--- EXPERIMENT NOTES --- EXPERIMENT PROPERTIES #Wed Mar 28 03:02:15 WEST 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_A3/VIF_1_4/input.fasta input.names= mrbayes.params= codeml.params= --- PSRF SUMMARY Estimated marginal likelihoods for runs sampled in files "/opt/ADOPS/HIV1_A3/VIF_1_4/batch/allfiles/mrbayes/input.fasta.fasta.mrb.run1.p" and "/opt/ADOPS/HIV1_A3/VIF_1_4/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_A3/VIF_1_4/batch/allfiles/mrbayes/input.fasta.fasta.mrb.lstat) Run Arithmetic mean Harmonic mean -------------------------------------- 1 -8031.77 -8078.30 2 -8035.27 -8086.03 -------------------------------------- TOTAL -8032.43 -8085.34 -------------------------------------- Model parameter summaries over the runs sampled in files "/opt/ADOPS/HIV1_A3/VIF_1_4/batch/allfiles/mrbayes/input.fasta.fasta.mrb.run1.p" and "/opt/ADOPS/HIV1_A3/VIF_1_4/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_A3/VIF_1_4/batch/allfiles/mrbayes/input.fasta.fasta.mrb.pstat". 95% HPD Interval -------------------- Parameter Mean Variance Lower Upper Median min ESS* avg ESS PSRF+ ------------------------------------------------------------------------------------------------------ TL{all} 4.935771 0.083085 4.381825 5.476476 4.921186 1008.24 1042.38 1.000 r(A<->C){all} 0.125116 0.000122 0.103370 0.147082 0.124603 714.28 742.92 1.000 r(A<->G){all} 0.281562 0.000625 0.236421 0.333635 0.280808 372.44 433.00 1.003 r(A<->T){all} 0.047115 0.000037 0.034698 0.058326 0.046935 578.31 695.65 1.000 r(C<->G){all} 0.031175 0.000058 0.016827 0.046590 0.031005 707.34 737.15 1.000 r(C<->T){all} 0.438724 0.000815 0.384014 0.494028 0.438041 377.48 387.96 1.002 r(G<->T){all} 0.076308 0.000087 0.059658 0.095129 0.075688 694.76 786.36 1.000 pi(A){all} 0.400151 0.000212 0.371614 0.427492 0.400195 687.23 803.23 1.001 pi(C){all} 0.165150 0.000129 0.143790 0.188141 0.165384 527.71 613.32 1.000 pi(G){all} 0.235284 0.000160 0.211576 0.261102 0.235195 462.75 490.24 1.000 pi(T){all} 0.199416 0.000144 0.174991 0.222485 0.199005 482.34 693.18 1.000 alpha{1,2} 0.498073 0.003432 0.388744 0.612715 0.492725 1071.95 1132.15 1.000 alpha{3} 1.778740 0.102565 1.234297 2.478901 1.750937 1491.42 1496.21 1.000 pinvar{all} 0.193251 0.000995 0.133815 0.259189 0.193605 1117.36 1128.02 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 -8190.653207 Model 2: PositiveSelection -8132.213074 Model 0: one-ratio -8578.737026 Model 3: discrete -8117.69291 Model 7: beta -8156.615238 Model 8: beta&w>1 -8109.2226 Model 0 vs 1 776.1676380000008 Model 2 vs 1 116.88026600000012 Additional information for M1 vs M2: Naive Empirical Bayes (NEB) analysis Positively selected sites (*: P>95%; **: P>99%) (amino acids refer to 1st sequence: G.x.03.LA24HoCe.KU168278_) Pr(w>1) post mean +- SE for w 31 I 1.000** 2.997 36 K 0.876 2.750 37 R 0.999** 2.996 39 F 1.000** 2.997 47 H 0.886 2.770 63 T 0.857 2.712 91 L 0.668 2.335 92 R 1.000** 2.997 101 N 0.973* 2.944 109 L 0.998** 2.994 159 K 0.909 2.816 167 R 1.000** 2.997 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: G.x.03.LA24HoCe.KU168278_) Pr(w>1) post mean +- SE for w 31 I 1.000** 3.277 +- 0.421 36 K 0.719 2.590 +- 1.065 37 R 0.998** 3.273 +- 0.431 39 F 1.000** 3.277 +- 0.421 47 H 0.781 2.747 +- 1.005 63 T 0.627 2.357 +- 1.112 92 R 1.000** 3.277 +- 0.422 101 N 0.952* 3.163 +- 0.637 109 L 0.997** 3.271 +- 0.436 159 K 0.736 2.625 +- 1.049 167 R 1.000** 3.277 +- 0.421 Model 8 vs 7 94.78527600000052 Additional information for M7 vs M8: Naive Empirical Bayes (NEB) analysis Positively selected sites (*: P>95%; **: P>99%) (amino acids refer to 1st sequence: G.x.03.LA24HoCe.KU168278_) Pr(w>1) post mean +- SE for w 31 I 1.000** 2.507 36 K 0.813 2.215 37 R 0.997** 2.502 39 F 1.000** 2.507 47 H 0.836 2.250 63 T 0.776 2.159 91 L 0.610 1.894 92 R 1.000** 2.506 101 N 0.960* 2.444 109 L 0.996** 2.500 159 K 0.840 2.259 167 R 1.000** 2.506 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: G.x.03.LA24HoCe.KU168278_) Pr(w>1) post mean +- SE for w 31 I 1.000** 2.506 +- 0.077 36 K 0.804 2.193 +- 0.626 37 R 0.997** 2.501 +- 0.114 39 F 1.000** 2.506 +- 0.077 47 H 0.822 2.222 +- 0.607 63 T 0.771 2.141 +- 0.660 91 L 0.586 1.845 +- 0.783 92 R 1.000** 2.505 +- 0.082 101 N 0.957* 2.437 +- 0.329 109 L 0.996** 2.500 +- 0.124 159 K 0.835 2.243 +- 0.583 167 R 1.000** 2.506 +- 0.077
>C1 MENRWQVVIVWQVDRMRIRTWNSLVKHHMHISKKAKRWFYRHHYESHHPR VSSEVHIPLGDATLIVRSYWGLHTGEKDWHLGHGVSIEWRLRRYSTQIDP NLADHLIHLHYFDCFSESAIRKAILGEIVYPRCEYPAGHNKIGSLQYLAL KALVTPTRKKPPLPSVRKLTEDRWNKPQKTRGHRENPTMNGHWNY >C2 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYVSKKAKGWVYRHHYESTNPR ISSEVHIPLGDAKLIITTYWGLHAGEREWHLGQGVSIEWRTKRYSTQVDP GLADQLIHMHYFDCFSESAIRSAILGYRVRPRCEYQAGHNKVGSLQYLAL TALIAPKKIKPPLPSVRKLTEDRWNKPQKTKGHRGNHTMNGHooo >C3 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYVSRRATGWFYRHHYESRHPK VSSEVHIPLGDARLVIKTYWGLQTGERDWHLGHGVSIEWRLRKYNTQIEP GLADQLIHMYYFDCFADSAIRKAILEHIVIPRCDYQAGHNNKVGSLQYLT LTALIKPKKIKPPLPSVKKLTEDRWNKPQRAKGHRGSHTMSGHoo >C4 MENRWQVMIVWQVDRMRIKTWNSLVKHHMYVSKKAKNWSYRHHYESQHPK VSSEVHIPIGEARLVIRTYWGLQTGEKDWHLGHGVAIEWRQGNYSTQIDP DLADRLIHIQYFECFSESAIRRAILGQVVRRRCEYPSGHNKVGSLQYLAL KALTTPKRIRPPLPSVVKLAEDRWNKPQKIRDHRENPSMNGHooo >C5 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYISKKASKWSYRHHYESRHPK VSSEVHIPLGEAILVIRTYWGLQTGEKDWQLGHGVSIEWRQKNYGTQIDP DLADRLIHLHYFDCFSDSAIRKAILGQVVRRRCEYPSGHNQVGSLQYLAL KALTTPKKIRPPLPSVKKLTEDRWNKPQKIMGHRENPTIYGHooo >C6 MENRWQGLIVWQVDRMKIRTWNSLVKHHMYISKRASGWFYRHHYESRHPK VSSEVHIPLGDARLVVITYWGLHTGEREWHLGHGVSMEWRWKRYSTQVDP GLADQLIHLHYFDCFADSAIRKAILGHIVIPRCDYQAGHKKVGSLQYLAL TALIKPKKRKPPLPSISKLTEDRWNNPQKIRGRRGNHTMNGHooo >C7 MENRWQVMIVWQVDRMRINTWKSLVKYHMYISKKAKGWYYRHHYESPHPR VSSEVHIPLGDARLVIRTYWGLHTGERDWHLGQGVSIEWRKRRYSTQVDP NLADQLIHLYYFDCFSESAIRNTILGHRVSPRCEYPAGHNKVGSLQYLAL ATLITPKKRKPPLPSVAKLTEDRWNEPQKTKGHRGNHTMNGHooo >C8 MENRWQVMVVWQVDRMRIRTWKSLVKHHMYRSGKARGWFYRHHYESTHPR ISSEVHIPLGDAKLVVTTYWGLHTGERDWHLGQGVSIEWRKRRYSTQVDP NLADQLIHLYYFDCFSDSAIREALLGHRVSPSCEYQAGHNKVGSLQYLAL TALIKPKKRKPPLPSVAKLTEDRWNKPQETKGHRGSHTMNGHooo >C9 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYVSKKAKKWLYRHHYDSRHPK VSSEVHIPLGNARLVVRTYWGLQTGEKDWHLGHGVSIEWRLRKYSTQVDP DLADQLIHLYYFDCFSDSAIRKALLGQVVSPSCAYQTGHNKVGSLQYLAL KALVTPTRTRPPLPSVKKLTEDRWNKPQRTRDHRGSHTMNGCooo >C10 MENRWQVMIVWQVDRMRIRAWKSLVKHHMYISKKAKGWFYRHHYESTHPR ISSEVHIPLGDAELVITTYWGLHTGERDWHLGQGVSIEWRKKRYSTQVDP NLADQLIHLYYFDCFSESAIRNAILGHIVSPRCEYQAGHNKVGSLQYLAL ATLIAPKKIKPPLPSVTKLTEDRWNEPQKTRGHRESHTMNGHooo >C11 MENRWQVMIVWQVDRMRINTWKSLVKYHMHISKKARDWAYRHHYDSNHPK ISSEVHIPLGDARLVVTTFWGLNTGERKWHLGQGVSIEWRLKRYRTQVDP DLADQLIHMHYFDCFSESAIRKAILGHRVSPRCEYQAGHNKVGSLQYLAL IALVQPSKRKPPLPSVRKLTEDRWNKPQKTKGHRGSHTMNGCooo >C12 MENRWQVLIVWQVDRMRIRTWNSLVKHHMYVSKRAKGWVYKHHYDSRNPK VSSEVQIPLGEAKLVIKTYWGLQTGERDWHLGNGVSLEWRMGRYNTQIEP GLADQLIHMHYFDCFAESAIRKAILGHIVIPRCEYQAGHNKVGSLQYLAL TALIKPKKIKPPLPSVKKLVEDRWNNPQKIRGRRGNHTMSGHooo >C13 MENRWQVMIVWQVDRMRIRTWNSLVKYHMYRSRKAQGWFYRHHYESRHPK VSSEVHIPLGDARLVIRTYWGLNTGERDWQLGHGVSIEWKQKKYSTQIDP GLADQLIHLYYFDCFSESAIRKAILGEIVRPRCEYSAGHNKVGSLQYLAL TALIKPKKGKPPLPSVQKLVEDRWNEPQKTRGHRGSRSMNGCooo >C14 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYVSKKAKDWSYKHHYESRNPK VSSEVHIPLGDAKLVVRTYWGLHTGERDWHLGHGVSIEWNQERYSTQIDP DLADQLIHLHYFDCFSESAIRKAILGQVVRPRCEYQAGHNKVGSLQYLAL KALVTPTKTKPPLPSVKKLAEDRWNKPQKTRGHRGSRSMNGHooo >C15 MENRWQGLIVWQVDRMRIRTWNSLVKHHMYISRRASGWFYRHHYESRHPK VSSEVHIPLGEARLVIKTYWGLHTGERDWHLGHGVSIEWRLRRYSTQVDP GLADQLIHMHYFDCFTDSAIRKAILGHIVIPRCDYQAGHTKVGSLQYLAL TALIKPKKIKPPLPSVRKLVEDRWNKPQKTMGRRGNHTMNGHooo >C16 MENRWQVLIVWQVDRMRIRTWNSLVKHHMYVSKRANGWFYRHHFESRHPK VSSEVHIPLGDARLVIKTYWGLQPGERDWHLGHGVSIEWRLKRYSTQVDP GLADQLIHMHYFNCFADSAIRKAILGHIVSPRCEYQAGHNKVGSLQYLAL TALTKPKKIKPPLPSVQKLVEDRWNEPQKTRGRRGNHTMNGHooo >C17 MENRWQVMIVWQVDRMRIRTWKSLVKHHMYISRKTRRWIYKHHYESTHPR TNSEVHIPLGDAKLVITTYWGLHTGERDWHLGQGVSIEWRKEGYNTQVTP DLADQLIHLHYFDCFSESAIRNAILGHRVSPRCEYQAGHNKVGSLQYLAL AALIKPKKIKPPLPSVAKLTEDRWNEPQKIKGHRGSHTMNGHooo >C18 MENRWRVLIVWQVDRMKIRTWNSLVKHHMYTSKKANGWFYRHHYESRHPK VSSEVHIPLGEARLVIITYWGLQTGERDWHLGHGVSIEWRLRRYSTQVDP DLADQLIHIHYFDCFTDSAIRKAILGHIVIPRCDYPAGHNKVGSLQYLAL TALIKPKKIKPPLPSVRKLVEDRWNNPQKTRGRRGSHTMSGHooo >C19 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYISKKAKGWIYRHHYESIHPR ISSETHIPVGEAKIVVTTYWGLHTGERDWHLGQGVSIEWRERRYITQIDP DLADQLIHLYYFDCFSESAIRNAIVGRVVRPRCIYPTGHNKVGSLQYLAL TALIKPKKIKPPLPSVRKLTEDRWNKPQRTKGHRGSHTMNGHooo >C20 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYVSKKAKGWFYRHHFESRHPK VSSEVHIPLGDAKLVVITYWGLHTGEKDWHLGHGVSIEWRLKRYSTQIDP DLADQLIHMHYFNCFSDSAIRKAILGQIVSPSCEYQAGHSKVGSLQYLAL KALVTQPRIKPPLPSVRKLTEDRWNKPQKTKGLRGSRTMNGHooo >C21 MENRWQVLIVWQVDRMKIRAWNSLVKHHMYNSRRATGWFYRHHYESRHPK VSSEVHIPLGEARLVIMTYWGLQTGEREWHLGHGVSIEWRLRRYSTQVDP DLADQLIHLHYFDCFTDSAIRKAILGHIVIPRCDYPAGHNKVGTLQYLAL TALIKPKKIKPPLPSVRKLVEDRWNKPQKTRGRRGNHTMNGHooo >C22 MENRWQVMIVWQVDRMRINTWKSLVKHHMHVSRKAKKWSYRHHYESTHPR ISSEVHIPLGDASLVVTTYWGLHTGERDWHLGHGVSIEWRQRKYSTQVDP NLADQLIHLYYFDCFSDSAIRQAILGHIVSPSCEYQAGHNKVGSLQYLAL AALTKPKKRKPPLPSIEKLTEDRWNKPQKTKDHRESHTMNGHooo >C23 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYRSGKAKKWCYKHHYESTNPR ISSEVHIPIEKAKLVITTYWGLHTGERDWHLGQGVSIEWRREGYSTQIDP GLTDRLIHLYYFDCFSESAIRNAILGRIVSPSCEYRAGHNKVGSLQYLAL AALTTPKQRKPPLPSVTKLTEDRWNKPQKTKGHRGSHTMNGHooo >C24 MENRWQVLIVWQVDRMKIRTWNSLVKHHMYISKRAKGWFYKNHYESRNPK VSSEVHIPLGEARLVITTYWGLQTGEREWHLGHGASIEWRLRRYSTQIDP DLADQLIHIHYFDCFADSAIRKAILGHIVIPRCDYPTGHNKVGSLQYLAL TALIKPKKIKPPLPSVRKLVEDRWNNPQKIRGRRGSHIMNGHooo >C25 MENRWQVMIVWQVDRMRIKTWNSIVKHHMYVSKKAKKWFYRHHYGSQHPK VSSEVHIPIGKARLVIRTYWGLQTGEKDWQLGHGVSIEWRQGQYNTQVDP DLADQLIHLHYFDCFSDSAIRKAILGQIVRPRCEYPSGHNKVGSLQYLAL KALITPKRIKPPLPSVKKLTEDRWNKPQKIRGHRENPTMTGHooo >C26 MENRWQVLIVWQVDRMRIRTWNSLVKHHMYISKRASGWFYRQHYESRHPK ISSEVHIPLGDARLVIKTYWGLQTGEREWHLGHGVSIEWRLKKYSTQVDP GLADQLIHMHYFDCFADSAIRQAILGHIVIPRCDYQAGHNKVGSLQYLAL TALIQPKKRKPPLPSVRKLVEDRWNKPQKTRGRRGNHIMNGHooo >C27 MENRWQVMIVWQVDRMRIRTWNSLVKHHMHISKKAKKWYYRHHYESQHPK