--- EXPERIMENT NOTES --- EXPERIMENT PROPERTIES #Tue Feb 20 03:52:51 WET 2018 codeml.models=0 1 2 3 7 8 mrbayes.mpich= mrbayes.ngen=1000000 tcoffee.alignMethod=MUSCLE tcoffee.params= tcoffee.maxSeqs=0 codeml.bin=codeml mrbayes.tburnin=2500 codeml.dir=/usr/bin/ input.sequences= mrbayes.pburnin=2500 mrbayes.bin=mb tcoffee.bin=t_coffee mrbayes.dir=/usr/bin/ tcoffee.dir= tcoffee.minScore=3 input.fasta=/opt/ADOPS/HIV1_N3/VIF_1_5/input.fasta input.names= mrbayes.params= codeml.params= --- PSRF SUMMARY Estimated marginal likelihoods for runs sampled in files "/opt/ADOPS/HIV1_N3/VIF_1_5/batch/allfiles/mrbayes/input.fasta.fasta.mrb.run1.p" and "/opt/ADOPS/HIV1_N3/VIF_1_5/batch/allfiles/mrbayes/input.fasta.fasta.mrb.run2.p": (Use the harmonic mean for Bayes factor comparisons of models) (Values are saved to the file /opt/ADOPS/HIV1_N3/VIF_1_5/batch/allfiles/mrbayes/input.fasta.fasta.mrb.lstat) Run Arithmetic mean Harmonic mean -------------------------------------- 1 -7347.24 -7403.65 2 -7356.15 -7409.95 -------------------------------------- TOTAL -7347.94 -7409.26 -------------------------------------- Model parameter summaries over the runs sampled in files "/opt/ADOPS/HIV1_N3/VIF_1_5/batch/allfiles/mrbayes/input.fasta.fasta.mrb.run1.p" and "/opt/ADOPS/HIV1_N3/VIF_1_5/batch/allfiles/mrbayes/input.fasta.fasta.mrb.run2.p": Summaries are based on a total of 3002 samples from 2 runs. Each run produced 2001 samples of which 1501 samples were included. Parameter summaries saved to file "/opt/ADOPS/HIV1_N3/VIF_1_5/batch/allfiles/mrbayes/input.fasta.fasta.mrb.pstat". 95% HPD Interval -------------------- Parameter Mean Variance Lower Upper Median min ESS* avg ESS PSRF+ ------------------------------------------------------------------------------------------------------ TL{all} 4.605681 0.097306 4.029441 5.234232 4.595295 1207.88 1259.56 1.000 r(A<->C){all} 0.106554 0.000125 0.086135 0.129725 0.105871 393.24 483.46 1.000 r(A<->G){all} 0.309353 0.000735 0.255637 0.362449 0.308641 322.71 346.85 1.001 r(A<->T){all} 0.043809 0.000037 0.031645 0.055578 0.043498 784.23 803.46 1.002 r(C<->G){all} 0.021631 0.000044 0.009224 0.034681 0.021049 764.07 788.44 1.000 r(C<->T){all} 0.439091 0.000974 0.372407 0.493938 0.439783 325.09 325.42 1.000 r(G<->T){all} 0.079563 0.000103 0.060129 0.098529 0.079484 612.65 616.14 1.000 pi(A){all} 0.406428 0.000242 0.377180 0.437619 0.405907 606.27 698.84 1.000 pi(C){all} 0.171700 0.000150 0.146554 0.195113 0.171373 430.97 520.48 1.001 pi(G){all} 0.230319 0.000175 0.205686 0.256112 0.230238 631.67 670.02 1.004 pi(T){all} 0.191553 0.000185 0.164843 0.218861 0.191571 539.34 558.22 1.003 alpha{1,2} 0.463821 0.003283 0.364796 0.580614 0.456590 968.97 1044.82 1.003 alpha{3} 1.287294 0.047223 0.884799 1.722335 1.268576 1251.48 1296.30 1.000 pinvar{all} 0.198494 0.001103 0.135949 0.265146 0.198538 1164.98 1217.39 1.001 ------------------------------------------------------------------------------------------------------ * 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 -7402.034494 Model 2: PositiveSelection -7361.195214 Model 0: one-ratio -7752.824276 Model 3: discrete -7354.762218 Model 7: beta -7385.00845 Model 8: beta&w>1 -7344.928053 Model 0 vs 1 701.5795639999997 Model 2 vs 1 81.67856000000029 Additional information for M1 vs M2: Naive Empirical Bayes (NEB) analysis Positively selected sites (*: P>95%; **: P>99%) (amino acids refer to 1st sequence: B.KR.01.01KMJ3_9285.JQ268992_) Pr(w>1) post mean +- SE for w 31 V 0.995** 2.516 33 K 0.850 2.295 37 G 1.000** 2.524 39 V 1.000** 2.524 47 T 0.940 2.432 61 N 0.605 1.922 92 K 0.858 2.308 101 N 0.997** 2.519 122 H 0.521 1.794 127 H 0.997** 2.519 158 K 0.875 2.333 159 I 1.000** 2.523 167 K 0.995** 2.517 186 S 0.976* 2.488 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: B.KR.01.01KMJ3_9285.JQ268992_) Pr(w>1) post mean +- SE for w 31 V 0.994** 2.496 +- 0.135 33 K 0.839 2.260 +- 0.554 37 G 1.000** 2.505 +- 0.072 39 V 1.000** 2.505 +- 0.072 47 T 0.934 2.404 +- 0.380 61 N 0.599 1.899 +- 0.735 92 K 0.848 2.273 +- 0.541 101 N 0.996** 2.500 +- 0.115 122 H 0.519 1.779 +- 0.750 127 H 0.996** 2.500 +- 0.115 158 K 0.864 2.299 +- 0.516 159 I 1.000** 2.505 +- 0.078 167 K 0.995** 2.497 +- 0.129 186 S 0.973* 2.465 +- 0.251 Model 8 vs 7 80.16079400000126 Additional information for M7 vs M8: Naive Empirical Bayes (NEB) analysis Positively selected sites (*: P>95%; **: P>99%) (amino acids refer to 1st sequence: B.KR.01.01KMJ3_9285.JQ268992_) Pr(w>1) post mean +- SE for w 31 V 0.996** 2.067 33 K 0.944 2.008 36 K 0.792 1.836 37 G 1.000** 2.071 39 V 1.000** 2.071 47 T 0.975* 2.043 61 N 0.860 1.913 92 K 0.951* 2.017 101 N 0.998** 2.069 109 L 0.617 1.626 122 H 0.824 1.873 127 H 0.998** 2.069 154 I 0.540 1.549 158 K 0.953* 2.019 159 I 1.000** 2.071 167 K 0.997** 2.068 186 S 0.988* 2.058 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: B.KR.01.01KMJ3_9285.JQ268992_) Pr(w>1) post mean +- SE for w 31 V 0.996** 2.315 +- 0.393 33 K 0.864 2.109 +- 0.602 36 K 0.526 1.578 +- 0.712 37 G 1.000** 2.321 +- 0.384 39 V 1.000** 2.321 +- 0.383 47 T 0.948 2.241 +- 0.489 61 N 0.621 1.728 +- 0.722 92 K 0.866 2.113 +- 0.598 101 N 0.998** 2.318 +- 0.389 122 H 0.547 1.611 +- 0.715 127 H 0.997** 2.317 +- 0.389 158 K 0.886 2.143 +- 0.577 159 I 1.000** 2.321 +- 0.384 167 K 0.996** 2.316 +- 0.392 186 S 0.980* 2.291 +- 0.428
>C1 IKNRWQVIIVWQVDRMRIRTWKSLVKHHMYVSKKAKGWVYRHHYESTHPR ISSEVHIPLGNAKLVITIYWGLHTGERKWHLGQGVSIEWRKKSYNTQVNP NLADKLIHLHYFNCFSNSAIRHAILGHIVRPTCKYQAEHNTVGSLQYLAL TALITPKKIKPPLPSVKKLTENKWNKPQKTKGHRGSMNGHooooo >C2 MENRWQVMIVWQVDRMRIKTWISLVKHHMYISKKAKGWLYRHHYEYHHPR ISSEVHIPLGDDSKLVITTYWSLHTGERDWHLGQGVSVEWRKRRYSTQVD PNLADQLIHLYYFDCFSDSAIRNAIVGRLVRPRCECPTGHKKVGSLQYLA LTALIKPKRIKPPLPSVTKLTEDRWNKPQKTKGHRGNHTMNGHoo >C3 MENRWQVMIVWQVDRMRIRAWHSLVKHHMYVSKKANRWIYKHHYESTHPR ISSEVHIPLGEARLVVSTYWGLHTGERDWHLGHGVSIEWRERSYSTQIDP DLADQLIHLYYFDCFSESAIRNAILGRIVRPRCDYQAGHNKVGSLQYLAL TALVKPKKAKPPLPSVRKLTEDRWNKPQKIKGHRGSHTMNGHooo >C4 MENRWQVLIVWQVDRMRIRTWNSLVKHHMYISKRAKGWFYRHHYESRHPK VSSEVHIPLGEARLVIITYWSLQTGERDWHLGHGVSIEWRLRRYSTQIDP GLADQLIHMHYFDCFADSAIRRAILGHIVIPRCDYQAGHNKVGSLQYLAL TALIKPKKRKPPLPSVRKLAEDRWNKPQKTRDHRGNHTMNGHooo >C5 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYVSRRAKNWLYRHHYESRHPK ISSEVHIPLGEATLVIITYWGLQTGERDWHLGHGVSIEWRLKRYSTQIDP DLADQLIHLHYFDCFSESAIRKALLGQIVSPSCDYQAGHNKVGSLQYLAL TALIKPKKRKPPLPSVRKLVEDKWNKPQRTRGRRGNHTMNGHooo >C6 MENRWQVMIVWQVDRMRISTWKSLVKYHMHISKKAKGWLYRHHYENTHPR ISSEVHIPLGDARLVIITYWGLHTGEREWHLGQGVAIEWRKKRYSTQVDP GLADQLIHMYYFDCFSESAIRNAILGRLVNPRCEYRAGHNKVGSLQYLAL TALITPKKKKPPLPSVRKLTEDRWNKPQKTKGHRGNHTMNGHooo >C7 MENRWQVMIVWQVDRMRIRTWKSLVKHHMYISRKAKGWFYRHHYESNHPR ISSEVHIPLEDAKLVITTYWGLHTGEREWHLGQGVSIEWRKRRYSTQVDP DLADQLIHLYYFDCFSESAIRNAILGHRVSPRCEYQAGHNKVGSLQYLAL AALVTPKKIKPPLPSVKKLTEDRWNKSRKTKGHRGSHIVNGHooo >C8 MENRWQVMIVWQVDRMRINTWKSLVKHHMHISRKAKGWFYRHHYESTHPR ISSEVHIPLGDAELVVTNYWGLHTGERDWHLGQGVSIEWRKKRFSTQVDP SLADQLIHQYYFDCFSESAIRNAILGRIVRPRCEYQAGHNKVGSLQYLAL SVLLTPKRRKPPLPSVRKLTEDRWNKPQRIKGHRGNHTMNGHooo >C9 