL AALVKPKKRKPPLPSVQKLTEDRWNKPRKIKGHRGSHTMNGHoooo >C50 MENRWQVLIVWQVDRMKIRTWNSLVKHHMYISKRASGWSYRHHYESRNPK VSSEVHVPLGEAKLVIKTYWGLQPGERDWHLGHGVSIEWRLKSYSTQVEP GLADQLIHLYYFDCFAESAIRKAILGHIVLSRCDYQAGHTKVGSLQYPAL TALIKPKKDKATSASIRKLVEDRWNNPPKTKGRRGNHTLNGHoooo PROGRAM: T-COFFEE Version_10.00.r1613 (2013-10-22 15:49:09 - Revision 1613 - Build 432) -full_log S [0] -genepred_score S [0] nsd -run_name S [0] -mem_mode S [0] mem -extend D [1] 1 -extend_mode S [0] very_fast_triplet -max_n_pair D [0] 10 -seq_name_for_quadruplet S [0] all -compact S [0] default -clean S [0] no -do_self FL [0] 0 -do_normalise D [0] 1000 -template_file S [0] -setenv S [0] 0 -template_mode S [0] -flip D [0] 0 -remove_template_file D [0] 0 -profile_template_file S [0] -in S [0] -seq S [0] -aln S [0] -method_limits S [0] -method S [0] -lib S [0] -profile S [0] -profile1 S [0] -profile2 S [0] -pdb S [0] -relax_lib D [0] 1 -filter_lib D [0] 0 -shrink_lib D [0] 0 -out_lib W_F [0] no -out_lib_mode S [0] primary -lib_only D [0] 0 -outseqweight W_F [0] no -dpa FL [0] 0 -seq_source S [0] ANY -cosmetic_penalty D [0] 0 -gapopen D [0] 0 -gapext D [0] 0 -fgapopen D [0] 0 -fgapext D [0] 0 -nomatch D [0] 0 -newtree W_F [0] default -tree W_F [0] NO -usetree R_F [0] -tree_mode S [0] nj -distance_matrix_mode S [0] ktup -distance_matrix_sim_mode S [0] idmat_sim1 -quicktree FL [0] 0 -outfile W_F [0] default -maximise FL [1] 1 -output S [1] score_ascii html score_ascii -len D [0] 0 -infile R_F [1] input.prot.fasta.muscle_rs_0_0.fasta.aln -matrix S [0] default -tg_mode D [0] 1 -profile_mode S [0] cw_profile_profile -profile_comparison S [0] profile -dp_mode S [0] linked_pair_wise -ktuple D [0] 1 -ndiag D [0] 0 -diag_threshold D [0] 0 -diag_mode D [0] 0 -sim_matrix S [0] vasiliky -transform S [0] -extend_seq FL [0] 0 -outorder S [0] input -inorder S [0] aligned -seqnos S [0] off -case S [0] keep -cpu D [0] 0 -maxnseq D [0] 1000 -maxlen D [0] -1 -sample_dp D [0] 0 -weight S [0] default -seq_weight S [0] no -align FL [1] 1 -mocca FL [0] 0 -domain FL [0] 0 -start D [0] 0 -len D [0] 0 -scale D [0] 0 -mocca_interactive FL [0] 0 -method_evaluate_mode S [0] default -evaluate_mode S [1] t_coffee_fast -get_type FL [0] 0 -clean_aln D [0] 0 -clean_threshold D [1] 1 -clean_iteration D [1] 1 -clean_evaluate_mode S [0] t_coffee_fast -extend_matrix FL [0] 0 -prot_min_sim D [40] 40 -prot_max_sim D [90] 90 -prot_min_cov D [40] 40 -pdb_type S [0] d -pdb_min_sim D [35] 35 -pdb_max_sim D [100] 100 -pdb_min_cov D [50] 50 -pdb_blast_server W_F [0] EBI -blast W_F [0] -blast_server W_F [0] EBI -pdb_db W_F [0] pdb -protein_db W_F [0] uniprot -method_log W_F [0] no -struc_to_use S [0] -cache W_F [0] use -align_pdb_param_file W_F [0] no -align_pdb_hasch_mode W_F [0] hasch_ca_trace_bubble -external_aligner S [0] NO -msa_mode S [0] tree -master S [0] no -blast_nseq D [0] 0 -lalign_n_top D [0] 10 -iterate D [1] 0 -trim D [0] 0 -split D [0] 0 -trimfile S [0] default -split D [0] 0 -split_nseq_thres D [0] 0 -split_score_thres D [0] 0 -check_pdb_status D [0] 0 -clean_seq_name D [0] 0 -seq_to_keep S [0] -dpa_master_aln S [0] -dpa_maxnseq D [0] 0 -dpa_min_score1 D [0] -dpa_min_score2 D [0] -dpa_keep_tmpfile FL [0] 0 -dpa_debug D [0] 0 -multi_core S [0] templates_jobs_relax_msa_evaluate -n_core D [0] 0 -max_n_proc D [0] 0 -lib_list S [0] -prune_lib_mode S [0] 5 -tip S [0] none -rna_lib S [0] -no_warning D [0] 0 -run_local_script D [0] 0 -plugins S [0] default -proxy S [0] unset -email S [0] -clean_overaln D [0] 0 -overaln_param S [0] -overaln_mode S [0] -overaln_model S [0] -overaln_threshold D [0] 0 -overaln_target D [0] 0 -overaln_P1 D [0] 0 -overaln_P2 D [0] 0 -overaln_P3 D [0] 0 -overaln_P4 D [0] 0 -exon_boundaries S [0] -dump S [0] no -display D [0] 100 INPUT FILES Input File (S) input.prot.fasta.muscle_rs_0_0.fasta.aln Format clustal_aln Input File (M) proba_pair Identify Master Sequences [no]: Master Sequences Identified INPUT SEQUENCES: 50 SEQUENCES [PROTEIN] Multi Core Mode: 8 processors: -email S [0] -clean_overaln D [0] 0 -overaln_param S [0] -overaln_mode S [0] -overaln_model S [0] -overaln_threshold D [0] 0 -overaln_target D [0] 0 -overaln_P1 D [0] 0 -overaln_P2 D [0] 0 -overaln_P3 D [0] 0 -overaln_P4 D [0] 0 -exon_boundaries S [0] -dump S [0] no -display D [0] 100 INPUT FILES Input File (S) input.prot.fasta.muscle_rs_0_0.fasta.aln Format clustal_aln Input File (M) proba_pair Identify Master Sequences [no]: Master Sequences Identified INPUT SEQUENCES: 50 SEQUENCES [PROTEIN] Multi Core Mode: 8 processors: --- Process Method/Library/Aln Sinput.prot.fasta.muscle_rs_0_0.fasta.aln -email S [0] -clean_overaln D [0] 0 -overaln_param S [0] -overaln_mode S [0] -overaln_model S [0] -overaln_threshold D [0] 0 -overaln_target D [0] 0 -overaln_P1 D [0] 0 -overaln_P2 D [0] 0 -overaln_P3 D [0] 0 -overaln_P4 D [0] 0 -exon_boundaries S [0] -dump S [0] no -display D [0] 100 INPUT FILES Input File (S) input.prot.fasta.muscle_rs_0_0.fasta.aln Format clustal_aln Input File (M) proba_pair Identify Master Sequences [no]: Master Sequences Identified INPUT SEQUENCES: 50 SEQUENCES [PROTEIN] Multi Core Mode: 8 processors: --- Process Method/Library/Aln Sinput.prot.fasta.muscle_rs_0_0.fasta.aln -email S [0] -clean_overaln D [0] 0 -overaln_param S [0] -overaln_mode S [0] -overaln_model S [0] -overaln_threshold D [0] 0 -overaln_target D [0] 0 -overaln_P1 D [0] 0 -overaln_P2 D [0] 0 -overaln_P3 D [0] 0 -overaln_P4 D [0] 0 -exon_boundaries S [0] -dump S [0] no -display D [0] 100 INPUT FILES Input File (S) input.prot.fasta.muscle_rs_0_0.fasta.aln Format clustal_aln Input File (M) proba_pair Identify Master Sequences [no]: Master Sequences Identified INPUT SEQUENCES: 50 SEQUENCES [PROTEIN] Multi Core Mode: 8 processors: --- Process Method/Library/Aln Sinput.prot.fasta.muscle_rs_0_0.fasta.aln -email S [0] -clean_overaln D [0] 0 -overaln_param S [0] -overaln_mode S [0] -overaln_model S [0] -overaln_threshold D [0] 0 -overaln_target D [0] 0 -overaln_P1 D [0] 0 -overaln_P2 D [0] 0 -overaln_P3 D [0] 0 -overaln_P4 D [0] 0 -exon_boundaries S [0] -dump S [0] no -display D [0] 100 INPUT FILES Input File (S) input.prot.fasta.muscle_rs_0_0.fasta.aln Format clustal_aln Input File (M) proba_pair Identify Master Sequences [no]: Master Sequences Identified INPUT SEQUENCES: 50 SEQUENCES [PROTEIN] Multi Core Mode: 8 processors: --- Process Method/Library/Aln Sinput.prot.fasta.muscle_rs_0_0.fasta.aln -email S [0] -clean_overaln D [0] 0 -overaln_param S [0] -overaln_mode S [0] -overaln_model S [0] -overaln_threshold D [0] 0 -overaln_target D [0] 0 -overaln_P1 D [0] 0 -overaln_P2 D [0] 0 -overaln_P3 D [0] 0 -overaln_P4 D [0] 0 -exon_boundaries S [0] -dump S [0] no -display D [0] 100 INPUT FILES Input File (S) input.prot.fasta.muscle_rs_0_0.fasta.aln Format clustal_aln Input File (M) proba_pair Identify Master Sequences [no]: Master Sequences Identified INPUT SEQUENCES: 50 SEQUENCES [PROTEIN] Multi Core Mode: 8 processors: --- Process Method/Library/Aln Sinput.prot.fasta.muscle_rs_0_0.fasta.aln -email S [0] -clean_overaln D [0] 0 -overaln_param S [0] -overaln_mode S [0] -overaln_model S [0] -overaln_threshold D [0] 0 -overaln_target D [0] 0 -overaln_P1 D [0] 0 -overaln_P2 D [0] 0 -overaln_P3 D [0] 0 -overaln_P4 D [0] 0 -exon_boundaries S [0] -dump S [0] no -display D [0] 100 INPUT FILES Input File (S) input.prot.fasta.muscle_rs_0_0.fasta.aln Format clustal_aln Input File (M) proba_pair Identify Master Sequences [no]: Master Sequences Identified INPUT SEQUENCES: 50 SEQUENCES [PROTEIN] Multi Core Mode: 8 processors: --- Process Method/Library/Aln Sinput.prot.fasta.muscle_rs_0_0.fasta.aln -email S [0] -clean_overaln D [0] 0 -overaln_param S [0] -overaln_mode S [0] -overaln_model S [0] -overaln_threshold D [0] 0 -overaln_target D [0] 0 -overaln_P1 D [0] 0 -overaln_P2 D [0] 0 -overaln_P3 D [0] 0 -overaln_P4 D [0] 0 -exon_boundaries S [0] -dump S [0] no -display D [0] 100 INPUT FILES Input File (S) input.prot.fasta.muscle_rs_0_0.fasta.aln Format clustal_aln Input File (M) proba_pair Identify Master Sequences [no]: Master Sequences Identified INPUT SEQUENCES: 50 SEQUENCES [PROTEIN] Multi Core Mode: 8 processors: --- Process Method/Library/Aln Sinput.prot.fasta.muscle_rs_0_0.fasta.aln -email S [0] -clean_overaln D [0] 0 -overaln_param S [0] -overaln_mode S [0] -overaln_model S [0] -overaln_threshold D [0] 0 -overaln_target D [0] 0 -overaln_P1 D [0] 0 -overaln_P2 D [0] 0 -overaln_P3 D [0] 0 -overaln_P4 D [0] 0 -exon_boundaries S [0] -dump S [0] no -display D [0] 100 INPUT FILES Input File (S) input.prot.fasta.muscle_rs_0_0.fasta.aln Format clustal_aln Input File (M) proba_pair Identify Master Sequences [no]: Master Sequences Identified INPUT SEQUENCES: 50 SEQUENCES [PROTEIN] Multi Core Mode: 8 processors: --- Process Method/Library/Aln Sinput.prot.fasta.muscle_rs_0_0.fasta.aln -email S [0] -clean_overaln D [0] 0 -overaln_param S [0] -overaln_mode S [0] -overaln_model S [0] -overaln_threshold D [0] 0 -overaln_target D [0] 0 -overaln_P1 D [0] 0 -overaln_P2 D [0] 0 -overaln_P3 D [0] 0 -overaln_P4 D [0] 0 -exon_boundaries S [0] -dump S [0] no -display D [0] 100 INPUT FILES Input File (S) input.prot.fasta.muscle_rs_0_0.fasta.aln Format clustal_aln Input File (M) proba_pair Identify Master Sequences [no]: Master Sequences Identified INPUT SEQUENCES: 50 SEQUENCES [PROTEIN] Multi Core Mode: 8 processors: --- Process Method/Library/Aln Sinput.prot.fasta.muscle_rs_0_0.fasta.aln -email S [0] -clean_overaln D [0] 0 -overaln_param S [0] -overaln_mode S [0] -overaln_model S [0] -overaln_threshold D [0] 0 -overaln_target D [0] 0 -overaln_P1 D [0] 0 -overaln_P2 D [0] 0 -overaln_P3 D [0] 0 -overaln_P4 D [0] 0 -exon_boundaries S [0] -dump S [0] no -display D [0] 100 INPUT FILES Input File (S) input.prot.fasta.muscle_rs_0_0.fasta.aln Format clustal_aln Input File (M) proba_pair Identify Master Sequences [no]: Master Sequences Identified INPUT SEQUENCES: 50 SEQUENCES [PROTEIN] Multi Core Mode: 8 processors: --- Process Method/Library/Aln Sinput.prot.fasta.muscle_rs_0_0.fasta.aln --- Process Method/Library/Aln Mproba_pair xxx Retrieved Sinput.prot.fasta.muscle_rs_0_0.fasta.aln xxx Retrieved Mproba_pair All Methods Retrieved MANUAL PENALTIES: gapopen=0 gapext=0 Library Total Size: [488196] Library Relaxation: Multi_proc [8] -email S [0] -clean_overaln D [0] 0 -overaln_param S [0] -overaln_mode S [0] -overaln_model S [0] -overaln_threshold D [0] 0 -overaln_target D [0] 0 -overaln_P1 D [0] 0 -overaln_P2 D [0] 0 -overaln_P3 D [0] 0 -overaln_P4 D [0] 0 -exon_boundaries S [0] -dump S [0] no -display D [0] 100 INPUT FILES Input File (S) input.prot.fasta.muscle_rs_0_0.fasta.aln Format clustal_aln Input File (M) proba_pair Identify Master Sequences [no]: Master Sequences Identified INPUT SEQUENCES: 50 SEQUENCES [PROTEIN] Multi Core Mode: 8 processors: --- Process Method/Library/Aln Sinput.prot.fasta.muscle_rs_0_0.fasta.aln --- Process Method/Library/Aln Mproba_pair