VSSEVHIPLGEAKLVIKTYWGLQTGEKDWHLGHGVSIEWKHGTYSTQIDP DLADQLIHLHYFDCFSDSAIRKAILGQVVRCRCEYPSGHNKVGSLQYLAL KALTTPKGIRPPLPSVKKLTEDRWNKLQKIRGHRENPTMSGHooo >C28 MENRWQVMIVWQVDRMRIRTWKSLVKHHMHISKQARGWLYRHHFESRHPK ISSEVHIPLGEARLVVKTYWGLHTGERDWHLGQGVSIEWRKGRYSTQVDP GLADQLIHIHYFDCFAESAIRKAILGQIVIPRCNYPAGHTQVGSLQYLAL TALITPKKIKPPLPSVRKLTEDRWNKPQRTKGHRGSHTMNGHooo >C29 MENRWQVTIVWQVDRMRIRTWKSLVKHHMYISKKAKRWSYKHHYESTNPR VSSEVHIPLGDGRLVITTYWGLHTGERDWHLGQGVSIEWRKKRYSTQVDP GLADQLIHLYYFDCFSESAIRNAILGRRVSPSCEYQAGHNKVGSLQYLAL AALVTPKRTKPPLPSVTKLTEDRWNKPQKTTGHRGNHTMNGHooo >C30 MENRWQVMIVWQVDRMRIRTWKSLVKHHMYISRKAKGWVYRHHYENTHPR ISSEVHIPLGDARLVVTTYWGVHTGERDWHLGQGVSIEWRKQKYSTQVDP GLADQLIHVYYFDCFSDSAIRQALLGHIVSPRCEYQAGHNKVGSLQYLAL AALTTPKKRKPPFPSIKKLTEDRWNKPQKTKGHRGSHTMNGHooo >C31 MENRWQVLIVWQVDRMKIRTWNGLIKHHMYVSKKAREWYYRHHYESRHPK VSSEVHIPLGEARLVITTYWGLQTGEREWHLGHGVSIEWRLRRYRTQVDP GLADQLIHMHYFDCFADSAIRQAILGHIVIPRCEYQAGHNKVGSLQYLAL TALIKPKKRKPPLPSVRKLVEDRWNNPQKIRGRRGNHTMNGHooo >C32 MENRWQVLIVWQVDRMRIRTWNSLVKHHMYVSRRANKWFYRHHVESRHPK VSSEVHIPLGDARLIVKTYWGLQTGEREWHLGHGVSIEWRLKRYSTQVDP DLADQLIHVHYFDCFADSAIRKAILGHIVIPRCDYQAGHNKVGSLQFLAL TALIKPKRRKPPLPSVKKLTEDRWNNPQKTRDRRGNHTMNGHooo >C33 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYISKKAKGWFYRHHYESRHPK VSSEVHIPLGPATLVVTTYWGLHTGEREWHLGQGVSIEWRLNRYRTQVDP DLADQLIHIHYFDCFSESAIRKAILGYRVSPRCEYQAGHNKVGSLQYLAL TALIHPKKTKPPLPSVQKLVEDRWNEPQKTRGHRGSRPMNGHooo >C34 MENRWQVMIVWQVDRMRINTWKSLVKYHMYNSKKAKRWFYRHHFESRHPR VSSEVHIPLEEAKLVITTYWGLHTGERDWHLGQGVSIEWRQGRYRTQIDP GLADQLIHIHYFDCFSESAIRNAILGRIVRPRCDYQAGHNKVGSLQYLAL TALIKPKKIKPPLPSVRKLTEDRWNKPQKTKDHRGSHTMHGHooo >C35 MENRWQVMIVWQVDRMRIRTWHSIVKYHMYVSKKAKKWSYKHHYETRHPR VSSEVHIPLGDAKIVVKTYWGLHTGEKDWQLGHGVSIEWRLRRYSTQIDP DLADQLIHLHYFQCFSDTAIRKAILGQIVTPCCEYQTGHNKVGSLQYLAL KALVTPTRSRPPLPSVRKLTEDRWNKPQKTKGPRGNHTMNGCooo >C36 MENRWQVLIVWQVDRMKIRTWNSLVKHHMYTSKKASGWVYRHHYESRNPK ISSEVHIPLGEAKLVIKTYWGLQTGEREWHLGHGVSIEWRWESYSTQVDP GLADQLIHMHYFDCFTDSAIRKAILGHIVIHRCEYQAGHNKVGSLQYLAL TALIKPKKIKPPLPSVRKLVEDRWNNPQKTRGRRGNHTMNGHooo >C37 MENRWQVMIVWQVDRMRINAWKSLVKYHMNVSKRTKDWLYRHHYDSHHPK ISSEVHIPLDRAELVVTTYWGLQPGERDWHLGQGVSIEWRLKRYRTQVDP GLADQLIHMHYFDCFSESAIRKAILGHIVSPRCDYQAGHNKVGSLQYLAL TALTKPRKRKPPLPSVQKLVEDRWNNSQKTRGHRGSHTMSGHooo >C38 MENRWQVLIVWQVDRMKIRTWNSLVKHHMYISKRANGWFYRHHYESRHPK ISSEVHIPLGEARLIITTYWGLQPGERDWHLGHGVSIEWRLRRYSTQIEP GLADQLIHLHYFDCFADSAIRKAILGHIVFPRCDYQAGHSNKVGSLQYLA LTALIKTKRRKPPLPSIKKLVEDRWNNPQKIRGRRGCHTMNGHoo >C39 MENRWQVMIVWQVDRMRIRTWHSLVKHHKYVSKKAKDWVYRHHFESRHPK VSSEVHIPLGDARLVVKTYWGLHTGEKDWHLGHGVSIEWRLRGYSTQIDP DQADQLIHLHYFDCFSDSAIRKAIVGQVVSPKCEYQTGHNKVGSLQYLAI KALVTPTKTKPPLPSVRILTEDRWNKPQKTRGPKESHTMNGCooo >C40 MENRWQVMIVWQVDRMRIRAWNSLVKHHMYISGKARKWVYKHHYETNNPR ISSEVHIPLGDNKLVITTYWGLHTGERDWHLGQGVSMEWRKGKYSTQVDP DLADQLIHMYYFDCFSDSAIRNALLGHRVSPRCEYQAGHRKVGSLQYLAL TALIKPKKIKPPLPSVKKLTEDRWNKPQKTKGRRESHSMSGHooo >C41 MENRWQVMIVWQVDRMRIRTWRSLVKHHIHISKKAKKWVYRHHYESQNPR VSSEVHIPLGEAKIVVRTYWGLQTGEKDWQLGHGVSIEWRQRQYSTQIDP DLADQLIHLNYFDCFSDSAIRKAILGQVVRRRCEYPSGHNKVGSLQYLAL QALTTQKRIRPPLPSVKKLTEDRWNKPQKIRDHRENPTMSGHooo >C42 MENRWQVMIVWQVDRMRIRTWKSLVKHHMYVSKQAKRWWYRHHYECPNPR ISSEVHIPLGEAKLVVKTYWGLHTGEREWHLGQGVSIEWRKRRYSTQVDP GLADQLIHTHYFDCFADSAIRQAILGHRVISRCNYPAGHNKVGSLQYLAL TALLAPKKIKPPLPSVKKLTEDRWNKPQRTKGHRESHTMNGHooo >C43 MENRWQVMIVWQVDRQKVKTWNSLVKYHKYRSGKAREWWYRHHFESRNPR FSSGVYIPVGGPGGPWIVVSTYWGLMPGEKDEHLGHGVSIEWQYKKYATQ IDPETADRIIHTHYFTCFTESAIRRAILGQKVLPQCEFSAGHSQVGTLQL LALRAVVKTKRNKPPLPSVQKLTEDKWNRHLRTKDQLESLSMNGH >C44 MENRWQVMIVWQVDRMRINQWKSLVKYHMYISKKAKGWFYRHHYESTHPR ISSEVHIPLGEAKLVVITYWGLHTGERDWHLGQGVSIEWRKGRYSTQVDP DQADQLIHLHYFDCFSESAIRKAILGHRVSPRCEYQTGHNKVGSLQYLAL TALIKPKRIKPPLPSVAKLTEDRWNKPQKTKGHRGSHTMNGHooo >C45 MENRWQVMIVWQVDRMRINTWKSLVKHHIYTSRKAKGWVYKHHYENFHPR ISSEVHIPLGDAKLVVTTYWGLHAGERDWHLGQGVSIEWRKERYNTQVDP NLADQLIHVYYFDCFSESAIRNAILGHIVTPSCEYQAGHNKVGSLQYLAL AALITPRKRRPPLPSVQKLTEDRWNEPQKTKGHRGSHTMNGHooo >C46 MENRWQVMIVWQVDRMRINTWKSLVKYHMHISKKANRWYYRHHYESRHPK ISSEVHIPLGDAELVVTTYWGLLTGERDWHLGQGVSIEWRLKRYRTQVEP DLADQLIHIYYFDCFSESAVRKAILGHRVSPRCECQAGHNKVGSLQYLAL TALVAPRRPKPPVPSVKKLVEDRWNKPQKTRGHRGSQTMNGHooo >C47 MENRWQVLIVWQVDRQKVKAWNSLVKYHKYRSRQTREWHYRHHYESRNPR VSSGVYIPVGGANVVVTTYWGLMPGERDDHLGHGVSIEWQYKKYKTQIDP ETADRIIHQHYFTCFTDSAIRKAILGQRVLTKCEYPAGHSQVGTLQLLAL RAVVKAKRSKPPLPSVQKLTEDRWNRHLRSRDQPESHSMNGHooo >C48 MENRWQVMIVWQVDRMRIRTWNSLVKHHVYISKKATGWVYKHHFESTNPR VSSEVHIPLGDAKLIVKTYWGLHTGERDWHLGSGVSIEWRERRYSTQVDP DLADHLIHLYYFDCFSESAIRNAILGRVVRPRCNYQAGHNKVGSLQYLAL TALIKPKKIKPPLPSVRKLTEDRWNKPQKIKDHRGSHTMHGHooo >C49 MENRWQVMIVWLVDRMRINTWKSLVKHHMHISRKTKGWFYRHHYESTHPR ISSEVHIPLGDARLVITTYWGLHTGERDWHLGQGVSIEWRKRRYSTQVDP DLADQLIHLHYFDCFSDSAVRKAILGHIVRPSCEYQAGHNKVGSLQYLAL AALITPKRRKPPLPSVAKLTEDRWNKPQKTKGRRGSHTMNGHooo >C50 MENRWQVMIVWQVDRMRIRTWKSLVKHHMYISRKAKGWVYRHHYESTHPR TSSEVHIPLKDAKLVITTYWGLHTGERDWHLGQGVSIEWRKKRYSTQVDP SLADQLIHLYYFDCFSESAIRSAIVGHIVSPRCEYQAGHNKVGSLQYLAL LALVTPKKRKPPLPSVAKLTEDRWNKPQKTKGHRGSHTMNGHooo 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 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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: [484964] 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: [484964] 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: [484964] 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: [484964] 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: [484964] 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: [484964] 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: [484964] 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: [484964] 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: [484964] Library Relaxation: Multi_proc [8] Relaxation Summary: [484964]--->[482869] 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= 31.948 Mb, Max= 43.923 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 MENRWQVVIVWQVDRMRIRTWNSLVKHHMHISKKAKRWFYRHHYESHHPR C2 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYVSKKAKGWVYRHHYESTNPR C3 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYVSRRATGWFYRHHYESRHPK C4 MENRWQVMIVWQVDRMRIKTWNSLVKHHMYVSKKAKNWSYRHHYESQHPK C5 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYISKKASKWSYRHHYESRHPK C6 MENRWQGLIVWQVDRMKIRTWNSLVKHHMYISKRASGWFYRHHYESRHPK C7 MENRWQVMIVWQVDRMRINTWKSLVKYHMYISKKAKGWYYRHHYESPHPR C8 MENRWQVMVVWQVDRMRIRTWKSLVKHHMYRSGKARGWFYRHHYESTHPR C9 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYVSKKAKKWLYRHHYDSRHPK C10 MENRWQVMIVWQVDRMRIRAWKSLVKHHMYISKKAKGWFYRHHYESTHPR C11 MENRWQVMIVWQVDRMRINTWKSLVKYHMHISKKARDWAYRHHYDSNHPK C12 MENRWQVLIVWQVDRMRIRTWNSLVKHHMYVSKRAKGWVYKHHYDSRNPK C13 MENRWQVMIVWQVDRMRIRTWNSLVKYHMYRSRKAQGWFYRHHYESRHPK C14 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYVSKKAKDWSYKHHYESRNPK C15 MENRWQGLIVWQVDRMRIRTWNSLVKHHMYISRRASGWFYRHHYESRHPK C16 MENRWQVLIVWQVDRMRIRTWNSLVKHHMYVSKRANGWFYRHHFESRHPK C17 MENRWQVMIVWQVDRMRIRTWKSLVKHHMYISRKTRRWIYKHHYESTHPR C18 MENRWRVLIVWQVDRMKIRTWNSLVKHHMYTSKKANGWFYRHHYESRHPK C19 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYISKKAKGWIYRHHYESIHPR C20 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYVSKKAKGWFYRHHFESRHPK C21 MENRWQVLIVWQVDRMKIRAWNSLVKHHMYNSRRATGWFYRHHYESRHPK C22 MENRWQVMIVWQVDRMRINTWKSLVKHHMHVSRKAKKWSYRHHYESTHPR C23 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYRSGKAKKWCYKHHYESTNPR C24 MENRWQVLIVWQVDRMKIRTWNSLVKHHMYISKRAKGWFYKNHYESRNPK C25 MENRWQVMIVWQVDRMRIKTWNSIVKHHMYVSKKAKKWFYRHHYGSQHPK C26 MENRWQVLIVWQVDRMRIRTWNSLVKHHMYISKRASGWFYRQHYESRHPK C27 MENRWQVMIVWQVDRMRIRTWNSLVKHHMHISKKAKKWYYRHHYESQHPK C28 MENRWQVMIVWQVDRMRIRTWKSLVKHHMHISKQARGWLYRHHFESRHPK C29 MENRWQVTIVWQVDRMRIRTWKSLVKHHMYISKKAKRWSYKHHYESTNPR C30 MENRWQVMIVWQVDRMRIRTWKSLVKHHMYISRKAKGWVYRHHYENTHPR C31 MENRWQVLIVWQVDRMKIRTWNGLIKHHMYVSKKAREWYYRHHYESRHPK C32 MENRWQVLIVWQVDRMRIRTWNSLVKHHMYVSRRANKWFYRHHVESRHPK C33 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYISKKAKGWFYRHHYESRHPK C34 MENRWQVMIVWQVDRMRINTWKSLVKYHMYNSKKAKRWFYRHHFESRHPR C35 MENRWQVMIVWQVDRMRIRTWHSIVKYHMYVSKKAKKWSYKHHYETRHPR C36 MENRWQVLIVWQVDRMKIRTWNSLVKHHMYTSKKASGWVYRHHYESRNPK C37 MENRWQVMIVWQVDRMRINAWKSLVKYHMNVSKRTKDWLYRHHYDSHHPK C38 MENRWQVLIVWQVDRMKIRTWNSLVKHHMYISKRANGWFYRHHYESRHPK C39 MENRWQVMIVWQVDRMRIRTWHSLVKHHKYVSKKAKDWVYRHHFESRHPK C40 MENRWQVMIVWQVDRMRIRAWNSLVKHHMYISGKARKWVYKHHYETNNPR C41 MENRWQVMIVWQVDRMRIRTWRSLVKHHIHISKKAKKWVYRHHYESQNPR C42 MENRWQVMIVWQVDRMRIRTWKSLVKHHMYVSKQAKRWWYRHHYECPNPR C43 MENRWQVMIVWQVDRQKVKTWNSLVKYHKYRSGKAREWWYRHHFESRNPR C44 MENRWQVMIVWQVDRMRINQWKSLVKYHMYISKKAKGWFYRHHYESTHPR C45 MENRWQVMIVWQVDRMRINTWKSLVKHHIYTSRKAKGWVYKHHYENFHPR C46 MENRWQVMIVWQVDRMRINTWKSLVKYHMHISKKANRWYYRHHYESRHPK C47 MENRWQVLIVWQVDRQKVKAWNSLVKYHKYRSRQTREWHYRHHYESRNPR C48 MENRWQVMIVWQVDRMRIRTWNSLVKHHVYISKKATGWVYKHHFESTNPR C49 MENRWQVMIVWLVDRMRINTWKSLVKHHMHISRKTKGWFYRHHYESTHPR C50 MENRWQVMIVWQVDRMRIRTWKSLVKHHMYISRKAKGWVYRHHYESTHPR *****: :** *** ::. *..::*:* * :: * *::* :*: C1 VSSEVHIPLGDATLIVRSYWGLHTGEKDWHLGHGVSIEWRLRRYSTQIDP C2 ISSEVHIPLGDAKLIITTYWGLHAGEREWHLGQGVSIEWRTKRYSTQVDP C3 VSSEVHIPLGDARLVIKTYWGLQTGERDWHLGHGVSIEWRLRKYNTQIEP C4 VSSEVHIPIGEARLVIRTYWGLQTGEKDWHLGHGVAIEWRQGNYSTQIDP C5 VSSEVHIPLGEAILVIRTYWGLQTGEKDWQLGHGVSIEWRQKNYGTQIDP C6 VSSEVHIPLGDARLVVITYWGLHTGEREWHLGHGVSMEWRWKRYSTQVDP C7 VSSEVHIPLGDARLVIRTYWGLHTGERDWHLGQGVSIEWRKRRYSTQVDP C8 ISSEVHIPLGDAKLVVTTYWGLHTGERDWHLGQGVSIEWRKRRYSTQVDP C9 VSSEVHIPLGNARLVVRTYWGLQTGEKDWHLGHGVSIEWRLRKYSTQVDP C10 ISSEVHIPLGDAELVITTYWGLHTGERDWHLGQGVSIEWRKKRYSTQVDP C11 ISSEVHIPLGDARLVVTTFWGLNTGERKWHLGQGVSIEWRLKRYRTQVDP C12 VSSEVQIPLGEAKLVIKTYWGLQTGERDWHLGNGVSLEWRMGRYNTQIEP C13 VSSEVHIPLGDARLVIRTYWGLNTGERDWQLGHGVSIEWKQKKYSTQIDP C14 VSSEVHIPLGDAKLVVRTYWGLHTGERDWHLGHGVSIEWNQERYSTQIDP C15 VSSEVHIPLGEARLVIKTYWGLHTGERDWHLGHGVSIEWRLRRYSTQVDP C16 VSSEVHIPLGDARLVIKTYWGLQPGERDWHLGHGVSIEWRLKRYSTQVDP C17 TNSEVHIPLGDAKLVITTYWGLHTGERDWHLGQGVSIEWRKEGYNTQVTP C18 VSSEVHIPLGEARLVIITYWGLQTGERDWHLGHGVSIEWRLRRYSTQVDP C19 ISSETHIPVGEAKIVVTTYWGLHTGERDWHLGQGVSIEWRERRYITQIDP C20 VSSEVHIPLGDAKLVVITYWGLHTGEKDWHLGHGVSIEWRLKRYSTQIDP C21 VSSEVHIPLGEARLVIMTYWGLQTGEREWHLGHGVSIEWRLRRYSTQVDP