MENRWQVLIVWQVDRMRIRTWNSLVKHHMYRSGRASGWFYRHHYETRHPK VSSEVHIPLGDARLIVKTYWGLQTGERAWHLGHGVSIEWRLRKYSTQVDP GLADQLIHMYYFDCFTESAIRQAILGHIVIPRCDYQAGHNKVGSLQYLAL TALIKPKQIKPPLPSVRKLVEDRWNNPQKTRGRRGNHTMNGHooo >C10 MENRWQVMIVWQVDRMRIKTWNSIVKHHIYISKKAKNWSYRHHYESQNPK VSSEVHIPIGEAKLVIRTYWGLQTGEKDWQLGHGVSIEWRQKKYSTQIDP DLADQLIHLQYFDCFSDSAIRRAILGQVVRHRCEYPSGHNKVGSLQYLAL KALTTPKRIRPPLPSVKKLTEDRWNKPQQIRGHRENPTMNGHooo >C11 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYISGKAREWIYRHHYESTNPR TSSEVHIPLGDAKLVVTTYWGLHTGERDWHLGQGVSIEWRQRRYSTQVDP ELADQLIHMYYFDCFSETAIRQAILGRIVRPRCEFQAGHNKVGSLQYLAL AALIKPKKRKPPLPSVQKLTEDRWNKPRKTKGHRGNHTMNGHooo >C12 MENRWQVLIVWQVDRMRIKTWNSLVKHHMYISKRARGWFYRHHYESRHPK ASSEVHIPLGEAKLVIITYWGLQTGEREWHLGQGVSIEWRLRRYSTQVDP GLADQLIHMHYFDCFADSAIRKAILGRIVIPRCDYQAGHNKVGSLQYLAL TALIKPKKIKPPLPSVRKLAEDRWNNPQKIRGRRGNHTMNGHooo >C13 MENRWQVMIVWQVDRMRIRAWKSLVKHHIHISKKAKGWLYRHHYDCPHPK ISSEVHIPLGEARLVVRTYWGLHTGEREWHLGQGVSIEWRKRRYSTQVDP GLADQLIHLYYFDCFAESAIRKAILGQIVTPRCNYQAGHNKVGSLQYLAL TALIAQKKIKPPLPSVRKLTEDRWNKPQRTKGHRGSHTMNGHooo >C14 MENRWQVMIVWQVDRMRIRTWHSLVKHHIHISKKAKNWLYKHHFESRHPR VSSEVHIPLGDARLVVRTYWGLHTGEKDWHLGHGVSIEWRLKSYSTQIDP DWADQLIHLHYFDCFSDSAIRKALLGQIVRPNCEYPTGHNKVGSLQYLAL KALVTPTKTKPPLPSVRILAEDRWNKPQKTRGPRESHTMNGCooo >C15 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYISKKAKNWFYRHHYESQHPK VSSEVHIPLGEARLVIRTYWGLQTGEKDWHLGHGVSIEWRQGKYSTQLDP DLADQLIHIHYFDCFSDSAIRKAILGQVVRRRCEYPAGHNKVGSLQYLAL KALITPKRTRPPLPSVKKLTEDRWNKPQKTKGHRENPTMNGHooo >C16 MENRWQVMIVWQVDRMRIRTWHSLVKHHRYISKKTIRWSYKHHYESQNPK VSSEVYIPLGEARLVIKTYWGLQTGEKDWHLGHGVSIEWRQKNYCTQIDP DLADRLIHLQYFDCFSESAIRKAILGQVVRYRCEYPSGHNKVGSLQYLAL KALTTPKRIKPPLPSVKKLTEDRWNKPQRTKDHRGSHTMSGHooo >C17 MENRWQVMVVWQVDRMRIRTWKSLVKHHIYISKKAKGWYYRHHYESTHPK ISSEVHIPLGDAKLVVTTYWGLHTGERDWHLGQGVSIEWRKRRYSTQVDP EQADQLIHLYYFDCFSESAIRNSILGHRVSPRCEYQAGHNKVGSLQYLAL VALTTPKKIKPPLPSVKKLTEDRWNKPQKTKGHRGSHTMNGHooo >C18 MENRWQGMIVWQVDRMKIRTWNSLVKHHMYVSKRASGWFYRHHYESRHPK VSSEVHIPLGEARLVITTFWGLQTGEREWHLGHGVSIEWRLRRYSTQVDP GLADQLIHMHYFDCFADSAIRKAILGHRVSPRCDYQAGHNKVGSLQYLAL TALVKPKKRKPPLPSVRKLVEDRWNKPQKTRDRRGNHTMNGHooo >C19 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYVSKKAKGWFYRHHYESRHPK VSSEVHIPLGGAMLIIRTYWGLNTGERDWHLGHGVSIEWRQRRYSTQIDP DLADQLIHLHYFDCFSESAIRNAILGEIVRPRCEYQAGHNKVGSLQYLAL KAIVAPTKTKPPLPSVRKLAEDRWKGKESQKTRGRRGSRSMNGHo >C20 MENRWQVLIVWQVDRMRIRTWNSLVKHHMYISKRASGWFYRHHYDSRHPK VSSEVHIPLGEARLVIKTYWGLQTGEREWHLGNGVSIEWRLRRYSTQVDP GLADQLIHMHYFDCFADSAIRKAILGHIVIPRCDYQAGHNKVGSLQYLAL TALIKPKGRKPPLPSVRKLAEDRWNNPQKIRGRRGNHTMSGHooo >C21 MENRWQVLIVWQVDRMKIRTWNSLVKHHMYISRRAAGWFYRHHYESRNPR VSSEVHIPLGDARLVIKTYWGLQTGERAWHLGHGVSIEWRMKRYSTQVDP GLADQLIHMHYFDCFADSAIRKAILGHIVSPRCDYQAGHNKVGSLQYLAL TALVKPKKIKPPLPSVKKLVEDRWNKPQKTRGRRGNHTMNGRooo >C22 MENRWQVMIVWQVDRMRIKTWNSLVKHHMYISGKARGWCYRHHYECSHPK VSSEVHIPLGDARLVVKTYWGLHTGERDWHLGQGVSIEWRKRKYSTQVDP STADQLIHLHYFDCFSDSAIRNAILGRIVSPRCEYQAGHNKVGSLQYLAL AALITPKRRKPPLPSVTKLTEDRWNKPRKTKGHRGSHTMNGHooo >C23 MENRWQVLIVWQVDRMRIRTWNSLVKHHMYISKRTKEWVYRHHYDSRHPK VSSEVHIPLGDAKLVIKTYWGLQTGERDWHLGHGVSIEWRLRGYNTQVTP DLADQLIHMHYFDCFADSAIRKAILGHIVIPRCDYQAGHNKVGSLQYLAL TALIKPKKIKPPLPSVKKLVEDRWNNPQKTRGRRGSHTMNGHooo >C24 MENRWQVMIVWQVDRMRIRTWNSLVKHHKYISGKTKKWVYRHHYESINPR ISSEVLIPLGEDKLAITTYWGLHTGERDWHLGQGVSIEWRKGKYSTQVDP DLADQLIHLYYFDCFSESAIRNALLGHIARPRCEYQAGHNKVGSLQYLAL AALVRPKRTKPPLPSVRKLTEDRWNKPQKTKGHRGNHTMNGHooo >C25 MENRWQVLIVWQVDRMRIRTWNSLVKHHMYVSRRANKWFYRHHVESRHPK VSSEVHIPLGDARLIVKTYWGLQTGEREWHLGHGVSIEWRLKRYSTQVDP DLADQLIHVHYFDCFADSAIRKAILGHIVIPRCDYQAGHNKVGSLQFLAL TALIKPKRRKPPLPSVKKLTEDRWNNPQKTRDRRGNHTMNGHooo >C26 MENRWQVMIVWQVDRMRIRTWKSLVKYHMYRSGKAKKWFYRHHYESNHPR ISSEVHIPLGEAKLVVTTYWGLHTGERDWHLGQGVSIEWRKRRYSTQVDP DLADHLIHLYYFDCFSDSAIRQAILGYRVSPSCEYQAGHNKVGSLQYLAL TALITPKKIKPPLPSVKKLTEDRWNKPQKTMGHRGSHTMHGHooo >C27 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYVSKKAKNWWYRHHYESRHPK VSSETHIPLGEARLVITTYWGLQTGERSWHLGHGVSIEWRLRKYSTQVDP GLADQLIHMHYFDCFAESAIRNAILGHIVSPRCDYQAGHNKVGSLQYLAL TALIKPKKRKPPLPSVRKLAEDRWNKPQTTRGPRESHTRNGCooo >C28 MENRWQVMIVWQVDRMRINTWKSLVKYHMHISKKAKRWVYKHHFESRNPR VSSEVHIPLEEAKLVITTYWGLHTGERDWHLGQGVSIEWRQGKYSTQIDP GLADQLIHIYYFDCFTDSAIREATLGHRISPRCNYQAGHNKVGSLQYLAL TALIAPKKTKPPLPSVQKLVEDRWNKPQKTKGHRGSHTMYGHooo >C29 MENRWQVMIVWQVDRMRIRTWKSLVKHHMYISKKAKGWFYRHHYESNHPK KSSEVHIPLGDAKLVVTTYWGLHTGERDWHLGQGVSIEWRKRRYSTQVDP GTADQLIHLYYFDCFSESAIRSAIVGRLVIPKCEYQAGHPKVESLQYLAL AALATPKKIKPPLPSVRKLTEDRWNKPQKIKGHRGSHTMHGHooo >C30 MENRWQVMIVWQVDRMRIRTWHSLVKHHMYISRKTKHWSYRHHYEIQNPK VSSEVHIPLGEAKLVVKTYWGLQTGERDWQLGHGVSIEWWQKNYNTQIDP DLADQLIHLQYFDCFSESAIRRAILGQVVISRCEYPSGHNKVGSLQYLAL KALTTPKRTKPPLPSVKKLTEDRWNKPQKIKGHRENPTMNGHooo >C31 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYVSKKAKNWFYRHHYESRHPR VSSEVHIPLGDARLVVRTYWGLHTGEKDWQLGHGVSIEWRLKKYSTQIDP DLADQLIHLHYFNCFSDSAIRKAILGQVVSPSCEYQAGHNKVGSLQYLAL KALATPTKARPPLPSVRKLTEDRWNKPQKTRGPQGSHTINGCooo >C32 MENRWQVMIVWQVDRKRIRTWNSLVKYHMYISKKAGRWFYRHHYESRHPK VSSEVHIPLGNAELVVKTYWGLHTGERDWHLGHGVSIEWRQKRYSTQIDP DLADQLIHLHYFDCFSESAIRKTILGQVVRPRCEYQAGHNKVGSLQYLAL KALVTPVKTKPPLPSVRKLTEDRWNKPQKTRGHRGNRSMNGHooo >C33 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYVSKKAKNWFYRHHYESQHPK VSSEVHIPLGEAKLVIRTYWGLQTGEKDWQLGHGVSIEWRQGRYNTQIDP DLADQLIHLQYFDCFSDSAIRRAILGQVVRRRCEYPSGHNKVGSLQYLAL RALTTPKRIKPPLPSVRKLTEDRWNKPQKTRGHRENPTMNGHooo >C34 MENRWQVMIVWQVDRMRIRTWKSLVKHHMYISRKAKGWFYRHHYESPHPR ISSEVHIPLGEARLVITTYWGLHTGERDWHLGQGVSIEWRKRRYNTQVTP DLADQLIHLYYFDCFSEAAIRSAILGHIVSPRCEYQAGHNKVGSLQYLAL AALVTPKKIKPPLPSVTKLTEDRWNKPQKTKGHRGSHTMNGHooo >C35 MENRWQAMIVWQVDRMRIRTWKSLVKHHMYISGKAKRWFYRHHYESTHPR ISSEVHIPLGEARLVIITYWGLHTGERDWHLGQGVSIEWRKRRYRTQVTP DLADQLIHLYYFDCFSESAIRNTILGHRVSPRCEYQAGHNKVGSLQYLAL AALITPKKTKPPLPSVTKLTEDRWNEPQKTKGRRESHTMNGHooo >C36 MENRWQVLVVRQVDRMKIRTWNSLVKHHMYISRRASGWFYRHHYESRHPK VSSEVHIPLGDARLVIKTYWGPLTGERAWHLGHGVSIEWRLRRYSTQVDP GLADQLIHMHYFDCFADSAIRKAILGQVVIHRCDYQAGHNKVGSLQYLAL TALIKPKKRKPPLPSVRKLVEDRWNKPQKTRGRRGNHTMNGHooo >C37 MENRWQVMIVWQVDRMRISKWKSLVKYHMYISKKAQGWSYRHHYESNNPR ISSEVHIPLGDAKLVVATYWGLHTGEREWHLGQGVSIEWRKRKYNTQVDP GLADQLIHLYYFDCFSESAIRNAILGYRVSPRCEYQAGHNKVGSLQYLAL AALITPKRRKPPLPSVRKLTEDRWNEPRKTKGHRGSHTMNGHooo >C38 MANRWQVMIVWQVDRMRIRTWKSLVKHHMYISKKAKGWFYRHHYESTHPK ISSEVHIPLGDAKLVIITYWGLHTGERDWHLGQGVSIEWRKRKYSTQIDP NLADQLIHLHYFDCFSESAIRKAILGHRVSPSCEYQAGHNKVGSLQYLAL ATLITPKKIKPPLPSVAKLTEDRWNKPQKTKDHRGSHTMTGQooo >C39 MENRWQVMIVWQVDRMRIKTWNSLVKHHIYISKKARGWVYRHHYESTHPK ISSEVHIPLEEARLVVTTYWGLHAGERDWHLGQGVSIEWREKKYRTQVDP DLADQLIHQYYFDCFSESAIRNAIVGCIVRPRCEYQAGHNKVGSLQYLAL TALIAPKKTKPPLPSVKKLTEDRWNKPRKTKGHRGSHTMNGHooo >C40 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYISKKAKDWFYRHHFDCKHPK VSSEVHIPLGDARLVIKTYWGLHPGEKDWQLGHGVSIEWKLKRYSTQIDP DLADQLIHLHYFNCFSDSAIRKAILGQVVSPSCEYQAGHNKVGSLQYLAL KALVTPTRPRPPLPSVRKLAEDRWNKPQKTRGPRGSHTMNGHooo >C41 MENRWQVMIVWQVDRMRINAWKSLVKYHMHVSKKAKKWAYRHHYDSTHPK ISSEVHIPLGDAKLVVTTYWGLHTGERDWHLGQGVSMEWRKKRYSTQVDP DLADQLIHLYYFNCFSESAIRNALLGHKVSPSCEYRAGHNKVGSLQYLAL TALITPKGTKPPLPSVKKLTEDRWNKPQKTKDHQGSHTMHGHooo >C42 MENRWQVMIVWQVDRMRIRTWKSLVKHHMYISKKAKGWVYKHHYENTHPR ISSEVHIPLGEAELVVTTYWGLHTGERDWHLGQGVSIEWRTRGYSTQVEP DLADQLIHLYHFDCFSESAIRNALLGHRVSPRCEYQAGHNKVGSLQYLAL