xxx Retrieved Sinput.prot.fasta.muscle_rs_0_0.fasta.aln xxx Retrieved Mproba_pair All Methods Retrieved MANUAL PENALTIES: gapopen=0 gapext=0 Library Total Size: [488196] Library Relaxation: Multi_proc [8] -email S [0] -clean_overaln D [0] 0 -overaln_param S [0] -overaln_mode S [0] -overaln_model S [0] -overaln_threshold D [0] 0 -overaln_target D [0] 0 -overaln_P1 D [0] 0 -overaln_P2 D [0] 0 -overaln_P3 D [0] 0 -overaln_P4 D [0] 0 -exon_boundaries S [0] -dump S [0] no -display D [0] 100 INPUT FILES Input File (S) input.prot.fasta.muscle_rs_0_0.fasta.aln Format clustal_aln Input File (M) proba_pair Identify Master Sequences [no]: Master Sequences Identified INPUT SEQUENCES: 50 SEQUENCES [PROTEIN] Multi Core Mode: 8 processors: --- Process Method/Library/Aln Sinput.prot.fasta.muscle_rs_0_0.fasta.aln --- Process Method/Library/Aln Mproba_pair xxx Retrieved Sinput.prot.fasta.muscle_rs_0_0.fasta.aln xxx Retrieved Mproba_pair All Methods Retrieved MANUAL PENALTIES: gapopen=0 gapext=0 Library Total Size: [488196] Library Relaxation: Multi_proc [8] [Relax Library][TOT= 6][ 0 %][ELAPSED TIME: 0 sec.] [Relax Library][TOT= 6][ 33 %][ELAPSED TIME: 0 sec.] [Relax Library][TOT= 6][ 50 %][ELAPSED TIME: 0 sec.] [Relax Library][TOT= 6][ 66 %][ELAPSED TIME: 0 sec.] [Relax Library][TOT= 6][ 83 %][ELAPSED TIME: 0 sec.] [Relax Library][TOT= 6][100 %][ELAPSED TIME: 0 sec.] -email S [0] -clean_overaln D [0] 0 -overaln_param S [0] -overaln_mode S [0] -overaln_model S [0] -overaln_threshold D [0] 0 -overaln_target D [0] 0 -overaln_P1 D [0] 0 -overaln_P2 D [0] 0 -overaln_P3 D [0] 0 -overaln_P4 D [0] 0 -exon_boundaries S [0] -dump S [0] no -display D [0] 100 INPUT FILES Input File (S) input.prot.fasta.muscle_rs_0_0.fasta.aln Format clustal_aln Input File (M) proba_pair Identify Master Sequences [no]: Master Sequences Identified INPUT SEQUENCES: 50 SEQUENCES [PROTEIN] Multi Core Mode: 8 processors: --- Process Method/Library/Aln Sinput.prot.fasta.muscle_rs_0_0.fasta.aln --- Process Method/Library/Aln Mproba_pair xxx Retrieved Sinput.prot.fasta.muscle_rs_0_0.fasta.aln xxx Retrieved Mproba_pair All Methods Retrieved MANUAL PENALTIES: gapopen=0 gapext=0 Library Total Size: [488196] Library Relaxation: Multi_proc [8] -email S [0] -clean_overaln D [0] 0 -overaln_param S [0] -overaln_mode S [0] -overaln_model S [0] -overaln_threshold D [0] 0 -overaln_target D [0] 0 -overaln_P1 D [0] 0 -overaln_P2 D [0] 0 -overaln_P3 D [0] 0 -overaln_P4 D [0] 0 -exon_boundaries S [0] -dump S [0] no -display D [0] 100 INPUT FILES Input File (S) input.prot.fasta.muscle_rs_0_0.fasta.aln Format clustal_aln Input File (M) proba_pair Identify Master Sequences [no]: Master Sequences Identified INPUT SEQUENCES: 50 SEQUENCES [PROTEIN] Multi Core Mode: 8 processors: --- Process Method/Library/Aln Sinput.prot.fasta.muscle_rs_0_0.fasta.aln --- Process Method/Library/Aln Mproba_pair xxx Retrieved Sinput.prot.fasta.muscle_rs_0_0.fasta.aln xxx Retrieved Mproba_pair All Methods Retrieved MANUAL PENALTIES: gapopen=0 gapext=0 Library Total Size: [488196] Library Relaxation: Multi_proc [8] -email S [0] -clean_overaln D [0] 0 -overaln_param S [0] -overaln_mode S [0] -overaln_model S [0] -overaln_threshold D [0] 0 -overaln_target D [0] 0 -overaln_P1 D [0] 0 -overaln_P2 D [0] 0 -overaln_P3 D [0] 0 -overaln_P4 D [0] 0 -exon_boundaries S [0] -dump S [0] no -display D [0] 100 INPUT FILES Input File (S) input.prot.fasta.muscle_rs_0_0.fasta.aln Format clustal_aln Input File (M) proba_pair Identify Master Sequences [no]: Master Sequences Identified INPUT SEQUENCES: 50 SEQUENCES [PROTEIN] Multi Core Mode: 8 processors: --- Process Method/Library/Aln Sinput.prot.fasta.muscle_rs_0_0.fasta.aln --- Process Method/Library/Aln Mproba_pair xxx Retrieved Sinput.prot.fasta.muscle_rs_0_0.fasta.aln xxx Retrieved Mproba_pair All Methods Retrieved MANUAL PENALTIES: gapopen=0 gapext=0 Library Total Size: [488196] Library Relaxation: Multi_proc [8] -email S [0] -clean_overaln D [0] 0 -overaln_param S [0] -overaln_mode S [0] -overaln_model S [0] -overaln_threshold D [0] 0 -overaln_target D [0] 0 -overaln_P1 D [0] 0 -overaln_P2 D [0] 0 -overaln_P3 D [0] 0 -overaln_P4 D [0] 0 -exon_boundaries S [0] -dump S [0] no -display D [0] 100 INPUT FILES Input File (S) input.prot.fasta.muscle_rs_0_0.fasta.aln Format clustal_aln Input File (M) proba_pair Identify Master Sequences [no]: Master Sequences Identified INPUT SEQUENCES: 50 SEQUENCES [PROTEIN] Multi Core Mode: 8 processors: --- Process Method/Library/Aln Sinput.prot.fasta.muscle_rs_0_0.fasta.aln --- Process Method/Library/Aln Mproba_pair xxx Retrieved Sinput.prot.fasta.muscle_rs_0_0.fasta.aln xxx Retrieved Mproba_pair All Methods Retrieved MANUAL PENALTIES: gapopen=0 gapext=0 Library Total Size: [488196] Library Relaxation: Multi_proc [8] -email S [0] -clean_overaln D [0] 0 -overaln_param S [0] -overaln_mode S [0] -overaln_model S [0] -overaln_threshold D [0] 0 -overaln_target D [0] 0 -overaln_P1 D [0] 0 -overaln_P2 D [0] 0 -overaln_P3 D [0] 0 -overaln_P4 D [0] 0 -exon_boundaries S [0] -dump S [0] no -display D [0] 100 INPUT FILES Input File (S) input.prot.fasta.muscle_rs_0_0.fasta.aln Format clustal_aln Input File (M) proba_pair Identify Master Sequences [no]: Master Sequences Identified INPUT SEQUENCES: 50 SEQUENCES [PROTEIN] Multi Core Mode: 8 processors: --- Process Method/Library/Aln Sinput.prot.fasta.muscle_rs_0_0.fasta.aln --- Process Method/Library/Aln Mproba_pair xxx Retrieved Sinput.prot.fasta.muscle_rs_0_0.fasta.aln xxx Retrieved Mproba_pair All Methods Retrieved MANUAL PENALTIES: gapopen=0 gapext=0 Library Total Size: [488196] Library Relaxation: Multi_proc [8] -email S [0] -clean_overaln D [0] 0 -overaln_param S [0] -overaln_mode S [0] -overaln_model S [0] -overaln_threshold D [0] 0 -overaln_target D [0] 0 -overaln_P1 D [0] 0 -overaln_P2 D [0] 0 -overaln_P3 D [0] 0 -overaln_P4 D [0] 0 -exon_boundaries S [0] -dump S [0] no -display D [0] 100 INPUT FILES Input File (S) input.prot.fasta.muscle_rs_0_0.fasta.aln Format clustal_aln Input File (M) proba_pair Identify Master Sequences [no]: Master Sequences Identified INPUT SEQUENCES: 50 SEQUENCES [PROTEIN] Multi Core Mode: 8 processors: --- Process Method/Library/Aln Sinput.prot.fasta.muscle_rs_0_0.fasta.aln --- Process Method/Library/Aln Mproba_pair xxx Retrieved Sinput.prot.fasta.muscle_rs_0_0.fasta.aln xxx Retrieved Mproba_pair All Methods Retrieved MANUAL PENALTIES: gapopen=0 gapext=0 Library Total Size: [488196] Library Relaxation: Multi_proc [8] Relaxation Summary: [488196]--->[484617] UN-WEIGHTED MODE: EVERY SEQUENCE WEIGHTS 1 OUTPUT RESULTS #### File Type= MSA Format= score_ascii Name= input.prot.fasta.muscle_rs_0_0.fasta.score_ascii #### File Type= MSA Format= html Name= input.prot.fasta.muscle_rs_0_0.fasta.html #### File Type= MSA Format= score_ascii Name= input.prot.fasta.muscle_rs_0_0.fasta.score_ascii # Command Line: t_coffee -infile input.prot.fasta.muscle_rs_0_0.fasta.aln -output score_ascii -special_mode evaluate -evaluate_mode t_coffee_fast [PROGRAM:T-COFFEE] # T-COFFEE Memory Usage: Current= 31.945 Mb, Max= 43.955 Mb # Results Produced with T-COFFEE Version_10.00.r1613 (2013-10-22 15:49:09 - Revision 1613 - Build 432) # T-COFFEE is available from http://www.tcoffee.org # Register on: https://groups.google.com/group/tcoffee/ FORMAT of file input.prot.fasta.muscle_rs_0_0.fasta.ipi_i.fasta Not Supported[FATAL:T-COFFEE] CLUSTAL W (1.83) multiple sequence alignment C1 MENRWQVMIVWQIDRMRIKTWNSLVKHHMYISKKAKGWFYRHHYESRHPK C2 MENRWQVMIVWQVDRMKIKTWNSLVKHHMYVSKKANKWFYRHHYESRHPK C3 MENRWQVMIVWQVDRMRIRTWHSLVKHHMYISKKASKWFYRHHYESQHPK C4 MENRWQVLIVWQVDRMKIRTWNSLVKHHMYISRRANGWLYRHHYNSIHPR C5 MENRWQVMIVWQVDRMRINTWKSLVKYHMHISKKAQRWLYRHHYDSPHPK C6 MENRWQVMIVWQVDRMRIRTWNSLVKYHMYRSRKAKEWFYRHHFESRHPK C7 MENRWQVMIVWQVDRMRIRTWKSLVKHHMYISKKAGKWFYRHHYESTHPK C8 MDNRWQVMIVWQVDRMRIKTWNSLVKYHMYVSKKANKWFYRHHYESRHPK C9 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYVSKKAHRWFYRHHYESRHPK C10 MENRWQVLIVWQVDRMRIRTWNSLVKHHMYVSKQAKNWFYRHHFESRHPK C11 MENRWQVMIVWQVDRMRIRAWKSLVKHHIYISKKARGWSYKHHYESTNPR C12 MENRWQVMIVWQVDRMRINTWKSLVKYHIHISKKAKGWIYKHHYESTNPR C13 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYVSKKAKNWFYRHHFESRHPK C14 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYVSKKANRWFYRHHYEAQHPK C15 MENRWQGLIVWQVDRMKIRTWNSLVKHHMYISKRASGWFYRHHYESRHPK C16 MENRWQVMIVWQVDRMRIRTWNSLVKHHIYVSKKAKKWFYRHHYESQHPK C17 MENRWQVMIVWQVDRMRIRTWNSIVKHHMYVSRRAKGWFYRHHYESPHPK C18 MENRWQVMIVWQVDRMRIRAWKSLVKHHMYISGKARGWSYRHHYESPHPR C19 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYISKKAKKWVYRHHYENQHPK C20 MENRWQVLIVWQVDRMKIRTWNSLVKHHMYISRRANGWLYRHHYDSRHPK C21 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYISKKAKGWAYRHHYESRHPK C22 MENRWQVMIVWQVDRMRIKTWNSLVKHHMYVSKKAKKWFYRHHYESQHPK C23 MENRWQGLIVWQVDRMRIRTWNSLVKHHMYISRRANGWFYRHHYESRHPK C24 MENRWQVMIVWQVDRMRIRTWKSLVKHHMHVSGKAKKWLYKHHYESINPR C25 MENRWQVMIVWQVDRMRIRTWKSLVKHHMYISGKAKEWFYRHHYESTHPR C26 MENRWQVLIVWQVDRMRIRTWNSLVKHHMYVSRRASGWFYRHHYESRHPK C27 MENRWQVMIVWQVDRMRIRTWKSLVKHHMYISRKAKGWVYRHHYENTHPR C28 MENRWQVLIVWQVDRMRIRTWNSLVKHHMYVSRKANGWVYRHHYDSRHPK C29 MENRWQVVIVWQVDRMRIRTWNSLVKHHMYISKKAKKWFYRHHYESQHPK C30 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYVSKKAKGWSYRHHYESRNLR C31 MENRWQVLIVWQVDRMKIRTWNSLVKHHMYVSRRANGWLYRHHYDSRNPK C32 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYVSKRAKGWFYRHHYESRHPR C33 MENRWQVLIVWQVDRMRIRTWNSLVKHHMYISRRASGWFYRHHYESRNPK C34 MENRWQVMIVWQVDRMRINAWKSLVKYHMHISKKAKRWCYRHHFESRNPR C35 MENRWQVMIAWQVDRMRIKAWNRLVKHHMYISKKTKGWVYKHHYENANPR C36 MENRWQVMIVWQVDRMRINTWKSLVKYHMHVSKKAKKWSYRHHFESRHPK C37 MENRWQVMIVWQVDRMRIRTWKSLVKHHMYISGKAKRWFYKHHYESTNPR C38 MENRWQVMIVWQVDRMRIRTWNSIVKHHMYVSKKAKGWIYKHHYESTNPR C39 MENRWQVMIVWQVDRMRINAWKSLVKYHMHISRKAKGWLYRHHYDSYHPK C40 MENRWQVMIVWQVDRMRIRTWHSLVKHHMYISRKAKGWFYKHHYESRHPK C41 MENRWQVMIVWQVDRMRIQAWHSLVKHHMYISKKAKGWAYRHHYESNHPR C42 MENRWQVMIVWQVDRMRIRTWKSLVKHHMYISKKAKGWFYRHHYENPHPR C43 MENRWQVMVVWQVDRMKIRIWNSLVKHHMHVSKKAKGWYYRHHYETRHPK C44 MENRWQVMIVWQVDRMRIRTWHGLVKHHMYVSKKAKNWLYRHHYDCPHPK C45 MENRWQVMIVWQVDRMRIRTWKSLVKHHIYISKKARGWFYRHHYESTHPK C46 MENRWQGLIVWQVDRMKIRTWNSLVKHHMYVSKRANGWFYRHHYESRHPK C47 MENRWQVMIVWQVDRMRIRTWKSLVKHHMYVSGKAKGWCYRHHYESTNPR C48 MENRWQVMIVWQVDRMRINKWKSLVKHHMYISRKAKDWFYRHHHESTHPR C49 MENRWQVMIVWQVDRMRIKTWNSLVKHHMYISGKAREWTYRHHYESTNPR C50 MENRWQVLIVWQVDRMKIRTWNSLVKHHMYISKRASGWSYRHHYESRNPK *:**** ::.