C22 ISSEVHIPLGDASLVVTTYWGLHTGERDWHLGHGVSIEWRQRKYSTQVDP C23 ISSEVHIPIEKAKLVITTYWGLHTGERDWHLGQGVSIEWRREGYSTQIDP C24 VSSEVHIPLGEARLVITTYWGLQTGEREWHLGHGASIEWRLRRYSTQIDP C25 VSSEVHIPIGKARLVIRTYWGLQTGEKDWQLGHGVSIEWRQGQYNTQVDP C26 ISSEVHIPLGDARLVIKTYWGLQTGEREWHLGHGVSIEWRLKKYSTQVDP C27 VSSEVHIPLGEAKLVIKTYWGLQTGEKDWHLGHGVSIEWKHGTYSTQIDP C28 ISSEVHIPLGEARLVVKTYWGLHTGERDWHLGQGVSIEWRKGRYSTQVDP C29 VSSEVHIPLGDGRLVITTYWGLHTGERDWHLGQGVSIEWRKKRYSTQVDP C30 ISSEVHIPLGDARLVVTTYWGVHTGERDWHLGQGVSIEWRKQKYSTQVDP C31 VSSEVHIPLGEARLVITTYWGLQTGEREWHLGHGVSIEWRLRRYRTQVDP C32 VSSEVHIPLGDARLIVKTYWGLQTGEREWHLGHGVSIEWRLKRYSTQVDP C33 VSSEVHIPLGPATLVVTTYWGLHTGEREWHLGQGVSIEWRLNRYRTQVDP C34 VSSEVHIPLEEAKLVITTYWGLHTGERDWHLGQGVSIEWRQGRYRTQIDP C35 VSSEVHIPLGDAKIVVKTYWGLHTGEKDWQLGHGVSIEWRLRRYSTQIDP C36 ISSEVHIPLGEAKLVIKTYWGLQTGEREWHLGHGVSIEWRWESYSTQVDP C37 ISSEVHIPLDRAELVVTTYWGLQPGERDWHLGQGVSIEWRLKRYRTQVDP C38 ISSEVHIPLGEARLIITTYWGLQPGERDWHLGHGVSIEWRLRRYSTQIEP C39 VSSEVHIPLGDARLVVKTYWGLHTGEKDWHLGHGVSIEWRLRGYSTQIDP C40 ISSEVHIPLGDNKLVITTYWGLHTGERDWHLGQGVSMEWRKGKYSTQVDP C41 VSSEVHIPLGEAKIVVRTYWGLQTGEKDWQLGHGVSIEWRQRQYSTQIDP C42 ISSEVHIPLGEAKLVVKTYWGLHTGEREWHLGQGVSIEWRKRRYSTQVDP C43 FSSGVYIPVGGPGIVVSTYWGLMPGEKDEHLGHGVSIEWQYKKYATQIDP C44 ISSEVHIPLGEAKLVVITYWGLHTGERDWHLGQGVSIEWRKGRYSTQVDP C45 ISSEVHIPLGDAKLVVTTYWGLHAGERDWHLGQGVSIEWRKERYNTQVDP C46 ISSEVHIPLGDAELVVTTYWGLLTGERDWHLGQGVSIEWRLKRYRTQVEP C47 VSSGVYIPVGGANVVVTTYWGLMPGERDDHLGHGVSIEWQYKKYKTQIDP C48 VSSEVHIPLGDAKLIVKTYWGLHTGERDWHLGSGVSIEWRERRYSTQVDP C49 ISSEVHIPLGDARLVITTYWGLHTGERDWHLGQGVSIEWRKRRYSTQVDP C50 TSSEVHIPLKDAKLVITTYWGLHTGERDWHLGQGVSIEWRKKRYSTQVDP .* . **: ::: ::**: .**:. :** *.::**. * **: * C1 NLADHLIHLHYFDCFSESAIRKAILGEIVYPRCEYPAGHNKIGSLQYLAL C2 GLADQLIHMHYFDCFSESAIRSAILGYRVRPRCEYQAGHNKVGSLQYLAL C3 GLADQLIHMYYFDCFADSAIRKAILEHIVIPRCDYQAGHNKVGSLQYLTL C4 DLADRLIHIQYFECFSESAIRRAILGQVVRRRCEYPSGHNKVGSLQYLAL C5 DLADRLIHLHYFDCFSDSAIRKAILGQVVRRRCEYPSGHNQVGSLQYLAL C6 GLADQLIHLHYFDCFADSAIRKAILGHIVIPRCDYQAGHKKVGSLQYLAL C7 NLADQLIHLYYFDCFSESAIRNTILGHRVSPRCEYPAGHNKVGSLQYLAL C8 NLADQLIHLYYFDCFSDSAIREALLGHRVSPSCEYQAGHNKVGSLQYLAL C9 DLADQLIHLYYFDCFSDSAIRKALLGQVVSPSCAYQTGHNKVGSLQYLAL C10 NLADQLIHLYYFDCFSESAIRNAILGHIVSPRCEYQAGHNKVGSLQYLAL C11 DLADQLIHMHYFDCFSESAIRKAILGHRVSPRCEYQAGHNKVGSLQYLAL C12 GLADQLIHMHYFDCFAESAIRKAILGHIVIPRCEYQAGHNKVGSLQYLAL C13 GLADQLIHLYYFDCFSESAIRKAILGEIVRPRCEYSAGHNKVGSLQYLAL C14 DLADQLIHLHYFDCFSESAIRKAILGQVVRPRCEYQAGHNKVGSLQYLAL C15 GLADQLIHMHYFDCFTDSAIRKAILGHIVIPRCDYQAGHTKVGSLQYLAL C16 GLADQLIHMHYFNCFADSAIRKAILGHIVSPRCEYQAGHNKVGSLQYLAL C17 DLADQLIHLHYFDCFSESAIRNAILGHRVSPRCEYQAGHNKVGSLQYLAL C18 DLADQLIHIHYFDCFTDSAIRKAILGHIVIPRCDYPAGHNKVGSLQYLAL C19 DLADQLIHLYYFDCFSESAIRNAIVGRVVRPRCIYPTGHNKVGSLQYLAL C20 DLADQLIHMHYFNCFSDSAIRKAILGQIVSPSCEYQAGHSKVGSLQYLAL C21 DLADQLIHLHYFDCFTDSAIRKAILGHIVIPRCDYPAGHNKVGTLQYLAL C22 NLADQLIHLYYFDCFSDSAIRQAILGHIVSPSCEYQAGHNKVGSLQYLAL C23 GLTDRLIHLYYFDCFSESAIRNAILGRIVSPSCEYRAGHNKVGSLQYLAL C24 DLADQLIHIHYFDCFADSAIRKAILGHIVIPRCDYPTGHNKVGSLQYLAL C25 DLADQLIHLHYFDCFSDSAIRKAILGQIVRPRCEYPSGHNKVGSLQYLAL C26 GLADQLIHMHYFDCFADSAIRQAILGHIVIPRCDYQAGHNKVGSLQYLAL C27 DLADQLIHLHYFDCFSDSAIRKAILGQVVRCRCEYPSGHNKVGSLQYLAL C28 GLADQLIHIHYFDCFAESAIRKAILGQIVIPRCNYPAGHTQVGSLQYLAL C29 GLADQLIHLYYFDCFSESAIRNAILGRRVSPSCEYQAGHNKVGSLQYLAL C30 GLADQLIHVYYFDCFSDSAIRQALLGHIVSPRCEYQAGHNKVGSLQYLAL C31 GLADQLIHMHYFDCFADSAIRQAILGHIVIPRCEYQAGHNKVGSLQYLAL C32 DLADQLIHVHYFDCFADSAIRKAILGHIVIPRCDYQAGHNKVGSLQFLAL C33 DLADQLIHIHYFDCFSESAIRKAILGYRVSPRCEYQAGHNKVGSLQYLAL C34 GLADQLIHIHYFDCFSESAIRNAILGRIVRPRCDYQAGHNKVGSLQYLAL C35 DLADQLIHLHYFQCFSDTAIRKAILGQIVTPCCEYQTGHNKVGSLQYLAL C36 GLADQLIHMHYFDCFTDSAIRKAILGHIVIHRCEYQAGHNKVGSLQYLAL C37 GLADQLIHMHYFDCFSESAIRKAILGHIVSPRCDYQAGHNKVGSLQYLAL C38 GLADQLIHLHYFDCFADSAIRKAILGHIVFPRCDYQAGHNKVGSLQYLAL C39 DQADQLIHLHYFDCFSDSAIRKAIVGQVVSPKCEYQTGHNKVGSLQYLAI C40 DLADQLIHMYYFDCFSDSAIRNALLGHRVSPRCEYQAGHRKVGSLQYLAL C41 DLADQLIHLNYFDCFSDSAIRKAILGQVVRRRCEYPSGHNKVGSLQYLAL C42 GLADQLIHTHYFDCFADSAIRQAILGHRVISRCNYPAGHNKVGSLQYLAL C43 ETADRIIHTHYFTCFTESAIRRAILGQKVLPQCEFSAGHSQVGTLQLLAL C44 DQADQLIHLHYFDCFSESAIRKAILGHRVSPRCEYQTGHNKVGSLQYLAL C45 NLADQLIHVYYFDCFSESAIRNAILGHIVTPSCEYQAGHNKVGSLQYLAL C46 DLADQLIHIYYFDCFSESAVRKAILGHRVSPRCECQAGHNKVGSLQYLAL C47 ETADRIIHQHYFTCFTDSAIRKAILGQRVLTKCEYPAGHSQVGTLQLLAL C48 DLADHLIHLYYFDCFSESAIRNAILGRVVRPRCNYQAGHNKVGSLQYLAL C49 DLADQLIHLHYFDCFSDSAVRKAILGHIVRPSCEYQAGHNKVGSLQYLAL C50 SLADQLIHLYYFDCFSESAIRSAIVGHIVSPRCEYQAGHNKVGSLQYLAL :*::** ** **:::*:* ::: * * :** ::*:** *:: C1 KALVTPTRKKPPLPSVRKLTEDRWNKPQKTRGHRENPTMNGH C2 TALIAPKKIKPPLPSVRKLTEDRWNKPQKTKGHRGNHTMNGH C3 TALIKPKKIKPPLPSVKKLTEDRWNKPQRAKGHRGSHTMSGH C4 KALTTPKRIRPPLPSVVKLAEDRWNKPQKIRDHRENPSMNGH C5 KALTTPKKIRPPLPSVKKLTEDRWNKPQKIMGHRENPTIYGH C6 TALIKPKKRKPPLPSISKLTEDRWNNPQKIRGRRGNHTMNGH C7 ATLITPKKRKPPLPSVAKLTEDRWNEPQKTKGHRGNHTMNGH C8 TALIKPKKRKPPLPSVAKLTEDRWNKPQETKGHRGSHTMNGH C9 KALVTPTRTRPPLPSVKKLTEDRWNKPQRTRDHRGSHTMNGC C10 ATLIAPKKIKPPLPSVTKLTEDRWNEPQKTRGHRESHTMNGH C11 IALVQPSKRKPPLPSVRKLTEDRWNKPQKTKGHRGSHTMNGC C12 TALIKPKKIKPPLPSVKKLVEDRWNNPQKIRGRRGNHTMSGH C13 TALIKPKKGKPPLPSVQKLVEDRWNEPQKTRGHRGSRSMNGC C14 KALVTPTKTKPPLPSVKKLAEDRWNKPQKTRGHRGSRSMNGH C15 TALIKPKKIKPPLPSVRKLVEDRWNKPQKTMGRRGNHTMNGH C16 TALTKPKKIKPPLPSVQKLVEDRWNEPQKTRGRRGNHTMNGH C17 AALIKPKKIKPPLPSVAKLTEDRWNEPQKIKGHRGSHTMNGH C18 TALIKPKKIKPPLPSVRKLVEDRWNNPQKTRGRRGSHTMSGH C19 TALIKPKKIKPPLPSVRKLTEDRWNKPQRTKGHRGSHTMNGH C20 KALVTQPRIKPPLPSVRKLTEDRWNKPQKTKGLRGSRTMNGH C21 TALIKPKKIKPPLPSVRKLVEDRWNKPQKTRGRRGNHTMNGH C22 AALTKPKKRKPPLPSIEKLTEDRWNKPQKTKDHRESHTMNGH C23 AALTTPKQRKPPLPSVTKLTEDRWNKPQKTKGHRGSHTMNGH C24 TALIKPKKIKPPLPSVRKLVEDRWNNPQKIRGRRGSHIMNGH C25 KALITPKRIKPPLPSVKKLTEDRWNKPQKIRGHRENPTMTGH C26 TALIQPKKRKPPLPSVRKLVEDRWNKPQKTRGRRGNHIMNGH C27 KALTTPKGIRPPLPSVKKLTEDRWNKLQKIRGHRENPTMSGH C28 TALITPKKIKPPLPSVRKLTEDRWNKPQRTKGHRGSHTMNGH C29 AALVTPKRTKPPLPSVTKLTEDRWNKPQKTTGHRGNHTMNGH C30 AALTTPKKRKPPFPSIKKLTEDRWNKPQKTKGHRGSHTMNGH C31 TALIKPKKRKPPLPSVRKLVEDRWNNPQKIRGRRGNHTMNGH C32 TALIKPKRRKPPLPSVKKLTEDRWNNPQKTRDRRGNHTMNGH C33 TALIHPKKTKPPLPSVQKLVEDRWNEPQKTRGHRGSRPMNGH C34 TALIKPKKIKPPLPSVRKLTEDRWNKPQKTKDHRGSHTMHGH C35 KALVTPTRSRPPLPSVRKLTEDRWNKPQKTKGPRGNHTMNGC C36 TALIKPKKIKPPLPSVRKLVEDRWNNPQKTRGRRGNHTMNGH C37 TALTKPRKRKPPLPSVQKLVEDRWNNSQKTRGHRGSHTMSGH C38 TALIKTKRRKPPLPSIKKLVEDRWNNPQKIRGRRGCHTMNGH C39 KALVTPTKTKPPLPSVRILTEDRWNKPQKTRGPKESHTMNGC C40 TALIKPKKIKPPLPSVKKLTEDRWNKPQKTKGRRESHSMSGH C41 QALTTQKRIRPPLPSVKKLTEDRWNKPQKIRDHRENPTMSGH C42 TALLAPKKIKPPLPSVKKLTEDRWNKPQRTKGHRESHTMNGH C43 RAVVKTKRNKPPLPSVQKLTEDKWNRHLRTKDQLESLSMNGH C44 TALIKPKRIKPPLPSVAKLTEDRWNKPQKTKGHRGSHTMNGH C45 AALITPRKRRPPLPSVQKLTEDRWNEPQKTKGHRGSHTMNGH C46 TALVAPRRPKPPVPSVKKLVEDRWNKPQKTRGHRGSQTMNGH C47 RAVVKAKRSKPPLPSVQKLTEDRWNRHLRSRDQPESHSMNGH C48 TALIKPKKIKPPLPSVRKLTEDRWNKPQKIKDHRGSHTMHGH C49 AALITPKRRKPPLPSVAKLTEDRWNKPQKTKGRRGSHTMNGH C50 LALVTPKKRKPPLPSVAKLTEDRWNKPQKTKGHRGSHTMNGH :: :**.**: *.**:**. . . : * 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 79.49 C1 C2 79.49 TOP 1 0 79.49 C2 C1 79.49 BOT 0 2 75.26 C1 C3 75.26 TOP 2 0 75.26 C3 C1 75.26 BOT 0 3 77.95 C1 C4 77.95 TOP 3 0 77.95 C4 C1 77.95 BOT 0 4 78.97 C1 C5 78.97 TOP 4 0 78.97 C5 C1 78.97 BOT 0 5 76.92 C1 C6 76.92 TOP 5 0 76.92 C6 C1 76.92 BOT 0 6 80.51 C1 C7 80.51 TOP 6 0 80.51 C7 C1 80.51 BOT 0 7 77.44 C1 C8 77.44 TOP 7 0 77.44 C8 C1 77.44 BOT 0 8 79.49 C1 C9 79.49 TOP 8 0 79.49 C9 C1 79.49 BOT 0 9 80.51 C1 C10 80.51 TOP 9 0 80.51 C10 C1 80.51 BOT 0 10 77.44 C1 C11 77.44 TOP 10 0 77.44 C11 C1 77.44 BOT 0 11 73.85 C1 C12 73.85 TOP 11 0 73.85 C12 C1 73.85 BOT 0 12 77.95 C1 C13 77.95 TOP 12 0 77.95 C13 C1 77.95 BOT 0 13 82.56 C1 C14 82.56 TOP 13 0 82.56 C14 C1 82.56 BOT 0 14 78.46 C1 C15 78.46 TOP 14 0 78.46 C15 C1 78.46 BOT 0 15 77.44 C1 C16 77.44 TOP 15 0 77.44 C16 C1 77.44 BOT 0 16 75.38 C1 C17 75.38 TOP 16 0 75.38 C17 C1 75.38 BOT 0 17 77.95 C1 C18 77.95 TOP 17 0 77.95 C18 C1 77.95 BOT 0 18 77.95 C1 C19 77.95 TOP 18 0 77.95 C19 C1 77.95 BOT 0 19 82.56 C1 C20 82.56 TOP 19 0 82.56 C20 C1 82.56 BOT 0 20 77.95 C1 C21 77.95 TOP 20 0 77.95 C21 C1 77.95 BOT 0 21 78.97 C1 C22 78.97 TOP 21 0 78.97 C22 C1 78.97 BOT 0 22 76.41 C1 C23 76.41 TOP 22 0 76.41 C23 C1 76.41 BOT 0 23 75.90 C1 C24 75.90 TOP 23 0 75.90 C24 C1 75.90 BOT 0 24 80.51 C1 C25 80.51 TOP 24 0 80.51 C25 C1 80.51 BOT 0 25 76.92 C1 C26 76.92 TOP 25 0 76.92 C26 C1 76.92 BOT 0 26 81.03 C1 C27 81.03 TOP 26 0 81.03 C27 C1 81.03 BOT 0 27 77.95 C1 C28 77.95 TOP 27 0 77.95 C28 C1 77.95 BOT 0 28 80.51 C1 C29 80.51 TOP 28 0 80.51 C29 C1 80.51 BOT 0 29 76.41 C1 C30 76.41 TOP 29 0 76.41 C30 C1 76.41 BOT 0 30 75.90 C1 C31 75.90 TOP 30 0 75.90 C31 C1 75.90 BOT 0 31 77.95 C1 C32 77.95 TOP 31 0 77.95 C32 C1 77.95 BOT 0 32 80.00 C1 C33 80.00 TOP 32 0 80.00 C33 C1 80.00 BOT 0 33 77.44 C1 C34 77.44 TOP 33 0 77.44 C34 C1 77.44 BOT 0 34 80.51 C1 C35 80.51 TOP 34 0 80.51 C35 C1 80.51 BOT 0 35 75.38 C1 C36 75.38 TOP 35 0 75.38 C36 C1 75.38 BOT 0 36 73.33 C1 C37 73.33 TOP 36 0 73.33 C37 C1 73.33 BOT 0 37 77.32 C1 C38 77.32 TOP 37 0 77.32 C38 C1 77.32 BOT 0 38 80.00 C1 C39 80.00 TOP 38 0 80.00 C39 C1 80.00 BOT 0 39 72.31 C1 C40 72.31 TOP 39 0 72.31 C40 C1 72.31 BOT 0 40 80.00 C1 C41 80.00 TOP 40 0 80.00 C41 C1 80.00 BOT 0 41 76.41 C1 C42 76.41 TOP 41 0 76.41 C42 C1 76.41 BOT 0 42 61.98 C1 C43 61.98 TOP 42 0 61.98 C43 C1 61.98 BOT 0 43 78.97 C1 C44 78.97 TOP 43 0 78.97 C44 C1 78.97 BOT 0 44 75.38 C1 C45 75.38 TOP 44 0 75.38 C45 C1 75.38 BOT 0 45 77.44 C1 C46 77.44 TOP 45 0 77.44 C46 C1 77.44 BOT 0 46 61.54 C1 C47 61.54 TOP 46 0 61.54 C47 C1 61.54 BOT 0 47 78.46 C1 C48 78.46 TOP 47 0 78.46 C48 C1 78.46 BOT 0 48 79.49 C1 C49 79.49 TOP 48 0 79.49 C49 C1 79.49 BOT 0 49 79.49 C1 C50 79.49 TOP 49 0 79.49 C50 C1 79.49 BOT 1 2 80.93 C2 C3 80.93 TOP 2 1 80.93 C3 C2 80.93 BOT 1 3 76.41 C2 C4 76.41 TOP 3 1 76.41 C4 C2 76.41 BOT 1 4 77.44 C2 C5 77.44 TOP 4 1 77.44 C5 C2 77.44 BOT 1 5 81.54 C2 C6 81.54 TOP 5 1 81.54 C6 C2 81.54 BOT 1 6 85.13 C2 C7 85.13 TOP 6 1 85.13 C7 C2 85.13 BOT 1 7 86.15 C2 C8 86.15 TOP 7 1 86.15 C8 C2 86.15 BOT 1 8 76.92 C2 C9 