AALKTPKRIKPPLPSVAKLTEDRWNKPRKTKGHRGSHTMNGHooo >C43 MENRWQVMIVWQVDRMRIKTWKSLVKHHMYVSKKAKGWSYKHHYDSTHPK ISSEVHIPLGDAELVITTYWGLHTGERDWHLGQGVSIEWRRKRYSTQVEP GLADRLIHLHYFDCFSESAIRNAILGRVVSPSCEYLAGHNKVGSLQYLAL AALVTPKRRKPPLPSVAKLTEDRWNKPQRTKGHRGNQTMSGHooo >C44 MENRWQVMIVWQVDRMRIRAWKSLVKHHMYISGKARGWVYKHHYESLHPR ISSEVHIPLGDAKLVITTYWGLHTGERDWHLGQGVSIEWRKKRYSTQVDP NLADQLIHLYYFDCFSESAIRKAILGHIVSPRCEYQAGHNQVGSLQYLAL TALITPRQTKPPLPSVAKLTEDRWNKPQKTKGHKGSHTMNGHooo >C45 MENRWQVMIVWQVDRMKIRAWNSLVKHHMYVSKKARGWLYRHHYESVHPK ISSEVHIPLGDAKLVITTYWGLHTGERDWHLGHGVSIEWRKRRYSTQIDP DLADQLIHLYYFDCFSESAIRKAILGEVVSHRCEYQAGHNKVGSLQYLAL TALITPKKRKPPLPSVKKLTEDRWNKSRKTKGHRGSLTMNGHooo >C46 MENRWQVMIVWQVDRMRIRTWHSLVKHHIHISKKAKKWVYKHHYESTNPK ISSEVHIPLGDAKLVVKTYWGLHTGEQDWHLGHGVSIEWREKRYNTQVDP DLADQLIHLYYFDCFSDSAIRKAILGHIVSPRCDYPSGHNKVGSLQYLAL AALTTPKRRKPPLPSVAKLAEDRWNKPQKTKGHRGNHTINGHooo >C47 MENRWQVMIVWQVDRIRINTWKSLVKYHMHISKKAKRWLYRHHFESRHPR ISSEVHIPLEAARLVITTYWGLHTGERDWHLGQGVSIEWRQERYRTQVDP DLADQLIHIYYFNCFSESAIRNAILGHIVSPRCDYQAGHNKVESLQYLAL AALIKPKRKKPPLPSVKKLTENKWNKPQETKGHKGSRTMNGHooo >C48 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYVSKKAKNWFYRHHFECRQPR VSSEVHIPLGDAKLVVRTYWGLHTGEKDWQLGHGVSIEWRLRRYSTQIDP DLADQLIHQHYFDCFSDSAIRKAILGQVVSPRCEYQAGHNKVGSLQYLAL KALARPIRRKPPLPSVRILAEDRWNKPQKTKGPRENHTMSGCWNC >C49 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYISGKAKKWIYKHHYESTNPR ISSEVHIPLGDAKLVVTTYWGLHTGERDWHLGQGVSIEWRERRYSTQVDP DLADQLIHIYYFDCFSESAIGNAILGHRVRPRCDYQAGHNKVGSLQYLAL TALIKPKKTKPPLPSVRKLTEDKWNKPQKTKGHRGSHTMSGHooo >C50 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYVSKKAKGWFYRHHYESRHPR ISSEVHIPLGDARLIVRTYWGLHTGEKDWHLGHGVSIEWRLKRYSTQVDP DQADQLIHLHYFDCFSDSAIRKAILGQVVSPSCTYQAGHSKVGSLQYLAL KALVTPKKIKPPLPSVRILAEDRWNKPQKTRGHRGSHTMNGCooo 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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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: [483600] 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: [483600] 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: [483600] 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: [483600] 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: [483600] 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: [483600] 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: [483600] 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: [483600] 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: [483600] Library Relaxation: Multi_proc [8] Relaxation Summary: [483600]--->[482560] 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= 31.949 Mb, Max= 43.920 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 IKNRWQVIIVWQVDRMRIRTWKSLVKHHMYVSKKAKGWVYRHHYESTHPR C2 MENRWQVMIVWQVDRMRIKTWISLVKHHMYISKKAKGWLYRHHYEYHHPR C3 MENRWQVMIVWQVDRMRIRAWHSLVKHHMYVSKKANRWIYKHHYESTHPR C4 MENRWQVLIVWQVDRMRIRTWNSLVKHHMYISKRAKGWFYRHHYESRHPK C5 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYVSRRAKNWLYRHHYESRHPK C6 MENRWQVMIVWQVDRMRISTWKSLVKYHMHISKKAKGWLYRHHYENTHPR C7 MENRWQVMIVWQVDRMRIRTWKSLVKHHMYISRKAKGWFYRHHYESNHPR C8 MENRWQVMIVWQVDRMRINTWKSLVKHHMHISRKAKGWFYRHHYESTHPR C9 MENRWQVLIVWQVDRMRIRTWNSLVKHHMYRSGRASGWFYRHHYETRHPK C10 MENRWQVMIVWQVDRMRIKTWNSIVKHHIYISKKAKNWSYRHHYESQNPK C11 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYISGKAREWIYRHHYESTNPR C12 MENRWQVLIVWQVDRMRIKTWNSLVKHHMYISKRARGWFYRHHYESRHPK C13 MENRWQVMIVWQVDRMRIRAWKSLVKHHIHISKKAKGWLYRHHYDCPHPK C14 MENRWQVMIVWQVDRMRIRTWHSLVKHHIHISKKAKNWLYKHHFESRHPR C15 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYISKKAKNWFYRHHYESQHPK C16 MENRWQVMIVWQVDRMRIRTWHSLVKHHRYISKKTIRWSYKHHYESQNPK C17 MENRWQVMVVWQVDRMRIRTWKSLVKHHIYISKKAKGWYYRHHYESTHPK C18 MENRWQGMIVWQVDRMKIRTWNSLVKHHMYVSKRASGWFYRHHYESRHPK C19 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYVSKKAKGWFYRHHYESRHPK C20 MENRWQVLIVWQVDRMRIRTWNSLVKHHMYISKRASGWFYRHHYDSRHPK C21 MENRWQVLIVWQVDRMKIRTWNSLVKHHMYISRRAAGWFYRHHYESRNPR C22 MENRWQVMIVWQVDRMRIKTWNSLVKHHMYISGKARGWCYRHHYECSHPK C23 MENRWQVLIVWQVDRMRIRTWNSLVKHHMYISKRTKEWVYRHHYDSRHPK C24 MENRWQVMIVWQVDRMRIRTWNSLVKHHKYISGKTKKWVYRHHYESINPR C25 MENRWQVLIVWQVDRMRIRTWNSLVKHHMYVSRRANKWFYRHHVESRHPK C26 MENRWQVMIVWQVDRMRIRTWKSLVKYHMYRSGKAKKWFYRHHYESNHPR C27 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYVSKKAKNWWYRHHYESRHPK C28 MENRWQVMIVWQVDRMRINTWKSLVKYHMHISKKAKRWVYKHHFESRNPR C29 MENRWQVMIVWQVDRMRIRTWKSLVKHHMYISKKAKGWFYRHHYESNHPK C30 MENRWQVMIVWQVDRMRIRTWHSLVKHHMYISRKTKHWSYRHHYEIQNPK C31 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYVSKKAKNWFYRHHYESRHPR C32 MENRWQVMIVWQVDRKRIRTWNSLVKYHMYISKKAGRWFYRHHYESRHPK C33 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYVSKKAKNWFYRHHYESQHPK C34 MENRWQVMIVWQVDRMRIRTWKSLVKHHMYISRKAKGWFYRHHYESPHPR C35 MENRWQAMIVWQVDRMRIRTWKSLVKHHMYISGKAKRWFYRHHYESTHPR C36 MENRWQVLVVRQVDRMKIRTWNSLVKHHMYISRRASGWFYRHHYESRHPK C37 MENRWQVMIVWQVDRMRISKWKSLVKYHMYISKKAQGWSYRHHYESNNPR C38 MANRWQVMIVWQVDRMRIRTWKSLVKHHMYISKKAKGWFYRHHYESTHPK C39 MENRWQVMIVWQVDRMRIKTWNSLVKHHIYISKKARGWVYRHHYESTHPK C40 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYISKKAKDWFYRHHFDCKHPK C41 MENRWQVMIVWQVDRMRINAWKSLVKYHMHVSKKAKKWAYRHHYDSTHPK C42 MENRWQVMIVWQVDRMRIRTWKSLVKHHMYISKKAKGWVYKHHYENTHPR C43 MENRWQVMIVWQVDRMRIKTWKSLVKHHMYVSKKAKGWSYKHHYDSTHPK C44 MENRWQVMIVWQVDRMRIRAWKSLVKHHMYISGKARGWVYKHHYESLHPR C45 MENRWQVMIVWQVDRMKIRAWNSLVKHHMYVSKKARGWLYRHHYESVHPK C46 MENRWQVMIVWQVDRMRIRTWHSLVKHHIHISKKAKKWVYKHHYESTNPK C47 MENRWQVMIVWQVDRIRINTWKSLVKYHMHISKKAKRWLYRHHFESRHPR C48 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYVSKKAKNWFYRHHFECRQPR C49 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYISGKAKKWIYKHHYESTNPR C50 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYVSKKAKGWFYRHHYESRHPR : **** ::* **** :* * *:**:* : * :: * *:** : :*: C1 ISSEVHIPLGNAKLVITIYWGLHTGERKWHLGQGVSIEWRKKSYNTQVNP C2 ISSEVHIPLGDSKLVITTYWSLHTGERDWHLGQGVSVEWRKRRYSTQVDP C3 ISSEVHIPLGEARLVVSTYWGLHTGERDWHLGHGVSIEWRERSYSTQIDP C4 VSSEVHIPLGEARLVIITYWSLQTGERDWHLGHGVSIEWRLRRYSTQIDP C5 ISSEVHIPLGEATLVIITYWGLQTGERDWHLGHGVSIEWRLKRYSTQIDP C6 ISSEVHIPLGDARLVIITYWGLHTGEREWHLGQGVAIEWRKKRYSTQVDP C7 ISSEVHIPLEDAKLVITTYWGLHTGEREWHLGQGVSIEWRKRRYSTQVDP C8 ISSEVHIPLGDAELVVTNYWGLHTGERDWHLGQGVSIEWRKKRFSTQVDP C9 VSSEVHIPLGDARLIVKTYWGLQTGERAWHLGHGVSIEWRLRKYSTQVDP C10 VSSEVHIPIGEAKLVIRTYWGLQTGEKDWQLGHGVSIEWRQKKYSTQIDP C11 TSSEVHIPLGDAKLVVTTYWGLHTGERDWHLGQGVSIEWRQRRYSTQVDP C12 ASSEVHIPLGEAKLVIITYWGLQTGEREWHLGQGVSIEWRLRRYSTQVDP C13 ISSEVHIPLGEARLVVRTYWGLHTGEREWHLGQGVSIEWRKRRYSTQVDP C14 VSSEVHIPLGDARLVVRTYWGLHTGEKDWHLGHGVSIEWRLKSYSTQIDP C15 VSSEVHIPLGEARLVIRTYWGLQTGEKDWHLGHGVSIEWRQGKYSTQLDP C16 VSSEVYIPLGEARLVIKTYWGLQTGEKDWHLGHGVSIEWRQKNYCTQIDP C17 ISSEVHIPLGDAKLVVTTYWGLHTGERDWHLGQGVSIEWRKRRYSTQVDP C18 VSSEVHIPLGEARLVITTFWGLQTGEREWHLGHGVSIEWRLRRYSTQVDP C19 VSSEVHIPLGGAMLIIRTYWGLNTGERDWHLGHGVSIEWRQRRYSTQIDP C20 VSSEVHIPLGEARLVIKTYWGLQTGEREWHLGNGVSIEWRLRRYSTQVDP C21 VSSEVHIPLGDARLVIKTYWGLQTGERAWHLGHGVSIEWRMKRYSTQVDP C22 VSSEVHIPLGDARLVVKTYWGLHTGERDWHLGQGVSIEWRKRKYSTQVDP C23 VSSEVHIPLGDAKLVIKTYWGLQTGERDWHLGHGVSIEWRLRGYNTQVTP C24 ISSEVLIPLGEDKLAITTYWGLHTGERDWHLGQGVSIEWRKGKYSTQVDP