**:***:*. *: :**:*:: * :: * *:**.: : : C1 VSSEVHIPLGDARLVVRTYWGLHTGERDWHLGQGVSIEWRQRRYSTQVDP C2 VSSEVHIPLGDATLVIRTYWGLQTGDKDWHLGHGVSIEWRQRRYSTQIDP C3 VSSEVRIPLGEAILVVRTYWGLQTGEKEWHLGHGVSIEWRQKNYRTQTDP C4 VSSEVHIPLGAAKLVVKTYWGLQTGEREWHLGHGVSIEWKLGEYSTQVEP C5 ISSEVHIPLGDARLVVKTYWGLHTGERDWHLGQGVSIEWRKRKYSTQVDP C6 VSSEVHIPLGDARLVVKTYWGLHTGEREWHLGHGVSIEWRQKRYSTQIDP C7 ISSEVHIPLGDAKLVITTYWGLHTGERDWHLGQGVSIEWRINRYSTQVDP C8 VSSEVHIPLGDAILVVRTYWGLHPGEQDWHLGQGVSIEWRQKRYSTQIDP C9 VSSEVHIPLGDATLIVRTYWGLQPGERDWHLGHGVSIVWQQKRYSTQIDP C10 ISSEVHIPLGEARLVVKTYWGLHTGEREWHLGQGVSIEWRKGRYSTQVDP C11 TSSEVHIPLGDAKLVIATYWGLHTGERDWHLGQGVSIEWKKESYSTQVDP C12 ISSEVHIPLGEARLVVKTYWGLHTGERDWHLGQGASIEWRKNRYSTQVAP C13 VSSEVHVPLGDAKLVVRTYWGLHTGEKEWHLGHGVSIEWRLKRYSTQIDP C14 VSSEVHIPLGDAKIVVRTYWGLHTGEKDWHLGHGVSIEWRLKRYNTQIDP C15 VSSEVHIPLGDARLVVITYWGLHTGEREWHLGHGVSMEWRWKRYSTQVDP C16 VSSEVHIPLGEAKLVIRTYWGLQTGEKDWHLGHGVSIEWRQGNYNTQIDP C17 VSSEVHIPLGEAKLVIITYWGLQTGEKDWQLGHGVSIEWRMRKYSTQVDP C18 ISSEVHIPLGDAKLVVTTYWGLHTGERDWHLGQGVSIEWRKRRYSTQVDP C19 VSSEVHIPLGEARLVIRTYWGLQTGEKDWHLGHGVSIEWRQGNYNTQIDP C20 ISSEVHIPLGEARLVIKTYWGLQTGERDWHLGHGVSIEWRLRSYNTQIEP C21 ISSEVHIPLRDAELVITTYWGLHTGERDWHLGQGVSIEWRKKRYSTQVDP C22 VSSEVHIPLGEARLVIRTYWGLQTGEKDWQLGHGVSIEWRQRNYSTQIDP C23 VSSEVHIPLGDARLVIKTYWGLQTGERDWHLGHGVSIEWRLKRYSTQVDP C24 KSSEVHIPLGDARLVITTYWGLHTGERDWHLGQGVSIEWRKERYRTQVTP C25 ISSEVHIPLGDARLVITTYWGLHTGERDWHLGQGVSIEWRKRRYSTQVDP C26 VSSEVHIPLGEARLVVRTYWGLQTGEREWHLGHGVSIEWRLRKYSTQVDP C27 VSSEVHIPLRDAKLVVTTYWGLHTGERDWHLGQGVSIEWRKERYNTQVDP C28 VSSEVHIPLGEAKLEIKTYWGLQTGERDWHLGHGVSIEWRWRRYSTQVDP C29 VSSEVHIPLGEARLVIRTYWGLQTGEKDWHLGHGVSIEWRQGKYNTQIDP C30 VSSEVHIPLGDAKLVVITYWGLHTGEKDWQLGHGVSIEWRQKRYSTQIDP C31 VSSEVHIPVGEAKLVIKTYWGLQTGERDWHLGHGVSIEWRLRRYHTQIEP C32 VSSEVHIPLGDARLIIKTYWGLLPGEREWHLGHGVSIEWRCRRYSTQVDP C33 VSSEVHIPLGEARVIIKTYWNLQTGERAWHLGQGVSIEWRLRRYSTQIDP C34 ISSEVHIPLEEAKLVITTYWGLHTGERDWHLGQGVSIEWRQGRYKTQIDP C35 VSSEVHIPLGDAALVVTTYWGLHTGERDWHLGQGVSIEWRKRSYRTQVTP C36 ISSEVHIPLEADELVITTYWGLHTGERDWHLGQGVSIEWRQGRYRTQIDP C37 ISSEVHIPLGEASLVITTYWGLHTGERDWHLGQGVSIEWRKKGYSTQIDP C38 ISSEVYIPLGDAKLVITTYWGLHTGERDWQLGHGVSIEWRKERYSTQADP C39 ISSEVHIPLGCAELVITTYWGLNTGEREWHLGQGVSIEWRMRRYRTQIDP C40 VSSEVHIPINEARLIIRTYWGLQTGEKDWHLGHGVSVEWRQRRYSTQVDP C41 ISSEVRIPVGDATLVITTYWGLQTGERDWHLGRGVSVEWRKRKYRTQVDP C42 VSSEVHIPLGDAKLVITTYWGLHTGERDWHLGQGVSIEWRKRRYSTQVDP C43 ISSEVHIPVGQARLVIVTYWGLTTGEQPWHLGHGVSIEWRLRKYKTQVDP C44 IISEVHIPLGKARLVVKTYWVLHTGERKWHLVHGVSIEWRLKRYSTQIDP C45 ISSEVHIPLEAARLVITTYWGLHTGERDWHLGQGVSIEWRKKRYSTQIDP C46 ISSEVHIPLGDARLVIKTYWGLHTGEREWHLGHGVSIEWRLRRYSTQVDP C47 ISSEVHIPLGEAKLVIVTYWGLHTGERDWHLGQGVSIEWRKKRYSTQVGP C48 ISSEVHIPLGDAKLVVTTYWGLHTGERDWHLGQGVSIEWRMRRYSTQVDP C49 ASSEVHIPLGDARLVVTTYWGLHTGERDWHLGQGVSIEWRKRRYSTQVDP C50 VSSEVHVPLGEAKLVIKTYWGLQPGERDWHLGHGVSIEWRLKSYSTQVEP *** :*: : : *** * .*:: *:* :*.*: *: * ** * C1 DLADHLIHLHYFDCFSDSAIRKAILGEVVSPRCQYPEGHNKVGSLQYLAL C2 DLADRLIHLQYFDCFSDSAIRKAILGQVVRRRCEYPSGHNKVGSLQYLAL C3 DLADQLIHLHYFDCFSDSAIRKAILGQVVRRRCEYPSGHNKVGSLQYLAL C4 GLADQLIHTHYFDCFTDSAIRKAILGHIVIPRCDYQAGHNKVGSLQYLAL C5 GLADQLIHIYYFDCFSESAIRQAILGRVVSPRCDYPAGHNQVGSLQYLAL C6 DLADQLIHLHYFDCFSESAIRKAILGQVVSPRCDYQAGHNKVGSLQYLAL C7 GLADQLIHLYYFDCFSESAVRKAILGHRVRPRCEYQAGHNKVGSLQYLAL C8 NLADQLIHLHYFDCFSESAIRKAILGQVVRPRCEYQTGHNKVGSLQYLAL C9 DLADQLIHLHYFDCFSESAIRKALLGQVVRPKCEYQAGHNKVGSLQYLAL C10 GLADQLIHIYYFDCFAESAIRKAILGHIVAPRCNYQAGHNKVGSLQYLAL C11 DLADQLIHLYYFNCFSDSAIRKAIVGHIVSPSCEYLSGHNKVGSLQYLAL C12 DLADRLIHLYYFDCFSDSAIRKAILGKIVSPRCEYQAGHNKVGSLQYLAL C13 DLADQLIHLHYFNCFSDSAIRRAILGQVVSPSCEYQAGHNKVGSLQYLAL C14 DLADQLIHLYYFDCFSDSAIRKAILGQVVSPICEYQTGHNKVGSLQYLAL C15 GLADQLIHLHYFDCFADSAIRKAILGHIVIPRCDYQAGHKKVGSLQYLAL C16 DLADQLIHLQYFDCFSESAIRKAILGQVVRRRCEYPTGHNKVGSLQYLAL C17 DLADQLIHLHYFNCFSGSAIRNAILGQVVRSRCDYPSGHNKVGSLQYLAL C18 DLADQLIHVYYFDCFSETAIRNTLLGRRVSPRCEYQAGHNKVGSLQYLAL C19 DLADQLIHLNYFDCFSDSAIRKAILGQVVRRRCEYPSGHNKVGSLQYLAL C20 GLADQLIHMYYFDCFADSAIRKAILGHVVIPRCDYQAGHNKVGSLQYLAL C21 NLADHLIHLHYFDCFSESAIRNAILGHIVSPSCEYQAGHNKVGSLQYLAL C22 DLADQLIHLQYFDCFSDSAIRRAILGQVVRRRCEYPSGHNKVGSLQYLAL C23 GLADQLIHMHYFDCFADSAIRQAIVGHRVSSRCDYQAGHNKVGSLQYLAL C24 DMADQLIHMYYFDCFSDSAIRNAILGYRVSPRCEYQAGHSKVGSLQYLAL C25 DLADQLIHLYYFNCFSESAIRNAILGRIVSPKCEYQAGHNRVGSLQYLAL C26 GLADQLIHMHYFDCFADSAIRKAILGHIVKPRCDYQAGHNKVGSLQYLAL C27 ELADQLIHLYYFDCFSESAIRNAILGNRVSPSCEYQAGHNKVGSLQYLAL C28 GLADQLIHMYYFDCFAESAIRKAILGHIVTPRCDYQAGHNKVGSLQYLAL C29 DLADQLIHLHYFDCFSDSAIRKAILGQVVRRRCEYPSGHNKVGSLQYLAL C30 DLADQLIHLHYFDCFSDSAIRKAILGQLVSPRCEYQAGHNKVGSLQYLAL C31 DLADQLIHLHYFDCFADSAIRKAILGHIVIPRCDYQAGHNKVGSLQYLAL C32 GLADQLIHMHYFDCFADSAIRKAILGHIVTPRCNYQAGHNKVGSLQYLAL C33 GLADQLIHMHYFDCFADSAIRKAILGHIVIPRCDYQAGHNKVGSLQYLAL C34 GLADQLIHIYYFDCFSESAIRKAILGHKISPRCNYQAGHNKVGSLQYLAL C35 DLADHLIHLYYFDCFSESAIRNAILGRIVSPSCEYQAGHNKVGSLQYLAL C36 GLADQLIHIYYFDCFSESAIRKAILGHTISPRCNYQAGHNKVGSLQYLAL C37 GLADQLIHLYYFDCFSESAIRNAILGHRVRPSCEYQAGHNKVGSLQYLAL C38 DLADQLIHLYYFDCFSDSAIRQAILGHRVSPRCEYQAGHNKVGSLQYLAL C39 VLADQLIHVHYFDCFSESAIRKAILGHIVSPRCEYQAGHNKVGSLQYLAL C40 DLADQLIHLQYFDCFSESAIRKAILGQKIIHRCEYQTGHKKVGSLQYLAL C41 DIADHLIHLYYFDCFSESAIRNAILGHVVNPKCEYHTGHDKVGSLQYLAL C42 NRADQLIHLYYFDCFSDSAIRNTLLGHRVSPRCEYQAGHNKVGSLQYLAL C43 EMADKLIHLYYFDCFTASAIRQAILGRQVFPRCEYPAGHNQVGTLQYLAL C44 DQADQLIHLHYFDCFSESAIRKAILGEVVSPRCEYQTGHNKVGSLQYLAL C45 DLADQLIHLYYFDCFSDSAIRNAILGRIGSPRCEYQAGHNKVGSLQYLAL C46 DLADQLIHIHYFDCFTDSAIRKAILGHIVFPRCDYQAGHNKVGSLQYLAL C47 DLADQLIHLYYFDCFSESAIRKALLGHRVSPRCEYQAGHNKVGSLQYLAL C48 LMADQLIHLYYFDCFTESAIRNAILGHIVRPRCEYPAGHNQVGSLQYLAL C49 ELADQLIHMYYFDCFSETAIRQAILGRIVSPRCEFQAGHNKVGSLQYLAL C50 GLADQLIHLYYFDCFAESAIRKAILGHIVLSRCDYQAGHTKVGSLQYPAL **:*** **:**: :*:*.:::* *:: ** :**:*** ** C1 KALVTPTKTKPPLPSVKKLTEDRWNKPQKTRGHRGSRPMNGHooo C2 KALTTPKRIRPPLPSVKKLTEDRWNKPQKARGYREHPTINGHooo C3 KALTTPKQIRPPLPSVKKLTEDRWNKPQKIRGHREYPTMNGHooo C4 TALIKPKKIKPPLPSIRKLVEDRWNKPQKTRGRRGNHTMNGHooo C5 TALIASKKRKPPLPSVRKLTEDRWNKPQKTRGHRGNHTMNGHooo C6 KALITPTKTKPPLPSVKKLAEDRWNKPQKTRGHRGSRSMNGHooo C7 VALITPKKTKPPLPSVTKLTEDRWNKPQRTTGHRGSHTMNGHooo C8 RAVVKLRNTKPPCPSVRKLTEDRWNKPQKTRGHRGNHTMNGCooo C9 KALVTPTRRKPPLPSVKKLAEDRWNEPQKTRGHRGNRSMNGHooo C10 TALIKPKKIKPPLPSVRKLTEDRWNKPQKTRGPRESHTMNGCooo C11 TALITPKRRKPPLPSVAKLTEDRWNKPQKTKGHKGSHTMNGHooo C12 VALTTPKKTKPPLPSVKKLTEDRWNKPQKTKGHRGSHTMNGHooo C13 KALVTPKKTKPPLPSVRKLTEDRWNKPQKTKGHRGNHTMHGQooo C14 KALVTPTKAKPPLPSVRKLTEDRWNKPQKTKGHRGCHTMNGHooo C15 TALIKPKKRKPPLPSISKLTEDRWNNPQKIRGRRGNHTMNGHooo C16 KALTTPKRIKPPLPSVKKLTEDRWNEPQKIRGHRENHTMNGHooo C17 KALTTSKRIKPPLPSVRKLTEDRWNKPQKIRGHPENPTMNGHooo C18 VALIKPKRTKPPLPSVKKLTEDRWNKPQRTKGHRGNHTMNGHooo C19 KALTTQKKTRPPLPSVKKLTEDRWNEPQKIRGHRGNPTMSGHooo C20 TALIKPKRIRPPLPSIKKLVEDRWNNPQEIRGRRGNHTMNGQWSF C21 AALTTPKKKKPPLPSVTKLTEDRWNKPQKTKGHRGNRTMNGHooo C22 RALTTPKRIRPPLPSVKKLTEDRWNKPQRTKGHQGSHTMHGHooo C23 TALIKPKKIKPPLPSVKKLVEDRWNKPQKTRGRRGNHTMNGYooo C24 AALVTPKQTKPPLPSVTKLTEDRWNKPRKTKGHRGNHTMNGRooo C25 AALITPRRVKPPLPSVRKLTEDRWNKPHKTKGHRGNHSMNGHooo C26 TALIKTKKIKPPLPSINKLVEDRWNKPQKTRGRRGNHTMNGHooo C27 SALITPKKIKPPLPSVTKLTEDRWNKPRKTKGHRGSHTMNGHooo C28 TAIIKPKRRKPPLPSIKKLVEDRWNNPQKIRARRGNHTMNGHooo C29 KALTTPKRIRPPLPSVKKLTEDRWNKPQRTTGHRGSHTMSGHooo C30 KALVTPTRRKPPLPSVRKLTEDRWNKPQKTKGHRENPTMSGHWNC C31 TALIKPKKIKPPLPSIKKLVEDRWNNPQKIRGRRGNHTMNGHooo C32 TALITPKKIKPPLPSVRKLTEDRWNKPQRTKGHRESHTMSGHooo C33 TALIKPKKRKPPLPSVQKLVEDRWNNPQKTRGRRGNHTMNGHooo C34 TALIAPKKTRPPLPSVKKLVEDRWNKPQETRGHRGSHTMNGHooo C35 SALITPKKRKPPLPSVRKLTEDRWHKPQKTTGHKGNHTMNGHooo C36 TALITPKKTKPPLPSVQKLVEDRWNKPQETRGHRGSRTTNGHooo C37 AALLTPKKIKPPLPGVTKLTEDRWNKPQKTKGHRGSHTMNGHooo C38 TALITPKRRKPPLPSVKKLTEDRWNEPQKTRGHRGSHTMNGHooo C39 TALLKPKKRKPPLPSVQKLVEDRWNKPQKTRDHRDSHTMHGHooo C40 KALVAPKGAKPPLPSVRKLTEDRWNKPQKTKGHRESHTMNGCooo C41 VALTKPKRRKPPLPSVRKLTEDRWNKPQKTKDHKESHTMNGHooo C42 AALRKPKKTKPPLPSVAKLTEDRWNKPQKTKGHKGNHIMNGHooo C43 TAWVGIKKRKPPLPSVAKLTEDRWNKHQKTQGHRGNPTMNGHooo C44 KALVAPTKKKPPLPSVKILAEDRWNKPQRTKGHRGSHTMNGHooo C45 TALVKPKKTKPPLPSVRKLTEDRWNEPQKTKGRRGSRTMNGQooo C46 TALIKPKRIKPPLPSVKKLVEDRWNNPQKTKGRRGNHTMNGHooo C47 AALITPKKIKPPLPSVTKLTEDRWNKPQKIKGHRGSHIMNGHooo C48 TALIKPKKRKPPLPSVQKLTEDRWNKPRKTKGHRGNRTMNGHooo C49 AALVKPKKRKPPLPSVQKLTEDRWNKPRKIKGHRGSHTMNGHooo C50 TALIKPKKDKATSASIRKLVEDRWNNPPKTKGRRGNHTLNGHooo * :.. ..: *.****:: . * FORMAT of file input.prot.fasta.muscle_rs_0_0.fasta.ipi_bs.fasta Not Supported[FATAL:T-COFFEE] input.prot.fasta.muscle_rs_0_0.fasta.aln I:93 S:99 BS:94 # TC_SIMILARITY_MATRIX_FORMAT_01 # SEQ_INDEX C1 0 # SEQ_INDEX C2 1 # SEQ_INDEX C3 2 # SEQ_INDEX C4 3 # SEQ_INDEX C5 4 # SEQ_INDEX C6 5 # SEQ_INDEX C7 6 # SEQ_INDEX C8 7 # SEQ_INDEX C9 8 # SEQ_INDEX C10 9 # SEQ_INDEX C11 10 # SEQ_INDEX C12 11 # SEQ_INDEX C13 12 # SEQ_INDEX C14 13 # SEQ_INDEX C15 14 # SEQ_INDEX C16 15 # SEQ_INDEX C17 16 # SEQ_INDEX C18 17 # SEQ_INDEX C19 18 # SEQ_INDEX C20 19 # SEQ_INDEX C21 20 # SEQ_INDEX C22 21 # SEQ_INDEX C23 22 # SEQ_INDEX C24 23 # SEQ_INDEX C25 24 # SEQ_INDEX C26 25 # SEQ_INDEX C27 26 # SEQ_INDEX C28 27 # SEQ_INDEX C29 28 # SEQ_INDEX C30 29 # SEQ_INDEX C31 30 # SEQ_INDEX C32 31 # SEQ_INDEX C33 32 # SEQ_INDEX C34 33 # SEQ_INDEX C35 34 # SEQ_INDEX C36 35 # SEQ_INDEX C37 36 # SEQ_INDEX C38 37 # SEQ_INDEX C39 38 # SEQ_INDEX C40 39 # SEQ_INDEX C41 40 # SEQ_INDEX C42 41 # SEQ_INDEX C43 42 # SEQ_INDEX C44 43 # SEQ_INDEX C45 44 # SEQ_INDEX C46 45 # SEQ_INDEX C47 46 # SEQ_INDEX C48 47 # SEQ_INDEX C49 48 # SEQ_INDEX C50 49 # PW_SEQ_DISTANCES BOT 0 1 84.18 C1 C2 84.18 TOP 1 0 84.18 C2 C1 84.18 BOT 0 2 83.16 C1 C3 83.16 TOP 2 0 83.16 C3 C1 83.16 BOT 0 3 77.55 C1 C4 77.55 TOP 3 0 77.55 C4 C1 77.55 BOT 0 4 82.65 C1 C5 82.65 TOP 4 0 82.65 C5 C1 82.65 BOT 0 5 89.29 C1 C6 89.29 TOP 5 0 89.29 C6 C1 89.29 BOT 0 6 84.18 C1 C7 84.18 TOP 6 0 84.18 C7 C1 84.18 BOT 0 7 84.18 C1 C8 84.18 TOP 7 0 84.18 C8 C1 84.18 BOT 0 8 85.20 C1 C9 85.20 TOP 8 0 85.20 C9 C1 85.20 BOT 0 9 81.63 C1 C10 81.63 TOP 9 0 81.63 C10 C1 81.63 BOT 0 10 80.10 C1 C11 80.10 TOP 10 0 80.10 C11 C1 80.10 BOT 0 11 84.18 C1 C12 84.18 TOP 11 0 84.18 C12 C1 84.18 BOT 0 12 85.20 C1 C13 85.20 TOP 12 0 85.20 C13 C1 85.20 BOT 0 13 85.71 C1 C14 85.71 TOP 13 0 85.71 C14 C1 85.71 BOT 0 14 81.63 C1 C15 81.63 TOP 14 0 81.63 C15 C1 81.63 BOT 0 15 82.65 C1 C16 82.65 TOP 15 0 82.65 C16 C1 82.65 BOT 0 16 80.61 C1 C17 80.61 TOP 16 0 80.61 C17 C1 80.61 BOT 0 17 81.63 C1 C18 81.63 TOP 17 0 81.63 C18 C1 81.63 BOT 0 18 83.67 C1 C19 83.67 TOP 18 0 83.67 C19 C1 83.67 BOT 0 19 74.36 C1 C20 74.36 TOP 19 0 74.36 C20 C1 74.36 BOT 0 20 86.22 C1 C21 86.22 TOP 20 0 86.22 C21 C1 86.22 BOT 0 21 83.67 C1 C22 83.67 TOP 21 0 83.67 C22 C1 83.67 BOT 0 22 81.63 C1 C23 81.63 TOP 22 0 81.63 C23 C1 81.63 BOT 0 23 79.59 C1 C24 79.59 TOP 23 0 79.59 C24 C1 79.59 BOT 0 24 82.65 C1 C25 82.65 TOP 24 0 82.65 C25 C1 82.65 BOT 0 25 81.63 C1 C26 81.63 TOP 25 0 81.63 C26 C1 81.63 BOT 0 26 82.65 C1 C27 82.65 TOP 26 0 82.65 C27 C1 82.65 BOT 0 27 77.55 C1 C28 77.55 TOP 27 0 77.55 C28 C1 77.55 BOT 0 28 84.69 C1 C29 84.69 TOP 28 0 84.69 C29 C1 84.69 BOT 0 29 83.67 C1 C30 83.67 TOP 29 0 83.67 C30 C1 83.67 BOT 0 30 77.95 C1 C31 77.95 TOP 30 0 77.95 C31 C1 77.95 BOT 0 31 82.65 C1 C32 82.65 TOP 31 0 82.65 C32 C1 82.65 BOT 0 32 80.10 C1 C33 80.10 TOP 32 0 80.10 C33 C1 80.10 BOT 0 33 79.59 C1 C34 79.59 TOP 33 0 79.59 C34 C1 79.59 BOT 0 34 81.12 C1 C35 81.12 TOP 34 0 81.12 C35 C1 81.12 BOT 0 35 80.61 C1 C36 80.61 TOP 35 0 80.61 C36 C1 80.61 BOT 0 36 80.10 C1 C37 80.10 TOP 36 0 80.10 C37 C1 80.10 BOT 0 37 82.14 C1 C38 82.14 TOP 37 0 82.14 C38 C1 82.14 BOT 0 38 79.08 C1 C39 79.08 TOP 38 0 79.08 C39 C1 79.08 BOT 0 39 81.63 C1 C40 81.63 TOP 39 0 81.63 C40 C1 81.63 BOT 0 40 78.06 C1 C41 78.06 TOP 40 0 78.06 