76.92 TOP 8 1 76.92 C9 C2 76.92 BOT 1 9 87.69 C2 C10 87.69 TOP 9 1 87.69 C10 C2 87.69 BOT 1 10 83.59 C2 C11 83.59 TOP 10 1 83.59 C11 C2 83.59 BOT 1 11 82.56 C2 C12 82.56 TOP 11 1 82.56 C12 C2 82.56 BOT 1 12 81.03 C2 C13 81.03 TOP 12 1 81.03 C13 C2 81.03 BOT 1 13 83.59 C2 C14 83.59 TOP 13 1 83.59 C14 C2 83.59 BOT 1 14 83.59 C2 C15 83.59 TOP 14 1 83.59 C15 C2 83.59 BOT 1 15 84.10 C2 C16 84.10 TOP 15 1 84.10 C16 C2 84.10 BOT 1 16 84.62 C2 C17 84.62 TOP 16 1 84.62 C17 C2 84.62 BOT 1 17 81.03 C2 C18 81.03 TOP 17 1 81.03 C18 C2 81.03 BOT 1 18 85.13 C2 C19 85.13 TOP 18 1 85.13 C19 C2 85.13 BOT 1 19 83.08 C2 C20 83.08 TOP 19 1 83.08 C20 C2 83.08 BOT 1 20 81.54 C2 C21 81.54 TOP 20 1 81.54 C21 C2 81.54 BOT 1 21 82.56 C2 C22 82.56 TOP 21 1 82.56 C22 C2 82.56 BOT 1 22 83.59 C2 C23 83.59 TOP 22 1 83.59 C23 C2 83.59 BOT 1 23 80.00 C2 C24 80.00 TOP 23 1 80.00 C24 C2 80.00 BOT 1 24 78.97 C2 C25 78.97 TOP 24 1 78.97 C25 C2 78.97 BOT 1 25 84.62 C2 C26 84.62 TOP 25 1 84.62 C26 C2 84.62 BOT 1 26 78.46 C2 C27 78.46 TOP 26 1 78.46 C27 C2 78.46 BOT 1 27 83.59 C2 C28 83.59 TOP 27 1 83.59 C28 C2 83.59 BOT 1 28 86.67 C2 C29 86.67 TOP 28 1 86.67 C29 C2 86.67 BOT 1 29 84.62 C2 C30 84.62 TOP 29 1 84.62 C30 C2 84.62 BOT 1 30 83.08 C2 C31 83.08 TOP 30 1 83.08 C31 C2 83.08 BOT 1 31 81.54 C2 C32 81.54 TOP 31 1 81.54 C32 C2 81.54 BOT 1 32 86.15 C2 C33 86.15 TOP 32 1 86.15 C33 C2 86.15 BOT 1 33 85.64 C2 C34 85.64 TOP 33 1 85.64 C34 C2 85.64 BOT 1 34 78.46 C2 C35 78.46 TOP 34 1 78.46 C35 C2 78.46 BOT 1 35 86.15 C2 C36 86.15 TOP 35 1 86.15 C36 C2 86.15 BOT 1 36 80.00 C2 C37 80.00 TOP 36 1 80.00 C37 C2 80.00 BOT 1 37 79.90 C2 C38 79.90 TOP 37 1 79.90 C38 C2 79.90 BOT 1 38 77.44 C2 C39 77.44 TOP 38 1 77.44 C39 C2 77.44 BOT 1 39 84.10 C2 C40 84.10 TOP 39 1 84.10 C40 C2 84.10 BOT 1 40 76.92 C2 C41 76.92 TOP 40 1 76.92 C41 C2 76.92 BOT 1 41 86.15 C2 C42 86.15 TOP 41 1 86.15 C42 C2 86.15 BOT 1 42 61.98 C2 C43 61.98 TOP 42 1 61.98 C43 C2 61.98 BOT 1 43 86.67 C2 C44 86.67 TOP 43 1 86.67 C44 C2 86.67 BOT 1 44 84.10 C2 C45 84.10 TOP 44 1 84.10 C45 C2 84.10 BOT 1 45 80.51 C2 C46 80.51 TOP 45 1 80.51 C46 C2 80.51 BOT 1 46 62.56 C2 C47 62.56 TOP 46 1 62.56 C47 C2 62.56 BOT 1 47 86.67 C2 C48 86.67 TOP 47 1 86.67 C48 C2 86.67 BOT 1 48 84.62 C2 C49 84.62 TOP 48 1 84.62 C49 C2 84.62 BOT 1 49 88.21 C2 C50 88.21 TOP 49 1 88.21 C50 C2 88.21 BOT 2 3 74.23 C3 C4 74.23 TOP 3 2 74.23 C4 C3 74.23 BOT 2 4 77.84 C3 C5 77.84 TOP 4 2 77.84 C5 C3 77.84 BOT 2 5 83.51 C3 C6 83.51 TOP 5 2 83.51 C6 C3 83.51 BOT 2 6 79.38 C3 C7 79.38 TOP 6 2 79.38 C7 C3 79.38 BOT 2 7 81.96 C3 C8 81.96 TOP 7 2 81.96 C8 C3 81.96 BOT 2 8 80.93 C3 C9 80.93 TOP 8 2 80.93 C9 C3 80.93 BOT 2 9 80.41 C3 C10 80.41 TOP 9 2 80.41 C10 C3 80.41 BOT 2 10 77.84 C3 C11 77.84 TOP 10 2 77.84 C11 C3 77.84 BOT 2 11 86.08 C3 C12 86.08 TOP 11 2 86.08 C12 C3 86.08 BOT 2 12 83.51 C3 C13 83.51 TOP 12 2 83.51 C13 C3 83.51 BOT 2 13 79.38 C3 C14 79.38 TOP 13 2 79.38 C14 C3 79.38 BOT 2 14 88.14 C3 C15 88.14 TOP 14 2 88.14 C15 C3 88.14 BOT 2 15 86.60 C3 C16 86.60 TOP 15 2 86.60 C16 C3 86.60 BOT 2 16 80.41 C3 C17 80.41 TOP 16 2 80.41 C17 C3 80.41 BOT 2 17 86.08 C3 C18 86.08 TOP 17 2 86.08 C18 C3 86.08 BOT 2 18 80.41 C3 C19 80.41 TOP 18 2 80.41 C19 C3 80.41 BOT 2 19 81.44 C3 C20 81.44 TOP 19 2 81.44 C20 C3 81.44 BOT 2 20 86.08 C3 C21 86.08 TOP 20 2 86.08 C21 C3 86.08 BOT 2 21 80.93 C3 C22 80.93 TOP 21 2 80.93 C22 C3 80.93 BOT 2 22 76.80 C3 C23 76.80 TOP 22 2 76.80 C23 C3 76.80 BOT 2 23 84.02 C3 C24 84.02 TOP 23 2 84.02 C24 C3 84.02 BOT 2 24 79.90 C3 C25 79.90 TOP 24 2 79.90 C25 C3 79.90 BOT 2 25 86.60 C3 C26 86.60 TOP 25 2 86.60 C26 C3 86.60 BOT 2 26 78.35 C3 C27 78.35 TOP 26 2 78.35 C27 C3 78.35 BOT 2 27 82.99 C3 C28 82.99 TOP 27 2 82.99 C28 C3 82.99 BOT 2 28 77.32 C3 C29 77.32 TOP 28 2 77.32 C29 C3 77.32 BOT 2 29 81.44 C3 C30 81.44 TOP 29 2 81.44 C30 C3 81.44 BOT 2 30 84.02 C3 C31 84.02 TOP 30 2 84.02 C31 C3 84.02 BOT 2 31 85.57 C3 C32 85.57 TOP 31 2 85.57 C32 C3 85.57 BOT 2 32 80.41 C3 C33 80.41 TOP 32 2 80.41 C33 C3 80.41 BOT 2 33 81.96 C3 C34 81.96 TOP 33 2 81.96 C34 C3 81.96 BOT 2 34 75.77 C3 C35 75.77 TOP 34 2 75.77 C35 C3 75.77 BOT 2 35 82.99 C3 C36 82.99 TOP 35 2 82.99 C36 C3 82.99 BOT 2 36 78.87 C3 C37 78.87 TOP 36 2 78.87 C37 C3 78.87 BOT 2 37 84.62 C3 C38 84.62 TOP 37 2 84.62 C38 C3 84.62 BOT 2 38 77.32 C3 C39 77.32 TOP 38 2 77.32 C39 C3 77.32 BOT 2 39 79.90 C3 C40 79.90 TOP 39 2 79.90 C40 C3 79.90 BOT 2 40 74.74 C3 C41 74.74 TOP 40 2 74.74 C41 C3 74.74 BOT 2 41 81.44 C3 C42 81.44 TOP 41 2 81.44 C42 C3 81.44 BOT 2 42 60.42 C3 C43 60.42 TOP 42 2 60.42 C43 C3 60.42 BOT 2 43 79.38 C3 C44 79.38 TOP 43 2 79.38 C44 C3 79.38 BOT 2 44 77.84 C3 C45 77.84 TOP 44 2 77.84 C45 C3 77.84 BOT 2 45 77.84 C3 C46 77.84 TOP 45 2 77.84 C46 C3 77.84 BOT 2 46 63.40 C3 C47 63.40 TOP 46 2 63.40 C47 C3 63.40 BOT 2 47 80.93 C3 C48 80.93 TOP 47 2 80.93 C48 C3 80.93 BOT 2 48 80.41 C3 C49 80.41 TOP 48 2 80.41 C49 C3 80.41 BOT 2 49 80.93 C3 C50 80.93 TOP 49 2 80.93 C50 C3 80.93 BOT 3 4 87.18 C4 C5 87.18 TOP 4 3 87.18 C5 C4 87.18 BOT 3 5 72.31 C4 C6 72.31 TOP 5 3 72.31 C6 C4 72.31 BOT 3 6 76.92 C4 C7 76.92 TOP 6 3 76.92 C7 C4 76.92 BOT 3 7 71.79 C4 C8 71.79 TOP 7 3 71.79 C8 C4 71.79 BOT 3 8 80.51 C4 C9 80.51 TOP 8 3 80.51 C9 C4 80.51 BOT 3 9 75.90 C4 C10 75.90 TOP 9 3 75.90 C10 C4 75.90 BOT 3 10 72.31 C4 C11 72.31 TOP 10 3 72.31 C11 C4 72.31 BOT 3 11 75.38 C4 C12 75.38 TOP 11 3 75.38 C12 C4 75.38 BOT 3 12 77.95 C4 C13 77.95 TOP 12 3 77.95 C13 C4 77.95 BOT 3 13 82.56 C4 C14 82.56 TOP 13 3 82.56 C14 C4 82.56 BOT 3 14 74.87 C4 C15 74.87 TOP 14 3 74.87 C15 C4 74.87 BOT 3 15 76.92 C4 C16 76.92 TOP 15 3 76.92 C16 C4 76.92 BOT 3 16 73.33 C4 C17 73.33 TOP 16 3 73.33 C17 C4 73.33 BOT 3 17 76.92 C4 C18 76.92 TOP 17 3 76.92 C18 C4 76.92 BOT 3 18 76.41 C4 C19 76.41 TOP 18 3 76.41 C19 C4 76.41 BOT 3 19 78.46 C4 C20 78.46 TOP 19 3 78.46 C20 C4 78.46 BOT 3 20 75.90 C4 C21 75.90 TOP 20 3 75.90 C21 C4 75.90 BOT 3 21 76.41 C4 C22 76.41 TOP 21 3 76.41 C22 C4 76.41 BOT 3 22 75.90 C4 C23 75.90 TOP 22 3 75.90 C23 C4 75.90 BOT 3 23 76.41 C4 C24 76.41 TOP 23 3 76.41 C24 C4 76.41 BOT 3 24 87.18 C4 C25 87.18 TOP 24 3 87.18 C25 C4 87.18 BOT 3 25 74.87 C4 C26 74.87 TOP 25 3 74.87 C26 C4 74.87 BOT 3 26 86.67 C4 C27 86.67 TOP 26 3 86.67 C27 C4 86.67 BOT 3 27 75.38 C4 C28 75.38 TOP 27 3 75.38 C28 C4 75.38 BOT 3 28 76.41 C4 C29 76.41 TOP 28 3 76.41 C29 C4 76.41 BOT 3 29 73.33 C4 C30 73.33 TOP 29 3 73.33 C30 C4 73.33 BOT 3 30 75.90 C4 C31 75.90 TOP 30 3 75.90 C31 C4 75.90 BOT 3 31 74.87 C4 C32 74.87 TOP 31 3 74.87 C32 C4 74.87 BOT 3 32 76.92 C4 C33 76.92 TOP 32 3 76.92 C33 C4 76.92 BOT 3 33 77.44 C4 C34 77.44 TOP 33 3 77.44 C34 C4 77.44 BOT 3 34 75.90 C4 C35 75.90 TOP 34 3 75.90 C35 C4 75.90 BOT 3 35 75.38 C4 C36 75.38 TOP 35 3 75.38 C36 C4 75.38 BOT 3 36 70.77 C4 C37 70.77 TOP 36 3 70.77 C37 C4 70.77 BOT 3 37 73.71 C4 C38 73.71 TOP 37 3 73.71 C38 C4 73.71 BOT 3 38 76.41 C4 C39 76.41 TOP 38 3 76.41 C39 C4 76.41 BOT 3 39 72.31 C4 C40 72.31 TOP 39 3 72.31 C40 C4 72.31 BOT 3 40 85.13 C4 C41 85.13 TOP 40 3 85.13 C41 C4 85.13 BOT 3 41 73.85 C4 C42 73.85 TOP 41 3 73.85 C42 C4 73.85 BOT 3 42 63.02 C4 C43 63.02 TOP 42 3 63.02 C43 C4 63.02 BOT 3 43 76.41 C4 C44 76.41 TOP 43 3 76.41 C44 C4 76.41 BOT 3 44 71.79 C4 C45 71.79 TOP 44 3 71.79 C45 C4 71.79 BOT 3 45 73.33 C4 C46 73.33 TOP 45 3 73.33 C46 C4 73.33 BOT 3 46 63.59 C4 C47 63.59 TOP 46 3 63.59 C47 C4 63.59 BOT 3 47 75.38 C4 C48 75.38 TOP 47 3 75.38 C48 C4 75.38 BOT 3 48 74.36 C4 C49 74.36 TOP 48 3 74.36 C49 C4 74.36 BOT 3 49 74.87 C4 C50 74.87 TOP 49 3 74.87 C50 C4 74.87 BOT 4 5 76.92 C5 C6 76.92 TOP 5 4 76.92 C6 C5 76.92 BOT 4 6 77.44 C5 C7 77.44 TOP 6 4 77.44 C7 C5 77.44 BOT 4 7 74.36 C5 C8 74.36 TOP 7 4 74.36 C8 C5 74.36 BOT 4 8 81.03 C5 C9 81.03 TOP 8 4 81.03 C9 C5 81.03 BOT 4 9 77.44 C5 C10 77.44 TOP 9 4 77.44 C10 C5 77.44 BOT 4 10 74.87 C5 C11 74.87 TOP 10 4 74.87 C11 C5 74.87 BOT 4 11 76.92 C5 C12 76.92 TOP 11 4 76.92 C12 C5 76.92 BOT 4 12 79.49 C5 C13 79.49 TOP 12 4 79.49 C13 C5 79.49 BOT 4 13 82.56 C5 C14 82.56 TOP 13 4 82.56 C14 C5 82.56 BOT 4 14 78.97 C5 C15 78.97 TOP 14 4 78.97 C15 C5 78.97 BOT 4 15 78.46 C5 C16 78.46 TOP 15 4 78.46 C16 C5 78.46 BOT 4 16 76.41 C5 C17 76.41 TOP 16 4 76.41 C17 C5 76.41 BOT 4 17 78.97 C5 C18 78.97 TOP 17 4 78.97 C18 C5 78.97 BOT 4 18 77.95 C5 C19 77.95 TOP 18 4 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TOP 31 30 87.18 C32 C31 87.18 BOT 30 32 84.10 C31 C33 84.10 TOP 32 30 84.10 C33 C31 84.10 BOT 30 33 81.03 C31 C34 81.03 TOP 33 30 81.03 C34 C31 81.03 BOT 30 34 75.90 C31 C35 75.90 TOP 34 30 75.90 C35 C31 75.90 BOT 30 35 90.26 C31 C36 90.26 TOP 35 30 90.26 C36 C31 90.26 BOT 30 36 80.51 C31 C37 80.51 TOP 36 30 80.51 C37 C31 80.51 BOT 30 37 88.14 C31 C38 88.14 TOP 37 30 88.14 C38 C31 88.14 BOT 30 38 76.92 C31 C39 76.92 TOP 38 30 76.92 C39 C31 76.92 BOT 30 39 77.44 C31 C40 77.44 TOP 39 30 77.44 C40 C31 77.44 BOT 30 40 73.85 C31 C41 73.85 TOP 40 30 73.85 C41 C31 73.85 BOT 30 41 80.51 C31 C42 80.51 TOP 41 30 80.51 C42 C31 80.51 BOT 30 42 60.42 C31 C43 60.42 TOP 42 30 60.42 C43 C31 60.42 BOT 30 43 78.46 C31 C44 78.46 TOP 43 30 78.46 C44 C31 78.46 BOT 30 44 76.41 C31 C45 76.41 TOP 44 30 76.41 C45 C31 76.41 BOT 30 45 78.46 C31 C46 78.46 TOP 45 30 78.46 C46 C31 78.46 BOT 30 46 64.62 C31 C47 64.62 TOP 46 30 64.62 C47 C31 64.62 BOT 30 47 77.95 C31 C48 77.95 TOP 47 30 77.95 C48 C31 77.95 BOT 30 48 80.00 C31 C49 80.00 TOP 48 30 80.00 C49 C31 80.00 BOT 30 49 79.49 C31 C50 79.49 TOP 49 30 79.49 C50 C31 79.49 BOT 31 32 82.56 C32 C33 82.56 TOP 32 31 82.56 C33 C32 82.56 BOT 31 33 79.49 C32 C34 79.49 TOP 33 31 79.49 C34 C32 79.49 BOT 31 34 77.95 C32 C35 77.95 TOP 34 31 77.95 C35 C32 77.95 BOT 31 35 85.64 C32 C36 85.64 TOP 35 31 85.64 C36 C32 85.64 BOT 31 36 79.49 C32 C37 79.49 TOP 36 31 79.49 C37 C32 79.49 BOT 31 37 87.63 C32 C38 87.63 TOP 37 31 87.63 C38 C32 87.63 BOT 31 38 77.95 C32 C39 77.95 TOP 38 31 77.95 C39 C32 77.95 BOT 31 39 76.92 C32 C40 76.92 TOP 39 31 76.92 C40 C32 76.92 BOT 31 40 