C25 VSSEVHIPLGDARLIVKTYWGLQTGEREWHLGHGVSIEWRLKRYSTQVDP C26 ISSEVHIPLGEAKLVVTTYWGLHTGERDWHLGQGVSIEWRKRRYSTQVDP C27 VSSETHIPLGEARLVITTYWGLQTGERSWHLGHGVSIEWRLRKYSTQVDP C28 VSSEVHIPLEEAKLVITTYWGLHTGERDWHLGQGVSIEWRQGKYSTQIDP C29 KSSEVHIPLGDAKLVVTTYWGLHTGERDWHLGQGVSIEWRKRRYSTQVDP C30 VSSEVHIPLGEAKLVVKTYWGLQTGERDWQLGHGVSIEWWQKNYNTQIDP C31 VSSEVHIPLGDARLVVRTYWGLHTGEKDWQLGHGVSIEWRLKKYSTQIDP C32 VSSEVHIPLGNAELVVKTYWGLHTGERDWHLGHGVSIEWRQKRYSTQIDP C33 VSSEVHIPLGEAKLVIRTYWGLQTGEKDWQLGHGVSIEWRQGRYNTQIDP C34 ISSEVHIPLGEARLVITTYWGLHTGERDWHLGQGVSIEWRKRRYNTQVTP C35 ISSEVHIPLGEARLVIITYWGLHTGERDWHLGQGVSIEWRKRRYRTQVTP C36 VSSEVHIPLGDARLVIKTYWGPLTGERAWHLGHGVSIEWRLRRYSTQVDP C37 ISSEVHIPLGDAKLVVATYWGLHTGEREWHLGQGVSIEWRKRKYNTQVDP C38 ISSEVHIPLGDAKLVIITYWGLHTGERDWHLGQGVSIEWRKRKYSTQIDP C39 ISSEVHIPLEEARLVVTTYWGLHAGERDWHLGQGVSIEWREKKYRTQVDP C40 VSSEVHIPLGDARLVIKTYWGLHPGEKDWQLGHGVSIEWKLKRYSTQIDP C41 ISSEVHIPLGDAKLVVTTYWGLHTGERDWHLGQGVSMEWRKKRYSTQVDP C42 ISSEVHIPLGEAELVVTTYWGLHTGERDWHLGQGVSIEWRTRGYSTQVEP C43 ISSEVHIPLGDAELVITTYWGLHTGERDWHLGQGVSIEWRRKRYSTQVEP C44 ISSEVHIPLGDAKLVITTYWGLHTGERDWHLGQGVSIEWRKKRYSTQVDP C45 ISSEVHIPLGDAKLVITTYWGLHTGERDWHLGHGVSIEWRKRRYSTQIDP C46 ISSEVHIPLGDAKLVVKTYWGLHTGEQDWHLGHGVSIEWREKRYNTQVDP C47 ISSEVHIPLEAARLVITTYWGLHTGERDWHLGQGVSIEWRQERYRTQVDP C48 VSSEVHIPLGDAKLVVRTYWGLHTGEKDWQLGHGVSIEWRLRRYSTQIDP C49 ISSEVHIPLGDAKLVVTTYWGLHTGERDWHLGQGVSIEWRERRYSTQVDP C50 ISSEVHIPLGDARLIVRTYWGLHTGEKDWHLGHGVSIEWRLKRYSTQVDP ***. **: * : :*. .**: *:**:**::** : **: * C1 NLADKLIHLHYFNCFSNSAIRHAILGHIVRPTCKYQAEHNTVGSLQYLAL C2 NLADQLIHLYYFDCFSDSAIRNAIVGRLVRPRCECPTGHKKVGSLQYLAL C3 DLADQLIHLYYFDCFSESAIRNAILGRIVRPRCDYQAGHNKVGSLQYLAL C4 GLADQLIHMHYFDCFADSAIRRAILGHIVIPRCDYQAGHNKVGSLQYLAL C5 DLADQLIHLHYFDCFSESAIRKALLGQIVSPSCDYQAGHNKVGSLQYLAL C6 GLADQLIHMYYFDCFSESAIRNAILGRLVNPRCEYRAGHNKVGSLQYLAL C7 DLADQLIHLYYFDCFSESAIRNAILGHRVSPRCEYQAGHNKVGSLQYLAL C8 SLADQLIHQYYFDCFSESAIRNAILGRIVRPRCEYQAGHNKVGSLQYLAL C9 GLADQLIHMYYFDCFTESAIRQAILGHIVIPRCDYQAGHNKVGSLQYLAL C10 DLADQLIHLQYFDCFSDSAIRRAILGQVVRHRCEYPSGHNKVGSLQYLAL C11 ELADQLIHMYYFDCFSETAIRQAILGRIVRPRCEFQAGHNKVGSLQYLAL C12 GLADQLIHMHYFDCFADSAIRKAILGRIVIPRCDYQAGHNKVGSLQYLAL C13 GLADQLIHLYYFDCFAESAIRKAILGQIVTPRCNYQAGHNKVGSLQYLAL C14 DWADQLIHLHYFDCFSDSAIRKALLGQIVRPNCEYPTGHNKVGSLQYLAL C15 DLADQLIHIHYFDCFSDSAIRKAILGQVVRRRCEYPAGHNKVGSLQYLAL C16 DLADRLIHLQYFDCFSESAIRKAILGQVVRYRCEYPSGHNKVGSLQYLAL C17 EQADQLIHLYYFDCFSESAIRNSILGHRVSPRCEYQAGHNKVGSLQYLAL C18 GLADQLIHMHYFDCFADSAIRKAILGHRVSPRCDYQAGHNKVGSLQYLAL C19 DLADQLIHLHYFDCFSESAIRNAILGEIVRPRCEYQAGHNKVGSLQYLAL C20 GLADQLIHMHYFDCFADSAIRKAILGHIVIPRCDYQAGHNKVGSLQYLAL C21 GLADQLIHMHYFDCFADSAIRKAILGHIVSPRCDYQAGHNKVGSLQYLAL C22 STADQLIHLHYFDCFSDSAIRNAILGRIVSPRCEYQAGHNKVGSLQYLAL C23 DLADQLIHMHYFDCFADSAIRKAILGHIVIPRCDYQAGHNKVGSLQYLAL C24 DLADQLIHLYYFDCFSESAIRNALLGHIARPRCEYQAGHNKVGSLQYLAL C25 DLADQLIHVHYFDCFADSAIRKAILGHIVIPRCDYQAGHNKVGSLQFLAL C26 DLADHLIHLYYFDCFSDSAIRQAILGYRVSPSCEYQAGHNKVGSLQYLAL C27 GLADQLIHMHYFDCFAESAIRNAILGHIVSPRCDYQAGHNKVGSLQYLAL C28 GLADQLIHIYYFDCFTDSAIREATLGHRISPRCNYQAGHNKVGSLQYLAL C29 GTADQLIHLYYFDCFSESAIRSAIVGRLVIPKCEYQAGHPKVESLQYLAL C30 DLADQLIHLQYFDCFSESAIRRAILGQVVISRCEYPSGHNKVGSLQYLAL C31 DLADQLIHLHYFNCFSDSAIRKAILGQVVSPSCEYQAGHNKVGSLQYLAL C32 DLADQLIHLHYFDCFSESAIRKTILGQVVRPRCEYQAGHNKVGSLQYLAL C33 DLADQLIHLQYFDCFSDSAIRRAILGQVVRRRCEYPSGHNKVGSLQYLAL C34 DLADQLIHLYYFDCFSEAAIRSAILGHIVSPRCEYQAGHNKVGSLQYLAL C35 DLADQLIHLYYFDCFSESAIRNTILGHRVSPRCEYQAGHNKVGSLQYLAL C36 GLADQLIHMHYFDCFADSAIRKAILGQVVIHRCDYQAGHNKVGSLQYLAL C37 GLADQLIHLYYFDCFSESAIRNAILGYRVSPRCEYQAGHNKVGSLQYLAL C38 NLADQLIHLHYFDCFSESAIRKAILGHRVSPSCEYQAGHNKVGSLQYLAL C39 DLADQLIHQYYFDCFSESAIRNAIVGCIVRPRCEYQAGHNKVGSLQYLAL C40 DLADQLIHLHYFNCFSDSAIRKAILGQVVSPSCEYQAGHNKVGSLQYLAL C41 DLADQLIHLYYFNCFSESAIRNALLGHKVSPSCEYRAGHNKVGSLQYLAL C42 DLADQLIHLYHFDCFSESAIRNALLGHRVSPRCEYQAGHNKVGSLQYLAL C43 GLADRLIHLHYFDCFSESAIRNAILGRVVSPSCEYLAGHNKVGSLQYLAL C44 NLADQLIHLYYFDCFSESAIRKAILGHIVSPRCEYQAGHNQVGSLQYLAL C45 DLADQLIHLYYFDCFSESAIRKAILGEVVSHRCEYQAGHNKVGSLQYLAL C46 DLADQLIHLYYFDCFSDSAIRKAILGHIVSPRCDYPSGHNKVGSLQYLAL C47 DLADQLIHIYYFNCFSESAIRNAILGHIVSPRCDYQAGHNKVESLQYLAL C48 DLADQLIHQHYFDCFSDSAIRKAILGQVVSPRCEYQAGHNKVGSLQYLAL C49 DLADQLIHIYYFDCFSESAIGNAILGHRVRPRCDYQAGHNKVGSLQYLAL C50 DQADQLIHLHYFDCFSDSAIRKAILGQVVSPSCTYQAGHSKVGSLQYLAL **:*** :*:**:::** : :* * : * * ***:*** C1 TALITPKKIKPPLPSVKKLTENKWNKPQKTKGHRGSMNGHo C2 TALIKPKRIKPPLPSVTKLTEDRWNKPQKTKGHRGNMNGHo C3 TALVKPKKAKPPLPSVRKLTEDRWNKPQKIKGHRGSMNGHo C4 TALIKPKKRKPPLPSVRKLAEDRWNKPQKTRDHRGNMNGHo C5 TALIKPKKRKPPLPSVRKLVEDKWNKPQRTRGRRGNMNGHo C6 TALITPKKKKPPLPSVRKLTEDRWNKPQKTKGHRGNMNGHo C7 AALVTPKKIKPPLPSVKKLTEDRWNKSRKTKGHRGSVNGHo C8 SVLLTPKRRKPPLPSVRKLTEDRWNKPQRIKGHRGNMNGHo C9 TALIKPKQIKPPLPSVRKLVEDRWNNPQKTRGRRGNMNGHo C10 KALTTPKRIRPPLPSVKKLTEDRWNKPQQIRGHRENMNGHo C11 AALIKPKKRKPPLPSVQKLTEDRWNKPRKTKGHRGNMNGHo C12 TALIKPKKIKPPLPSVRKLAEDRWNNPQKIRGRRGNMNGHo C13 TALIAQKKIKPPLPSVRKLTEDRWNKPQRTKGHRGSMNGHo C14 KALVTPTKTKPPLPSVRILAEDRWNKPQKTRGPRESMNGCo C15 KALITPKRTRPPLPSVKKLTEDRWNKPQKTKGHRENMNGHo C16 KALTTPKRIKPPLPSVKKLTEDRWNKPQRTKDHRGSMSGHo C17 VALTTPKKIKPPLPSVKKLTEDRWNKPQKTKGHRGSMNGHo C18 TALVKPKKRKPPLPSVRKLVEDRWNKPQKTRDRRGNMNGHo C19 KAIVAPTKTKPPLPSVRKLAEDRWKGSQKTRGRRGSMNGHo C20 TALIKPKGRKPPLPSVRKLAEDRWNNPQKIRGRRGNMSGHo C21 TALVKPKKIKPPLPSVKKLVEDRWNKPQKTRGRRGNMNGRo C22 AALITPKRRKPPLPSVTKLTEDRWNKPRKTKGHRGSMNGHo C23 TALIKPKKIKPPLPSVKKLVEDRWNNPQKTRGRRGSMNGHo C24 AALVRPKRTKPPLPSVRKLTEDRWNKPQKTKGHRGNMNGHo C25 TALIKPKRRKPPLPSVKKLTEDRWNNPQKTRDRRGNMNGHo C26 TALITPKKIKPPLPSVKKLTEDRWNKPQKTMGHRGSMHGHo C27 TALIKPKKRKPPLPSVRKLAEDRWNKPQTTRGPRESRNGCo C28 TALIAPKKTKPPLPSVQKLVEDRWNKPQKTKGHRGSMYGHo C29 AALATPKKIKPPLPSVRKLTEDRWNKPQKIKGHRGSMHGHo C30 KALTTPKRTKPPLPSVKKLTEDRWNKPQKIKGHRENMNGHo C31 KALATPTKARPPLPSVRKLTEDRWNKPQKTRGPQGSINGCo C32 KALVTPVKTKPPLPSVRKLTEDRWNKPQKTRGHRGNMNGHo C33 RALTTPKRIKPPLPSVRKLTEDRWNKPQKTRGHRENMNGHo C34 AALVTPKKIKPPLPSVTKLTEDRWNKPQKTKGHRGSMNGHo C35 AALITPKKTKPPLPSVTKLTEDRWNEPQKTKGRRESMNGHo C36 TALIKPKKRKPPLPSVRKLVEDRWNKPQKTRGRRGNMNGHo C37 AALITPKRRKPPLPSVRKLTEDRWNEPRKTKGHRGSMNGHo C38 ATLITPKKIKPPLPSVAKLTEDRWNKPQKTKDHRGSMTGQo C39 TALIAPKKTKPPLPSVKKLTEDRWNKPRKTKGHRGSMNGHo C40 KALVTPTRPRPPLPSVRKLAEDRWNKPQKTRGPRGSMNGHo C41 TALITPKGTKPPLPSVKKLTEDRWNKPQKTKDHQGSMHGHo C42 AALKTPKRIKPPLPSVAKLTEDRWNKPRKTKGHRGSMNGHo C43 AALVTPKRRKPPLPSVAKLTEDRWNKPQRTKGHRGNMSGHo C44 TALITPRQTKPPLPSVAKLTEDRWNKPQKTKGHKGSMNGHo C45 TALITPKKRKPPLPSVKKLTEDRWNKSRKTKGHRGSMNGHo C46 AALTTPKRRKPPLPSVAKLAEDRWNKPQKTKGHRGNINGHo C47 AALIKPKRKKPPLPSVKKLTENKWNKPQETKGHKGSMNGHo C48 KALARPIRRKPPLPSVRILAEDRWNKPQKTKGPRENMSGCW C49 TALIKPKKTKPPLPSVRKLTEDKWNKPQKTKGHRGSMSGHo C50 KALVTPKKIKPPLPSVRILAEDRWNKPQKTRGHRGSMNGCo .: :****** *.