C41 C1 78.06 BOT 0 41 83.67 C1 C42 83.67 TOP 41 0 83.67 C42 C1 83.67 BOT 0 42 76.02 C1 C43 76.02 TOP 42 0 76.02 C43 C1 76.02 BOT 0 43 82.14 C1 C44 82.14 TOP 43 0 82.14 C44 C1 82.14 BOT 0 44 83.67 C1 C45 83.67 TOP 44 0 83.67 C45 C1 83.67 BOT 0 45 81.63 C1 C46 81.63 TOP 45 0 81.63 C46 C1 81.63 BOT 0 46 82.14 C1 C47 82.14 TOP 46 0 82.14 C47 C1 82.14 BOT 0 47 81.63 C1 C48 81.63 TOP 47 0 81.63 C48 C1 81.63 BOT 0 48 82.65 C1 C49 82.65 TOP 48 0 82.65 C49 C1 82.65 BOT 0 49 72.45 C1 C50 72.45 TOP 49 0 72.45 C50 C1 72.45 BOT 1 2 88.27 C2 C3 88.27 TOP 2 1 88.27 C3 C2 88.27 BOT 1 3 75.00 C2 C4 75.00 TOP 3 1 75.00 C4 C2 75.00 BOT 1 4 75.51 C2 C5 75.51 TOP 4 1 75.51 C5 C2 75.51 BOT 1 5 81.12 C2 C6 81.12 TOP 5 1 81.12 C6 C2 81.12 BOT 1 6 79.59 C2 C7 79.59 TOP 6 1 79.59 C7 C2 79.59 BOT 1 7 81.63 C2 C8 81.63 TOP 7 1 81.63 C8 C2 81.63 BOT 1 8 83.16 C2 C9 83.16 TOP 8 1 83.16 C9 C2 83.16 BOT 1 9 77.04 C2 C10 77.04 TOP 9 1 77.04 C10 C2 77.04 BOT 1 10 75.51 C2 C11 75.51 TOP 10 1 75.51 C11 C2 75.51 BOT 1 11 76.53 C2 C12 76.53 TOP 11 1 76.53 C12 C2 76.53 BOT 1 12 81.63 C2 C13 81.63 TOP 12 1 81.63 C13 C2 81.63 BOT 1 13 83.16 C2 C14 83.16 TOP 13 1 83.16 C14 C2 83.16 BOT 1 14 77.04 C2 C15 77.04 TOP 14 1 77.04 C15 C2 77.04 BOT 1 15 89.29 C2 C16 89.29 TOP 15 1 89.29 C16 C2 89.29 BOT 1 16 84.18 C2 C17 84.18 TOP 16 1 84.18 C17 C2 84.18 BOT 1 17 75.51 C2 C18 75.51 TOP 17 1 75.51 C18 C2 75.51 BOT 1 18 87.24 C2 C19 87.24 TOP 18 1 87.24 C19 C2 87.24 BOT 1 19 76.41 C2 C20 76.41 TOP 19 1 76.41 C20 C2 76.41 BOT 1 20 79.08 C2 C21 79.08 TOP 20 1 79.08 C21 C2 79.08 BOT 1 21 89.29 C2 C22 89.29 TOP 21 1 89.29 C22 C2 89.29 BOT 1 22 78.57 C2 C23 78.57 TOP 22 1 78.57 C23 C2 78.57 BOT 1 23 74.49 C2 C24 74.49 TOP 23 1 74.49 C24 C2 74.49 BOT 1 24 76.53 C2 C25 76.53 TOP 24 1 76.53 C25 C2 76.53 BOT 1 25 78.06 C2 C26 78.06 TOP 25 1 78.06 C26 C2 78.06 BOT 1 26 75.51 C2 C27 75.51 TOP 26 1 75.51 C27 C2 75.51 BOT 1 27 77.55 C2 C28 77.55 TOP 27 1 77.55 C28 C2 77.55 BOT 1 28 88.27 C2 C29 88.27 TOP 28 1 88.27 C29 C2 88.27 BOT 1 29 81.63 C2 C30 81.63 TOP 29 1 81.63 C30 C2 81.63 BOT 1 30 78.97 C2 C31 78.97 TOP 30 1 78.97 C31 C2 78.97 BOT 1 31 79.08 C2 C32 79.08 TOP 31 1 79.08 C32 C2 79.08 BOT 1 32 76.02 C2 C33 76.02 TOP 32 1 76.02 C33 C2 76.02 BOT 1 33 74.49 C2 C34 74.49 TOP 33 1 74.49 C34 C2 74.49 BOT 1 34 73.47 C2 C35 73.47 TOP 34 1 73.47 C35 C2 73.47 BOT 1 35 76.02 C2 C36 76.02 TOP 35 1 76.02 C36 C2 76.02 BOT 1 36 76.53 C2 C37 76.53 TOP 36 1 76.53 C37 C2 76.53 BOT 1 37 79.08 C2 C38 79.08 TOP 37 1 79.08 C38 C2 79.08 BOT 1 38 73.98 C2 C39 73.98 TOP 38 1 73.98 C39 C2 73.98 BOT 1 39 80.61 C2 C40 80.61 TOP 39 1 80.61 C40 C2 80.61 BOT 1 40 76.02 C2 C41 76.02 TOP 40 1 76.02 C41 C2 76.02 BOT 1 41 76.53 C2 C42 76.53 TOP 41 1 76.53 C42 C2 76.53 BOT 1 42 73.98 C2 C43 73.98 TOP 42 1 73.98 C43 C2 73.98 BOT 1 43 75.00 C2 C44 75.00 TOP 43 1 75.00 C44 C2 75.00 BOT 1 44 77.04 C2 C45 77.04 TOP 44 1 77.04 C45 C2 77.04 BOT 1 45 80.61 C2 C46 80.61 TOP 45 1 80.61 C46 C2 80.61 BOT 1 46 77.04 C2 C47 77.04 TOP 46 1 77.04 C47 C2 77.04 BOT 1 47 75.51 C2 C48 75.51 TOP 47 1 75.51 C48 C2 75.51 BOT 1 48 75.51 C2 C49 75.51 TOP 48 1 75.51 C49 C2 75.51 BOT 1 49 71.43 C2 C50 71.43 TOP 49 1 71.43 C50 C2 71.43 BOT 2 3 76.53 C3 C4 76.53 TOP 3 2 76.53 C4 C3 76.53 BOT 2 4 76.53 C3 C5 76.53 TOP 4 2 76.53 C5 C3 76.53 BOT 2 5 82.65 C3 C6 82.65 TOP 5 2 82.65 C6 C3 82.65 BOT 2 6 80.10 C3 C7 80.10 TOP 6 2 80.10 C7 C3 80.10 BOT 2 7 80.61 C3 C8 80.61 TOP 7 2 80.61 C8 C3 80.61 BOT 2 8 82.14 C3 C9 82.14 TOP 8 2 82.14 C9 C3 82.14 BOT 2 9 78.06 C3 C10 78.06 TOP 9 2 78.06 C10 C3 78.06 BOT 2 10 76.02 C3 C11 76.02 TOP 10 2 76.02 C11 C3 76.02 BOT 2 11 77.55 C3 C12 77.55 TOP 11 2 77.55 C12 C3 77.55 BOT 2 12 82.65 C3 C13 82.65 TOP 12 2 82.65 C13 C3 82.65 BOT 2 13 83.67 C3 C14 83.67 TOP 13 2 83.67 C14 C3 83.67 BOT 2 14 79.08 C3 C15 79.08 TOP 14 2 79.08 C15 C3 79.08 BOT 2 15 90.31 C3 C16 90.31 TOP 15 2 90.31 C16 C3 90.31 BOT 2 16 84.69 C3 C17 84.69 TOP 16 2 84.69 C17 C3 84.69 BOT 2 17 76.02 C3 C18 76.02 TOP 17 2 76.02 C18 C3 76.02 BOT 2 18 90.31 C3 C19 90.31 TOP 18 2 90.31 C19 C3 90.31 BOT 2 19 74.87 C3 C20 74.87 TOP 19 2 74.87 C20 C3 74.87 BOT 2 20 79.08 C3 C21 79.08 TOP 20 2 79.08 C21 C3 79.08 BOT 2 21 87.76 C3 C22 87.76 TOP 21 2 87.76 C22 C3 87.76 BOT 2 22 78.06 C3 C23 78.06 TOP 22 2 78.06 C23 C3 78.06 BOT 2 23 75.51 C3 C24 75.51 TOP 23 2 75.51 C24 C3 75.51 BOT 2 24 76.02 C3 C25 76.02 TOP 24 2 76.02 C25 C3 76.02 BOT 2 25 80.10 C3 C26 80.10 TOP 25 2 80.10 C26 C3 80.10 BOT 2 26 77.55 C3 C27 77.55 TOP 26 2 77.55 C27 C3 77.55 BOT 2 27 75.51 C3 C28 75.51 TOP 27 2 75.51 C28 C3 75.51 BOT 2 28 90.31 C3 C29 90.31 TOP 28 2 90.31 C29 C3 90.31 BOT 2 29 81.12 C3 C30 81.12 TOP 29 2 81.12 C30 C3 81.12 BOT 2 30 76.92 C3 C31 76.92 TOP 30 2 76.92 C31 C3 76.92 BOT 2 31 78.57 C3 C32 78.57 TOP 31 2 78.57 C32 C3 78.57 BOT 2 32 76.53 C3 C33 76.53 TOP 32 2 76.53 C33 C3 76.53 BOT 2 33 75.00 C3 C34 75.00 TOP 33 2 75.00 C34 C3 75.00 BOT 2 34 73.98 C3 C35 73.98 TOP 34 2 73.98 C35 C3 73.98 BOT 2 35 75.00 C3 C36 75.00 TOP 35 2 75.00 C36 C3 75.00 BOT 2 36 78.57 C3 C37 78.57 TOP 36 2 78.57 C37 C3 78.57 BOT 2 37 78.06 C3 C38 78.06 TOP 37 2 78.06 C38 C3 78.06 BOT 2 38 76.02 C3 C39 76.02 TOP 38 2 76.02 C39 C3 76.02 BOT 2 39 81.12 C3 C40 81.12 TOP 39 2 81.12 C40 C3 81.12 BOT 2 40 77.04 C3 C41 77.04 TOP 40 2 77.04 C41 C3 77.04 BOT 2 41 76.53 C3 C42 76.53 TOP 41 2 76.53 C42 C3 76.53 BOT 2 42 72.45 C3 C43 72.45 TOP 42 2 72.45 C43 C3 72.45 BOT 2 43 77.55 C3 C44 77.55 TOP 43 2 77.55 C44 C3 77.55 BOT 2 44 77.55 C3 C45 77.55 TOP 44 2 77.55 C45 C3 77.55 BOT 2 45 77.55 C3 C46 77.55 TOP 45 2 77.55 C46 C3 77.55 BOT 2 46 78.57 C3 C47 78.57 TOP 46 2 78.57 C47 C3 78.57 BOT 2 47 76.02 C3 C48 76.02 TOP 47 2 76.02 C48 C3 76.02 BOT 2 48 75.51 C3 C49 75.51 TOP 48 2 75.51 C49 C3 75.51 BOT 2 49 71.43 C3 C50 71.43 TOP 49 2 71.43 C50 C3 71.43 BOT 3 4 79.59 C4 C5 79.59 TOP 4 3 79.59 C5 C4 79.59 BOT 3 5 80.10 C4 C6 80.10 TOP 5 3 80.10 C6 C4 80.10 BOT 3 6 79.08 C4 C7 79.08 TOP 6 3 79.08 C7 C4 79.08 BOT 3 7 75.51 C4 C8 75.51 TOP 7 3 75.51 C8 C4 75.51 BOT 3 8 76.02 C4 C9 76.02 TOP 8 3 76.02 C9 C4 76.02 BOT 3 9 83.67 C4 C10 83.67 TOP 9 3 83.67 C10 C4 83.67 BOT 3 10 77.04 C4 C11 77.04 TOP 10 3 77.04 C11 C4 77.04 BOT 3 11 77.04 C4 C12 77.04 TOP 11 3 77.04 C12 C4 77.04 BOT 3 12 78.57 C4 C13 78.57 TOP 12 3 78.57 C13 C4 78.57 BOT 3 13 78.06 C4 C14 78.06 TOP 13 3 78.06 C14 C4 78.06 BOT 3 14 87.24 C4 C15 87.24 TOP 14 3 87.24 C15 C4 87.24 BOT 3 15 76.53 C4 C16 76.53 TOP 15 3 76.53 C16 C4 76.53 BOT 3 16 77.55 C4 C17 77.55 TOP 16 3 77.55 C17 C4 77.55 BOT 3 17 78.06 C4 C18 78.06 TOP 17 3 78.06 C18 C4 78.06 BOT 3 18 75.51 C4 C19 75.51 TOP 18 3 75.51 C19 C4 75.51 BOT 3 19 86.15 C4 C20 86.15 TOP 19 3 86.15 C20 C4 86.15 BOT 3 20 78.57 C4 C21 78.57 TOP 20 3 78.57 C21 C4 78.57 BOT 3 21 73.98 C4 C22 73.98 TOP 21 3 73.98 C22 C4 73.98 BOT 3 22 87.76 C4 C23 87.76 TOP 22 3 87.76 C23 C4 87.76 BOT 3 23 75.00 C4 C24 75.00 TOP 23 3 75.00 C24 C4 75.00 BOT 3 24 76.53 C4 C25 76.53 TOP 24 3 76.53 C25 C4 76.53 BOT 3 25 90.31 C4 C26 90.31 TOP 25 3 90.31 C26 C4 90.31 BOT 3 26 79.08 C4 C27 79.08 TOP 26 3 79.08 C27 C4 79.08 BOT 3 27 85.71 C4 C28 85.71 TOP 27 3 85.71 C28 C4 85.71 BOT 3 28 77.04 C4 C29 77.04 TOP 28 3 77.04 C29 C4 77.04 BOT 3 29 76.53 C4 C30 76.53 TOP 29 3 76.53 C30 C4 76.53 BOT 3 30 89.74 C4 C31 89.74 TOP 30 3 89.74 C31 C4 89.74 BOT 3 31 83.67 C4 C32 83.67 TOP 31 3 83.67 C32 C4 83.67 BOT 3 32 86.73 C4 C33 86.73 TOP 32 3 86.73 C33 C4 86.73 BOT 3 33 76.53 C4 C34 76.53 TOP 33 3 76.53 C34 C4 76.53 BOT 3 34 75.51 C4 C35 75.51 TOP 34 3 75.51 C35 C4 75.51 BOT 3 35 75.51 C4 C36 75.51 TOP 35 3 75.51 C36 C4 75.51 BOT 3 36 77.04 C4 C37 77.04 TOP 36 3 77.04 C37 C4 77.04 BOT 3 37 78.06 C4 C38 78.06 TOP 37 3 78.06 C38 C4 78.06 BOT 3 38 79.08 C4 C39 79.08 TOP 38 3 79.08 C39 C4 79.08 BOT 3 39 75.00 C4 C40 75.00 TOP 39 3 75.00 C40 C4 75.00 BOT 3 40 72.45 C4 C41 72.45 TOP 40 3 72.45 C41 C4 72.45 BOT 3 41 78.57 C4 C42 78.57 TOP 41 3 78.57 C42 C4 78.57 BOT 3 42 72.96 C4 C43 72.96 TOP 42 3 72.96 C43 C4 72.96 BOT 3 43 75.00 C4 C44 75.00 TOP 43 3 75.00 C44 C4 75.00 BOT 3 44 78.06 C4 C45 78.06 TOP 44 3 78.06 C45 C4 78.06 BOT 3 45 87.76 C4 C46 87.76 TOP 45 3 87.76 C46 C4 87.76 BOT 3 46 78.57 C4 C47 78.57 TOP 46 3 78.57 C47 C4 78.57 BOT 3 47 79.08 C4 C48 79.08 TOP 47 3 79.08 C48 C4 79.08 BOT 3 48 77.04 C4 C49 77.04 TOP 48 3 77.04 C49 C4 77.04 BOT 3 49 83.67 C4 C50 83.67 TOP 49 3 83.67 C50 C4 83.67 BOT 4 5 82.14 C5 C6 82.14 TOP 5 4 82.14 C6 C5 82.14 BOT 4 6 84.18 C5 C7 84.18 TOP 6 4 84.18 C7 C5 84.18 BOT 4 7 80.10 C5 C8 80.10 TOP 7 4 80.10 C8 C5 80.10 BOT 4 8 77.55 C5 C9 77.55 TOP 8 4 77.55 C9 C5 77.55 BOT 4 9 83.67 C5 C10 83.67 TOP 9 4 83.67 C10 C5 83.67 BOT 4 10 79.59 C5 C11 79.59 TOP 10 4 79.59 C11 C5 79.59 BOT 4 11 83.67 C5 C12 83.67 TOP 11 4 83.67 C12 C5 83.67 BOT 4 12 79.08 C5 C13 79.08 TOP 12 4 79.08 C13 C5 79.08 BOT 4 13 80.10 C5 C14 80.10 TOP 13 4 80.10 C14 C5 80.10 BOT 4 14 80.10 C5 C15 80.10 TOP 14 4 80.10 C15 C5 80.10 BOT 4 15 77.55 C5 C16 77.55 TOP 15 4 77.55 C16 C5 77.55 BOT 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BOT 29 48 79.59 C30 C49 79.59 TOP 48 29 79.59 C49 C30 79.59 BOT 29 49 73.47 C30 C50 73.47 TOP 49 29 73.47 C50 C30 73.47 BOT 30 31 82.05 C31 C32 82.05 TOP 31 30 82.05 C32 C31 82.05 BOT 30 32 89.74 C31 C33 89.74 TOP 32 30 89.74 C33 C31 89.74 BOT 30 33 77.44 C31 C34 77.44 TOP 33 30 77.44 C34 C31 77.44 BOT 30 34 74.36 C31 C35 74.36 TOP 34 30 74.36 C35 C31 74.36 BOT 30 35 75.90 C31 C36 75.90 TOP 35 30 75.90 C36 C31 75.90 BOT 30 36 76.92 C31 C37 76.92 TOP 36 30 76.92 C37 C31 76.92 BOT 30 37 80.51 C31 C38 80.51 TOP 37 30 80.51 C38 C31 80.51 BOT 30 38 79.49 C31 C39 79.49 TOP 38 30 79.49 C39 C31 79.49 BOT 30 39 76.41 C31 C40 76.41 TOP 39 30 76.41 C40 C31 76.41 BOT 30 40 72.31 C31 C41 72.31 TOP 40 30 72.31 C41 C31 72.31 BOT 30 41 77.44 C31 C42 77.44 TOP 41 30 77.44 C42 C31 77.44 BOT 30 42 74.36 C31 C43 74.36 TOP 42 30 74.36 C43 C31 74.36 BOT 30 43 76.41 C31 C44 76.41 TOP 43 30 76.41 C44 C31 76.41 BOT 30 44 78.46 C31 C45 78.46 TOP 44 30 78.46 C45 C31 78.46 BOT 30 45 89.23 C31 C46 89.23 TOP 45 30 89.23 C46 C31 89.23 BOT 30 46 81.03 C31 C47 81.03 TOP 46 30 81.03 C47 C31 81.03 BOT 30 47 76.41 C31 C48 76.41 TOP 47 30 76.41 C48 C31 76.41 BOT 30 48 76.41 C31 C49 76.41 TOP 48 30 76.41 C49 C31 76.41 BOT 30 49 85.13 C31 C50 85.13 TOP 49 30 85.13 C50 C31 85.13 BOT 31 32 85.71 C32 C33 85.71 TOP 32 31 85.71 C33 C32 85.71 BOT 31 33 79.08 C32 C34 79.08 TOP 33 31 79.08 C34 C32 79.08 BOT 31 34 77.55 C32 C35 77.55 TOP 34 31 77.55 C35 C32 77.55 BOT 31 35 79.59 C32 C36 79.59 TOP 35 31 79.59 C36 C32 79.59 BOT 31 36 81.12 C32 C37 81.12 TOP 36 31 81.12 C37 C32 81.12 BOT 31 37 82.65 C32 C38 82.65 TOP 37 31 82.65 C38 C32 82.65 BOT 31 38 80.10 C32 C39 80.10 TOP 38 31 80.10 C39 C32 80.10 BOT 31 39 81.12 C32 C40 81.12 TOP 39 31 81.12 C40 C32 81.12 BOT 31 40 77.04 C32 C41 77.04 TOP 40 31 77.04 C41 C32 77.04 BOT 31 41 82.14 C32 C42 82.14 TOP 41 31 82.14 C42 C32 82.14 BOT 31 42 75.51 C32 C43 75.51 TOP 42 31 75.51 