75.38 C32 C41 75.38 TOP 40 31 75.38 C41 C32 75.38 BOT 31 41 80.00 C32 C42 80.00 TOP 41 31 80.00 C42 C32 80.00 BOT 31 42 61.46 C32 C43 61.46 TOP 42 31 61.46 C43 C32 61.46 BOT 31 43 80.00 C32 C44 80.00 TOP 43 31 80.00 C44 C32 80.00 BOT 31 44 76.92 C32 C45 76.92 TOP 44 31 76.92 C45 C32 76.92 BOT 31 45 78.97 C32 C46 78.97 TOP 45 31 78.97 C46 C32 78.97 BOT 31 46 65.64 C32 C47 65.64 TOP 46 31 65.64 C47 C32 65.64 BOT 31 47 80.00 C32 C48 80.00 TOP 47 31 80.00 C48 C32 80.00 BOT 31 48 81.54 C32 C49 81.54 TOP 48 31 81.54 C49 C32 81.54 BOT 31 49 79.49 C32 C50 79.49 TOP 49 31 79.49 C50 C32 79.49 BOT 32 33 84.10 C33 C34 84.10 TOP 33 32 84.10 C34 C33 84.10 BOT 32 34 76.92 C33 C35 76.92 TOP 34 32 76.92 C35 C33 76.92 BOT 32 35 83.08 C33 C36 83.08 TOP 35 32 83.08 C36 C33 83.08 BOT 32 36 82.56 C33 C37 82.56 TOP 36 32 82.56 C37 C33 82.56 BOT 32 37 80.93 C33 C38 80.93 TOP 37 32 80.93 C38 C33 80.93 BOT 32 38 80.00 C33 C39 80.00 TOP 38 32 80.00 C39 C33 80.00 BOT 32 39 80.00 C33 C40 80.00 TOP 39 32 80.00 C40 C33 80.00 BOT 32 40 75.38 C33 C41 75.38 TOP 40 32 75.38 C41 C33 75.38 BOT 32 41 81.03 C33 C42 81.03 TOP 41 32 81.03 C42 C33 81.03 BOT 32 42 61.98 C33 C43 61.98 TOP 42 32 61.98 C43 C33 61.98 BOT 32 43 86.15 C33 C44 86.15 TOP 43 32 86.15 C44 C33 86.15 BOT 32 44 82.05 C33 C45 82.05 TOP 44 32 82.05 C45 C33 82.05 BOT 32 45 85.64 C33 C46 85.64 TOP 45 32 85.64 C46 C33 85.64 BOT 32 46 64.10 C33 C47 64.10 TOP 46 32 64.10 C47 C33 64.10 BOT 32 47 81.54 C33 C48 81.54 TOP 47 32 81.54 C48 C33 81.54 BOT 32 48 82.56 C33 C49 82.56 TOP 48 32 82.56 C49 C33 82.56 BOT 32 49 84.10 C33 C50 84.10 TOP 49 32 84.10 C50 C33 84.10 BOT 33 34 77.95 C34 C35 77.95 TOP 34 33 77.95 C35 C34 77.95 BOT 33 35 80.51 C34 C36 80.51 TOP 35 33 80.51 C36 C34 80.51 BOT 33 36 82.05 C34 C37 82.05 TOP 36 33 82.05 C37 C34 82.05 BOT 33 37 78.87 C34 C38 78.87 TOP 37 33 78.87 C38 C34 78.87 BOT 33 38 76.92 C34 C39 76.92 TOP 38 33 76.92 C39 C34 76.92 BOT 33 39 80.00 C34 C40 80.00 TOP 39 33 80.00 C40 C34 80.00 BOT 33 40 76.41 C34 C41 76.41 TOP 40 33 76.41 C41 C34 76.41 BOT 33 41 82.05 C34 C42 82.05 TOP 41 33 82.05 C42 C34 82.05 BOT 33 42 63.54 C34 C43 63.54 TOP 42 33 63.54 C43 C34 63.54 BOT 33 43 87.18 C34 C44 87.18 TOP 43 33 87.18 C44 C34 87.18 BOT 33 44 82.05 C34 C45 82.05 TOP 44 33 82.05 C45 C34 82.05 BOT 33 45 81.03 C34 C46 81.03 TOP 45 33 81.03 C46 C34 81.03 BOT 33 46 63.08 C34 C47 63.08 TOP 46 33 63.08 C47 C34 63.08 BOT 33 47 85.64 C34 C48 85.64 TOP 47 33 85.64 C48 C34 85.64 BOT 33 48 83.08 C34 C49 83.08 TOP 48 33 83.08 C49 C34 83.08 BOT 33 49 84.62 C34 C50 84.62 TOP 49 33 84.62 C50 C34 84.62 BOT 34 35 75.90 C35 C36 75.90 TOP 35 34 75.90 C36 C35 75.90 BOT 34 36 72.31 C35 C37 72.31 TOP 36 34 72.31 C37 C35 72.31 BOT 34 37 74.23 C35 C38 74.23 TOP 37 34 74.23 C38 C35 74.23 BOT 34 38 85.13 C35 C39 85.13 TOP 38 34 85.13 C39 C35 85.13 BOT 34 39 74.87 C35 C40 74.87 TOP 39 34 74.87 C40 C35 74.87 BOT 34 40 80.00 C35 C41 80.00 TOP 40 34 80.00 C41 C35 80.00 BOT 34 41 76.41 C35 C42 76.41 TOP 41 34 76.41 C42 C35 76.41 BOT 34 42 61.46 C35 C43 61.46 TOP 42 34 61.46 C43 C35 61.46 BOT 34 43 80.51 C35 C44 80.51 TOP 43 34 80.51 C44 C35 80.51 BOT 34 44 78.46 C35 C45 78.46 TOP 44 34 78.46 C45 C35 78.46 BOT 34 45 75.38 C35 C46 75.38 TOP 45 34 75.38 C46 C35 75.38 BOT 34 46 62.05 C35 C47 62.05 TOP 46 34 62.05 C47 C35 62.05 BOT 34 47 77.44 C35 C48 77.44 TOP 47 34 77.44 C48 C35 77.44 BOT 34 48 79.49 C35 C49 79.49 TOP 48 34 79.49 C49 C35 79.49 BOT 34 49 78.97 C35 C50 78.97 TOP 49 34 78.97 C50 C35 78.97 BOT 35 36 78.97 C36 C37 78.97 TOP 36 35 78.97 C37 C36 78.97 BOT 35 37 86.08 C36 C38 86.08 TOP 37 35 86.08 C38 C36 86.08 BOT 35 38 76.92 C36 C39 76.92 TOP 38 35 76.92 C39 C36 76.92 BOT 35 39 80.51 C36 C40 80.51 TOP 39 35 80.51 C40 C36 80.51 BOT 35 40 76.41 C36 C41 76.41 TOP 40 35 76.41 C41 C36 76.41 BOT 35 41 82.56 C36 C42 82.56 TOP 41 35 82.56 C42 C36 82.56 BOT 35 42 61.46 C36 C43 61.46 TOP 42 35 61.46 C43 C36 61.46 BOT 35 43 81.54 C36 C44 81.54 TOP 43 35 81.54 C44 C36 81.54 BOT 35 44 78.46 C36 C45 78.46 TOP 44 35 78.46 C45 C36 78.46 BOT 35 45 77.44 C36 C46 77.44 TOP 45 35 77.44 C46 C36 77.44 BOT 35 46 65.13 C36 C47 65.13 TOP 46 35 65.13 C47 C36 65.13 BOT 35 47 80.00 C36 C48 80.00 TOP 47 35 80.00 C48 C36 80.00 BOT 35 48 80.00 C36 C49 80.00 TOP 48 35 80.00 C49 C36 80.00 BOT 35 49 80.51 C36 C50 80.51 TOP 49 35 80.51 C50 C36 80.51 BOT 36 37 79.90 C37 C38 79.90 TOP 37 36 79.90 C38 C37 79.90 BOT 36 38 73.85 C37 C39 73.85 TOP 38 36 73.85 C39 C37 73.85 BOT 36 39 75.38 C37 C40 75.38 TOP 39 36 75.38 C40 C37 75.38 BOT 36 40 70.77 C37 C41 70.77 TOP 40 36 70.77 C41 C37 70.77 BOT 36 41 77.44 C37 C42 77.44 TOP 41 36 77.44 C42 C37 77.44 BOT 36 42 58.85 C37 C43 58.85 TOP 42 36 58.85 C43 C37 58.85 BOT 36 43 82.05 C37 C44 82.05 TOP 43 36 82.05 C44 C37 82.05 BOT 36 44 80.00 C37 C45 80.00 TOP 44 36 80.00 C45 C37 80.00 BOT 36 45 83.59 C37 C46 83.59 TOP 45 36 83.59 C46 C37 83.59 BOT 36 46 63.08 C37 C47 63.08 TOP 46 36 63.08 C47 C37 63.08 BOT 36 47 74.36 C37 C48 74.36 TOP 47 36 74.36 C48 C37 74.36 BOT 36 48 79.49 C37 C49 79.49 TOP 48 36 79.49 C49 C37 79.49 BOT 36 49 80.51 C37 C50 80.51 TOP 49 36 80.51 C50 C37 80.51 BOT 37 38 74.74 C38 C39 74.74 TOP 38 37 74.74 C39 C38 74.74 BOT 37 39 75.26 C38 C40 75.26 TOP 39 37 75.26 C40 C38 75.26 BOT 37 40 74.74 C38 C41 74.74 TOP 40 37 74.74 C41 C38 74.74 BOT 37 41 77.32 C38 C42 77.32 TOP 41 37 77.32 C42 C38 77.32 BOT 37 42 60.42 C38 C43 60.42 TOP 42 37 60.42 C43 C38 60.42 BOT 37 43 79.90 C38 C44 79.90 TOP 43 37 79.90 C44 C38 79.90 BOT 37 44 74.74 C38 C45 74.74 TOP 44 37 74.74 C45 C38 74.74 BOT 37 45 78.87 C38 C46 78.87 TOP 45 37 78.87 C46 C38 78.87 BOT 37 46 64.43 C38 C47 64.43 TOP 46 37 64.43 C47 C38 64.43 BOT 37 47 77.32 C38 C48 77.32 TOP 47 37 77.32 C48 C38 77.32 BOT 37 48 81.44 C38 C49 81.44 TOP 48 37 81.44 C49 C38 81.44 BOT 37 49 78.35 C38 C50 78.35 TOP 49 37 78.35 C50 C38 78.35 BOT 38 39 74.36 C39 C40 74.36 TOP 39 38 74.36 C40 C39 74.36 BOT 38 40 77.95 C39 C41 77.95 TOP 40 38 77.95 C41 C39 77.95 BOT 38 41 76.41 C39 C42 76.41 TOP 41 38 76.41 C42 C39 76.41 BOT 38 42 62.50 C39 C43 62.50 TOP 42 38 62.50 C43 C39 62.50 BOT 38 43 79.49 C39 C44 79.49 TOP 43 38 79.49 C44 C39 79.49 BOT 38 44 75.38 C39 C45 75.38 TOP 44 38 75.38 C45 C39 75.38 BOT 38 45 75.90 C39 C46 75.90 TOP 45 38 75.90 C46 C39 75.90 BOT 38 46 63.59 C39 C47 63.59 TOP 46 38 63.59 C47 C39 63.59 BOT 38 47 78.46 C39 C48 78.46 TOP 47 38 78.46 C48 C39 78.46 BOT 38 48 78.46 C39 C49 78.46 TOP 48 38 78.46 C49 C39 78.46 BOT 38 49 80.00 C39 C50 80.00 TOP 49 38 80.00 C50 C39 80.00 BOT 39 40 75.38 C40 C41 75.38 TOP 40 39 75.38 C41 C40 75.38 BOT 39 41 81.54 C40 C42 81.54 TOP 41 39 81.54 C42 C40 81.54 BOT 39 42 61.98 C40 C43 61.98 TOP 42 39 61.98 C43 C40 61.98 BOT 39 43 83.59 C40 C44 83.59 TOP 43 39 83.59 C44 C40 83.59 BOT 39 44 81.03 C40 C45 81.03 TOP 44 39 81.03 C45 C40 81.03 BOT 39 45 77.44 C40 C46 77.44 TOP 45 39 77.44 C46 C40 77.44 BOT 39 46 63.59 C40 C47 63.59 TOP 46 39 63.59 C47 C40 63.59 BOT 39 47 82.56 C40 C48 82.56 TOP 47 39 82.56 C48 C40 82.56 BOT 39 48 81.54 C40 C49 81.54 TOP 48 39 81.54 C49 C40 81.54 BOT 39 49 83.59 C40 C50 83.59 TOP 49 39 83.59 C50 C40 83.59 BOT 40 41 77.44 C41 C42 77.44 TOP 41 40 77.44 C42 C41 77.44 BOT 40 42 61.46 C41 C43 61.46 TOP 42 40 61.46 C43 C41 61.46 BOT 40 43 77.95 C41 C44 77.95 TOP 43 40 77.95 C44 C41 77.95 BOT 40 44 73.85 C41 C45 73.85 TOP 44 40 73.85 C45 C41 73.85 BOT 40 45 73.85 C41 C46 73.85 TOP 45 40 73.85 C46 C41 73.85 BOT 40 46 63.59 C41 C47 63.59 TOP 46 40 63.59 C47 C41 63.59 BOT 40 47 79.49 C41 C48 79.49 TOP 47 40 79.49 C48 C41 79.49 BOT 40 48 76.92 C41 C49 76.92 TOP 48 40 76.92 C49 C41 76.92 BOT 40 49 76.41 C41 C50 76.41 TOP 49 40 76.41 C50 C41 76.41 BOT 41 42 61.98 C42 C43 61.98 TOP 42 41 61.98 C43 C42 61.98 BOT 41 43 84.62 C42 C44 84.62 TOP 43 41 84.62 C44 C42 84.62 BOT 41 44 80.00 C42 C45 80.00 TOP 44 41 80.00 C45 C42 80.00 BOT 41 45 78.46 C42 C46 78.46 TOP 45 41 78.46 C46 C42 78.46 BOT 41 46 64.10 C42 C47 64.10 TOP 46 41 64.10 C47 C42 64.10 BOT 41 47 81.03 C42 C48 81.03 TOP 47 41 81.03 C48 C42 81.03 BOT 41 48 81.03 C42 C49 81.03 TOP 48 41 81.03 C49 C42 81.03 BOT 41 49 82.56 C42 C50 82.56 TOP 49 41 82.56 C50 C42 82.56 BOT 42 43 63.02 C43 C44 63.02 TOP 43 42 63.02 C44 C43 63.02 BOT 42 44 60.42 C43 C45 60.42 TOP 44 42 60.42 C45 C43 60.42 BOT 42 45 60.42 C43 C46 60.42 TOP 45 42 60.42 C46 C43 60.42 BOT 42 46 84.38 C43 C47 84.38 TOP 46 42 84.38 C47 C43 84.38 BOT 42 47 61.98 C43 C48 61.98 TOP 47 42 61.98 C48 C43 61.98 BOT 42 48 59.90 C43 C49 59.90 TOP 48 42 59.90 C49 C43 59.90 BOT 42 49 61.46 C43 C50 61.46 TOP 49 42 61.46 C50 C43 61.46 BOT 43 44 84.10 C44 C45 84.10 TOP 44 43 84.10 C45 C44 84.10 BOT 43 45 84.62 C44 C46 84.62 TOP 45 43 84.62 C46 C44 84.62 BOT 43 46 64.10 C44 C47 64.10 TOP 46 43 64.10 C47 C44 64.10 BOT 43 47 84.10 C44 C48 84.10 TOP 47 43 84.10 C48 C44 84.10 BOT 43 48 88.72 C44 C49 88.72 TOP 48 43 88.72 C49 C44 88.72 BOT 43 49 88.21 C44 C50 88.21 TOP 49 43 88.21 C50 C44 88.21 BOT 44 45 80.00 C45 C46 80.00 TOP 45 44 80.00 C46 C45 80.00 BOT 44 46 61.03 C45 C47 61.03 TOP 46 44 61.03 C47 C45 61.03 BOT 44 47 81.54 C45 C48 81.54 TOP 47 44 81.54 C48 C45 81.54 BOT 44 48 86.15 C45 C49 86.15 TOP 48 44 86.15 C49 C45 86.15 BOT 44 49 87.69 C45 C50 87.69 TOP 49 44 87.69 C50 C45 87.69 BOT 45 46 61.54 C46 C47 61.54 TOP 46 45 61.54 C47 C46 61.54 BOT 45 47 76.92 C46 C48 76.92 TOP 47 45 76.92 C48 C46 76.92 BOT 45 48 82.56 C46 C49 82.56 TOP 48 45 82.56 C49 C46 82.56 BOT 45 49 82.56 C46 C50 82.56 TOP 49 45 82.56 C50 C46 82.56 BOT 46 47 61.54 C47 C48 61.54 TOP 47 46 61.54 C48 C47 61.54 BOT 46 48 63.08 C47 C49 63.08 TOP 48 46 63.08 C49 C47 63.08 BOT 46 49 62.05 C47 C50 62.05 TOP 49 46 62.05 C50 C47 62.05 BOT 47 48 81.03 C48 C49 81.03 TOP 48 47 81.03 C49 C48 81.03 BOT 47 49 84.10 C48 C50 84.10 TOP 49 47 84.10 C50 C48 84.10 BOT 48 49 89.23 C49 C50 89.23 TOP 49 48 89.23 C50 C49 89.23 AVG 0 C1 * 77.35 AVG 1 C2 * 81.83 AVG 2 C3 * 80.15 AVG 3 C4 * 75.88 AVG 4 C5 * 77.49 AVG 5 C6 * 80.15 AVG 6 C7 * 81.14 