*::*: .: . : . * 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 78.65 C1 C2 78.65 TOP 1 0 78.65 C2 C1 78.65 BOT 0 2 79.79 C1 C3 79.79 TOP 2 0 79.79 C3 C1 79.79 BOT 0 3 76.68 C1 C4 76.68 TOP 3 0 76.68 C4 C1 76.68 BOT 0 4 77.72 C1 C5 77.72 TOP 4 0 77.72 C5 C1 77.72 BOT 0 5 80.31 C1 C6 80.31 TOP 5 0 80.31 C6 C1 80.31 BOT 0 6 82.38 C1 C7 82.38 TOP 6 0 82.38 C7 C1 82.38 BOT 0 7 79.27 C1 C8 79.27 TOP 7 0 79.27 C8 C1 79.27 BOT 0 8 74.09 C1 C9 74.09 TOP 8 0 74.09 C9 C1 74.09 BOT 0 9 72.02 C1 C10 72.02 TOP 9 0 72.02 C10 C1 72.02 BOT 0 10 78.24 C1 C11 78.24 TOP 10 0 78.24 C11 C1 78.24 BOT 0 11 76.68 C1 C12 76.68 TOP 11 0 76.68 C12 C1 76.68 BOT 0 12 78.76 C1 C13 78.76 TOP 12 0 78.76 C13 C1 78.76 BOT 0 13 73.06 C1 C14 73.06 TOP 13 0 73.06 C14 C1 73.06 BOT 0 14 76.17 C1 C15 76.17 TOP 14 0 76.17 C15 C1 76.17 BOT 0 15 73.06 C1 C16 73.06 TOP 15 0 73.06 C16 C1 73.06 BOT 0 16 82.38 C1 C17 82.38 TOP 16 0 82.38 C17 C1 82.38 BOT 0 17 75.13 C1 C18 75.13 TOP 17 0 75.13 C18 C1 75.13 BOT 0 18 75.39 C1 C19 75.39 TOP 18 0 75.39 C19 C1 75.39 BOT 0 19 74.61 C1 C20 74.61 TOP 19 0 74.61 C20 C1 74.61 BOT 0 20 76.68 C1 C21 76.68 TOP 20 0 76.68 C21 C1 76.68 BOT 0 21 78.24 C1 C22 78.24 TOP 21 0 78.24 C22 C1 78.24 BOT 0 22 78.76 C1 C23 78.76 TOP 22 0 78.76 C23 C1 78.76 BOT 0 23 78.24 C1 C24 78.24 TOP 23 0 78.24 C24 C1 78.24 BOT 0 24 74.61 C1 C25 74.61 TOP 24 0 74.61 C25 C1 74.61 BOT 0 25 82.38 C1 C26 82.38 TOP 25 0 82.38 C26 C1 82.38 BOT 0 26 76.68 C1 C27 76.68 TOP 26 0 76.68 C27 C1 76.68 BOT 0 27 76.17 C1 C28 76.17 TOP 27 0 76.17 C28 C1 76.17 BOT 0 28 79.27 C1 C29 79.27 TOP 28 0 79.27 C29 C1 79.27 BOT 0 29 73.06 C1 C30 73.06 TOP 29 0 73.06 C30 C1 73.06 BOT 0 30 76.17 C1 C31 76.17 TOP 30 0 76.17 C31 C1 76.17 BOT 0 31 76.68 C1 C32 76.68 TOP 31 0 76.68 C32 C1 76.68 BOT 0 32 76.17 C1 C33 76.17 TOP 32 0 76.17 C33 C1 76.17 BOT 0 33 83.94 C1 C34 83.94 TOP 33 0 83.94 C34 C1 83.94 BOT 0 34 80.31 C1 C35 80.31 TOP 34 0 80.31 C35 C1 80.31 BOT 0 35 73.06 C1 C36 73.06 TOP 35 0 73.06 C36 C1 73.06 BOT 0 36 79.27 C1 C37 79.27 TOP 36 0 79.27 C37 C1 79.27 BOT 0 37 82.90 C1 C38 82.90 TOP 37 0 82.90 C38 C1 82.90 BOT 0 38 80.31 C1 C39 80.31 TOP 38 0 80.31 C39 C1 80.31 BOT 0 39 73.58 C1 C40 73.58 TOP 39 0 73.58 C40 C1 73.58 BOT 0 40 79.79 C1 C41 79.79 TOP 40 0 79.79 C41 C1 79.79 BOT 0 41 80.83 C1 C42 80.83 TOP 41 0 80.83 C42 C1 80.83 BOT 0 42 79.79 C1 C43 79.79 TOP 42 0 79.79 C43 C1 79.79 BOT 0 43 83.42 C1 C44 83.42 TOP 43 0 83.42 C44 C1 83.42 BOT 0 44 80.31 C1 C45 80.31 TOP 44 0 80.31 C45 C1 80.31 BOT 0 45 77.20 C1 C46 77.20 TOP 45 0 77.20 C46 C1 77.20 BOT 0 46 79.27 C1 C47 79.27 TOP 46 0 79.27 C47 C1 79.27 BOT 0 47 70.47 C1 C48 70.47 TOP 47 0 70.47 C48 C1 70.47 BOT 0 48 80.83 C1 C49 80.83 TOP 48 0 80.83 C49 C1 80.83 BOT 0 49 78.24 C1 C50 78.24 TOP 49 0 78.24 C50 C1 78.24 BOT 1 2 81.44 C2 C3 81.44 TOP 2 1 81.44 C3 C2 81.44 BOT 1 3 80.41 C2 C4 80.41 TOP 3 1 80.41 C4 C2 80.41 BOT 1 4 77.84 C2 C5 77.84 TOP 4 1 77.84 C5 C2 77.84 BOT 1 5 86.08 C2 C6 86.08 TOP 5 1 86.08 C6 C2 86.08 BOT 1 6 84.02 C2 C7 84.02 TOP 6 1 84.02 C7 C2 84.02 BOT 1 7 83.51 C2 C8 83.51 TOP 7 1 83.51 C8 C2 83.51 BOT 1 8 77.32 C2 C9 77.32 TOP 8 1 77.32 C9 C2 77.32 BOT 1 9 77.32 C2 C10 77.32 TOP 9 1 77.32 C10 C2 77.32 BOT 1 10 84.02 C2 C11 84.02 TOP 10 1 84.02 C11 C2 84.02 BOT 1 11 80.93 C2 C12 80.93 TOP 11 1 80.93 C12 C2 80.93 BOT 1 12 81.44 C2 C13 81.44 TOP 12 1 81.44 C13 C2 81.44 BOT 1 13 75.77 C2 C14 75.77 TOP 13 1 75.77 C14 C2 75.77 BOT 1 14 79.90 C2 C15 79.90 TOP 14 1 79.90 C15 C2 79.90 BOT 1 15 75.26 C2 C16 75.26 TOP 15 1 75.26 C16 C2 75.26 BOT 1 16 84.54 C2 C17 84.54 TOP 16 1 84.54 C17 C2 84.54 BOT 1 17 77.32 C2 C18 77.32 TOP 17 1 77.32 C18 C2 77.32 BOT 1 18 76.17 C2 C19 76.17 TOP 18 1 76.17 C19 C2 76.17 BOT 1 19 77.32 C2 C20 77.32 TOP 19 1 77.32 C20 C2 77.32 BOT 1 20 77.84 C2 C21 77.84 TOP 20 1 77.84 C21 C2 77.84 BOT 1 21 84.54 C2 C22 84.54 TOP 21 1 84.54 C22 C2 84.54 BOT 1 22 77.84 C2 C23 77.84 TOP 22 1 77.84 C23 C2 77.84 BOT 1 23 82.47 C2 C24 82.47 TOP 23 1 82.47 C24 C2 82.47 BOT 1 24 75.77 C2 C25 75.77 TOP 24 1 75.77 C25 C2 75.77 BOT 1 25 83.51 C2 C26 83.51 TOP 25 1 83.51 C26 C2 83.51 BOT 1 26 76.80 C2 C27 76.80 TOP 26 1 76.80 C27 C2 76.80 BOT 1 27 77.84 C2 C28 77.84 TOP 27 1 77.84 C28 C2 77.84 BOT 1 28 84.54 C2 C29 84.54 TOP 28 1 84.54 C29 C2 84.54 BOT 1 29 76.29 C2 C30 76.29 TOP 29 1 76.29 C30 C2 76.29 BOT 1 30 75.26 C2 C31 75.26 TOP 30 1 75.26 C31 C2 75.26 BOT 1 31 77.32 C2 C32 77.32 TOP 31 1 77.32 C32 C2 77.32 BOT 1 32 79.90 C2 C33 79.90 TOP 32 1 79.90 C33 C2 79.90 BOT 1 33 84.54 C2 C34 84.54 TOP 33 1 84.54 C34 C2 84.54 BOT 1 34 81.96 C2 C35 81.96 TOP 34 1 81.96 C35 C2 81.96 BOT 1 35 76.80 C2 C36 76.80 TOP 35 1 76.80 C36 C2 76.80 BOT 1 36 82.47 C2 C37 82.47 TOP 36 1 82.47 C37 C2 82.47 BOT 1 37 82.47 C2 C38 82.47 TOP 37 1 82.47 C38 C2 82.47 BOT 1 38 82.47 C2 C39 82.47 TOP 38 1 82.47 C39 C2 82.47 BOT 1 39 75.77 C2 C40 75.77 TOP 39 1 75.77 C40 C2 75.77 BOT 1 40 80.41 C2 C41 80.41 TOP 40 1 80.41 C41 C2 80.41 BOT 1 41 82.99 C2 C42 82.99 TOP 41 1 82.99 C42 C2 82.99 BOT 1 42 81.96 C2 C43 81.96 TOP 42 1 81.96 C43 C2 81.96 BOT 1 43 84.02 C2 C44 84.02 TOP 43 1 84.02 C44 C2 84.02 BOT 1 44 82.47 C2 C45 82.47 TOP 44 1 82.47 C45 C2 82.47 BOT 1 45 80.41 C2 C46 80.41 TOP 45 1 80.41 C46 C2 80.41 BOT 1 46 78.87 C2 C47 78.87 TOP 46 1 78.87 C47 C2 78.87 BOT 1 47 76.29 C2 C48 76.29 TOP 47 1 76.29 C48 C2 76.29 BOT 1 48 83.51 C2 C49 83.51 TOP 48 1 83.51 C49 C2 83.51 BOT 1 49 78.87 C2 C50 78.87 TOP 49 1 78.87 C50 C2 78.87 BOT 2 3 83.08 C3 C4 83.08 TOP 3 2 83.08 C4 C3 83.08 BOT 2 4 83.59 C3 C5 83.59 TOP 4 2 83.59 C5 C3 83.59 BOT 2 5 83.59 C3 C6 83.59 TOP 5 2 83.59 C6 C3 83.59 BOT 2 6 83.59 C3 C7 83.59 TOP 6 2 83.59 C7 C3 83.59 BOT 2 7 84.10 C3 C8 84.10 TOP 7 2 84.10 C8 C3 84.10 BOT 2 8 81.03 C3 C9 81.03 TOP 8 2 81.03 C9 C3 81.03 BOT 2 9 76.92 C3 C10 76.92 TOP 9 2 76.92 C10 C3 76.92 BOT 2 10 85.13 C3 C11 85.13 TOP 10 2 85.13 C11 C3 85.13 BOT 2 11 81.54 C3 C12 81.54 TOP 11 2 81.54 C12 C3 81.54 BOT 2 12 84.62 C3 C13 84.62 TOP 12 2 84.62 C13 C3 84.62 BOT 2 13 81.54 C3 C14 81.54 TOP 13 2 81.54 C14 C3 81.54 BOT 2 14 80.51 C3 C15 80.51 TOP 14 2 80.51 C15 C3 80.51 BOT 2 15 80.51 C3 C16 80.51 TOP 15 2 80.51 C16 C3 80.51 BOT 2 16 84.62 C3 C17 84.62 TOP 16 2 84.62 C17 C3 84.62 BOT 2 17 81.54 C3 C18 81.54 TOP 17 2 81.54 C18 C3 81.54 BOT 2 18 82.38 C3 C19 82.38 TOP 18 2 82.38 C19 C3 82.38 BOT 2 19 80.51 C3 C20 80.51 TOP 19 2 80.51 C20 C3 80.51 BOT 2 20 80.00 C3 C21 80.00 TOP 20 2 80.00 C21 C3 80.00 BOT 2 21 83.08 C3 C22 83.08 TOP 21 2 83.08 C22 C3 83.08 BOT 2 22 80.00 C3 C23 80.00 TOP 22 2 80.00 C23 C3 80.00 BOT 2 23 83.08 C3 C24 83.08 TOP 23 2 83.08 C24 C3 83.08 BOT 2 24 80.00 C3 C25 80.00 TOP 24 2 80.00 C25 C3 80.00 BOT 2 25 84.10 C3 C26 84.10 TOP 25 2 84.10 C26 C3 84.10 BOT 2 26 83.08 C3 C27 83.08 TOP 26 2 83.08 C27 C3 83.08 BOT 2 27 80.51 C3 C28 80.51 TOP 27 2 80.51 C28 C3 80.51 BOT 2 28 83.59 C3 C29 83.59 TOP 28 2 83.59 C29 C3 83.59 BOT 2 29 79.49 C3 C30 79.49 TOP 29 2 79.49 C30 C3 79.49 BOT 2 30 82.05 C3 C31 82.05 TOP 30 2 82.05 C31 C3 82.05 BOT 2 31 83.59 C3 C32 83.59 TOP 31 2 83.59 C32 C3 83.59 BOT 2 32 80.51 C3 C33 80.51 TOP 32 2 80.51 C33 C3 80.51 BOT 2 33 86.15 C3 C34 86.15 TOP 33 2 86.15 C34 C3 86.15 BOT 2 34 84.62 C3 C35 84.62 TOP 34 2 84.62 C35 C3 84.62 BOT 2 35 78.46 C3 C36 78.46 TOP 35 2 78.46 C36 C3 78.46 BOT 2 36 83.08 C3 C37 83.08 TOP 36 2 83.08 C37 C3 83.08 BOT 2 37 82.56 C3 C38 82.56 TOP 37 2 82.56 C38 C3 82.56 BOT 2 38 85.64 C3 C39 85.64 TOP 38 2 85.64 C39 C3 85.64 BOT 2 39 78.46 C3 C40 78.46 