C43 C32 75.51 BOT 31 43 78.57 C32 C44 78.57 TOP 43 31 78.57 C44 C32 78.57 BOT 31 44 80.61 C32 C45 80.61 TOP 44 31 80.61 C45 C32 80.61 BOT 31 45 87.24 C32 C46 87.24 TOP 45 31 87.24 C46 C32 87.24 BOT 31 46 82.65 C32 C47 82.65 TOP 46 31 82.65 C47 C32 82.65 BOT 31 47 80.10 C32 C48 80.10 TOP 47 31 80.10 C48 C32 80.10 BOT 31 48 80.61 C32 C49 80.61 TOP 48 31 80.61 C49 C32 80.61 BOT 31 49 79.08 C32 C50 79.08 TOP 49 31 79.08 C50 C32 79.08 BOT 32 33 79.08 C33 C34 79.08 TOP 33 32 79.08 C34 C33 79.08 BOT 32 34 75.51 C33 C35 75.51 TOP 34 32 75.51 C35 C33 75.51 BOT 32 35 78.06 C33 C36 78.06 TOP 35 32 78.06 C36 C33 78.06 BOT 32 36 79.59 C33 C37 79.59 TOP 36 32 79.59 C37 C33 79.59 BOT 32 37 79.59 C33 C38 79.59 TOP 37 32 79.59 C38 C33 79.59 BOT 32 38 81.63 C33 C39 81.63 TOP 38 32 81.63 C39 C33 81.63 BOT 32 39 78.57 C33 C40 78.57 TOP 39 32 78.57 C40 C33 78.57 BOT 32 40 72.45 C33 C41 72.45 TOP 40 32 72.45 C41 C33 72.45 BOT 32 41 79.59 C33 C42 79.59 TOP 41 32 79.59 C42 C33 79.59 BOT 32 42 73.47 C33 C43 73.47 TOP 42 32 73.47 C43 C33 73.47 BOT 32 43 75.51 C33 C44 75.51 TOP 43 32 75.51 C44 C33 75.51 BOT 32 44 81.12 C33 C45 81.12 TOP 44 32 81.12 C45 C33 81.12 BOT 32 45 88.27 C33 C46 88.27 TOP 45 32 88.27 C46 C33 88.27 BOT 32 46 79.08 C33 C47 79.08 TOP 46 32 79.08 C47 C33 79.08 BOT 32 47 79.59 C33 C48 79.59 TOP 47 32 79.59 C48 C33 79.59 BOT 32 48 80.10 C33 C49 80.10 TOP 48 32 80.10 C49 C33 80.10 BOT 32 49 83.67 C33 C50 83.67 TOP 49 32 83.67 C50 C33 83.67 BOT 33 34 77.55 C34 C35 77.55 TOP 34 33 77.55 C35 C34 77.55 BOT 33 35 91.84 C34 C36 91.84 TOP 35 33 91.84 C36 C34 91.84 BOT 33 36 83.67 C34 C37 83.67 TOP 36 33 83.67 C37 C34 83.67 BOT 33 37 82.14 C34 C38 82.14 TOP 37 33 82.14 C38 C34 82.14 BOT 33 38 84.18 C34 C39 84.18 TOP 38 33 84.18 C39 C34 84.18 BOT 33 39 77.04 C34 C40 77.04 TOP 39 33 77.04 C40 C34 77.04 BOT 33 40 75.51 C34 C41 75.51 TOP 40 33 75.51 C41 C34 75.51 BOT 33 41 80.61 C34 C42 80.61 TOP 41 33 80.61 C42 C34 80.61 BOT 33 42 72.45 C34 C43 72.45 TOP 42 33 72.45 C43 C34 72.45 BOT 33 43 76.53 C34 C44 76.53 TOP 43 33 76.53 C44 C34 76.53 BOT 33 44 81.63 C34 C45 81.63 TOP 44 33 81.63 C45 C34 81.63 BOT 33 45 78.06 C34 C46 78.06 TOP 45 33 78.06 C46 C34 78.06 BOT 33 46 83.67 C34 C47 83.67 TOP 46 33 83.67 C47 C34 83.67 BOT 33 47 81.12 C34 C48 81.12 TOP 47 33 81.12 C48 C34 81.12 BOT 33 48 79.59 C34 C49 79.59 TOP 48 33 79.59 C49 C34 79.59 BOT 33 49 73.98 C34 C50 73.98 TOP 49 33 73.98 C50 C34 73.98 BOT 34 35 75.51 C35 C36 75.51 TOP 35 34 75.51 C36 C35 75.51 BOT 34 36 82.65 C35 C37 82.65 TOP 36 34 82.65 C37 C35 82.65 BOT 34 37 82.14 C35 C38 82.14 TOP 37 34 82.14 C38 C35 82.14 BOT 34 38 77.55 C35 C39 77.55 TOP 38 34 77.55 C39 C35 77.55 BOT 34 39 75.00 C35 C40 75.00 TOP 39 34 75.00 C40 C35 75.00 BOT 34 40 81.12 C35 C41 81.12 TOP 40 34 81.12 C41 C35 81.12 BOT 34 41 83.67 C35 C42 83.67 TOP 41 34 83.67 C42 C35 83.67 BOT 34 42 73.47 C35 C43 73.47 TOP 42 34 73.47 C43 C35 73.47 BOT 34 43 73.98 C35 C44 73.98 TOP 43 34 73.98 C44 C35 73.98 BOT 34 44 79.59 C35 C45 79.59 TOP 44 34 79.59 C45 C35 79.59 BOT 34 45 75.51 C35 C46 75.51 TOP 45 34 75.51 C46 C35 75.51 BOT 34 46 81.63 C35 C47 81.63 TOP 46 34 81.63 C47 C35 81.63 BOT 34 47 81.12 C35 C48 81.12 TOP 47 34 81.12 C48 C35 81.12 BOT 34 48 83.16 C35 C49 83.16 TOP 48 34 83.16 C49 C35 83.16 BOT 34 49 72.96 C35 C50 72.96 TOP 49 34 72.96 C50 C35 72.96 BOT 35 36 81.12 C36 C37 81.12 TOP 36 35 81.12 C37 C36 81.12 BOT 35 37 80.61 C36 C38 80.61 TOP 37 35 80.61 C38 C36 80.61 BOT 35 38 84.69 C36 C39 84.69 TOP 38 35 84.69 C39 C36 84.69 BOT 35 39 75.51 C36 C40 75.51 TOP 39 35 75.51 C40 C36 75.51 BOT 35 40 73.98 C36 C41 73.98 TOP 40 35 73.98 C41 C36 73.98 BOT 35 41 79.08 C36 C42 79.08 TOP 41 35 79.08 C42 C36 79.08 BOT 35 42 72.96 C36 C43 72.96 TOP 42 35 72.96 C43 C36 72.96 BOT 35 43 76.53 C36 C44 76.53 TOP 43 35 76.53 C44 C36 76.53 BOT 35 44 83.16 C36 C45 83.16 TOP 44 35 83.16 C45 C36 83.16 BOT 35 45 78.57 C36 C46 78.57 TOP 45 35 78.57 C46 C36 78.57 BOT 35 46 81.63 C36 C47 81.63 TOP 46 35 81.63 C47 C36 81.63 BOT 35 47 80.61 C36 C48 80.61 TOP 47 35 80.61 C48 C36 80.61 BOT 35 48 78.06 C36 C49 78.06 TOP 48 35 78.06 C49 C36 78.06 BOT 35 49 72.96 C36 C50 72.96 TOP 49 35 72.96 C50 C36 72.96 BOT 36 37 86.22 C37 C38 86.22 TOP 37 36 86.22 C38 C37 86.22 BOT 36 38 81.12 C37 C39 81.12 TOP 38 36 81.12 C39 C37 81.12 BOT 36 39 79.59 C37 C40 79.59 TOP 39 36 79.59 C40 C37 79.59 BOT 36 40 80.10 C37 C41 80.10 TOP 40 36 80.10 C41 C37 80.10 BOT 36 41 86.22 C37 C42 86.22 TOP 41 36 86.22 C42 C37 86.22 BOT 36 42 73.47 C37 C43 73.47 TOP 42 36 73.47 C43 C37 73.47 BOT 36 43 78.57 C37 C44 78.57 TOP 43 36 78.57 C44 C37 78.57 BOT 36 44 85.71 C37 C45 85.71 TOP 44 36 85.71 C45 C37 85.71 BOT 36 45 78.57 C37 C46 78.57 TOP 45 36 78.57 C46 C37 78.57 BOT 36 46 90.82 C37 C47 90.82 TOP 46 36 90.82 C47 C37 90.82 BOT 36 47 84.69 C37 C48 84.69 TOP 47 36 84.69 C48 C37 84.69 BOT 36 48 85.20 C37 C49 85.20 TOP 48 36 85.20 C49 C37 85.20 BOT 36 49 75.51 C37 C50 75.51 TOP 49 36 75.51 C50 C37 75.51 BOT 37 38 79.59 C38 C39 79.59 TOP 38 37 79.59 C39 C38 79.59 BOT 37 39 78.06 C38 C40 78.06 TOP 39 37 78.06 C40 C38 78.06 BOT 37 40 80.10 C38 C41 80.10 TOP 40 37 80.10 C41 C38 80.10 BOT 37 41 84.69 C38 C42 84.69 TOP 41 37 84.69 C42 C38 84.69 BOT 37 42 76.02 C38 C43 76.02 TOP 42 37 76.02 C43 C38 76.02 BOT 37 43 78.57 C38 C44 78.57 TOP 43 37 78.57 C44 C38 78.57 BOT 37 44 84.69 C38 C45 84.69 TOP 44 37 84.69 C45 C38 84.69 BOT 37 45 83.16 C38 C46 83.16 TOP 45 37 83.16 C46 C38 83.16 BOT 37 46 87.76 C38 C47 87.76 TOP 46 37 87.76 C47 C38 87.76 BOT 37 47 82.14 C38 C48 82.14 TOP 47 37 82.14 C48 C38 82.14 BOT 37 48 83.67 C38 C49 83.67 TOP 48 37 83.67 C49 C38 83.67 BOT 37 49 75.00 C38 C50 75.00 TOP 49 37 75.00 C50 C38 75.00 BOT 38 39 76.53 C39 C40 76.53 TOP 39 38 76.53 C40 C39 76.53 BOT 38 40 79.08 C39 C41 79.08 TOP 40 38 79.08 C41 C39 79.08 BOT 38 41 80.10 C39 C42 80.10 TOP 41 38 80.10 C42 C39 80.10 BOT 38 42 73.98 C39 C43 73.98 TOP 42 38 73.98 C43 C39 73.98 BOT 38 43 78.06 C39 C44 78.06 TOP 43 38 78.06 C44 C39 78.06 BOT 38 44 81.12 C39 C45 81.12 TOP 44 38 81.12 C45 C39 81.12 BOT 38 45 79.59 C39 C46 79.59 TOP 45 38 79.59 C46 C39 79.59 BOT 38 46 80.61 C39 C47 80.61 TOP 46 38 80.61 C47 C39 80.61 BOT 38 47 82.65 C39 C48 82.65 TOP 47 38 82.65 C48 C39 82.65 BOT 38 48 80.61 C39 C49 80.61 TOP 48 38 80.61 C49 C39 80.61 BOT 38 49 71.94 C39 C50 71.94 TOP 49 38 71.94 C50 C39 71.94 BOT 39 40 79.59 C40 C41 79.59 TOP 40 39 79.59 C41 C40 79.59 BOT 39 41 78.57 C40 C42 78.57 TOP 41 39 78.57 C42 C40 78.57 BOT 39 42 72.96 C40 C43 72.96 TOP 42 39 72.96 C43 C40 72.96 BOT 39 43 78.06 C40 C44 78.06 TOP 43 39 78.06 C44 C40 78.06 BOT 39 44 80.61 C40 C45 80.61 TOP 44 39 80.61 C45 C40 80.61 BOT 39 45 77.55 C40 C46 77.55 TOP 45 39 77.55 C46 C40 77.55 BOT 39 46 79.59 C40 C47 79.59 TOP 46 39 79.59 C47 C40 79.59 BOT 39 47 76.53 C40 C48 76.53 TOP 47 39 76.53 C48 C40 76.53 BOT 39 48 77.55 C40 C49 77.55 TOP 48 39 77.55 C49 C40 77.55 BOT 39 49 73.47 C40 C50 73.47 TOP 49 39 73.47 C50 C40 73.47 BOT 40 41 81.63 C41 C42 81.63 TOP 41 40 81.63 C42 C41 81.63 BOT 40 42 73.98 C41 C43 73.98 TOP 42 40 73.98 C43 C41 73.98 BOT 40 43 74.49 C41 C44 74.49 TOP 43 40 74.49 C44 C41 74.49 BOT 40 44 78.57 C41 C45 78.57 TOP 44 40 78.57 C45 C41 78.57 BOT 40 45 75.51 C41 C46 75.51 TOP 45 40 75.51 C46 C41 75.51 BOT 40 46 79.08 C41 C47 79.08 TOP 46 40 79.08 C47 C41 79.08 BOT 40 47 80.10 C41 C48 80.10 TOP 47 40 80.10 C48 C41 80.10 BOT 40 48 78.57 C41 C49 78.57 TOP 48 40 78.57 C49 C41 78.57 BOT 40 49 70.41 C41 C50 70.41 TOP 49 40 70.41 C50 C41 70.41 BOT 41 42 76.02 C42 C43 76.02 TOP 42 41 76.02 C43 C42 76.02 BOT 41 43 78.06 C42 C44 78.06 TOP 43 41 78.06 C44 C42 78.06 BOT 41 44 85.71 C42 C45 85.71 TOP 44 41 85.71 C45 C42 85.71 BOT 41 45 81.12 C42 C46 81.12 TOP 45 41 81.12 C46 C42 81.12 BOT 41 46 88.27 C42 C47 88.27 TOP 46 41 88.27 C47 C42 88.27 BOT 41 47 85.71 C42 C48 85.71 TOP 47 41 85.71 C48 C42 85.71 BOT 41 48 84.18 C42 C49 84.18 TOP 48 41 84.18 C49 C42 84.18 BOT 41 49 75.00 C42 C50 75.00 TOP 49 41 75.00 C50 C42 75.00 BOT 42 43 72.96 C43 C44 72.96 TOP 43 42 72.96 C44 C43 72.96 BOT 42 44 75.51 C43 C45 75.51 TOP 44 42 75.51 C45 C43 75.51 BOT 42 45 78.06 C43 C46 78.06 TOP 45 42 78.06 C46 C43 78.06 BOT 42 46 75.00 C43 C47 75.00 TOP 46 42 75.00 C47 C43 75.00 BOT 42 47 78.06 C43 C48 78.06 TOP 47 42 78.06 C48 C43 78.06 BOT 42 48 75.00 C43 C49 75.00 TOP 48 42 75.00 C49 C43 75.00 BOT 42 49 69.90 C43 C50 69.90 TOP 49 42 69.90 C50 C43 69.90 BOT 43 44 79.59 C44 C45 79.59 TOP 44 43 79.59 C45 C44 79.59 BOT 43 45 79.08 C44 C46 79.08 TOP 45 43 79.08 C46 C44 79.08 BOT 43 46 80.10 C44 C47 80.10 TOP 46 43 80.10 C47 C44 80.10 BOT 43 47 76.02 C44 C48 76.02 TOP 47 43 76.02 C48 C44 76.02 BOT 43 48 77.55 C44 C49 77.55 TOP 48 43 77.55 C49 C44 77.55 BOT 43 49 70.41 C44 C50 70.41 TOP 49 43 70.41 C50 C44 70.41 BOT 44 45 82.65 C45 C46 82.65 TOP 45 44 82.65 C46 C45 82.65 BOT 44 46 84.69 C45 C47 84.69 TOP 46 44 84.69 C47 C45 84.69 BOT 44 47 83.67 C45 C48 83.67 TOP 47 44 83.67 C48 C45 83.67 BOT 44 48 84.69 C45 C49 84.69 TOP 48 44 84.69 C49 C45 84.69 BOT 44 49 76.02 C45 C50 76.02 TOP 49 44 76.02 C50 C45 76.02 BOT 45 46 81.12 C46 C47 81.12 TOP 46 45 81.12 C47 C46 81.12 BOT 45 47 80.61 C46 C48 80.61 TOP 47 45 80.61 C48 C46 80.61 BOT 45 48 79.08 C46 C49 79.08 TOP 48 45 79.08 C49 C46 79.08 BOT 45 49 82.65 C46 C50 82.65 TOP 49 45 82.65 C50 C46 82.65 BOT 46 47 83.67 C47 C48 83.67 TOP 47 46 83.67 C48 C47 83.67 BOT 46 48 86.22 C47 C49 86.22 TOP 48 46 86.22 C49 C47 86.22 BOT 46 49 77.04 C47 C50 77.04 TOP 49 46 77.04 C50 C47 77.04 BOT 47 48 85.71 C48 C49 85.71 TOP 48 47 85.71 C49 C48 85.71 BOT 47 49 74.49 C48 C50 74.49 TOP 49 47 74.49 C50 C48 74.49 BOT 48 49 73.98 C49 C50 73.98 TOP 49 48 73.98 C50 C49 73.98 AVG 0 C1 * 81.73 AVG 1 C2 * 78.73 AVG 2 C3 * 79.07 AVG 3 C4 * 79.09 AVG 4 C5 * 80.26 AVG 5 C6 * 81.76 AVG 6 C7 * 82.76 AVG 7 C8 * 78.92 AVG 8 C9 * 79.45 AVG 9 C10 * 81.20 AVG 10 C11 * 79.27 AVG 11 C12 * 80.51 AVG 12 C13 * 81.32 AVG 13 C14 * 81.39 AVG 14 C15 * 80.16 AVG 15 C16 * 80.78 AVG 16 C17 * 78.53 AVG 17 C18 * 80.99 AVG 18 C19 * 79.58 AVG 19 C20 * 76.96 AVG 20 C21 * 82.64 AVG 21 C22 * 79.86 AVG 22 C23 * 81.02 AVG 23 C24 * 79.13 AVG 24 C25 * 81.35 AVG 25 C26 * 81.08 AVG 26 C27 * 81.58 AVG 27 C28 * 79.79 AVG 28 C29 * 80.71 AVG 29 C30 * 79.82 AVG 30 C31 * 79.66 AVG 31 C32 * 81.31 AVG 32 C33 * 80.26 AVG 33 C34 * 79.04 AVG 34 C35 * 78.13 AVG 35 C36 * 78.70 AVG 36 C37 * 81.44 AVG 37 C38 * 81.70 AVG 38 C39 * 78.88 AVG 39 C40 * 78.65 AVG 40 C41 * 76.85 AVG 41 C42 * 81.46 AVG 42 C43 * 74.44 AVG 43 C44 * 77.74 AVG 44 C45 * 81.45 AVG 45 C46 * 81.59 AVG 46 C47 * 82.12 AVG 47 C48 * 80.34 AVG 48 C49 * 80.33 AVG 49 C50 * 75.63 TOT TOT * 79.98 CLUSTAL W (1.83) multiple sequence alignment C1 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGATAGACAGGATGAG C2 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGATGAA C3 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGATGAG C4 ATGGAAAACAGATGGCAGGTGCTGATTGTGTGGCAGGTAGACAGGATGAA C5 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C6 