AVG 7 C8 * 81.34 AVG 8 C9 * 78.86 AVG 9 C10 * 82.10 AVG 10 C11 * 79.37 AVG 11 C12 * 79.13 AVG 12 C13 * 79.71 AVG 13 C14 * 80.83 AVG 14 C15 * 81.83 AVG 15 C16 * 81.68 AVG 16 C17 * 80.08 AVG 17 C18 * 81.57 AVG 18 C19 * 79.91 AVG 19 C20 * 80.67 AVG 20 C21 * 80.99 AVG 21 C22 * 80.51 AVG 22 C23 * 78.38 AVG 23 C24 * 79.85 AVG 24 C25 * 78.58 AVG 25 C26 * 81.10 AVG 26 C27 * 78.34 AVG 27 C28 * 80.71 AVG 28 C29 * 80.67 AVG 29 C30 * 80.45 AVG 30 C31 * 80.51 AVG 31 C32 * 80.37 AVG 32 C33 * 81.60 AVG 33 C34 * 80.71 AVG 34 C35 * 77.26 AVG 35 C36 * 80.95 AVG 36 C37 * 77.51 AVG 37 C38 * 79.49 AVG 38 C39 * 77.65 AVG 39 C40 * 78.58 AVG 40 C41 * 76.54 AVG 41 C42 * 79.52 AVG 42 C43 * 61.93 AVG 43 C44 * 82.00 AVG 44 C45 * 78.95 AVG 45 C46 * 78.43 AVG 46 C47 * 63.91 AVG 47 C48 * 79.76 AVG 48 C49 * 81.34 AVG 49 C50 * 81.90 TOT TOT * 79.19 CLUSTAL W (1.83) multiple sequence alignment C1 ATGGAAAACAGATGGCAGGTGGTGATTGTGTGGCAGGTGGACAGGATGAG C2 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C3 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGATGAG C4 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGATGAG C5 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGATGAG C6 ATGGAAAACAGATGGCAGGGACTGATTGTGTGGCAGGTAGACAGGATGAA C7 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C8 ATGGAAAACAGATGGCAGGTGATGGTTGTGTGGCAAGTGGACAGGATGAG C9 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGATGAG C10 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C11 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGATGAG C12 ATGGAAAACAGATGGCAGGTGCTGATTGTGTGGCAGGTAGACAGGATGAG C13 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C14 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGATGAG C15 ATGGAAAACAGATGGCAGGGGCTGATTGTGTGGCAGGTAGACAGGATGAG C16 ATGGAAAACAGATGGCAGGTGCTGATTGTGTGGCAGGTAGACAGGATGAG C17 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C18 ATGGAAAACAGATGGCGGGTGCTGATTGTGTGGCAGGTAGACAGGATGAA C19 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C20 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGATGAG C21 ATGGAAAACAGATGGCAGGTGCTGATTGTGTGGCAGGTAGACAGGATGAA C22 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C23 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C24 ATGGAAAACAGATGGCAGGTGCTGATTGTGTGGCAGGTAGACAGGATGAA C25 ATGGAAAACAGATGGCAGGTAATGATTGTGTGGCAGGTAGACAGGATGAG C26 ATGGAAAACAGATGGCAGGTGCTGATTGTGTGGCAGGTAGACAGGATGAG C27 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGATGAG C28 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C29 ATGGAAAACAGATGGCAGGTGACGATTGTGTGGCAAGTAGACAGGATGAG C30 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C31 ATGGAAAACAGATGGCAGGTGCTGATTGTGTGGCAGGTAGACAGGATGAA C32 ATGGAAAACAGATGGCAGGTGCTGATTGTGTGGCAGGTAGACAGGATGAG C33 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGATGAG C34 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C35 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTGGACAGGATGAG C36 ATGGAAAACAGATGGCAGGTGCTGATTGTGTGGCAGGTAGACAGGATGAA C37 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C38 ATGGAAAACAGATGGCAGGTGCTGATTGTGTGGCAGGTAGACAGGATGAA C39 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGATGAG C40 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C41 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGATGAG C42 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C43 ATGGAAAACAGATGGCAGGTAATGATAGTATGGCAAGTGGACAGACAGAA C44 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C45 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C46 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGATGAG C47 ATGGAAAACAGATGGCAGGTACTGATAGTATGGCAAGTGGACAGACAGAA C48 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C49 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCTAGTAGACAGGATGAG C50 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGATGAG ****************.** . *.*:**.****:.**.*****..:**. C1 AATTAGAACATGGAACAGTTTAGTAAAACATCATATGCATATCTCAAAGA C2 GATTAGAACATGGAACAGTTTAGTAAAACACCATATGTATGTGTCAAAGA C3 GATTAGAACATGGAACAGTTTAGTAAAACACCATATGTATGTTTCAAGGA C4 GATTAAAACATGGAACAGTTTAGTAAAACATCATATGTATGTCTCAAAGA C5 GATTAGAACATGGAACAGTTTAGTAAAACATCATATGTATATCTCAAAGA C6 GATTAGAACATGGAATAGTTTAGTAAAACACCATATGTATATTTCAAAGA C7 GATTAACACATGGAAAAGTTTAGTAAAATACCATATGTATATTTCAAAGA C8 GATTAGAACATGGAAAAGTTTAGTAAAACATCATATGTATAGGTCAGGGA C9 GATTAGAACATGGAACAGTCTAGTAAAACACCATATGTATGTCTCAAAGA C10 GATTAGAGCATGGAAAAGTTTAGTAAAACACCATATGTATATTTCAAAGA C11 GATTAATACATGGAAAAGTTTAGTAAAATACCATATGCATATTTCAAAGA C12 GATTAGAACATGGAATAGTTTAGTAAAACACCATATGTATGTTTCAAAGA C13 GATTAGAACATGGAACAGTTTAGTAAAATATCATATGTATAGATCTAGGA C14 GATTAGAACATGGAACAGTTTAGTAAAACATCATATGTATGTTTCTAAGA C15 GATTAGAACATGGAATAGCTTAGTAAAACACCATATGTATATTTCAAGGA C16 GATTAGAACATGGAATAGTTTAGTAAAGCACCATATGTATGTTTCAAAAA C17 GATTAGAACATGGAAAAGTTTAGTAAAACACCATATGTATATTTCAAGGA C18 GATTAGAACATGGAATAGTTTAGTAAAGCACCACATGTATACTTCAAAGA C19 GATCAGAACATGGAATAGCTTAGTAAAACATCATATGTATATTTCAAAGA C20 GATTAGAACATGGAACAGTCTAGTAAAACATCATATGTATGTCTCAAAGA C21 GATTAGAGCATGGAATAGTCTAGTAAAACACCATATGTATAATTCAAGGA C22 GATTAACACATGGAAGAGTTTGGTAAAGCACCATATGCATGTTTCAAGGA C23 GATTAGAACATGGAACAGTTTAGTAAAACACCATATGTATAGATCAGGGA C24 GATTAGAACATGGAATAGTTTAGTAAAGCACCATATGTATATTTCAAAGA C25 GATTAAAACATGGAACAGTATAGTAAAACATCATATGTATGTCTCAAAGA C26 GATTAGAACATGGAATAGTTTAGTAAAGCACCATATGTATATTTCAAAGA C27 GATTAGAACATGGAACAGTCTAGTAAAACATCATATGCATATCTCAAAGA C28 GATTAGAACATGGAAGAGTTTAGTAAAACATCATATGCATATTTCAAAGC C29 GATTAGAACATGGAAAAGTCTAGTAAAGCACCATATGTATATTTCAAAGA C30 GATTAGAACATGGAAAAGTTTAGTAAAACACCATATGTATATCTCAAGGA C31 GATTAGAACATGGAATGGCTTAATAAAGCACCACATGTATGTCTCAAAGA C32 GATTAGAACATGGAATAGTTTAGTAAAGCACCATATGTATGTTTCAAGAA C33 GATTAGAACATGGAACAGTTTAGTAAAGCATCATATGTATATCTCTAAGA C34 GATTAACACATGGAAAAGTTTAGTAAAATACCATATGTATAATTCAAAGA C35 AATTAGAACATGGCATAGTATAGTAAAATATCATATGTATGTCTCAAAGA C36 GATTAGAACATGGAATAGTTTAGTAAAGCACCATATGTATACTTCAAAGA C37 GATTAATGCATGGAAAAGTCTAGTAAAATACCACATGAATGTTTCAAAGA C38 GATTAGAACATGGAATAGTTTAGTAAAACACCATATGTATATCTCAAAGA C39 GATTAGAACATGGCACAGTTTAGTAAAACATCATAAGTATGTCTCAAAGA C40 GATTAGAGCATGGAATAGTTTAGTGAAACACCATATGTATATTTCAGGAA C41 GATTAGAACATGGCGCAGTTTGGTAAAACATCATATACATATCTCAAAGA C42 GATTAGAACATGGAAGAGTTTAGTAAAACATCATATGTATGTTTCAAAGC C43 AGTGAAAACATGGAACAGCCTGGTGAAATACCATAAGTACAGGTCTGGGA C44 GATTAACCAATGGAAAAGTTTAGTAAAATACCATATGTATATTTCAAAAA C45 GATTAACACATGGAAAAGTTTAGTAAAACATCATATATATACTTCAAGGA C46 GATTAATACTTGGAAAAGTTTAGTAAAATACCATATGCATATTTCAAAGA C47 AGTGAAAGCGTGGAACAGCCTAGTGAAATACCATAAGTACAGGTCTAGAC C48 GATTAGAACATGGAACAGTCTAGTAAAACATCATGTATATATTTCAAAGA C49 GATTAATACATGGAAAAGTCTAGTAAAACACCATATGCATATCTCAAGGA C50 GATTAGGACATGGAAAAGTTTAGTAAAACACCATATGTATATCTCAAGGA ..* *. . ***.. .* *..*.**. * ** .:. * . **:.... C1 AAGCTAAACGCTGGTTTTATAGACATCACTATGAAAGCCATCATCCCAGA C2 AAGCTAAAGGATGGGTTTACAGACATCACTATGAAAGTACTAATCCAAGA C3 GAGCTACTGGATGGTTTTACAGACATCATTATGAAAGCAGACATCCAAAA C4 AAGCTAAAAATTGGTCTTATAGGCATCATTATGAAAGCCAGCATCCAAAG C5 AAGCTAGTAAGTGGAGTTATAGACATCATTATGAAAGCCGGCATCCAAAA C6 GAGCTAGTGGATGGTTTTACAGACATCATTATGAGAGCAGACATCCAAAA C7 AAGCTAAGGGATGGTATTATAGACATCACTATGAAAGCCCCCATCCAAGA C8 AAGCTAGGGGATGGTTTTATAGACATCACTATGAAAGCACTCATCCAAGA C9 AAGCTAAAAAGTGGCTTTATAGACATCACTATGATAGCAGGCATCCAAAA C10 AAGCTAAGGGATGGTTTTATAGACATCACTATGAGAGTACTCATCCAAGA C11 AAGCTAGAGATTGGGCTTACAGACATCACTATGACAGCAATCATCCAAAA C12 GAGCTAAAGGATGGGTTTACAAACATCATTATGACAGCAGAAATCCAAAA C13 AAGCTCAGGGTTGGTTTTATAGACATCACTATGAAAGTAGGCATCCAAAA C14 AAGCTAAGGATTGGTCTTATAAACATCACTATGAAAGTAGGAATCCAAAA C15 GAGCTAGTGGATGGTTTTATAGGCATCATTATGAAAGCAGACATCCAAAA C16 GAGCTAATGGATGGTTCTACAGACATCATTTTGAAAGCAGACATCCAAAA C17 AAACTAGGAGATGGATATATAAACATCATTATGAAAGCACTCATCCAAGA C18 AAGCTAATGGATGGTTTTACAGACATCATTATGAAAGTAGACATCCAAAA C19 AAGCTAAGGGATGGATTTATAGACATCACTATGAAAGCATTCATCCCAGA C20 AAGCTAAAGGATGGTTTTATAGACATCACTTTGAAAGCAGGCATCCAAAA C21 GAGCCACTGGATGGTTTTACAGACATCATTATGAAAGCAGACATCCAAAA C22 AAGCTAAGAAATGGTCTTATAGACATCACTATGAAAGCACTCATCCAAGA C23 AAGCTAAGAAATGGTGTTATAAACATCACTATGAGAGTACTAATCCAAGA C24 GAGCTAAAGGATGGTTTTACAAAAATCATTATGAAAGCAGAAATCCAAAA C25 AAGCTAAAAAGTGGTTTTATAGACATCATTATGGGAGCCAGCATCCAAAG C26 GAGCTAGTGGATGGTTCTATAGACAGCATTATGAAAGCAGACATCCAAAA C27 AAGCTAAAAAGTGGTATTATAGACATCATTATGAAAGCCAGCATCCAAAG C28 AAGCTCGAGGATGGTTGTATAGACATCACTTTGAAAGCAGGCATCCAAAA C29 AAGCTAAGAGATGGTCTTATAAGCATCACTATGAAAGCACTAATCCAAGA C30 AAGCTAAGGGATGGGTTTATAGACATCACTATGAAAACACTCATCCAAGA C31 AAGCTAGGGAATGGTATTACAGACATCATTATGAAAGCAGACATCCAAAA C32 GAGCTAATAAATGGTTTTACAGACATCATGTTGAAAGCAGACATCCAAAA C33 AAGCTAAAGGTTGGTTTTATAGACATCACTATGAAAGTAGACATCCAAAA C34 AAGCCAAAAGATGGTTTTATAGACATCACTTTGAAAGCAGACATCCAAGA C35 AAGCTAAAAAGTGGTCTTATAAACATCACTATGAAACCAGGCATCCAAGA C36 AAGCTAGTGGATGGGTTTACAGACACCATTATGAAAGTAGAAATCCAAAA C37 GAACGAAAGACTGGCTTTATAGACATCACTATGACAGCCATCATCCAAAA C38 GAGCTAATGGATGGTTTTACAGACATCATTATGAAAGCAGACATCCAAAA C39 AAGCAAAAGATTGGGTTTATAGACACCACTTTGAAAGCAGGCATCCGAAA C40 AAGCTAGGAAATGGGTTTATAAACATCACTATGAGACCAATAATCCAAGA C41 AAGCTAAAAAGTGGGTTTATAGACATCATTATGAAAGCCAGAATCCAAGG C42 AAGCTAAAAGATGGTGGTATAGACATCATTATGAATGCCCAAATCCAAGA C43 AAGCCAGAGAATGGTGGTACAGACACCATTTTGAATCCAGAAACCCAAGA C44 AGGCTAAGGGATGGTTTTATAGACATCACTATGAAAGCACTCATCCAAGA C45 AAGCTAAGGGATGGGTTTATAAACATCACTATGAAAACTTCCATCCAAGA C46 AAGCTAACCGATGGTATTATAGACATCACTATGAAAGCAGGCATCCAAAA C47 AGACCAGGGAGTGGCATTACAGACATCATTATGAAAGCAGAAATCCAAGA C48 AAGCTACAGGATGGGTTTATAAACATCACTTTGAAAGCACTAATCCAAGA C49 AAACTAAGGGATGGTTTTATAGACATCACTATGAAAGCACTCATCCAAGA C50 AAGCTAAGGGATGGGTTTATAGACATCACTATGAAAGCACCCATCCAAGA ...* . . *** ** *...* ** :**. : .