TOP 39 2 78.46 C40 C3 78.46 BOT 2 40 81.54 C3 C41 81.54 TOP 40 2 81.54 C41 C3 81.54 BOT 2 41 85.64 C3 C42 85.64 TOP 41 2 85.64 C42 C3 85.64 BOT 2 42 81.54 C3 C43 81.54 TOP 42 2 81.54 C43 C3 81.54 BOT 2 43 84.62 C3 C44 84.62 TOP 43 2 84.62 C44 C3 84.62 BOT 2 44 85.64 C3 C45 85.64 TOP 44 2 85.64 C45 C3 85.64 BOT 2 45 83.08 C3 C46 83.08 TOP 45 2 83.08 C46 C3 83.08 BOT 2 46 80.51 C3 C47 80.51 TOP 46 2 80.51 C47 C3 80.51 BOT 2 47 77.95 C3 C48 77.95 TOP 47 2 77.95 C48 C3 77.95 BOT 2 48 88.72 C3 C49 88.72 TOP 48 2 88.72 C49 C3 88.72 BOT 2 49 83.08 C3 C50 83.08 TOP 49 2 83.08 C50 C3 83.08 BOT 3 4 88.21 C4 C5 88.21 TOP 4 3 88.21 C5 C4 88.21 BOT 3 5 82.56 C4 C6 82.56 TOP 5 3 82.56 C6 C4 82.56 BOT 3 6 80.00 C4 C7 80.00 TOP 6 3 80.00 C7 C4 80.00 BOT 3 7 79.49 C4 C8 79.49 TOP 7 3 79.49 C8 C4 79.49 BOT 3 8 88.72 C4 C9 88.72 TOP 8 3 88.72 C9 C4 88.72 BOT 3 9 78.46 C4 C10 78.46 TOP 9 3 78.46 C10 C4 78.46 BOT 3 10 82.05 C4 C11 82.05 TOP 10 3 82.05 C11 C4 82.05 BOT 3 11 92.31 C4 C12 92.31 TOP 11 3 92.31 C12 C4 92.31 BOT 3 12 82.56 C4 C13 82.56 TOP 12 3 82.56 C13 C4 82.56 BOT 3 13 78.97 C4 C14 78.97 TOP 13 3 78.97 C14 C4 78.97 BOT 3 14 83.59 C4 C15 83.59 TOP 14 3 83.59 C15 C4 83.59 BOT 3 15 77.44 C4 C16 77.44 TOP 15 3 77.44 C16 C4 77.44 BOT 3 16 81.03 C4 C17 81.03 TOP 16 3 81.03 C17 C4 81.03 BOT 3 17 91.79 C4 C18 91.79 TOP 17 3 91.79 C18 C4 91.79 BOT 3 18 83.42 C4 C19 83.42 TOP 18 3 83.42 C19 C4 83.42 BOT 3 19 92.82 C4 C20 92.82 TOP 19 3 92.82 C20 C4 92.82 BOT 3 20 89.23 C4 C21 89.23 TOP 20 3 89.23 C21 C4 89.23 BOT 3 21 82.56 C4 C22 82.56 TOP 21 3 82.56 C22 C4 82.56 BOT 3 22 89.23 C4 C23 89.23 TOP 22 3 89.23 C23 C4 89.23 BOT 3 23 78.97 C4 C24 78.97 TOP 23 3 78.97 C24 C4 78.97 BOT 3 24 88.72 C4 C25 88.72 TOP 24 3 88.72 C25 C4 88.72 BOT 3 25 81.03 C4 C26 81.03 TOP 25 3 81.03 C26 C4 81.03 BOT 3 26 89.23 C4 C27 89.23 TOP 26 3 89.23 C27 C4 89.23 BOT 3 27 80.51 C4 C28 80.51 TOP 27 3 80.51 C28 C4 80.51 BOT 3 28 81.03 C4 C29 81.03 TOP 28 3 81.03 C29 C4 81.03 BOT 3 29 77.95 C4 C30 77.95 TOP 29 3 77.95 C30 C4 77.95 BOT 3 30 81.03 C4 C31 81.03 TOP 30 3 81.03 C31 C4 81.03 BOT 3 31 83.08 C4 C32 83.08 TOP 31 3 83.08 C32 C4 83.08 BOT 3 32 83.08 C4 C33 83.08 TOP 32 3 83.08 C33 C4 83.08 BOT 3 33 83.08 C4 C34 83.08 TOP 33 3 83.08 C34 C4 83.08 BOT 3 34 81.03 C4 C35 81.03 TOP 34 3 81.03 C35 C4 81.03 BOT 3 35 90.26 C4 C36 90.26 TOP 35 3 90.26 C36 C4 90.26 BOT 3 36 78.46 C4 C37 78.46 TOP 36 3 78.46 C37 C4 78.46 BOT 3 37 83.59 C4 C38 83.59 TOP 37 3 83.59 C38 C4 83.59 BOT 3 38 80.51 C4 C39 80.51 TOP 38 3 80.51 C39 C4 80.51 BOT 3 39 81.54 C4 C40 81.54 TOP 39 3 81.54 C40 C4 81.54 BOT 3 40 76.41 C4 C41 76.41 TOP 40 3 76.41 C41 C4 76.41 BOT 3 41 78.97 C4 C42 78.97 TOP 41 3 78.97 C42 C4 78.97 BOT 3 42 78.46 C4 C43 78.46 TOP 42 3 78.46 C43 C4 78.46 BOT 3 43 80.00 C4 C44 80.00 TOP 43 3 80.00 C44 C4 80.00 BOT 3 44 82.05 C4 C45 82.05 TOP 44 3 82.05 C45 C4 82.05 BOT 3 45 80.51 C4 C46 80.51 TOP 45 3 80.51 C46 C4 80.51 BOT 3 46 77.44 C4 C47 77.44 TOP 46 3 77.44 C47 C4 77.44 BOT 3 47 80.00 C4 C48 80.00 TOP 47 3 80.00 C48 C4 80.00 BOT 3 48 82.05 C4 C49 82.05 TOP 48 3 82.05 C49 C4 82.05 BOT 3 49 83.08 C4 C50 83.08 TOP 49 3 83.08 C50 C4 83.08 BOT 4 5 81.03 C5 C6 81.03 TOP 5 4 81.03 C6 C5 81.03 BOT 4 6 80.00 C5 C7 80.00 TOP 6 4 80.00 C7 C5 80.00 BOT 4 7 80.51 C5 C8 80.51 TOP 7 4 80.51 C8 C5 80.51 BOT 4 8 84.10 C5 C9 84.10 TOP 8 4 84.10 C9 C5 84.10 BOT 4 9 78.46 C5 C10 78.46 TOP 9 4 78.46 C10 C5 78.46 BOT 4 10 80.51 C5 C11 80.51 TOP 10 4 80.51 C11 C5 80.51 BOT 4 11 86.15 C5 C12 86.15 TOP 11 4 86.15 C12 C5 86.15 BOT 4 12 82.05 C5 C13 82.05 TOP 12 4 82.05 C13 C5 82.05 BOT 4 13 81.03 C5 C14 81.03 TOP 13 4 81.03 C14 C5 81.03 BOT 4 14 82.05 C5 C15 82.05 TOP 14 4 82.05 C15 C5 82.05 BOT 4 15 77.95 C5 C16 77.95 TOP 15 4 77.95 C16 C5 77.95 BOT 4 16 80.00 C5 C17 80.00 TOP 16 4 80.00 C17 C5 80.00 BOT 4 17 87.18 C5 C18 87.18 TOP 17 4 87.18 C18 C5 87.18 BOT 4 18 82.90 C5 C19 82.90 TOP 18 4 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TOP 31 30 85.13 C32 C31 85.13 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 79.49 C31 C35 79.49 TOP 34 30 79.49 C35 C31 79.49 BOT 30 35 79.49 C31 C36 79.49 TOP 35 30 79.49 C36 C31 79.49 BOT 30 36 78.46 C31 C37 78.46 TOP 36 30 78.46 C37 C31 78.46 BOT 30 37 82.56 C31 C38 82.56 TOP 37 30 82.56 C38 C31 82.56 BOT 30 38 78.46 C31 C39 78.46 TOP 38 30 78.46 C39 C31 78.46 BOT 30 39 90.26 C31 C40 90.26 TOP 39 30 90.26 C40 C31 90.26 BOT 30 40 79.49 C31 C41 79.49 TOP 40 30 79.49 C41 C31 79.49 BOT 30 41 78.97 C31 C42 78.97 TOP 41 30 78.97 C42 C31 78.97 BOT 30 42 78.46 C31 C43 78.46 TOP 42 30 78.46 C43 C31 78.46 BOT 30 43 80.00 C31 C44 80.00 TOP 43 30 80.00 C44 C31 80.00 BOT 30 44 81.54 C31 C45 81.54 TOP 44 30 81.54 C45 C31 81.54 BOT 30 45 79.49 C31 C46 79.49 TOP 45 30 79.49 C46 C31 79.49 BOT 30 46 75.38 C31 C47 75.38 TOP 46 30 75.38 C47 C31 75.38 BOT 30 47 87.18 C31 C48 87.18 TOP 47 30 87.18 C48 C31 87.18 BOT 30 48 78.97 C31 C49 78.97 TOP 48 30 78.97 C49 C31 78.97 BOT 30 49 90.26 C31 C50 90.26 TOP 49 30 90.26 C50 C31 90.26 BOT 31 32 84.62 C32 C33 84.62 TOP 32 31 84.62 C33 C32 84.62 BOT 31 33 82.56 C32 C34 82.56 TOP 33 31 82.56 C34 C32 82.56 BOT 31 34 82.05 C32 C35 82.05 TOP 34 31 82.05 C35 C32 82.05 BOT 31 35 81.54 C32 C36 81.54 TOP 35 31 81.54 C36 C32 81.54 BOT 31 36 80.00 C32 C37 80.00 TOP 36 31 80.00 C37 C32 80.00 BOT 31 37 82.05 C32 C38 82.05 TOP 37 31 82.05 C38 C32 82.05 BOT 31 38 81.54 C32 C39 81.54 TOP 38 31 81.54 C39 C32 81.54 BOT 31 39 84.62 C32 C40 84.62 TOP 39 31 84.62 C40 C32 84.62 BOT 31 40 78.97 C32 C41 78.97 TOP 40 31 78.97 C41 C32 78.97 BOT 31 41 80.51 C32 C42 80.51 TOP 41 31 80.51 C42 C32 80.51 BOT 31 42 81.03 C32 C43 81.03 TOP 42 31 81.03 C43 C32 81.03 BOT 31 43 81.54 C32 C44 81.54 TOP 43 31 81.54 C44 C32 81.54 BOT 31 44 83.59 C32 C45 83.59 TOP 44 31 83.59 C45 C32 83.59 BOT 31 45 80.51 C32 C46 80.51 TOP 45 31 80.51 C46 C32 80.51 BOT 31 46 78.46 C32 C47 78.46 TOP 46 31 78.46 C47 C32 78.46 BOT 31 47 81.03 C32 C48 81.03 TOP 47 31 81.03 C48 C32 81.03 BOT 31 48 81.54 C32 C49 81.54 TOP 48 31 81.54 C49 C32 81.54 BOT 31 49 85.13 C32 C50 85.13 TOP 49 31 85.13 C50 C32 85.13 BOT 32 33 82.05 C33 C34 82.05 TOP 33 32 82.05 C34 C33 82.05 BOT 32 34 80.00 C33 C35 80.00 TOP 34 32 80.00 C35 C33 80.00 BOT 32 35 78.97 C33 C36 78.97 TOP 35 32 78.97 C36 C33 78.97 BOT 32 36 77.95 C33 C37 77.95 TOP 36 32 77.95 C37 C33 77.95 BOT 32 37 80.00 C33 C38 80.00 TOP 37 32 80.00 C38 C33 80.00 BOT 32 38 77.95 C33 C39 77.95 TOP 38 32 77.95 C39 C33 77.95 BOT 32 39 83.08 C33 C40 83.08 TOP 39 32 83.08 C40 C33 83.08 BOT 32 40 76.41 C33 C41 76.41 TOP 40 32 76.41 C41 C33 76.41 BOT 32 41 78.97 C33 C42 78.97 TOP 41 32 78.97 C42 C33 78.97 BOT 32 42 79.49 C33 C43 79.49 TOP 42 32 79.49 C43 C33 79.49 BOT 32 43 77.95 C33 C44 77.95 TOP 43 32 77.95 C44 C33 77.95 BOT 32 44 82.56 C33 C45 82.56 TOP 44 32 82.56 C45 C33 82.56 BOT 32 45 82.56 C33 C46 82.56 TOP 45 32 82.56 C46 C33 82.56 BOT 32 46 74.87 C33 C47 74.87 TOP 46 32 74.87 C47 C33 74.87 BOT 32 47 83.08 C33 C48 83.08 TOP 47 32 83.08 C48 C33 83.08 BOT 32 48 78.46 C33 C49 78.46 TOP 48 32 78.46 C49 C33 