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGATGAG C7 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C8 ATGGACAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGATGAG C9 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTGGACAGAATGAG C10 ATGGAAAACAGATGGCAGGTGCTGATTGTGTGGCAGGTAGACAGGATGAG C11 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C12 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C13 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGAATGAG C14 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGATGAG C15 ATGGAAAACAGATGGCAGGGACTGATTGTGTGGCAGGTAGACAGGATGAA C16 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGATGAG C17 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGATGAG C18 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C19 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGATGAG C20 ATGGAAAACAGATGGCAGGTGCTGATTGTGTGGCAGGTAGACAGGATGAA C21 ATGGAAAACAGATGGCAGGTGATGATTGTATGGCAAGTAGACAGGATGAG C22 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGAATGAG C23 ATGGAAAACAGATGGCAGGGGCTGATTGTGTGGCAGGTAGACAGGATGAG C24 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C25 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C26 ATGGAAAACAGATGGCAGGTGCTGATTGTGTGGCAGGTAGACAGGATGAG C27 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C28 ATGGAAAACAGATGGCAGGTGCTGATTGTGTGGCAGGTAGACAGGATGAG C29 ATGGAAAACAGATGGCAGGTGGTGATTGTGTGGCAGGTAGACAGGATGAG C30 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGATGAG C31 ATGGAAAACAGATGGCAGGTGCTGATTGTGTGGCAGGTAGACAGGATGAA C32 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C33 ATGGAAAACAGATGGCAGGTGCTGATTGTGTGGCAGGTAGACAGGATGAG C34 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGATGAG C35 ATGGAAAACAGATGGCAGGTGATGATTGCGTGGCAAGTAGACAGGATGAG C36 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGATGAG C37 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C38 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C39 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGATGAG C40 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGATGAG C41 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C42 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C43 ATGGAAAACAGATGGCAGGTGATGGTTGTGTGGCAAGTGGACAGGATGAA C44 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGATGAG C45 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C46 ATGGAAAACAGATGGCAGGGGCTGATTGTGTGGCAGGTAGACAGGATGAA C47 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C48 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGATGAG C49 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C50 ATGGAAAACAGATGGCAGGTGCTGATTGTGTGGCAGGTAGACAGGATGAA *****.************* . **.*** .*****..*.*****.****. C1 GATTAAAACATGGAACAGTTTAGTAAAACACCACATGTATATTTCTAAGA C2 GATTAAAACATGGAACAGTTTAGTAAAACATCATATGTATGTCTCAAAGA C3 AATTAGAACATGGCACAGTTTAGTAAAACATCATATGTATATCTCAAAGA C4 GATCAGAACATGGAATAGTTTAGTAAAGCACCATATGTATATTTCAAGGA C5 GATTAACACATGGAAAAGTTTAGTAAAATATCATATGCATATTTCAAAGA C6 GATTAGAACATGGAACAGTTTAGTAAAATATCACATGTATAGATCTAGGA C7 GATTAGAACATGGAAAAGTTTAGTAAAACACCATATGTATATCTCAAAGA C8 GATTAAAACATGGAACAGCTTAGTAAAATATCATATGTATGTCTCAAAGA C9 GATTAGAACATGGAACAGTTTAGTAAAACATCATATGTATGTCTCTAAGA C10 GATTAGAACATGGAACAGTTTAGTAAAACATCATATGTATGTCTCAAAGC C11 AATTAGAGCATGGAAAAGTTTAGTAAAACACCATATATATATTTCAAAGA C12 GATTAACACATGGAAAAGTTTAGTAAAATACCACATACATATTTCAAAGA C13 GATTAGAACATGGAACAGTTTAGTGAAACATCATATGTATGTCTCAAAGA C14 GATTAGAACATGGAACAGTTTAGTAAAACATCATATGTATGTTTCAAAGA C15 GATTAGAACATGGAATAGTTTAGTAAAACACCATATGTATATTTCAAAGA C16 GATTAGAACATGGAACAGTCTAGTAAAACATCATATATATGTCTCAAAGA C17 GATTAGAACATGGAACAGTATAGTAAAACATCACATGTATGTCTCAAGGA C18 GATTAGAGCATGGAAAAGCTTAGTAAAACACCATATGTATATTTCAGGGA C19 GATTAGAACATGGAACAGTTTAGTAAAACATCACATGTATATATCAAAGA C20 GATTAGAACATGGAACAGTTTAGTAAAACACCATATGTATATTTCAAGGA C21 GATTAGAACATGGAACAGTTTAGTAAAACACCATATGTATATTTCAAAGA C22 GATTAAAACATGGAATAGTTTAGTAAAACATCATATGTATGTCTCAAAGA C23 GATTAGAACATGGAATAGTTTAGTAAAGCACCATATGTATATTTCAAGGA C24 GATTAGAACATGGAAAAGTTTAGTAAAACATCATATGCATGTTTCAGGGA C25 GATTAGAACATGGAAAAGCTTAGTAAAACACCATATGTATATTTCAGGGA C26 GATTAGAACATGGAATAGTCTAGTAAAACACCATATGTATGTTTCAAGGA C27 GATTAGAACATGGAAAAGCTTAGTAAAACACCATATGTATATTTCAAGGA C28 GATTAGAACATGGAATAGTTTGGTAAAACACCATATGTATGTTTCAAGGA C29 GATTAGAACATGGAACAGTTTAGTCAAACATCATATGTATATCTCAAAGA C30 GATTAGAACATGGAACAGTTTAGTAAAACATCATATGTATGTATCAAAGA C31 GATTAGAACATGGAACAGTTTAGTAAAACATCATATGTATGTCTCAAGGA C32 GATTAGAACATGGAATAGTTTAGTAAAGCACCATATGTATGTTTCAAAGA C33 GATCAGAACATGGAATAGTTTAGTAAAGCACCATATGTATATTTCAAGGA C34 GATTAATGCATGGAAAAGTTTAGTAAAATACCATATGCATATTTCAAAGA C35 GATTAAAGCATGGAACAGGTTAGTAAAACACCATATGTATATTTCAAAGA C36 GATTAACACATGGAAAAGTTTAGTAAAGTACCATATGCATGTTTCAAAGA C37 GATTAGAACATGGAAAAGTTTAGTGAAACACCATATGTATATTTCAGGGA C38 GATTAGAACATGGAACAGTATAGTAAAACACCATATGTATGTTTCAAAGA C39 GATTAATGCATGGAAAAGTTTAGTAAAATACCATATGCATATATCAAGGA C40 GATTAGGACATGGCACAGTTTAGTAAAACATCATATGTATATTTCCAGGA C41 GATTCAAGCATGGCACAGTTTAGTAAAACACCATATGTATATTTCAAAGA C42 GATTAGAACATGGAAAAGTTTAGTAAAACACCATATGTATATCTCAAAGA C43 AATCAGGATATGGAATAGTTTAGTAAAACATCATATGCATGTGTCAAAAA C44 GATTAGAACATGGCACGGTTTAGTAAAACATCACATGTATGTCTCAAAGA C45 GATTAGAACATGGAAAAGTTTAGTAAAACACCATATATATATTTCAAAGA C46 GATTAGAACATGGAATAGTTTAGTAAAACACCATATGTATGTTTCAAAGA C47 GATTAGAACATGGAAAAGTTTAGTAAAACACCATATGTATGTTTCAGGGA C48 GATTAACAAATGGAAAAGTTTAGTAAAACACCATATGTATATTTCAAGGA C49 GATTAAAACATGGAATAGTTTAGTAAAACACCACATGTATATTTCAGGGA C50 GATCAGAACATGGAATAGTTTAGTAAAGCATCACATGTATATTTCAAAGA .** .. . ****.* .* *.** **. * ** **. **. ** .... C1 AAGCTAAAGGTTGGTTTTATAGACATCACTATGAAAGTAGGCATCCAAAA C2 AAGCTAACAAGTGGTTTTATAGACATCATTATGAAAGCCGGCATCCAAAG C3 AAGCTAGCAAGTGGTTTTACAGACATCATTACGAAAGCCAGCATCCAAAA C4 GAGCTAATGGATGGCTTTACAGACATCATTATAACAGTATACATCCAAGA C5 AAGCTCAAAGATGGCTTTATAGACATCACTATGATAGTCCCCATCCAAAA C6 AAGCTAAGGAGTGGTTTTATAGACATCACTTTGAAAGTAGGCATCCAAAA C7 AAGCTGGGAAATGGTTTTATAGACACCATTATGAAAGTACTCATCCAAAA C8 AAGCTAACAAGTGGTTCTATAGGCATCACTATGAAAGCAGGCATCCAAAA C9 AAGCTCACCGTTGGTTTTATAGACATCACTATGAAAGTAGGCATCCAAAA C10 AAGCTAAAAATTGGTTTTATAGACATCACTTTGAAAGCAGGCATCCAAAA C11 AAGCTAGAGGATGGTCTTATAAACATCACTATGAAAGTACTAATCCAAGA C12 AAGCTAAAGGATGGATTTATAAACATCACTATGAAAGCACTAATCCTAGA C13 AAGCAAAGAATTGGTTCTACAGACATCACTTTGAAAGCAGGCATCCAAAA C14 AAGCCAACAGGTGGTTTTACAGACATCACTATGAAGCCCAACATCCAAAA C15 GAGCTAGTGGATGGTTTTACAGACATCATTATGAGAGCAGACATCCAAAA C16 AAGCTAAAAAGTGGTTTTATAGACATCATTATGAAAGCCAACATCCAAAG C17 GGGCTAAAGGGTGGTTTTATAGACATCATTATGAAAGCCCGCATCCAAAG C18 AAGCTAGGGGATGGTCTTATAGACACCACTATGAAAGTCCTCATCCAAGA C19 AAGCTAAAAAGTGGGTTTATAGACATCATTATGAAAACCAGCATCCAAAG C20 GAGCCAATGGATGGTTGTACAGACATCATTATGATAGCAGACATCCAAAA C21 AAGCTAAGGGATGGGCTTACAGACATCACTATGAAAGCCGTCATCCAAAA C22 AAGCTAAAAAGTGGTTTTATAGACATCATTATGAAAGCCAGCATCCAAAA C23 GAGCTAATGGATGGTTTTATAGACATCATTATGAAAGCAGACATCCAAAA C24 AAGCTAAGAAATGGTTGTATAAACATCACTATGAAAGCATTAATCCAAGA C25 AAGCTAAGGAATGGTTTTATAGACATCATTATGAAAGCACTCATCCAAGA C26 GAGCTAGTGGATGGTTTTACAGACATCATTATGAAAGCAGACATCCAAAA C27 AAGCTAAGGGATGGGTTTATAGACATCACTATGAAAACACTCATCCAAGG C28 AAGCTAATGGATGGGTTTACAGACATCATTATGACAGCAGACACCCAAAA C29 AAGCTAAAAAGTGGTTTTATAGACATCATTATGAAAGCCAACATCCAAAG C30 AAGCTAAAGGCTGGTCTTATAGACATCACTATGAAAGCAGGAATCTAAGA C31 GAGCCAATGGATGGTTGTACAGACATCATTATGACAGCAGAAATCCAAAA C32 GAGCTAAGGGATGGTTTTACAGACATCATTATGAAAGCAGACATCCAAGA C33 GGGCTAGTGGATGGTTTTACAGACATCATTATGAAAGCAGAAATCCAAAA C34 AAGCCAAAAGATGGTGTTATAGACATCACTTTGAAAGCAGGAATCCAAGA C35 AAACTAAGGGGTGGGTTTATAAACATCACTATGAAAATGCCAATCCAAGA C36 AAGCCAAAAAATGGTCTTATAGACATCACTTTGAAAGCAGGCATCCAAAA C37 AAGCTAAGAGATGGTTTTATAAACATCACTATGAAAGCACCAACCCAAGA C38 AAGCTAAGGGATGGATTTATAAACATCACTATGAAAGCACTAATCCAAGA C39 AAGCTAAAGGATGGCTTTATAGACATCACTATGACAGTTATCATCCAAAA C40 AAGCCAAAGGGTGGTTTTATAAACATCACTATGAAAGCAGGCATCCAAAA C41 AAGCTAAGGGATGGGCTTATAGACATCACTATGAAAGCAACCACCCAAGA C42 AAGCTAAAGGATGGTTTTATAGACATCACTATGAAAACCCTCATCCAAGA C43 AGGCAAAAGGATGGTATTATAGACATCATTATGAAACAAGGCATCCAAAA C44 AAGCAAAAAATTGGTTGTATAGACATCACTATGACTGCCCACACCCAAAA C45 AAGCTAGGGGATGGTTTTATAGACATCACTATGAAAGTACTCATCCAAAA C46 GAGCTAATGGATGGTTCTATAGACATCATTATGAAAGCAGACATCCAAAA C47 AAGCTAAGGGATGGTGTTATAGACATCACTATGAAAGCACTAATCCAAGA C48 AAGCTAAGGACTGGTTTTATAGACATCACCATGAAAGCACTCATCCAAGA C49 AAGCTAGGGAATGGACTTATAGACATCATTATGAAAGCACTAATCCAAGA C50 GAGCTAGTGGATGGTCATACAGACACCATTATGAAAGCAGAAATCCAAAA ...* . . *** ** *..** ** : .* .* * :*.. C1 GTAAGTTCAGAAGTACACATCCCACTAGGGGATGCTAGATTAGTAGTAAG C2 GTAAGTTCAGAAGTACATATCCCACTAGGAGATGCTACACTAGTAATAAG C3 GTAAGTTCAGAAGTACGCATCCCACTAGGAGAGGCTATATTAGTAGTAAG C4 GTAAGTTCAGAAGTACACATCCCATTAGGGGCGGCTAAATTAGTAGTAAA C5 ATAAGTTCAGAAGTACACATCCCACTAGGAGATGCCAGACTAGTAGTAAA C6 GTAAGTTCAGAAGTACACATCCCACTAGGGGATGCTAGATTAGTAGTAAA C7 ATAAGTTCAGAAGTACACATCCCGCTAGGGGATGCTAAATTGGTAATAAC C8 GTAAGTTCAGAAGTACACATCCCACTAGGGGATGCTATATTAGTAGTAAG C9 GTAAGTTCAGAAGTACACATTCCACTAGGGGATGCTACATTAATAGTAAG C10 ATAAGTTCAGAAGTACACATCCCACTAGGAGAAGCTAGACTGGTAGTAAA C11 ACAAGTTCAGAGGTACACATCCCACTAGGGGATGCTAAATTGGTAATAGC C12 ATAAGTTCAGAAGTACACATTCCATTAGGGGAAGCTAGATTGGTAGTAAA C13 GTAAGTTCAGAAGTACACGTCCCACTAGGGGATGCTAAACTAGTAGTAAG C14 GTTAGTTCAGAAGTACATATCCCACTAGGGGATGCCAAAATAGTAGTAAG C15 GTAAGCTCAGAAGTACACATACCATTAGGGGATGCTAGATTAGTAGTCAT C16 GTAAGTTCAGAAGTACATATCCCACTAGGGGAGGCTAAATTAGTAATAAG C17 GTAAGTTCAGAAGTACATATCCCACTAGGAGAAGCTAAATTAGTGATAAT C18 ATAAGTTCAGAAGTACACATCCCATTAGGGGATGCTAAATTGGTAGTAAC C19 GTGAGTTCAGAAGTACATATCCCACTAGGAGAGGCTAGATTAGTAATAAG C20 ATAAGCTCAGAAGTACACATCCCATTAGGAGAGGCTAGATTAGTAATAAA C21 ATAAGTTCAGAAGTACACATCCCACTAAGGGATGCAGAACTGGTAATAAC C22 GTAAGTTCAGAAGTACACATCCCACTAGGAGAGGCTAGATTGGTAATAAG C23 GTAAGTTCAGAAGTACATATCCCATTAGGGGATGCTAGATTAGTAATAAA C24 AAAAGTTCAGAAGTACACATTCCACTAGGGGATGCTCGTTTAGTAATAAC C25 ATAAGTTCAGAAGTACACATTCCACTAGGGGATGCTAGATTAGTAATAAC C26 GTAAGTTCAGAAGTACACATCCCATTAGGGGAGGCTAGGTTAGTAGTAAG C27 GTAAGTTCAGAAGTACACATCCCACTAAGGGATGCTAAATTAGTAGTAAC C28 GTAAGTTCAGAAGTACACATCCCATTAGGGGAGGCTAAATTAGAAATAAA C29 GTAAGTTCAGAAGTACATATCCCACTAGGAGAGGCTAGATTAGTAATAAG C30 GTAAGTTCTGAAGTACACATTCCACTAGGAGATGCTAAATTAGTAGTAAT C31 GTAAGTTCAGAAGTACACATCCCAGTAGGGGAGGCTAAATTAGTAATAAA C32 GTAAGTTCAGAAGTACACATCCCATTAGGAGATGCTAGATTAATAATAAA C33 GTAAGTTCAGAGGTACACATACCATTAGGGGAGGCTAGAGTAATAATAAA C34 ATAAGTTCAGAAGTACACATCCCACTAGAGGAAGCTAAATTAGTAATAAC C35 GTAAGTTCAGAGGTACACATCCCACTAGGGGATGCGGCATTGGTAGTAAC C36 ATAAGTTCAGAAGTACACATCCCACTAGAGGCAGATGAATTAGTAATAAC C37 ATAAGTTCAGAAGTACACATCCCACTAGGAGAGGCTAGCTTGGTAATAAC C38 ATAAGTTCAGAAGTATACATCCCACTAGGGGATGCTAAATTGGTAATAAC C39 ATAAGTTCAGAAGTACACATCCCACTAGGATGTGCTGAATTAGTGATAAC C40 GTAAGTTCAGAAGTACATATTCCAATAAATGAGGCTAGATTAATAATAAG C41 ATAAGTTCAGAAGTACGCATCCCAGTAGGGGATGCTACATTAGTAATAAC C42 GTAAGTTCAGAAGTACACATCCCACTAGGGGATGCTAAATTGGTAATAAC C43 ATAAGTTCAGAAGTACATATCCCAGTAGGTCAGGCAAGATTAGTGATAGT C44 ATAATTTCAGAAGTACACATCCCACTAGGAAAAGCTAGACTGGTAGTAAA C45 ATAAGTTCAGAAGTACACATCCCATTAGAGGCAGCTAGGTTGGTAATAAC C46 ATAAGTTCAGAAGTACACATACCATTAGGGGATGCTAGGCTAGTGATAAA C47 ATAAGCTCAGAAGTACACATCCCACTAGGGGAAGCTAAATTGGTAATAGT C48 ATAAGTTCAGAAGTACACATCCCACTAGGGGATGCTAAATTAGTAGTAAC C49 GCAAGTTCAGAAGTACACATCCCACTAGGGGATGCTAGATTAGTAGTAAC C50 GTAAGTTCAGAAGTACACGTCCCATTAGGGGAGGCTAAATTAGTAATAAA . * **:**.