* ** *.. C1 GTAAGTTCAGAAGTACACATCCCACTAGGAGATGCTACA---------CT C2 ATAAGTTCAGAAGTACACATCCCACTAGGGGATGCTAAA---------TT C3 GTAAGTTCAGAAGTACACATCCCATTAGGAGACGCTAGA---------TT C4 GTAAGTTCAGAAGTACATATCCCAATAGGAGAAGCTAGA---------TT C5 GTAAGTTCAGAAGTACACATCCCACTAGGAGAGGCTATA---------TT C6 GTAAGCTCAGAAGTACACATACCATTAGGGGATGCTAGA---------TT C7 GTAAGTTCAGAAGTACACATCCCACTAGGGGATGCTAGA---------TT C8 ATAAGCTCAGAAGTACACATCCCACTAGGGGATGCTAAA---------TT C9 GTAAGTTCAGAAGTACACATCCCACTAGGGAATGCTAGA---------TT C10 ATAAGTTCAGAAGTACACATCCCACTAGGGGATGCGGAA---------CT C11 ATAAGCTCAGAAGTACACATCCCACTAGGGGATGCTAGA---------TT C12 GTAAGTTCAGAAGTACAAATCCCATTAGGGGAGGCTAAA---------TT C13 GTAAGTTCAGAAGTGCACATCCCACTAGGGGATGCTAGA---------TT C14 GTAAGTTCAGAAGTACACATCCCACTAGGGGATGCTAAA---------TT C15 GTAAGTTCAGAAGTACACATCCCATTAGGGGAGGCTAGA---------TT C16 GTAAGTTCAGAAGTACACATCCCATTAGGGGATGCTAGA---------TT C17 ACAAATTCAGAAGTACACATCCCACTAGGGGATGCTAAA---------TT C18 GTAAGTTCAGAAGTACACATACCATTAGGGGAGGCTAGA---------TT C19 ATAAGTTCAGAAACACACATCCCAGTAGGGGAAGCTAAA---------AT C20 GTAAGTTCAGAAGTACACATCCCACTAGGGGATGCTAAA---------TT C21 GTAAGTTCAGAAGTACACATCCCATTAGGGGAGGCTAGA---------TT C22 ATAAGTTCAGAAGTACACATCCCACTGGGGGATGCTAGT---------TT C23 ATAAGTTCAGAAGTACACATCCCAATAGAAAAAGCTAAA---------TT C24 GTGAGTTCAGAAGTACATATACCATTAGGGGAGGCTAGA---------TT C25 GTAAGTTCAGAAGTACACATCCCAATAGGAAAGGCTAGA---------TT C26 ATAAGTTCAGAAGTACACATTCCATTAGGGGATGCTAGA---------CT C27 GTAAGTTCAGAAGTACATATCCCACTAGGAGAGGCTAAA---------TT C28 ATAAGTTCAGAAGTACACATCCCACTAGGAGAAGCTAGA---------CT C29 GTAAGTTCAGAAGTACACATCCCACTAGGGGATGGTAGA---------TT C30 ATAAGTTCAGAAGTACACATCCCACTAGGGGATGCTAGA---------TT C31 GTAAGTTCAGAAGTACACATACCATTAGGGGAAGCTAGA---------TT C32 GTAAGTTCAGAAGTACATATCCCATTAGGGGATGCAAGA---------TT C33 GTAAGCTCTGAAGTACACATCCCACTAGGACCTGCTACA---------TT C34 GTAAGTTCAGAAGTACACATCCCATTAGAGGAGGCTAAA---------TT C35 GTAAGTTCAGAAGTGCACATCCCACTAGGGGATGCTAAA---------AT C36 ATAAGTTCAGAAGTACACATCCCATTAGGAGAAGCTAAA---------TT C37 ATAAGTTCAGAAGTACACATCCCACTAGATAGGGCTGAA---------TT C38 ATAAGTTCAGAAGTACACATCCCATTAGGGGAGGCTAGA---------TT C39 GTAAGTTCAGAAGTACACATCCCACTAGGGGATGCTAGA---------TT C40 ATAAGTTCAGAAGTACACATCCCACTAGGGGATAATAAA---------TT C41 GTAAGTTCAGAAGTACATATCCCACTAGGAGAGGCTAAA---------AT C42 ATAAGTTCAGAAGTACACATCCCGCTAGGAGAAGCTAAA---------CT C43 TTCAGTTCAGGTGTATATATTCCAGTAGGGGGACCTGGGGGGCCTTGGAT C44 ATAAGTTCAGAAGTACACATCCCACTAGGGGAGGCTAAA---------TT C45 ATAAGTTCAGAAGTACACATCCCACTAGGGGATGCTAAG---------TT C46 ATAAGTTCAGAAGTACACATCCCACTAGGGGATGCAGAG---------TT C47 GTCAGTTCAGGTGTATATATTCCAGTAGGGGGAGCCAAT---------GT C48 GTAAGTTCAGAAGTACACATCCCACTAGGGGATGCTAAA---------TT C49 ATAAGTTCAGAAGTACACATCCCACTAGGGGATGCTAGA---------TT C50 ACAAGTTCAGAAGTACACATCCCACTAAAGGATGCTAAA---------CT *. **:*.:. . * ** **. *... . * C1 AATAGTAAGATCATATTGGGGTCTGCATACAGGAGAAAAAGACTGGCACT C2 GATAATAACAACATATTGGGGTCTGCATGCAGGAGAAAGAGAATGGCATT C3 AGTAATAAAAACATATTGGGGGTTGCAAACAGGAGAAAGAGATTGGCATT C4 AGTAATAAGAACATATTGGGGTCTGCAGACAGGAGAAAAGGACTGGCACT C5 AGTAATAAGAACATATTGGGGTCTGCAGACAGGAGAAAAGGACTGGCAAT C6 AGTAGTCATAACATATTGGGGTTTGCACACAGGAGAAAGAGAATGGCATT C7 GGTAATAAGAACATATTGGGGTCTACACACAGGAGAAAGAGACTGGCATT C8 GGTGGTAACAACATATTGGGGTCTGCATACAGGAGAAAGAGACTGGCATT C9 AGTAGTAAGAACATATTGGGGACTGCAGACAGGAGAAAAAGATTGGCACT C10 GGTAATAACAACATATTGGGGTCTGCATACAGGAGAAAGAGACTGGCATT C11 AGTAGTAACAACATTCTGGGGTTTGAATACAGGAGAAAGAAAATGGCATT C12 AGTAATAAAAACATATTGGGGGTTGCAAACAGGAGAAAGAGATTGGCACT C13 AGTAATAAGAACATATTGGGGTCTGAATACAGGAGAAAGAGACTGGCAAT C14 AGTAGTAAGAACATATTGGGGTCTGCATACAGGAGAAAGAGACTGGCACT C15 AGTAATAAAAACATATTGGGGTTTGCATACAGGAGAAAGAGATTGGCATT C16 AGTAATAAAAACATATTGGGGTTTGCAGCCAGGAGAAAGAGATTGGCATT C17 GGTAATAACAACATATTGGGGTCTGCATACAGGAGAAAGAGACTGGCATT C18 AGTAATAATAACATATTGGGGTTTGCAAACAGGAGAAAGAGATTGGCATT C19 AGTAGTAACAACATATTGGGGCCTGCATACAGGAGAAAGAGATTGGCATT C20 AGTAGTGATAACATATTGGGGTCTACATACAGGAGAAAAAGATTGGCACT C21 AGTAATAATGACATATTGGGGTTTGCAAACAGGAGAAAGAGAGTGGCATT C22 GGTAGTAACAACATATTGGGGTCTGCATACAGGAGAAAGAGATTGGCATT C23 GGTAATAACAACCTATTGGGGTCTGCATACAGGAGAAAGAGATTGGCATT C24 AGTAATAACAACATATTGGGGGTTGCAAACAGGAGAAAGAGAGTGGCATT C25 AGTAATAAGAACATATTGGGGTCTGCAGACAGGAGAAAAGGACTGGCAAT C26 AGTAATAAAAACATATTGGGGTTTGCAAACAGGAGAAAGAGAATGGCATT C27 AGTAATAAAAACATATTGGGGTCTGCAGACAGGAGAAAAGGACTGGCATT C28 GGTAGTAAAAACATATTGGGGTCTGCATACAGGAGAAAGAGATTGGCATC C29 GGTAATAACAACATATTGGGGTCTGCATACAGGAGAAAGAGACTGGCATT C30 GGTAGTAACAACATATTGGGGTGTGCATACAGGAGAAAGAGACTGGCATT C31 AGTAATAACAACATATTGGGGTTTGCAAACAGGAGAAAGAGAGTGGCATT C32 AATAGTAAAAACATATTGGGGGTTGCAAACAGGAGAAAGAGAATGGCATC C33 AGTAGTGACAACATATTGGGGTCTGCATACAGGGGAAAGAGAATGGCATT C34 AGTAATAACAACATACTGGGGGCTGCATACAGGAGAAAGAGATTGGCATC C35 AGTAGTAAAAACATATTGGGGTCTGCATACAGGAGAAAAAGATTGGCAAT C36 AGTAATAAAAACATACTGGGGGTTGCAAACAGGAGAAAGAGAATGGCATT C37 AGTAGTAACAACATATTGGGGTCTGCAGCCAGGAGAAAGAGATTGGCATT C38 AATAATAACAACATATTGGGGGTTGCAACCAGGAGAAAGAGATTGGCATT C39 AGTAGTAAAAACATATTGGGGTCTGCATACAGGAGAAAAAGACTGGCACT C40 GGTAATAACAACATATTGGGGTCTGCATACAGGAGAAAGAGATTGGCATT C41 AGTAGTAAGAACATATTGGGGTCTGCAGACAGGAGAAAAGGACTGGCAAT C42 GGTAGTAAAAACATATTGGGGTCTGCATACAGGAGAAAGAGAATGGCATC C43 AGTGGTGTCCACATACTGGGGATTGATGCCAGGGGAAAAAGATGAACATT C44 GGTAGTAATAACATATTGGGGTCTGCATACAGGAGAAAGAGACTGGCATT C45 GGTAGTAACAACATATTGGGGTCTGCATGCAGGAGAAAGAGACTGGCATT C46 AGTAGTAACAACATATTGGGGTCTGCTTACAGGAGAAAGGGACTGGCATT C47 AGTAGTGACCACATATTGGGGATTGATGCCAGGGGAAAGAGATGACCACT C48 AATAGTAAAAACTTATTGGGGTCTGCATACAGGAGAAAGAGACTGGCATT C49 GGTAATAACAACATATTGGGGTCTGCATACAGGAGAAAGAGATTGGCATT C50 GGTAATAACAACATATTGGGGTCTGCATACAGGAGAAAGAGACTGGCATT ..*..* : :* *: ***** *..: ****.****...* . ** C1 TAGGCCATGGGGTTTCTATAGAATGGAGACTGAGAAGATATAGTACACAA C2 TGGGTCAGGGAGTCTCCATAGAATGGAGAACAAAGAGATATAGCACACAA C3 TGGGTCATGGAGTCTCCATAGAATGGAGATTGAGAAAATATAACACACAA C4 TGGGTCATGGAGTCGCCATAGAATGGAGACAAGGAAACTATAGCACACAA C5 TGGGTCATGGAGTCTCCATAGAATGGAGGCAGAAAAACTATGGAACACAA C6 TGGGTCATGGAGTCTCCATGGAATGGAGATGGAAAAGATATAGCACACAA C7 TGGGTCAGGGAGTCTCTATAGAATGGAGGAAAAGGAGATATAGCACACAA C8 TGGGTCAGGGAGTCTCTATAGAATGGAGGAAGAGGAGATATAGCACACAA C9 TGGGTCATGGGGTCTCCATAGAATGGAGGCTAAGGAAATATAGTACACAA C10 TGGGTCAGGGAGTTTCCATAGAATGGAGGAAAAAGAGATATAGCACACAA C11 TGGGTCAGGGGGTCTCCATAGAATGGAGGCTGAAAAGGTACAGAACACAA C12 TAGGTAATGGAGTCTCCTTAGAATGGAGAATGGGAAGATATAACACACAA C13 TGGGTCATGGGGTCTCCATAGAATGGAAGCAGAAAAAGTATAGCACACAA C14 TAGGTCATGGGGTCTCCATAGAATGGAATCAGGAAAGATATAGCACACAA C15 TGGGTCATGGAGTCTCCATAGAATGGAGATTGAGAAGATATAGCACACAA C16 TGGGTCATGGAGTCTCCATAGAATGGAGATTGAAAAGATATAGCACACAA C17 TGGGTCAGGGAGTCTCCATAGAATGGAGGAAAGAGGGATATAACACACAA C18 TGGGTCATGGAGTCTCCATAGAATGGAGATTGAGAAGATATAGCACACAA C19 TGGGTCAAGGAGTCTCCATAGAATGGAGGGAAAGGAGATACATCACACAA C20 TGGGTCATGGGGTCTCCATAGAATGGAGGCTAAAAAGATATAGCACACAA C21 TGGGTCATGGAGTCTCCATAGAATGGAGATTGAGAAGATATAGCACACAA C22 TGGGTCATGGAGTCTCCATAGAATGGAGGCAAAGGAAATATAGCACACAA C23 TGGGCCAGGGAGTCTCCATAGAATGGAGAAGAGAGGGATATAGCACACAA C24 TAGGCCATGGAGCCTCCATAGAATGGAGATTGAGAAGATATAGCACACAA C25 TGGGTCATGGAGTCTCCATAGAATGGAGGCAAGGACAATATAACACACAA C26 TGGGGCATGGAGTCTCCATAGAATGGAGATTGAAAAAATACAGCACACAG C27 TGGGGCATGGAGTCTCCATAGAATGGAAGCATGGAACATATAGTACACAA C28 TGGGTCAGGGAGTCTCCATAGAATGGAGGAAAGGGAGATATAGCACACAA C29 TAGGCCAGGGAGTCTCCATAGAATGGAGGAAAAAGAGATATAGCACACAA C30 TGGGTCAGGGAGTCTCCATAGAATGGAGGAAGCAGAAATATAGCACACAA C31 TGGGTCATGGAGTCTCCATAGAATGGAGATTAAGAAGATACAGAACACAA C32 TGGGTCATGGAGTCTCCATAGAATGGAGATTGAAAAGATATAGTACACAA C33 TGGGTCAGGGGGTCTCCATAGAATGGAGACTGAACAGGTACAGAACACAA C34 TGGGTCAGGGAGTCTCCATAGAATGGAGGCAGGGGAGGTATAGGACACAA C35 TGGGTCATGGGGTCTCCATAGAATGGAGGCTAAGAAGATACAGTACACAA C36 TGGGTCATGGAGTCTCCATAGAATGGAGATGGGAAAGTTATAGCACACAA C37 TGGGTCAGGGAGTCTCCATAGAATGGAGGCTGAAAAGGTACAGAACACAA C38 TGGGTCATGGAGTCTCCATAGAATGGAGATTGAGAAGATACAGCACACAA C39 TGGGTCATGGGGTCTCCATAGAATGGAGGCTAAGAGGGTATAGCACACAA C40 TGGGTCAAGGAGTCTCCATGGAATGGAGGAAAGGAAAATATAGCACACAA C41 TGGGTCATGGAGTCTCCATAGAATGGAGGCAGAGACAATATAGCACACAA C42 TGGGTCAGGGAGTCTCCATAGAATGGAGGAAAAGGAGATACAGTACACAA C43 TGGGGCATGGAGTTAGTATAGAATGGCAGTACAAGAAATATGCAACACAG C44 TGGGTCAGGGAGTCTCCATAGAATGGAGAAAAGGGAGATATAGCACACAA C45 TGGGTCAGGGAGTCTCCATAGAATGGAGGAAGGAGAGATATAACACACAA C46 TGGGTCAGGGAGTCTCCATAGAATGGAGGCTGAAAAGGTACAGAACACAA C47 TGGGACATGGGGTTAGTATAGAATGGCAATATAAGAAGTATAAAACACAG C48 TAGGTAGTGGAGTCTCCATAGAATGGAGGGAAAGGAGATATAGCACACAG C49 TGGGCCAGGGAGTCTCCATAGAATGGAGGAAAAGGAGATATAGCACACAA C50 TGGGTCAGGGAGTCTCCATAGAATGGAGGAAAAAGAGATATAGCACACAA *.** .. **.* :*.******.. . ** . *****. C1 ATAGATCCTAACCTAGCAGACCATCTGATTCATCTGCATTATTTTGATTG C2 GTAGACCCTGGCCTAGCAGACCAACTAATTCATATGCATTACTTTGATTG C3 ATAGAACCTGGCCTGGCAGACCAGCTAATTCATATGTATTATTTTGATTG C4 ATAGATCCTGACCTAGCAGACCGACTGATTCATATACAATATTTTGAATG C5 ATAGATCCTGACCTAGCAGACCGACTGATTCATTTACACTATTTTGACTG C6 GTAGACCCTGGCCTGGCAGATCAGTTAATTCATTTGCATTATTTTGATTG C7 GTAGACCCTAACCTAGCAGACCAACTAATTCATCTGTATTACTTTGATTG C8 GTAGACCCTAACCTAGCAGACCAACTAATCCACCTGTATTACTTTGATTG C9 GTAGATCCTGACCTGGCAGACCAACTAATTCATCTGTATTATTTTGACTG C10 GTAGACCCTAACCTAGCAGACCAACTAATTCACCTGTATTACTTTGATTG C11 GTAGACCCTGACCTGGCAGACCAACTAATTCATATGCATTACTTTGACTG C12 ATAGAACCTGGCCTGGCGGACCAGCTAATTCATATGCATTATTTTGATTG C13 ATAGACCCTGGCCTAGCAGACCAACTGATTCACCTGTATTATTTTGACTG C14 ATAGATCCTGACCTAGCAGACCAACTGATTCACCTGCATTATTTTGACTG C15 GTAGACCCTGGTCTGGCAGACCAGCTAATCCACATGCACTATTTTGATTG C16 GTAGACCCTGGCCTGGCAGACCAACTAATTCATATGCATTATTTTAATTG C17 GTAACCCCTGACCTAGCAGACCAACTAATTCACCTGCATTATTTTGATTG C18 GTAGACCCGGACCTGGCAGACCAGCTAATTCATATACATTATTTTGATTG C19 ATAGACCCTGACCTAGCAGATCAACTAATTCATCTGTATTATTTTGATTG C20 ATAGATCCTGACCTGGCAGACCAACTAATTCATATGCATTATTTTAACTG C21 GTAGACCCTGACCTGGCAGACCAGCTAATTCATCTGCATTATTTTGATTG C22 GTAGACCCTAACCTAGCAGACCAACTAATTCACCTGTATTACTTTGATTG C23 ATAGACCCTGGCCTAACAGACAGACTAATTCATCTGTATTATTTTGATTG C24 ATAGACCCTGACCTGGCAGATCAGCTAATTCATATACATTATTTTGATTG C25 GTAGATCCTGACCTAGCAGACCAACTAATTCATCTACACTATTTTGACTG C26 GTAGATCCTGGCCTGGCAGACCAGCTAATCCATATGCATTATTTTGATTG C27 ATAGATCCTGACCTAGCAGACCAACTGATTCATCTACACTATTTTGACTG C28 GTAGACCCTGGCCTAGCAGACCAACTAATTCATATACATTATTTTGATTG C29 GTAGACCCCGGCCTAGCAGACCAACTAATTCATCTGTATTATTTTGATTG C30 GTAGACCCTGGCCTAGCAGACCAACTAATTCATGTGTATTATTTTGACTG C31 GTAGACCCAGGCCTAGCAGACCAGCTAATTCATATGCATTATTTTGATTG C32 GTAGACCCTGACTTGGCGGACCAGCTAATTCATGTGCATTATTTTGATTG C33 GTAGACCCCGACCTAGCAGACCAACTAATTCATATACATTACTTTGATTG C34 ATAGACCCTGGCCTGGCAGACCAACTGATCCATATACATTATTTTGATTG C35 ATAGATCCTGACCTGGCAGACCAACTAATTCATCTGCATTATTTTCAATG C36 GTAGACCCTGGCCTGGCAGACCAGCTAATTCATATGCATTATTTTGATTG C37 GTAGACCCTGGCCTGGCGGACCAACTAATACATATGCATTACTTTGATTG C38 ATAGAACCCGGCCTGGCAGACCAGCTAATTCATTTGCATTATTTTGATTG C39 ATAGATCCTGACCAGGCAGACCAACTAATTCATCTACATTATTTTGACTG C40 GTAGACCCTGACCTAGCAGACCAACTAATTCATATGTATTATTTTGATTG C41 ATAGATCCTGACCTAGCAGACCAACTGATTCATCTAAATTATTTTGACTG C42 GTAGACCCTGGCCTAGCAGACCAACTGATTCATACCCATTATTTTGATTG C43 ATTGACCCTGAAACAGCAGACAGAATAATACATACACACTATTTTACCTG C44 GTAGACCCCGACCAAGCAGACCAACTAATTCACCTGCATTACTTTGATTG C45 GTAGACCCTAACCTAGCAGACCAACTAATTCATGTGTATTACTTTGATTG C46 GTAGAACCTGACCTAGCAGACCAACTAATTCATATATATTATTTTGATTG C47 ATTGACCCTGAAACAGCAGACAGAATAATACATCAGCATTATTTCACCTG C48 GTAGATCCTGACCTGGCAGACCATCTAATTCACCTGTATTATTTTGATTG C49 GTAGACCCTGACTTAGCAGACCAACTAATTCATCTGCATTACTTTGATTG C50 GTAGACCCTAGCTTAGCAGACCAACTAATTCATCTGTATTACTTTGATTG .