78.46 BOT 32 49 83.08 C33 C50 83.08 TOP 49 32 83.08 C50 C33 83.08 BOT 33 34 92.31 C34 C35 92.31 TOP 34 33 92.31 C35 C34 92.31 BOT 33 35 79.49 C34 C36 79.49 TOP 35 33 79.49 C36 C34 79.49 BOT 33 36 86.67 C34 C37 86.67 TOP 36 33 86.67 C37 C34 86.67 BOT 33 37 88.21 C34 C38 88.21 TOP 37 33 88.21 C38 C34 88.21 BOT 33 38 85.64 C34 C39 85.64 TOP 38 33 85.64 C39 C34 85.64 BOT 33 39 80.51 C34 C40 80.51 TOP 39 33 80.51 C40 C34 80.51 BOT 33 40 83.08 C34 C41 83.08 TOP 40 33 83.08 C41 C34 83.08 BOT 33 41 89.74 C34 C42 89.74 TOP 41 33 89.74 C42 C34 89.74 BOT 33 42 84.62 C34 C43 84.62 TOP 42 33 84.62 C43 C34 84.62 BOT 33 43 88.72 C34 C44 88.72 TOP 43 33 88.72 C44 C34 88.72 BOT 33 44 86.15 C34 C45 86.15 TOP 44 33 86.15 C45 C34 86.15 BOT 33 45 83.59 C34 C46 83.59 TOP 45 33 83.59 C46 C34 83.59 BOT 33 46 84.10 C34 C47 84.10 TOP 46 33 84.10 C47 C34 84.10 BOT 33 47 77.44 C34 C48 77.44 TOP 47 33 77.44 C48 C34 77.44 BOT 33 48 86.15 C34 C49 86.15 TOP 48 33 86.15 C49 C34 86.15 BOT 33 49 84.62 C34 C50 84.62 TOP 49 33 84.62 C50 C34 84.62 BOT 34 35 77.95 C35 C36 77.95 TOP 35 34 77.95 C36 C35 77.95 BOT 34 36 86.15 C35 C37 86.15 TOP 36 34 86.15 C37 C35 86.15 BOT 34 37 87.18 C35 C38 87.18 TOP 37 34 87.18 C38 C35 87.18 BOT 34 38 84.62 C35 C39 84.62 TOP 38 34 84.62 C39 C35 84.62 BOT 34 39 78.46 C35 C40 78.46 TOP 39 34 78.46 C40 C35 78.46 BOT 34 40 82.56 C35 C41 82.56 TOP 40 34 82.56 C41 C35 82.56 BOT 34 41 87.69 C35 C42 87.69 TOP 41 34 87.69 C42 C35 87.69 BOT 34 42 82.05 C35 C43 82.05 TOP 42 34 82.05 C43 C35 82.05 BOT 34 43 86.67 C35 C44 86.67 TOP 43 34 86.67 C44 C35 86.67 BOT 34 44 83.59 C35 C45 83.59 TOP 44 34 83.59 C45 C35 83.59 BOT 34 45 81.03 C35 C46 81.03 TOP 45 34 81.03 C46 C35 81.03 BOT 34 46 83.08 C35 C47 83.08 TOP 46 34 83.08 C47 C35 83.08 BOT 34 47 76.92 C35 C48 76.92 TOP 47 34 76.92 C48 C35 76.92 BOT 34 48 86.67 C35 C49 86.67 TOP 48 34 86.67 C49 C35 86.67 BOT 34 49 81.03 C35 C50 81.03 TOP 49 34 81.03 C50 C35 81.03 BOT 35 36 76.92 C36 C37 76.92 TOP 36 35 76.92 C37 C36 76.92 BOT 35 37 78.46 C36 C38 78.46 TOP 37 35 78.46 C38 C36 78.46 BOT 35 38 76.92 C36 C39 76.92 TOP 38 35 76.92 C39 C36 76.92 BOT 35 39 80.00 C36 C40 80.00 TOP 39 35 80.00 C40 C36 80.00 BOT 35 40 72.31 C36 C41 72.31 TOP 40 35 72.31 C41 C36 72.31 BOT 35 41 74.87 C36 C42 74.87 TOP 41 35 74.87 C42 C36 74.87 BOT 35 42 76.41 C36 C43 76.41 TOP 42 35 76.41 C43 C36 76.41 BOT 35 43 77.95 C36 C44 77.95 TOP 43 35 77.95 C44 C36 77.95 BOT 35 44 82.05 C36 C45 82.05 TOP 44 35 82.05 C45 C36 82.05 BOT 35 45 77.44 C36 C46 77.44 TOP 45 35 77.44 C46 C36 77.44 BOT 35 46 73.33 C36 C47 73.33 TOP 46 35 73.33 C47 C36 73.33 BOT 35 47 77.95 C36 C48 77.95 TOP 47 35 77.95 C48 C36 77.95 BOT 35 48 79.49 C36 C49 79.49 TOP 48 35 79.49 C49 C36 79.49 BOT 35 49 81.54 C36 C50 81.54 TOP 49 35 81.54 C50 C36 81.54 BOT 36 37 85.64 C37 C38 85.64 TOP 37 36 85.64 C38 C37 85.64 BOT 36 38 84.10 C37 C39 84.10 TOP 38 36 84.10 C39 C37 84.10 BOT 36 39 76.41 C37 C40 76.41 TOP 39 36 76.41 C40 C37 76.41 BOT 36 40 83.08 C37 C41 83.08 TOP 40 36 83.08 C41 C37 83.08 BOT 36 41 87.18 C37 C42 87.18 TOP 41 36 87.18 C42 C37 87.18 BOT 36 42 83.08 C37 C43 83.08 TOP 42 36 83.08 C43 C37 83.08 BOT 36 43 85.64 C37 C44 85.64 TOP 43 36 85.64 C44 C37 85.64 BOT 36 44 85.13 C37 C45 85.13 TOP 44 36 85.13 C45 C37 85.13 BOT 36 45 82.56 C37 C46 82.56 TOP 45 36 82.56 C46 C37 82.56 BOT 36 46 81.03 C37 C47 81.03 TOP 46 36 81.03 C47 C37 81.03 BOT 36 47 76.92 C37 C48 76.92 TOP 47 36 76.92 C48 C37 76.92 BOT 36 48 85.13 C37 C49 85.13 TOP 48 36 85.13 C49 C37 85.13 BOT 36 49 80.00 C37 C50 80.00 TOP 49 36 80.00 C50 C37 80.00 BOT 37 38 82.56 C38 C39 82.56 TOP 38 37 82.56 C39 C38 82.56 BOT 37 39 81.03 C38 C40 81.03 TOP 39 37 81.03 C40 C38 81.03 BOT 37 40 84.62 C38 C41 84.62 TOP 40 37 84.62 C41 C38 84.62 BOT 37 41 86.67 C38 C42 86.67 TOP 41 37 86.67 C42 C38 86.67 BOT 37 42 85.13 C38 C43 85.13 TOP 42 37 85.13 C43 C38 85.13 BOT 37 43 87.18 C38 C44 87.18 TOP 43 37 87.18 C44 C38 87.18 BOT 37 44 86.15 C38 C45 86.15 TOP 44 37 86.15 C45 C38 86.15 BOT 37 45 82.05 C38 C46 82.05 TOP 45 37 82.05 C46 C38 82.05 BOT 37 46 78.97 C38 C47 78.97 TOP 46 37 78.97 C47 C38 78.97 BOT 37 47 78.46 C38 C48 78.46 TOP 47 37 78.46 C48 C38 78.46 BOT 37 48 84.62 C38 C49 84.62 TOP 48 37 84.62 C49 C38 84.62 BOT 37 49 83.59 C38 C50 83.59 TOP 49 37 83.59 C50 C38 83.59 BOT 38 39 76.92 C39 C40 76.92 TOP 39 38 76.92 C40 C39 76.92 BOT 38 40 82.56 C39 C41 82.56 TOP 40 38 82.56 C41 C39 82.56 BOT 38 41 85.64 C39 C42 85.64 TOP 41 38 85.64 C42 C39 85.64 BOT 38 42 81.03 C39 C43 81.03 TOP 42 38 81.03 C43 C39 81.03 BOT 38 43 85.13 C39 C44 85.13 TOP 43 38 85.13 C44 C39 85.13 BOT 38 44 85.13 C39 C45 85.13 TOP 44 38 85.13 C45 C39 85.13 BOT 38 45 82.05 C39 C46 82.05 TOP 45 38 82.05 C46 C39 82.05 BOT 38 46 82.05 C39 C47 82.05 TOP 46 38 82.05 C47 C39 82.05 BOT 38 47 74.36 C39 C48 74.36 TOP 47 38 74.36 C48 C39 74.36 BOT 38 48 86.15 C39 C49 86.15 TOP 48 38 86.15 C49 C39 86.15 BOT 38 49 80.00 C39 C50 80.00 TOP 49 38 80.00 C50 C39 80.00 BOT 39 40 77.95 C40 C41 77.95 TOP 40 39 77.95 C41 C40 77.95 BOT 39 41 77.95 C40 C42 77.95 TOP 41 39 77.95 C42 C40 77.95 BOT 39 42 80.00 C40 C43 80.00 TOP 42 39 80.00 C43 C40 80.00 BOT 39 43 78.97 C40 C44 78.97 TOP 43 39 78.97 C44 C40 78.97 BOT 39 44 80.51 C40 C45 80.51 TOP 44 39 80.51 C45 C40 80.51 BOT 39 45 80.00 C40 C46 80.00 TOP 45 39 80.00 C46 C40 80.00 BOT 39 46 75.38 C40 C47 75.38 TOP 46 39 75.38 C47 C40 75.38 BOT 39 47 85.13 C40 C48 85.13 TOP 47 39 85.13 C48 C40 85.13 BOT 39 48 76.92 C40 C49 76.92 TOP 48 39 76.92 C49 C40 76.92 BOT 39 49 86.67 C40 C50 86.67 TOP 49 39 86.67 C50 C40 86.67 BOT 40 41 83.59 C41 C42 83.59 TOP 41 40 83.59 C42 C41 83.59 BOT 40 42 84.10 C41 C43 84.10 TOP 42 40 84.10 C43 C41 84.10 BOT 40 43 85.64 C41 C44 85.64 TOP 43 40 85.64 C44 C41 85.64 BOT 40 44 84.10 C41 C45 84.10 TOP 44 40 84.10 C45 C41 84.10 BOT 40 45 81.54 C41 C46 81.54 TOP 45 40 81.54 C46 C41 81.54 BOT 40 46 82.05 C41 C47 82.05 TOP 46 40 82.05 C47 C41 82.05 BOT 40 47 73.85 C41 C48 73.85 TOP 47 40 73.85 C48 C41 73.85 BOT 40 48 84.10 C41 C49 84.10 TOP 48 40 84.10 C49 C41 84.10 BOT 40 49 79.49 C41 C50 79.49 TOP 49 40 79.49 C50 C41 79.49 BOT 41 42 86.15 C42 C43 86.15 TOP 42 41 86.15 C43 C42 86.15 BOT 41 43 87.18 C42 C44 87.18 TOP 43 41 87.18 C44 C42 87.18 BOT 41 44 84.10 C42 C45 84.10 TOP 44 41 84.10 C45 C42 84.10 BOT 41 45 84.10 C42 C46 84.10 TOP 45 41 84.10 C46 C42 84.10 BOT 41 46 81.54 C42 C47 81.54 TOP 46 41 81.54 C47 C42 81.54 BOT 41 47 76.92 C42 C48 76.92 TOP 47 41 76.92 C48 C42 76.92 BOT 41 48 86.67 C42 C49 86.67 TOP 48 41 86.67 C49 C42 86.67 BOT 41 49 81.54 C42 C50 81.54 TOP 49 41 81.54 C50 C42 81.54 BOT 42 43 84.10 C43 C44 84.10 TOP 43 42 84.10 C44 C43 84.10 BOT 42 44 83.08 C43 C45 83.08 TOP 44 42 83.08 C45 C43 83.08 BOT 42 45 82.56 C43 C46 82.56 TOP 45 42 82.56 C46 C43 82.56 BOT 42 46 78.97 C43 C47 78.97 TOP 46 42 78.97 C47 C43 78.97 BOT 42 47 76.92 C43 C48 76.92 TOP 47 42 76.92 C48 C43 76.92 BOT 42 48 82.05 C43 C49 82.05 TOP 48 42 82.05 C49 C43 82.05 BOT 42 49 81.54 C43 C50 81.54 TOP 49 42 81.54 C50 C43 81.54 BOT 43 44 87.69 C44 C45 87.69 TOP 44 43 