*** . .* **. **.. *. *..:..*.. C1 AACATATTGGGGTCTGCATACAGGAGAAAGAGACTGGCACTTGGGTCAGG C2 AACATATTGGGGTCTGCAGACAGGAGACAAGGACTGGCATTTGGGTCATG C3 AACATATTGGGGTCTGCAGACAGGAGAAAAGGAATGGCATTTGGGTCATG C4 GACATATTGGGGGTTGCAAACAGGAGAAAGAGAGTGGCACTTGGGTCATG C5 AACATATTGGGGTCTGCATACAGGAGAAAGAGACTGGCATCTGGGTCAGG C6 AACATATTGGGGCCTGCATACAGGAGAAAGAGAATGGCACTTGGGTCATG C7 AACATATTGGGGTCTGCATACAGGGGAAAGAGACTGGCATTTAGGTCAGG C8 AACATATTGGGGCCTGCACCCAGGAGAACAAGACTGGCACTTAGGTCAGG C9 AACATATTGGGGTCTGCAGCCAGGAGAAAGAGACTGGCATTTGGGTCATG C10 AACATATTGGGGTCTGCATACAGGAGAAAGAGAATGGCATCTGGGTCAGG C11 AACATATTGGGGTCTGCATACAGGAGAAAGAGACTGGCATTTGGGTCAGG C12 AACATATTGGGGTCTGCATACAGGAGAAAGAGACTGGCATTTGGGTCAGG C13 AACATATTGGGGTCTGCATACAGGAGAAAAAGAATGGCACTTGGGTCATG C14 AACATATTGGGGTCTGCATACAGGAGAAAAAGATTGGCACTTGGGTCATG C15 AACATATTGGGGTTTGCACACAGGAGAAAGAGAATGGCATTTGGGTCATG C16 AACATATTGGGGTCTGCAGACAGGAGAAAAGGACTGGCACTTGGGTCATG C17 AACATATTGGGGTCTGCAGACAGGAGAAAAGGACTGGCAATTGGGTCATG C18 AACATATTGGGGTCTGCATACAGGAGAAAGAGACTGGCATTTGGGTCAGG C19 AACATATTGGGGTTTGCAGACAGGAGAAAAGGACTGGCACTTGGGTCATG C20 AACATATTGGGGGTTGCAAACAGGAGAAAGAGATTGGCATTTGGGTCATG C21 AACATATTGGGGTCTACATACAGGAGAAAGAGACTGGCATTTGGGTCAAG C22 GACATATTGGGGTCTGCAGACAGGAGAAAAGGACTGGCAATTGGGTCATG C23 AACATATTGGGGTTTGCAGACAGGAGAAAGAGATTGGCATTTGGGTCATG C24 AACATATTGGGGTCTGCATACAGGAGAAAGAGACTGGCATTTGGGCCAGG C25 AACATATTGGGGTCTGCATACAGGAGAAAGGGATTGGCATTTGGGTCAGG C26 AACATATTGGGGTTTACAAACAGGAGAAAGAGAATGGCATTTGGGTCATG C27 AACATATTGGGGTCTGCATACAGGAGAAAGAGACTGGCATTTGGGTCAGG C28 AACATATTGGGGGTTGCAAACAGGAGAAAGAGATTGGCATTTGGGTCATG C29 AACATATTGGGGTCTGCAGACAGGAGAAAAGGACTGGCACTTGGGTCATG C30 AACATATTGGGGTCTGCATACAGGAGAAAAAGATTGGCAATTGGGTCATG C31 AACATATTGGGGGTTACAAACAGGAGAAAGAGATTGGCATTTGGGTCATG C32 AACATATTGGGGTTTGCTTCCAGGAGAAAGAGAATGGCATTTGGGTCATG C33 AACATATTGGAATTTGCAAACAGGAGAAAGAGCTTGGCATCTAGGTCAGG C34 AACATACTGGGGGCTGCATACAGGGGAAAGAGATTGGCATCTAGGTCAGG C35 AACATATTGGGGTCTACATACAGGAGAAAGAGATTGGCATTTGGGTCAGG C36 AACATACTGGGGACTGCATACAGGAGAAAGAGATTGGCATCTGGGTCAGG C37 AACATATTGGGGTCTGCATACAGGAGAAAGAGACTGGCATTTGGGCCAAG C38 AACATATTGGGGTCTGCATACAGGAGAAAGAGACTGGCAATTGGGTCATG C39 AACATATTGGGGTCTAAATACAGGAGAAAGAGAATGGCACTTGGGCCAGG C40 AACATATTGGGGTCTACAGACAGGAGAAAAAGATTGGCATTTGGGTCATG C41 AACATATTGGGGTCTGCAGACAGGAGAAAGAGATTGGCATTTGGGTCGGG C42 AACATATTGGGGTCTGCATACAGGAGAAAGAGACTGGCATTTGGGGCAGG C43 CACTTATTGGGGACTAACAACAGGAGAACAGCCTTGGCATCTAGGACATG C44 AACATATTGGGTTCTGCATACAGGAGAAAGAAAATGGCATCTGGTTCATG C45 AACATATTGGGGTCTGCATACAGGAGAAAGAGACTGGCATTTGGGTCAGG C46 AACATATTGGGGTCTGCATACAGGAGAAAGAGAATGGCATTTGGGTCATG C47 AACATATTGGGGTCTGCATACAGGAGAAAGAGACTGGCATTTGGGTCAGG C48 AACATATTGGGGTCTGCATACAGGAGAAAGAGACTGGCATCTGGGTCAGG C49 AACATATTGGGGTCTGCATACAGGAGAAAGAGATTGGCATTTGGGTCAAG C50 AACATATTGGGGGTTGCAACCAGGAGAAAGGGATTGGCATTTGGGTCATG **:** ***. *.. .****.**.... . ***** *.* *. * C1 GGGTCTCCATAGAATGGAGACAGAGAAGATATAGCACACAAGTAGATCCT C2 GAGTCTCCATAGAATGGAGGCAGAGAAGATATAGCACACAAATAGATCCT C3 GAGTCTCCATAGAATGGAGGCAGAAAAATTATAGAACACAAACAGATCCT C4 GAGTATCCATAGAATGGAAATTGGGGGAATACAGTACACAAGTAGAACCT C5 GAGTCTCCATAGAATGGAGGAAAAGGAAATATAGCACACAAGTAGACCCT C6 GGGTCTCCATAGAATGGAGGCAGAAAAGATATAGCACACAAATAGATCCT C7 GAGTCTCCATAGAATGGAGGATTAACAGATATAGCACACAAGTAGACCCC C8 GGGTCTCCATAGAATGGAGACAGAAAAGATATAGCACACAAATAGATCCC C9 GGGTCTCCATAGTATGGCAGCAGAAAAGATATAGCACACAAATAGACCCT C10 GAGTCTCCATAGAATGGAGGAAAGGGAGATACAGCACACAAGTAGACCCT C11 GAGTCTCCATAGAATGGAAGAAAGAGAGTTATAGCACACAAGTAGACCCT C12 GAGCCTCCATAGAATGGAGGAAAAACAGATATAGCACACAAGTAGCACCT C13 GGGTCTCCATAGAATGGAGACTAAAAAGATACAGCACACAAATAGATCCT C14 GGGTCTCCATAGAATGGAGGCTAAAAAGATATAATACACAGATAGACCCT C15 GAGTCTCCATGGAATGGAGATGGAAAAGATATAGCACACAAGTAGACCCT C16 GAGTCTCCATAGAATGGAGGCAGGGAAATTATAACACACAAATAGATCCT C17 GAGTCTCCATAGAATGGAGGATGAGAAAATATAGCACACAAGTAGATCCT C18 GAGTCTCCATAGAATGGAGGAAAAGGAGATACAGCACACAAGTAGACCCT C19 GAGTCTCCATAGAATGGAGGCAGGGAAATTATAACACACAAATAGATCCT C20 GAGTCTCCATAGAATGGAGATTGAGAAGCTATAACACACAAATAGAACCT C21 GAGTCTCCATAGAGTGGAGAAAGAAGAGATATAGCACACAAGTAGACCCT C22 GAGTCTCCATAGAATGGAGGCAGAGAAACTATAGCACACAAATAGATCCT C23 GAGTCTCCATAGAATGGAGATTAAAAAGATATAGCACACAAGTAGACCCT C24 GGGTCTCCATAGAATGGAGGAAAGAGAGATATAGAACACAAGTAACCCCT C25 GAGTCTCCATAGAATGGAGGAAAAGGAGATATAGCACACAGGTAGACCCT C26 GAGTCTCCATAGAATGGAGATTGAGAAAATATAGCACACAAGTAGACCCT C27 GAGTCTCCATAGAATGGAGGAAAGAGAGATATAACACACAAGTAGACCCT C28 GAGTCTCCATAGAATGGAGATGGAGAAGATATAGCACACAAGTAGACCCT C29 GAGTCTCCATAGAATGGAGGCAGGGAAAATACAACACACAAATAGATCCT C30 GGGTCTCCATAGAATGGAGGCAGAAAAGGTATAGCACACAAATAGATCCT C31 GAGTCTCCATAGAATGGAGATTAAGAAGATATCACACACAAATAGAACCC C32 GAGTCTCCATAGAATGGAGATGCAGAAGATATAGCACACAAGTAGACCCT C33 GAGTCTCCATAGAATGGAGATTGAGAAGATATAGCACACAAATAGACCCT C34 GAGTCTCCATAGAATGGAGGCAGGGGAGATATAAGACACAAATAGACCCT C35 GAGTCTCAATAGAATGGAGGAAAAGGAGTTATAGAACACAAGTAACCCCT C36 GAGTCTCCATAGAATGGAGGCAGGGGAGGTATAGGACACAAATAGACCCT C37 GAGTCTCCATAGAATGGAGGAAAAAGGGATATAGCACACAAATAGATCCT C38 GAGTCTCCATAGAATGGAGGAAAGAGAGATATAGCACACAAGCAGACCCT C39 GAGTCTCCATAGAATGGAGGATGAGAAGGTATAGAACACAAATAGACCCT C40 GGGTCTCTGTAGAATGGAGACAAAGAAGATACAGCACACAAGTAGACCCT C41 GAGTCTCCGTAGAATGGAGAAAGAGGAAATATAGAACACAAGTAGACCCC C42 GAGTCTCCATAGAATGGAGGAAAAGGAGATATAGCACACAAGTAGACCCT C43 GAGTATCCATAGAATGGAGACTAAGAAAATACAAGACACAGGTTGATCCT C44 GGGTCTCCATAGAATGGAGGCTAAAAAGATATAGCACACAAATAGATCCT C45 GAGTCTCCATAGAATGGAGGAAAAAGAGATATAGCACACAGATAGACCCT C46 GAGTCTCCATAGAATGGAGACTGAGAAGATATAGCACACAAGTAGACCCT C47 GAGTCTCTATAGAATGGAGAAAAAAGAGATATAGCACACAAGTAGGCCCT C48 GAGTCTCCATAGAATGGAGGATGAGGAGATATAGCACACAAGTAGACCCT C49 GAGTCTCCATAGAATGGAGAAAAAGGAGATATAGCACACAAGTAGACCCT C50 GAGTCTCCATAGAATGGAGATTGAAAAGCTATAGTACACAAGTAGAACCT *.* .** .*.*:.***... .. .. ** .. *****.. :. ** C1 GACCTAGCAGACCATCTGATTCACCTGCATTATTTTGACTGTTTTTCAGA C2 GACCTAGCAGACCGACTGATTCATCTACAATATTTTGACTGTTTTTCAGA C3 GACCTAGCAGACCAACTGATTCATCTACACTATTTTGACTGTTTTTCAGA C4 GGCCTGGCAGACCAGCTAATTCATACACATTATTTTGATTGTTTTACAGA C5 GGCCTGGCAGACCAACTAATTCATATATATTACTTTGATTGTTTTTCAGA C6 GACCTAGCAGACCAACTGATTCACCTGCATTATTTTGACTGTTTTTCAGA C7 GGCTTAGCAGACCAACTAATTCATCTGTATTATTTTGATTGTTTTTCAGA C8 AACCTAGCAGACCAACTAATTCATCTGCATTATTTTGACTGTTTTTCAGA C9 GATCTAGCAGACCAACTGATTCACCTGCATTATTTTGACTGTTTTTCAGA C10 GGCCTGGCAGACCAATTAATTCATATATATTATTTTGATTGTTTTGCAGA C11 GACCTAGCAGACCAACTAATTCATCTGTATTACTTTAATTGTTTTTCAGA C12 GACTTGGCAGACCGACTAATTCATCTGTATTACTTTGATTGTTTTTCAGA C13 GACCTGGCAGACCAACTAATTCATCTGCATTATTTTAACTGTTTTTCAGA C14 GACCTGGCAGACCAACTAATTCATCTGTATTACTTTGACTGTTTTTCAGA C15 GGCCTGGCAGATCAGTTAATTCATTTGCATTATTTTGATTGTTTTGCAGA C16 GACCTAGCAGACCAACTGATTCATCTACAATATTTTGACTGTTTTTCAGA C17 GACCTAGCAGACCAACTGATTCATCTACATTATTTTAACTGTTTTTCAGG C18 GACCTAGCAGACCAACTAATTCATGTGTATTACTTTGATTGTTTTTCAGA C19 GACCTAGCAGACCAACTGATTCATCTAAATTATTTTGACTGTTTTTCAGA C20 GGCCTGGCAGACCAGCTAATTCATATGTATTATTTTGATTGTTTTGCAGA C21 AACCTAGCAGACCATCTAATTCATCTGCATTACTTTGATTGTTTTTCAGA C22 GACCTAGCAGACCAACTGATTCATCTACAATATTTTGACTGTTTTTCAGA C23 GGCCTGGCAGACCAACTAATTCATATGCATTATTTTGATTGTTTTGCAGA C24 GACATGGCAGACCAATTAATTCATATGTATTATTTTGATTGTTTTTCAGA C25 GATCTAGCAGACCAACTAATTCACCTGTATTATTTTAATTGTTTTTCAGA C26 GGCCTGGCAGACCAGCTAATCCATATGCATTATTTTGATTGTTTTGCAGA C27 GAACTAGCAGACCAACTAATTCATCTGTATTACTTTGATTGTTTTTCAGA C28 GGTCTGGCAGATCAGCTAATTCATATGTATTATTTTGATTGTTTTGCAGA C29 GACCTAGCAGACCAACTGATTCATCTACATTATTTTGACTGTTTTTCAGA C30 GACCTAGCAGACCAATTGATTCATCTGCACTATTTTGATTGTTTTTCAGA C31 GACCTGGCAGACCAGCTAATTCATTTGCATTATTTTGATTGTTTTGCAGA C32 GGCTTGGCAGACCAGCTAATTCATATGCATTATTTTGATTGTTTTGCAGA C33 GGCCTGGCAGACCAGCTAATTCATATGCATTATTTTGATTGTTTTGCAGA C34 GGCCTGGCAGACCAACTGATCCATATATATTATTTTGATTGTTTTTCAGA C35 GACCTAGCAGACCACCTAATTCATCTGTATTACTTTGATTGTTTTTCAGA C36 GGCCTGGCAGACCAACTGATCCATATATACTATTTTGATTGTTTTTCAGA C37 GGCCTAGCAGACCAACTAATTCATCTGTATTATTTTGATTGTTTTTCAGA C38 GACCTAGCAGACCAACTAATTCACCTGTACTACTTTGATTGTTTTTCAGA C39 GTTCTGGCAGACCAACTAATTCATGTGCATTACTTTGATTGTTTTTCAGA C40 GACCTAGCAGATCAACTAATTCATCTGCAATATTTTGACTGTTTTTCAGA C41 GACATAGCAGACCATCTAATTCATCTGTATTATTTTGATTGTTTTTCAGA C42 AACCGAGCAGACCAACTAATTCATCTGTATTACTTTGATTGTTTTTCAGA C43 GAAATGGCAGACAAGCTAATACATCTTTATTATTTTGATTGTTTTACAGC C44 GACCAGGCAGATCAACTAATTCATCTGCATTATTTTGACTGTTTTTCAGA C45 GACCTGGCAGACCAACTAATTCATCTATATTACTTTGATTGTTTTTCAGA C46 GACCTGGCAGATCAGCTAATCCATATACATTATTTTGATTGTTTTACAGA C47 GACCTAGCAGACCAACTAATTCATCTGTATTACTTTGATTGTTTTTCAGA C48 CTCATGGCAGACCAACTAATTCATCTGTATTATTTTGATTGTTTTACAGA C49 GAACTAGCAGACCAACTAATTCATATGTATTATTTTGATTGTTTTTCAGA C50 GGCCTGGCAGACCAGCTAATTCATCTGTATTATTTTGATTGTTTTGCAGA .***** .. *.** ** * ** ***.* ****** *** C1 CTCTGCCATAAGGAAAGCCATATTAGGAGAAGTAGTTAGCCCTAGGTGTC C2 CTCTGCCATAAGGAAAGCCATATTAGGACAAGTAGTTAGACGTAGGTGTG C3 CTCTGCCATAAGGAAAGCCATATTAGGACAAGTAGTTAGACGTAGGTGTG C4 CTCTGCCATAAGGAAAGCCATATTAGGACACATAGTTATTCCTAGGTGTG C5 ATCTGCCATAAGACAAGCCATATTAGGACGAGTAGTTAGCCCTAGGTGTG C6 ATCTGCCATAAGGAAAGCCATATTAGGACAAGTAGTTAGCCCTAGGTGTG C7 ATCTGCTGTAAGGAAAGCCATATTAGGACATAGAGTTAGACCTAGGTGTG C8 ATCTGCCATAAGGAAAGCCATATTAGGACAAGTAGTTAGACCTAGGTGTG C9 ATCTGCCATAAGGAAAGCCTTATTAGGACAAGTAGTTAGACCTAAGTGTG C10 ATCTGCTATAAGAAAAGCCATATTAGGACATATAGTTGCTCCTAGGTGTA C11 CTCTGCTATAAGAAAAGCCATAGTAGGACATATAGTTAGTCCTAGTTGTG C12 CTCTGCTATAAGAAAGGCCATATTAGGAAAAATAGTTAGTCCTAGGTGTG C13 CTCTGCCATAAGGAGAGCCATATTAGGACAAGTAGTTAGCCCTAGTTGTG C14 CTCTGCCATAAGGAAAGCCATATTAGGACAAGTAGTTAGCCCTATTTGTG C15 CTCTGCCATAAGAAAAGCCATATTAGGACACATAGTTATTCCTAGGTGTG C16 ATCTGCCATAAGGAAAGCCATATTAGGACAAGTAGTTAGACGTAGGTGTG C17 ATCTGCTATAAGGAATGCCATATTAGGACAAGTAGTTAGAAGTAGGTGTG C18 AACTGCCATAAGAAATACCTTATTAGGACGTAGAGTTAGTCCTAGGTGTG C19 CTCTGCCATAAGGAAAGCCATATTAGGACAAGTAGTTAGACGTAGGTGTG C20 CTCTGCCATAAGGAAAGCCATATTAGGACACGTAGTTATTCCTAGGTGTG C21 ATCTGCTATAAGGAATGCCATATTAGGACATATAGTTAGTCCTAGTTGTG C22 CTCTGCCATAAGGAGAGCCATATTAGGACAAGTAGTTAGACGTAGGTGTG C23 CTCTGCCATAAGACAAGCCATAGTAGGACATAGAGTTAGCTCTAGGTGTG C24 CTCTGCTATAAGAAATGCCATATTAGGATATAGAGTTAGCCCTAGGTGTG C25 ATCTGCTATAAGAAATGCCATATTAGGACGCATAGTTAGTCCTAAGTGTG C26 CTCTGCCATAAGAAAAGCCATATTAGGACATATAGTTAAACCTAGGTGTG C27 ATCTGCTATAAGAAATGCCATATTAGGAAATAGAGTTAGTCCTAGTTGTG C28 ATCTGCCATAAGGAAAGCCATATTAGGACACATAGTTACTCCTAGGTGTG C29 CTCTGCCATAAGGAAAGCCATATTAGGACAAGTAGTTAGACGTAGGTGTG C30 CTCTGCCATAAGGAAAGCCATATTAGGACAATTAGTTAGCCCTAGGTGTG C31 CTCTGCCATAAGGAAAGCCATATTAGGACACATAGTTATTCCTAGGTGTG C32 CTCTGCCATAAGAAAAGCCATATTAGGACATATAGTTACTCCTAGGTGTA C33 CTCTGCCATAAGAAAAGCCATATTAGGACACATAGTTATTCCTAGGTGTG C34 ATCTGCCATAAGGAAAGCAATATTAGGACATAAAATTAGCCCTAGGTGTA C35 ATCTGCTATAAGAAATGCCATATTAGGACGTATAGTTAGTCCTAGTTGTG C36 ATCTGCCATAAGGAAAGCCATATTAGGACATACAATTAGCCCTAGGTGTA C37 ATCTGCTATAAGAAATGCCATATTAGGACATAGAGTTAGACCTAGTTGTG C38 CTCTGCTATAAGACAAGCCATATTAGGACATAGAGTTAGTCCTAGGTGTG C39 ATCTGCCATAAGGAAAGCCATATTAGGACATATAGTTAGCCCTAGGTGTG C40 ATCTGCCATAAGGAAAGCCATATTAGGACAAAAAATTATTCATAGGTGTG C41 GTCTGCTATAAGAAATGCCATATTAGGACATGTAGTTAACCCTAAGTGTG C42 CTCAGCTATAAGAAATACCCTATTAGGACATAGAGTTAGCCCTAGGTGTG C43 GTCTGCCATAAGACAAGCAATCTTAGGGAGACAAGTATTTCCTAGGTGTG C44 GTCTGCCATAAGGAAGGCCATATTAGGAGAAGTAGTTAGCCCTAGGTGTG C45 CTCTGCCATAAGAAATGCCATATTAGGACGTATAGGTAGTCCTAGGTGTG C46 CTCTGCCATAAGAAAAGCCATATTAGGACACATAGTCTTTCCTAGGTGTG C47 ATCTGCTATAAGAAAGGCCCTATTAGGACATAGAGTTAGTCCTAGGTGTG C48 GTCTGCTATAAGAAATGCCATATTAGGACACATAGTTAGACCTAGGTGTG C49 AACTGCTATAAGACAAGCCATATTAGGACGCATAGTTAGCCCTAGGTGTG C50 ATCTGCCATAAGAAAAGCCATATTAGGACACATAGTTCTTTCTAGGTGTG :*:** .