*:.. ** .. ..*.** .. *.** ** * ** ** . ** C1 TTTTTCAGAATCTGCCATAAGGAAAGCCATATTAGGAGAGATAGTTTACC C2 TTTTTCAGAGTCTGCTATAAGGAGTGCCATATTAGGATATAGAGTTAGAC C3 TTTTGCAGACTCTGCCATAAGGAAAGCCATATTAGAACACATAGTTATTC C4 TTTTTCAGAATCTGCCATAAGGAGAGCCATATTAGGACAAGTAGTTAGGC C5 TTTTTCAGACTCTGCCATAAGGAAAGCCATATTAGGACAAGTAGTTAGAC C6 TTTTGCAGACTCTGCCATAAGAAAAGCCATATTAGGACACATAGTTATTC C7 TTTTTCAGAATCTGCTATAAGAAATACCATATTAGGACATAGAGTTAGTC C8 TTTTTCAGACTCTGCTATAAGAGAGGCCTTATTAGGACATAGAGTTAGCC C9 TTTTTCAGACTCTGCCATAAGAAAAGCCTTATTAGGACAAGTAGTTAGCC C10 TTTTTCAGAATCTGCTATAAGAAATGCCATATTAGGACATATAGTTAGTC C11 TTTTTCAGAATCTGCCATAAGGAAAGCCATATTAGGACATAGAGTTAGTC C12 TTTTGCAGAATCTGCCATAAGGAAGGCCATACTAGGACACATAGTTATTC C13 TTTTTCAGAATCTGCCATAAGGAAAGCCATATTAGGAGAAATAGTTAGAC C14 TTTTTCAGAATCGGCCATAAGGAAAGCCATATTAGGACAAGTAGTTAGAC C15 TTTTACAGACTCTGCCATAAGAAAAGCCATATTAGGACATATAGTTATCC C16 TTTTGCAGACTCTGCCATAAGGAAAGCCATATTAGGACATATAGTTAGCC C17 TTTTTCAGAATCTGCTATAAGAAATGCCATATTAGGACATAGAGTTAGCC C18 TTTTACAGACTCTGCCATAAGAAAAGCCATATTAGGACACATAGTTATTC C19 TTTTTCAGAATCTGCTATAAGAAATGCCATAGTAGGACGGGTAGTTAGAC C20 TTTTTCAGACTCTGCCATAAGGAAAGCCATATTAGGACAAATAGTTAGCC C21 TTTTACAGACTCTGCCATAAGGAAAGCCATATTAGGACATATAGTTATTC C22 TTTTTCAGACTCTGCTATAAGACAAGCCATATTAGGACATATAGTTAGTC C23 TTTTTCAGAATCTGCTATAAGAAATGCCATATTAGGACGTATAGTTAGTC C24 TTTTGCAGACTCTGCCATAAGAAAAGCCATATTAGGACACATAGTTATTC C25 TTTTTCAGACTCTGCCATAAGGAAAGCCATATTAGGACAAATAGTTAGAC C26 TTTTGCAGACTCTGCCATAAGACAAGCCATATTAGGACATATAGTTATTC C27 TTTTTCAGACTCTGCCATAAGGAAAGCCATATTAGGACAAGTAGTTAGAT C28 TTTTGCAGAATCTGCTATAAGAAAAGCCATATTAGGACAAATAGTTATTC C29 TTTTTCAGAATCTGCTATAAGAAATGCCATATTAGGACGTAGAGTTAGTC C30 TTTTTCAGACTCTGCTATAAGACAAGCCCTATTAGGACATATAGTTAGTC C31 TTTTGCAGACTCTGCCATAAGACAAGCCATATTAGGACACATAGTTATTC C32 TTTTGCAGACTCTGCCATAAGAAAAGCCATATTAGGACACATAGTTATCC C33 TTTTTCAGAATCTGCCATAAGGAAAGCCATATTAGGATATAGAGTTAGCC C34 TTTTTCAGAATCTGCTATAAGAAATGCCATATTAGGACGTATAGTTAGAC C35 TTTTTCAGACACTGCCATAAGGAAAGCCATATTAGGACAAATAGTTACCC C36 TTTTACAGACTCTGCCATAAGGAAAGCCATATTAGGACACATAGTTATTC C37 TTTTTCAGAATCTGCCATAAGGAAGGCCATATTAGGACATATAGTTAGTC C38 TTTTGCAGACTCTGCCATAAGGAAAGCCATATTAGGACACATAGTTTTTC C39 TTTTTCAGACTCTGCCATAAGGAAAGCCATAGTAGGACAAGTAGTTAGCC C40 TTTTTCAGATTCTGCTATAAGAAATGCCCTATTAGGACATAGAGTTAGTC C41 TTTTTCAGACTCTGCCATAAGGAAAGCCATATTAGGACAAGTAGTTAGAC C42 TTTTGCAGACTCTGCTATAAGACAAGCCATATTAGGACATAGAGTTATTT C43 TTTTACAGAGTCAGCAATCAGGAGAGCCATCCTAGGGCAAAAAGTACTGC C44 TTTTTCAGAATCTGCTATAAGGAAAGCCATATTAGGACATAGAGTTAGTC C45 TTTTTCAGAATCTGCTATAAGAAATGCCATATTAGGACACATAGTTACCC C46 TTTTTCAGAATCTGCAGTAAGGAAGGCCATATTAGGACATAGAGTTAGTC C47 TTTTACAGATTCAGCAATCAGAAAAGCCATCCTAGGGCAGAGAGTACTGA C48 TTTTTCAGAATCTGCTATAAGAAATGCCATATTAGGACGTGTAGTTAGAC C49 TTTTTCAGACTCTGCTGTAAGAAAAGCCATATTAGGACATATAGTTAGAC C50 TTTTTCAGAATCTGCTATAAGAAGTGCCATAGTAGGACATATAGTTAGTC **** **** :* ** .*.**. . .** *. ***.. . . ***: C1 CTAGGTGTGAATATCCAGCAGGCCAT---AATAAGATAGGATCTCTACAA C2 CTAGGTGTGAATATCAAGCAGGACAT---AACAAGGTAGGATCTCTACAG C3 CTAGGTGTGACTATCAAGCAGGACATAATAATAAGGTAGGATCTCTACAA C4 GTAGGTGTGAATATCCGTCAGGACAT---AACAAGGTAGGATCCCTACAA C5 GTAGGTGTGAATACCCATCAGGACAT---AACCAGGTAGGATCCCTACAA C6 CTAGGTGTGACTACCAAGCAGGACAT---AAGAAGGTAGGATCTCTACAA C7 CTAGGTGTGAATACCCAGCAGGACAT---AATAAGGTAGGATCTCTACAG C8 CTAGTTGTGAATATCAAGCAGGACAT---AACAAGGTAGGATCTCTACAG C9 CTAGTTGTGCATATCAAACAGGACAT---AACAAGGTAGGATCCCTACAA C10 CTAGGTGTGAATATCAAGCAGGACAT---AACAAGGTAGGATCTCTACAG C11 CTAGGTGTGAATATCAAGCAGGACAT---AACAAGGTAGGATCTTTACAG C12 CTAGGTGTGAGTATCAAGCAGGACAT---AATAAGGTAGGATCTCTACAA C13 CTAGGTGTGAATATTCAGCAGGACAT---AATAAGGTAGGATCTCTACAA C14 CTAGGTGTGAATATCAAGCAGGACAT---AATAAGGTAGGATCGCTACAA C15 CTAGGTGTGATTATCAAGCAGGACAT---ACTAAGGTAGGATCTCTACAA C16 CTAGGTGTGAATATCAAGCAGGACAT---AACAAGGTAGGATCTCTACAA C17 CTAGGTGCGAATATCAAGCAGGACAT---AACAAGGTAGGATCTCTACAG C18 CTAGGTGTGACTATCCAGCAGGACAT---AATAAGGTAGGATCTCTACAA C19 CTAGGTGTATTTATCCAACAGGACAT---AACAAGGTAGGATCTCTACAG C20 CTAGTTGTGAATATCAAGCAGGACAC---AGCAAGGTAGGATCTCTACAA C21 CTAGGTGTGACTATCCAGCAGGACAT---AATAAGGTAGGAACTTTACAG C22 CTAGTTGTGAATATCAAGCAGGACAT---AATAAGGTAGGATCTCTACAG C23 CTAGTTGTGAATATCGAGCAGGACAT---AATAAGGTAGGATCTCTACAA C24 CTAGGTGTGACTATCCTACGGGACAT---AATAAGGTAGGATCTCTACAA C25 CTAGGTGTGAATATCCATCAGGACAT---AACAAGGTAGGATCCCTACAA C26 CTAGGTGTGACTATCAAGCAGGACAT---AATAAGGTAGGATCTTTACAA C27 GTAGGTGCGAATATCCATCAGGACAT---AACAAGGTAGGATCCCTACAA C28 CTAGGTGTAATTACCCAGCAGGACAT---ACCCAGGTAGGATCTTTACAA C29 CTAGTTGTGAATATCAAGCAGGACAT---AATAAGGTAGGATCTCTGCAG C30 CTAGGTGTGAATATCAAGCAGGACAT---AACAAGGTAGGATCCCTACAG C31 CTAGGTGTGAATATCAAGCAGGACAT---AATAAGGTAGGATCTCTACAA C32 CTAGGTGTGACTATCAAGCAGGACAT---AATAAGGTAGGGTCTCTACAA C33 CTAGGTGTGAATATCAAGCAGGACAT---AATAAGGTAGGATCTTTACAA C34 CTAGGTGTGATTATCAAGCAGGACAT---AACAAGGTAGGATCTCTCCAG C35 CTTGTTGTGAATATCAGACAGGACAC---AACAAGGTAGGATCTCTGCAA C36 ATAGGTGTGAATATCAAGCAGGACAT---AATAAGGTAGGATCTCTACAA C37 CTAGGTGTGACTATCAAGCAGGACAT---AACAAGGTAGGATCTCTACAA C38 CTAGGTGTGACTATCAAGCAGGACATAGTAATAAGGTAGGATCTCTACAA C39 CTAAGTGTGAATATCAAACAGGACAT---AACAAGGTAGGATCTCTGCAA C40 CTAGGTGTGAATATCAAGCAGGACAT---AGAAAGGTAGGGTCTCTACAG C41 GTAGGTGTGAATATCCATCAGGACAC---AACAAGGTAGGATCCCTACAA C42 CTAGGTGTAATTATCCAGCAGGACAT---AACAAGGTAGGATCTTTACAA C43 CCCAGTGTGAATTCTCTGCAGGACAT---AGTCAGGTAGGGACACTGCAA C44 CTAGGTGTGAATATCAAACAGGACAT---AACAAGGTAGGATCTCTACAG C45 CTAGTTGTGAATACCAAGCAGGACAT---AACAAGGTAGGGTCTTTACAG C46 CTAGGTGTGAATGTCAAGCAGGACAT---AACAAGGTAGGATCCTTACAA C47 CCAAGTGTGAATACCCTGCAGGACAT---AGTCAGGTAGGGACACTGCAA C48 CTAGGTGTAATTATCAAGCAGGACAT---AACAAAGTAGGATCTCTACAG C49 CTAGTTGTGAATATCAAGCAGGACAT---AACAAGGTAGGCTCTCTACAG C50 CTAGGTGTGAATATCAAGCAGGACAT---AACAAGGTAGGATCTCTGCAG . ** . * *.**.** * .*..**** :* * **. C1 TATTTGGCATTGAAAGCATTAGTAACACCAACAAGGAAAAAGCCACCCTT C2 TACTTGGCACTAACAGCATTAATAGCACCAAAGAAGATAAAGCCACCTTT C3 TACTTGACCCTGACAGCACTGATAAAACCAAAAAAGATAAAGCCACCATT C4 TATTTGGCACTGAAAGCATTAACTACACCAAAAAGAATAAGGCCACCTCT C5 TATTTGGCACTGAAAGCATTAACAACACCGAAAAAGATAAGGCCACCTCT C6 TACTTGGCACTGACAGCATTGATAAAGCCAAAAAAGAGAAAGCCACCTCT C7 TACTTGGCACTAGCAACATTAATAACACCAAAAAAGAGAAAGCCACCTTT C8 TACTTGGCACTAACAGCATTAATAAAACCAAAAAAGAGAAAGCCACCTTT C9 TATTTGGCACTAAAAGCATTAGTAACACCAACAAGGACAAGGCCACCTTT C10 TACTTGGCACTAGCAACATTAATAGCACCAAAAAAGATAAAGCCACCTTT C11 TATCTGGCACTAATAGCACTAGTACAACCAAGCAAGAGAAAGCCACCTTT C12 TACCTGGCACTGACAGCACTGATAAAACCAAAAAAGATAAAGCCACCTCT C13 TATCTGGCACTAACAGCCTTAATAAAACCAAAGAAGGGAAAGCCACCTTT C14 TATTTGGCACTAAAAGCATTAGTAACACCAACAAAGACAAAGCCACCTTT C15 TACTTGGCACTGACAGCATTGATAAAACCAAAAAAGATAAAACCACCTCT C16 TACTTGGCATTGACAGCGTTGACAAAACCAAAAAAGATAAAGCCACCTCT C17 TACTTGGCACTAGCAGCATTAATAAAACCAAAAAAGATAAAGCCACCTTT C18 TACTTGGCACTGACAGCATTGATAAAGCCAAAGAAGATAAAACCACCTCT C19 TACTTGGCACTAACAGCACTAATAAAACCAAAAAAGATAAAGCCACCTTT C20 TATTTGGCACTGAAAGCATTAGTAACACAACCAAGGATAAAGCCACCTTT C21 TACTTGGCACTGACAGCTTTGATAAAACCAAAAAAGATAAAGCCACCTCT C22 TACTTGGCACTAGCAGCATTAACAAAACCAAAAAAGAGAAAGCCACCTCT C23 TACTTGGCACTAGCAGCATTAACAACACCAAAACAGAGAAAGCCACCTTT C24 TACTTGGCACTGACGGCATTGATAAAACCAAAGAAGATAAAACCACCCCT C25 TATTTGGCACTGAAAGCATTAATAACACCAAAAAGGATAAAGCCACCTCT C26 TACTTAGCACTGACAGCATTGATACAACCAAAAAAGAGAAAGCCACCTCT C27 TATTTGGCACTGAAAGCATTAACAACACCAAAAGGGATAAGGCCACCTCT C28 TATTTGGCATTAACTGCATTAATAACACCAAAAAAGATAAAACCACCTTT C29 TACTTGGCACTAGCAGCATTAGTAACACCAAAAAGGACAAAACCACCTCT C30 TACTTGGCACTTGCAGCATTAACAACACCAAAAAAGAGAAAGCCACCTTT C31 TACTTGGCTCTGACAGCATTGATAAAGCCAAAAAAGAGAAAGCCACCTCT C32 TTCTTGGCACTGACAGCATTGATAAAACCAAAAAGGAGAAAGCCACCTCT C33 TACCTGGCACTAACAGCCTTAATACACCCAAAAAAGACAAAGCCACCTTT C34 TACTTGGCACTAACAGCACTAATAAAACCAAAAAAGATAAAGCCACCTTT C35 TATTTAGCACTGAAAGCATTAGTGACACCAACAAGGAGTAGACCACCTTT C36 TACTTGGCACTGACAGCATTGATAAAACCAAAAAAGATAAAGCCACCTCT C37 TATCTGGCACTAACAGCATTAACAAAACCAAGGAAAAGAAAGCCACCTTT C38 TATTTGGCATTGACAGCACTGATAAAAACAAAAAGGAGAAAGCCACCTCT C39 TATTTAGCAATAAAAGCATTAGTAACACCAACAAAGACAAAGCCACCTCT C40 TACTTGGCACTAACAGCATTAATAAAACCAAAAAAGATAAAGCCACCTTT C41 TATTTGGCACTGCAAGCATTAACAACACAAAAAAGGATAAGGCCACCTCT C42 TATCTGGCACTAACAGCATTGCTAGCACCAAAAAAGATAAAGCCACCTTT C43 CTACTAGCTCTAAGAGCAGTAGTAAAAACAAAAAGAAATAAGCCTCCCCT C44 TACTTGGCACTAACAGCATTAATAAAACCAAAAAGGATAAAGCCACCTTT C45 TACTTGGCACTAGCAGCATTAATAACACCAAGAAAGAGAAGGCCACCTCT C46 TATTTGGCACTCACAGCATTAGTAGCTCCAAGAAGGCCAAAGCCACCTGT C47 CTACTAGCTCTAAGGGCAGTAGTAAAAGCAAAAAGAAGTAAGCCACCCCT C48 TACTTGGCACTAACAGCATTAATAAAGCCAAAAAAGATAAAGCCACCTTT C49 TACTTGGCACTAGCAGCACTAATAACACCAAAAAGGAGGAAGCCACCTTT C50 TACCTGGCACTACTAGCATTAGTAACACCAAAAAAGAGAAAGCCACCTTT : *..* * .* *. . ... .. *..**:** * C1 GCCTAGTGTTAGGAAATTGACAGAAGATAGATGGAACAAGCCCCAGAAGA C2 ACCTAGTGTTAGGAAACTGACAGAGGATAGATGGAACAAGCCCCAGAAGA C3 GCCTAGTGTTAAGAAACTGACAGAGGATAGATGGAACAAGCCCCAGAGGG C4 GCCTAGTGTTGTTAAATTAGCAGAAGATAGATGGAACAAGCCCCAGAAGA C5 GCCTAGTGTTAAAAAATTAACAGAAGACAGATGGAACAAGCCCCAGAAGA C6 GCCTAGTATTAGCAAATTAACAGAGGATAGATGGAACAACCCCCAGAAGA C7 GCCTAGTGTAGCGAAACTAACAGAGGATAGATGGAACGAGCCCCAGAAGA C8 GCCTAGTGTTGCGAAACTGACAGAGGATAGATGGAACAAGCCCCAGGAGA C9 ACCAAGTGTTAAGAAATTAACAGAGGATAGATGGAACAAGCCCCAGAGGA C10 GCCTAGTGTTACGAAACTGACAGAGGATAGATGGAACGAGCCCCAGAAGA C11 GCCTAGTGTTAGGAAGCTAACAGAGGATAGATGGAACAAGCCCCAGAAGA C12 GCCTAGTGTTAAGAAATTAGTAGAGGATAGATGGAACAATCCCCAGAAGA C13 GCCTAGTGTTCAAAAATTAGTAGAAGACAGATGGAACGAGCCCCAGAAGA C14 GCCTAGTGTTAAGAAGTTAGCAGAAGACAGATGGAACAAGCCCCAGAAGA C15 GCCT