****... .*. *. ****. . *. ** *** C1 AATATCCAGAAGGACAT---AATAAGGTAGGATCGCTACAATATTTGGCA C2 AATATCCTTCAGGACAT---AACAAGGTAGGATCCCTACAATATTTGGCA C3 AATACCCATCAGGACAT---AACAAGGTAGGATCCCTACAATATTTGGCA C4 ACTATCAAGCAGGACAC---AATAAGGTAGGATCTCTACAATACTTGGCA C5 ACTATCCAGCAGGACAT---AACCAGGTAGGATCTTTACAGTATCTGGCA C6 ACTATCAAGCAGGACAC---AATAAGGTAGGATCGCTACAATATTTGGCA C7 AATATCAAGCAGGACAT---AACAAGGTAGGGTCTCTACAGTATTTGGCA C8 AATATCAAACAGGACAT---AACAAGGTAGGATCTTTACAATATTTGGCA C9 AATATCAAGCAGGACAT---AATAAGGTAGGATCGCTACAATATTTGGCA C10 ATTATCAAGCAGGACAT---AACAAGGTAGGATCTTTACAATATTTGGCA C11 AATACCTATCAGGACAC---AACAAGGTAGGATCTCTACAGTACTTGGCA C12 AATATCAAGCAGGACAT---AACAAGGTAGGATCCCTACAATACTTGGCA C13 AATATCAAGCAGGACAT---AATAAGGTAGGATCTCTACAATATTTGGCA C14 AATATCAAACAGGACAT---AACAAGGTAGGATCTCTACAATATTTAGCA C15 ACTACCAAGCAGGACAT---AAGAAGGTAGGATCTCTACAATACTTGGCA C16 AATATCCAACAGGACAT---AACAAGGTAGGATCCCTACAATATTTGGCA C17 ATTATCCATCAGGACAT---AATAAGGTAGGATCCCTACAATATTTGGCC C18 AATATCAAGCAGGACAT---AACAAGGTAGGATCTCTACAGTATTTGGCA C19 AATACCCATCAGGACAT---AATAAGGTAGGATCCCTACAATATCTGGCA C20 ACTATCAAGCAGGACATAATAATAAGGTAGGATCTCTACAATACTTGGCA C21 AATACCAAGCAGGACAT---AACAAGGTAGGATCTCTACAGTACTTGGCA C22 AATATCCATCAGGACAT---AACAAGGTAGGATCCCTACAATATTTGGCA C23 ACTATCAAGCAGGACAT---AACAAGGTAGGATCTCTACAATATTTGGCA C24 AATATCAAGCAGGACAT---AGTAAGGTAGGATCCCTACAATACTTGGCA C25 AATATCAAGCAGGACAT---AACAGGGTAGGATCCCTACAGTACTTGGCA C26 ACTATCAAGCAGGACAT---AACAAGGTAGGATCTCTACAATATCTGGCA C27 AATATCAAGCAGGACAT---AATAAGGTAGGATCTCTACAGTACTTGGCA C28 ACTACCAAGCAGGACAC---AATAAGGTAGGGTCTCTACAGTACTTGGCA C29 AATATCCATCAGGACAT---AACAAGGTAGGATCCCTACAATATTTGGCA C30 AATATCAAGCAGGACAT---AATAAGGTAGGATCCCTACAATACTTGGCA C31 ACTATCAAGCAGGACATAATAATAAGGTAGGATCTCTACAATATTTGGCA C32 ATTATCAAGCAGGACAT---AACAAGGTAGGATCTTTACAATATTTGGCA C33 ACTATCAAGCAGGACAT---AATAAGGTAGGATCTCTACAATACTTGGCA C34 ACTATCAAGCAGGACAT---AACAAGGTAGGATCTCTACAATATTTGGCA C35 AATATCAAGCAGGACAT---AACAAGGTAGGATCTTTACAGTACTTGGCA C36 ACTATCAAGCAGGACAT---AACAAGGTAGGATCTCTACAATATTTAGCA C37 AATATCAAGCAGGACAT---AACAAGGTAGGATCTCTACAGTATTTGGCA C38 AATATCAAGCAGGACAT---AACAAGGTAGGATCTCTACAATACTTGGCA C39 AATATCAAGCAGGACAT---AATAAGGTAGGATCTCTACAATATCTGGCA C40 AATATCAAACAGGACAT---AAGAAGGTAGGGTCTCTGCAATATCTGGCG C41 AATATCATACAGGACAT---GACAAAGTAGGGTCTCTACAGTACTTGGCA C42 AATATCAAGCAGGACAT---AACAAGGTAGGATCTCTACAGTACTTGGCA C43 AATATCCTGCAGGGCAC---AATCAGGTAGGCACCTTACAATATCTAGCA C44 AATATCAAACAGGACAT---AACAAGGTAGGATCTCTACAATATTTAGCA C45 AATATCAAGCAGGACAT---AACAAGGTAGGATCTCTACAGTACTTGGCA C46 ATTATCAAGCAGGACAT---AATAAGGTAGGATCCCTACAATACTTGGCA C47 AATATCAAGCAGGACAT---AACAAGGTAGGGTCTCTACAGTACTTGGCA C48 AATATCCAGCAGGACAT---AATCAGGTAGGATCTCTGCAGTACTTGGCA C49 AGTTTCAAGCAGGACAT---AACAAGGTAGGATCTCTACAGTACTTGGCA C50 ACTATCAAGCAGGACAT---ACTAAGGTAGGATCGCTACAATACCCGGCA * *: * : .***.** . ...***** :* *.**.** .** C1 CTGAAAGCATTAGTAACACCAACAAAGACAAAGCCACCTTTGCCTAGTGT C2 CTGAAAGCATTAACAACACCAAAAAGGATAAGGCCACCTCTGCCTAGTGT C3 CTGAAAGCATTAACAACACCAAAACAGATAAGGCCACCTCTGCCTAGTGT C4 CTGACAGCACTGATAAAACCAAAAAAGATAAAACCACCTCTGCCTAGTAT C5 CTAACAGCATTAATAGCATCAAAAAAGAGAAAGCCACCTTTGCCTAGTGT C6 CTGAAAGCATTAATAACACCAACAAAGACAAAACCACCTTTGCCTAGTGT C7 CTAGTAGCATTAATAACACCAAAAAAGACAAAGCCACCTTTGCCTAGTGT C8 CTGAGAGCAGTAGTAAAATTAAGAAATACAAAACCACCCTGTCCTAGTGT C9 CTGAAAGCATTAGTAACACCAACAAGGAGAAAGCCACCTTTGCCTAGTGT C10 CTAACAGCATTAATAAAACCAAAAAAGATAAAACCACCTTTGCCTAGTGT C11 CTAACAGCATTAATAACACCAAAAAGGAGGAAGCCACCTTTGCCTAGTGT C12 CTAGTAGCATTAACAACACCAAAAAAGACAAAGCCACCTTTGCCTAGTGT C13 CTGAAAGCCTTAGTAACACCAAAGAAGACAAAGCCACCTTTGCCTAGTGT C14 CTAAAAGCATTAGTAACACCAACAAAGGCCAAGCCACCTTTGCCTAGTGT C15 CTGACAGCATTGATAAAGCCAAAAAAGAGAAAGCCACCTCTGCCTAGTAT C16 CTGAAAGCATTAACAACACCAAAAAGGATAAAGCCACCTCTGCCTAGTGT C17 CTGAAAGCATTGACCACATCAAAAAGAATAAAGCCACCTCTGCCTAGTGT C18 CTAGTAGCATTAATAAAACCAAAAAGGACAAAGCCACCTTTGCCTAGTGT C19 CTGAAAGCATTAACAACACAAAAAAAGACAAGGCCACCTCTGCCTAGTGT C20 CTGACAGCATTGATAAAACCAAAAAGGATAAGGCCACCTCTGCCTAGTAT C21 CTAGCAGCATTAACAACACCAAAAAAGAAAAAGCCACCTTTGCCTAGTGT C22 CTGAGAGCATTAACAACACCAAAAAGGATAAGGCCACCTCTGCCTAGTGT C23 CTAACAGCATTGATAAAGCCAAAAAAGATAAAGCCACCTCTGCCTAGTGT C24 TTAGCAGCACTAGTAACACCAAAACAGACAAAACCACCTTTGCCTAGTGT C25 CTAGCAGCATTAATAACACCAAGAAGGGTAAAGCCACCTTTGCCTAGTGT C26 CTAACAGCCTTAATAAAAACAAAAAAGATAAAGCCACCTCTGCCTAGTAT C27 CTATCAGCATTAATAACACCAAAGAAGATAAAGCCACCTTTGCCTAGTGT C28 CTGACAGCAATAATAAAACCAAAAAGGAGAAAGCCACCTCTGCCTAGTAT C29 CTGAAAGCATTAACAACACCAAAAAGGATAAGGCCACCTCTGCCTAGTGT C30 CTGAAAGCATTAGTAACACCAACAAGGAGAAAGCCACCTTTGCCTAGTGT C31 CTAACAGCACTAATAAAACCAAAAAAGATAAAGCCACCTCTGCCTAGTAT C32 CTAACAGCATTAATAACACCAAAAAAGATAAAACCACCTTTGCCTAGTGT C33 CTGACAGCATTGATAAAACCAAAAAAGAGAAAGCCACCTCTGCCTAGTGT C34 CTAACAGCATTAATAGCTCCAAAGAAGACAAGGCCACCTTTGCCTAGTGT C35 CTATCGGCATTAATAACACCAAAAAAGAGAAAGCCACCTCTACCTAGTGT C36 CTAACAGCATTAATAACTCCAAAGAAGACAAAGCCGCCTTTGCCTAGTGT C37 CTAGCAGCATTACTAACACCAAAAAAGATAAAGCCACCTTTGCCTGGTGT C38 CTAACAGCATTAATAACACCAAAAAGGAGAAAGCCACCTTTGCCTAGTGT C39 CTAACAGCCTTACTGAAACCAAAGAAGAGAAAGCCACCTCTGCCTAGTGT C40 CTGAAAGCGTTAGTAGCACCAAAAGGAGCAAAGCCACCTTTGCCTAGTGT C41 CTAGTAGCATTAACAAAACCTAAAAGGAGAAAGCCACCTTTGCCTAGTGT C42 CTAGCAGCATTAAGAAAACCAAAAAAGACAAAGCCACCTCTGCCTAGTGT C43 TTAACAGCTTGGGTGGGAATAAAGAAGAGAAAACCACCCTTACCTAGTGT C44 CTGAAAGCATTAGTAGCACCAACAAAGAAAAAGCCACCTTTGCCTAGTGT C45 CTAACAGCATTAGTAAAACCAAAAAAGACAAAACCACCTTTACCTAGTGT C46 CTGACAGCATTGATAAAGCCAAAAAGGATAAAGCCACCTCTGCCTAGTGT C47 CTAGCAGCATTAATAACACCAAAAAAGATAAAGCCACCTTTGCCTAGTGT C48 CTCACAGCATTAATAAAACCAAAAAAGAGAAAACCACCTCTACCTAGTGT C49 CTAGCAGCATTAGTAAAACCAAAAAAGAGAAAGCCACCTTTGCCTAGTGT C50 CTGACAGCACTAATAAAACCCAAAAAAGACAAAGCCACCTCTGCCAGCAT * .** . . * . . . *.. * .* * .* .* C1 TAAGAAGTTAACAGAAGACAGATGGAACAAGCCCCAGAAGACCAGGGGCC C2 TAAGAAATTAACAGAAGATAGATGGAACAAGCCCCAGAAGGCCAGGGGTT C3 TAAAAAATTAACAGAAGACAGATGGAACAAGCCCCAGAAGATCAGGGGCC C4 TAGGAAATTAGTAGAGGATAGATGGAACAAGCCCCAGAAGACCAGGGGCC C5 TAGGAAGCTAACAGAAGATAGATGGAACAAGCCCCAGAAGACCAGGGGCC C6 TAAGAAGTTAGCAGAAGACAGATGGAACAAGCCCCAGAAGACCAGGGGCC C7 TACGAAACTGACAGAGGATAGATGGAACAAGCCCCAGAGGACCACGGGCC C8 TAGGAAACTAACAGAGGACAGATGGAACAAGCCCCAGAAGACCAGGGGCC C9 TAAGAAGTTAGCAGAAGACAGATGGAACGAGCCCCAGAAGACCAGGGGCC C10 TAGGAAGCTGACAGAAGACAGATGGAACAAGCCCCAGAAGACCAGGGGCC C11 TGCGAAACTGACAGAGGATAGATGGAACAAGCCCCAGAAGACCAAGGGCC C12 TAAGAAACTGACAGAGGATAGATGGAACAAGCCCCAGAAGACCAAGGGCC C13 TAGGAAGCTGACAGAAGACAGATGGAACAAGCCCCAGAAGACCAAGGGCC C14 TAGGAAATTAACAGAGGATAGATGGAACAAGCCCCAGAAGACCAAGGGCC C15 TAGCAAATTAACAGAGGATAGATGGAACAACCCCCAGAAGATCAGGGGCC C16 TAAGAAATTAACAGAAGATAGATGGAACGAGCCCCAGAAGATCAGGGGCC C17 TAGGAAGTTAACAGAAGATAGATGGAACAAGCCCCAGAAGATCAGGGGCC C18 TAAGAAACTGACAGAGGATAGATGGAACAAGCCCCAGAGGACCAAGGGCC C19 TAAGAAATTAACAGAAGATAGATGGAACGAGCCCCAGAAGATCAGGGGCC C20 TAAGAAATTAGTAGAGGATAGATGGAACAACCCCCAGGAGATCAGGGGCC C21 GACGAAGCTAACAGAGGATAGATGGAACAAGCCCCAGAAGACCAAGGGCC C22 TAAGAAATTAACAGAAGATAGATGGAACAAGCCCCAGAGGACCAAGGGCC C23 TAAGAAATTGGTAGAAGATAGATGGAACAAGCCCCAGAAGACCAGGGGCC C24 TACGAAACTGACAGAGGATAGATGGAACAAGCCCCGGAAGACCAAGGGCC C25 TAGAAAACTGACAGAGGATAGATGGAACAAGCCCCACAAGACCAAGGGCC C26 TAATAAATTAGTAGAGGATAGATGGAACAAGCCCCAGAAGACCAGGGGCC C27 TACAAAACTAACAGAGGACAGATGGAACAAGCCCCGGAAGACCAAGGGCC C28 TAAGAAATTAGTAGAGGACAGATGGAACAACCCCCAGAAGATCAGGGCCC C29 TAAGAAATTAACAGAAGATAGATGGAACAAGCCCCAGAGGACCACGGGCC C30 TAGGAAATTAACAGAAGATAGATGGAACAAGCCCCAGAAAACCAAGGGCC C31 TAAGAAATTAGTAGAGGATAGATGGAACAATCCCCAGAAGATCAGGGGCC C32 TAGGAAGCTGACAGAAGACAGATGGAACAAGCCCCAGAGGACCAAGGGCC C33 TCAGAAGTTAGTAGAGGATAGATGGAACAATCCCCAGAAGACCAGGGGCC C34 CAAGAAACTAGTAGAAGACAGATGGAACAAGCCCCAAGAAACCAGGGGCC C35 CAGGAAACTGACAGAGGATAGATGGCACAAGCCCCAGAAGACCACGGGCC C36 CCAGAAACTAGTAGAAGACAGATGGAACAAGCCCCAGGAGACCAGGGGCC C37 TACGAAACTGACGGAGGATAGATGGAACAAGCCCCAGAAGACCAAGGGCC C38 TAAGAAACTGACAGAGGATAGATGGAACGAGCCCCAGAAGACCAGGGGCC C39 TCAAAAACTAGTAGAGGATAGATGGAACAAGCCCCAGAAGACCAGGGACC C40 TAGGAAACTAACAGAGGATAGATGGAACAAGCCCCAGAAGACCAAGGGCC C41 TAGGAAATTAACAGAGGATAGATGGAACAAGCCCCAGAAGACCAAGGACC C42 TGCGAAACTGACAGAGGATAGATGGAACAAGCCCCAGAAGACCAAGGGCC C43 GGCTAAGTTAACAGAAGATAGATGGAACAAGCACCAGAAGACGCAGGGCC C44 TAAGATATTAGCAGAAGACAGATGGAACAAGCCCCAGAGGACCAAGGGCC C45 TAGGAAACTGACAGAGGATAGATGGAACGAACCCCAGAAGACCAAGGGCC C46 TAAGAAGTTAGTAGAGGATAGATGGAACAACCCCCAGAAGACCAAGGGCC C47 TACGAAACTGACAGAGGATAGATGGAACAAGCCCCAGAAGATCAAGGGCC C48 TCAGAAACTGACAGAGGATAGATGGAACAAGCCCCGGAAGACCAAGGGCC C49 TCAGAAACTGACAGAGGATAGATGGAACAAGCCCCGGAAGATCAAGGGCC C50 TAGGAAATTAGTAGAAGATAGATGGAACAACCCCCCGAAGACCAAGGGCC *:. *.. .**.** ******.**.* *.** .... . ** C1 ACAGAGGGAGCCGTCCAATGAATGGACAC------------ C2 ACAGAGAGCACCCAACAATCAATGGACAT------------ C3 ACAGAGAGTACCCTACAATGAATGGACAT------------ C4 GCAGAGGGAACCACACAATGAATGGACAC------------ C5 ACAGAGGGAACCATACAATGAATGGACAT------------ C6 ACAGAGGGAGCCGTTCAATGAATGGACAT------------ C7 ACAGAGGGAGCCATACAATGAATGGACAC------------ C8 ACAGAGGGAACCACACAATGAATGGATGT------------ C9 ACAGAGGGAACCGTTCAATGAATGGACAC------------ C10 CCAGAGAGAGCCATACAATGAATGGATGT------------ C11 ACAAAGGGAGCCATACCATGAATGGACAC------------ C12 ACCGAGGGAGCCACACAATGAATGGACAC------------ C13 ACAGAGGGAACCATACAATGCATGGACAA------------ C14 ACAGAGGGTGCCATACAATGAATGGGCAT------------ C15 GTCGAGGGAACCATACAATGAATGGACAC------------ C16 ACAGAGAGAACCATACAATGAATGGACAT------------ C17 ACCCAGAGAACCCCACAATGAATGGACAT------------ C18 ACAGAGGGAACCATACAATGAATGGACAC------------ C19 ACAGAGGGAACCCTACAATGAGTGGACAT------------ C20 GCAGAGGGAACCATACAATGAATGGGCAATGGAGCTTC--- C21 ACAGAGGGAACCGTACAATGAATGGACAC------------ C22 ACCAAGGGAGCCATACAATGCATGGACAC------------ C23 GCAGAGGGAACCATACAATGAATGGGTAC------------ C24 ACAGAGGGAACCATACAATGAATGGACGC------------ C25 ACAGAGGGAACCATTCAATGAATGGACAC------------ C26 GCAGAGGGAACCATACAATGAATGGACAT------------ C27 ACAGAGGGAGCCATACAATGAATGGACAC------------ C28 GCAGAGGGAACCATACAATGAATGGACAC------------ C29 ACAGAGGGAGCCATACAATGAGTGGACAC------------ C30 ACAGAGAGAACCCTACAATGAGTGGGCATTGGAACTGT--- C31 GCAGAGGGAACCACACAATGAATGGACAC------------ C32 ACAGAGAGAGCCATACAATGAGTGGACAT------------ C33 GCAGAGGGAACCATACAATGAATGGACAC------------ C34 ACAGAGGGAGCCATACAATGAATGGACAC------------ C35 ACAAAGGGAACCATACAATGAATGGACAC------------ C36 ACAGAGGGAGCCGTACAACGAATGGACAC------------ C37 ACAGAGGGAGCCATACAATGAATGGACAC------------ C38 ACAGAGGGAGCCATACAATGAATGGACAC------------ C39 ACAGAGACAGCCATACAATGCATGGGCAC------------ C40 ACAGAGAGAGCCATACAATGAATGGATGT------------ C41 ACAAAGAGAGCCACACAATGAATGGACAC------------ C42 ACAAAGGGAACCATATAATGAATGGGCAC------------ C43 ACAGAGGGAACCCTACAATGAATGGGCAC------------ C44 ACAGAGGGAGCCATACAATGAATGGGCAT------------ C45 GCAGAGGGAGCCGTACAATGAATGGACAA------------ C46 GCAGAGGGAACCACACAATGAATGGACAC------------ C47 ACAGAGGGAGCCATATAATG