87.69 C45 C44 87.69 BOT 43 45 84.10 C44 C46 84.10 TOP 45 43 84.10 C46 C44 84.10 BOT 43 46 82.05 C44 C47 82.05 TOP 46 43 82.05 C47 C44 82.05 BOT 43 47 76.41 C44 C48 76.41 TOP 47 43 76.41 C48 C44 76.41 BOT 43 48 87.18 C44 C49 87.18 TOP 48 43 87.18 C49 C44 87.18 BOT 43 49 81.54 C44 C50 81.54 TOP 49 43 81.54 C50 C44 81.54 BOT 44 45 81.54 C45 C46 81.54 TOP 45 44 81.54 C46 C45 81.54 BOT 44 46 79.49 C45 C47 79.49 TOP 46 44 79.49 C47 C45 79.49 BOT 44 47 79.49 C45 C48 79.49 TOP 47 44 79.49 C48 C45 79.49 BOT 44 48 84.10 C45 C49 84.10 TOP 48 44 84.10 C49 C45 84.10 BOT 44 49 83.08 C45 C50 83.08 TOP 49 44 83.08 C50 C45 83.08 BOT 45 46 78.97 C46 C47 78.97 TOP 46 45 78.97 C47 C46 78.97 BOT 45 47 78.97 C46 C48 78.97 TOP 47 45 78.97 C48 C46 78.97 BOT 45 48 84.62 C46 C49 84.62 TOP 48 45 84.62 C49 C46 84.62 BOT 45 49 82.05 C46 C50 82.05 TOP 49 45 82.05 C50 C46 82.05 BOT 46 47 72.82 C47 C48 72.82 TOP 47 46 72.82 C48 C47 72.82 BOT 46 48 83.08 C47 C49 83.08 TOP 48 46 83.08 C49 C47 83.08 BOT 46 49 76.41 C47 C50 76.41 TOP 49 46 76.41 C50 C47 76.41 BOT 47 48 78.97 C48 C49 78.97 TOP 48 47 78.97 C49 C48 78.97 BOT 47 49 85.64 C48 C50 85.64 TOP 49 47 85.64 C50 C48 85.64 BOT 48 49 81.54 C49 C50 81.54 TOP 49 48 81.54 C50 C49 81.54 AVG 0 C1 * 77.78 AVG 1 C2 * 80.11 AVG 2 C3 * 82.33 AVG 3 C4 * 82.59 AVG 4 C5 * 81.85 AVG 5 C6 * 82.09 AVG 6 C7 * 82.98 AVG 7 C8 * 81.30 AVG 8 C9 * 80.45 AVG 9 C10 * 77.76 AVG 10 C11 * 81.95 AVG 11 C12 * 81.57 AVG 12 C13 * 81.49 AVG 13 C14 * 78.43 AVG 14 C15 * 81.60 AVG 15 C16 * 77.90 AVG 16 C17 * 83.40 AVG 17 C18 * 81.25 AVG 18 C19 * 79.84 AVG 19 C20 * 80.97 AVG 20 C21 * 81.17 AVG 21 C22 * 82.66 AVG 22 C23 * 81.11 AVG 23 C24 * 80.77 AVG 24 C25 * 80.13 AVG 25 C26 * 82.79 AVG 26 C27 * 81.21 AVG 27 C28 * 79.01 AVG 28 C29 * 81.81 AVG 29 C30 * 78.33 AVG 30 C31 * 80.53 AVG 31 C32 * 81.62 AVG 32 C33 * 80.71 AVG 33 C34 * 84.02 AVG 34 C35 * 82.38 AVG 35 C36 * 80.05 AVG 36 C37 * 81.55 AVG 37 C38 * 82.65 AVG 38 C39 * 81.63 AVG 39 C40 * 79.72 AVG 40 C41 * 79.81 AVG 41 C42 * 82.10 AVG 42 C43 * 80.66 AVG 43 C44 * 82.54 AVG 44 C45 * 82.61 AVG 45 C46 * 81.06 AVG 46 C47 * 78.47 AVG 47 C48 * 78.30 AVG 48 C49 * 82.74 AVG 49 C50 * 81.93 TOT TOT * 81.03 CLUSTAL W (1.83) multiple sequence alignment C1 ATAAAAAACAGATGGCAGGTAATAATTGTGTGGCAAGTAGACAGGATGAG C2 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C3 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C4 ATGGAAAACAGATGGCAGGTGCTGATTGTGTGGCAGGTAGACAGGATGAG C5 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGAATGAG C6 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C7 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C8 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C9 ATGGAAAACAGATGGCAGGTGCTGATTGTGTGGCAGGTAGACAGGATGAG C10 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGATGAG C11 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C12 ATGGAAAACAGATGGCAGGTGCTGATTGTGTGGCAGGTAGACAGGATGAG C13 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C14 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGATGAG C15 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGATGAG C16 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C17 ATGGAAAACAGATGGCAGGTGATGGTTGTGTGGCAAGTAGACAGGATGAG C18 ATGGAAAACAGATGGCAGGGGATGATTGTATGGCAAGTAGACAGGATGAA C19 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGATGAG C20 ATGGAAAACAGATGGCAGGTGCTGATTGTGTGGCAGGTAGACAGGATGAG C21 ATGGAAAACAGATGGCAGGTGCTGATTGTGTGGCAGGTAGACAGGATGAA C22 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C23 ATGGAAAACAGATGGCAGGTGCTGATTGTGTGGCAGGTAGACAGGATGAG C24 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C25 ATGGAAAACAGATGGCAGGTGCTGATTGTGTGGCAGGTAGACAGGATGAG C26 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C27 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGAATGAG C28 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGATGAG C29 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C30 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGATGAG C31 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGATGAG C32 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGAAGAG C33 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C34 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C35 ATGGAAAACAGATGGCAGGCGATGATTGTGTGGCAAGTAGACAGGATGAG C36 ATGGAAAACAGATGGCAGGTGCTGGTTGTGCGGCAGGTAGACAGGATGAA C37 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C38 ATGGCAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C39 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGATGAG C40 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGATGAG C41 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C42 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C43 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C44 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C45 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAA C46 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C47 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGAATAAG C48 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGATGAG C49 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C50 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGATGAG **...************** ..*..****. ****.********.*:.*. C1 AATTAGAACATGGAAAAGTTTAGTAAAACACCATATGTATGTGTCAAAGA C2 GATTAAAACATGGATAAGTTTAGTAAAACACCATATGTATATTTCAAAGA C3 GATTAGAGCATGGCACAGTTTAGTAAAACACCATATGTATGTTTCAAAGA C4 GATCAGAACATGGAATAGTCTAGTAAAACACCATATGTATATTTCAAAGA C5 GATTAGAACATGGAACAGTTTAGTAAAACATCATATGTACGTCTCAAGGA C6 GATTAGCACGTGGAAAAGTCTAGTAAAGTACCATATGCATATTTCAAAGA C7 GATTAGAACATGGAAAAGTTTAGTGAAACACCATATGTATATCTCAAGGA C8 GATTAACACATGGAAAAGTTTAGTAAAACACCATATGCATATTTCAAGAA C9 GATTAGAACATGGAATAGTTTAGTAAAGCACCATATGTATAGATCAGGGA C10 GATTAAAACATGGAACAGCATAGTAAAACATCATATATATATCTCAAAGA C11 GATTAGAACCTGGAATAGCTTAGTAAAACACCACATGTATATTTCAGGGA C12 GATTAAAACATGGAATAGTTTAGTAAAGCACCATATGTATATTTCAAAGA C13 GATTAGAGCATGGAAGAGTTTAGTAAAGCATCATATACATATATCAAAGA C14 GATTAGAACATGGCACAGTTTAGTAAAACATCACATACATATCTCAAAGA C15 GATTAGAACATGGAACAGTTTAGTAAAACATCACATGTATATTTCAAAGA C16 GATTAGAACATGGCACAGTTTAGTAAAACATCATAGATATATCTCAAAGA C17 GATTAGAACGTGGAAAAGTTTAGTAAAACACCATATATATATTTCAAAGA C18 GATTAGAACATGGAATAGTTTAGTAAAGCACCACATGTATGTTTCAAAGA C19 GATTAGAACATGGAACAGTTTAGTAAAACATCATATGTATGTCTCTAAGA C20 GATTAGAACATGGAATAGTTTAGTAAAGCACCATATGTATATCTCAAAAA C21 GATTAGAACATGGAATAGTTTAGTAAAGCACCATATGTATATCTCAAGGA C22 GATTAAAACATGGAACAGTTTAGTAAAACACCATATGTATATTTCAGGGA C23 GATCAGAACATGGAATAGTTTAGTAAAGCACCATATGTATATATCAAAGA C24 GATTAGAACATGGAACAGTTTAGTAAAACACCATAAGTATATTTCAGGAA C25 GATTAGAACATGGAATAGTTTAGTAAAGCACCATATGTATGTTTCAAGAA C26 GATTAGAACATGGAAAAGCTTAGTAAAATACCATATGTATAGGTCAGGGA C27 GATTAGAACATGGAACAGTTTAGTAAAACATCATATGTATGTCTCAAAGA C28 GATTAATACATGGAAAAGTTTAGTAAAATACCATATGCATATTTCAAAGA C29 GATTAGAACATGGAAAAGTTTAGTAAAACACCACATGTATATTTCAAAAA C30 GATTAGAACATGGCACAGTCTAGTAAAACATCATATGTATATCTCAAGGA C31 GATTAGAACATGGAACAGTTTAGTAAAACATCATATGTATGTCTCAAAGA C32 AATTAGAACATGGAACAGTTTAGTAAAATATCATATGTATATCTCCAAGA C33 GATTAGAACATGGAACAGTTTAGTAAAACATCATATGTATGTCTCAAAGA C34 GATTAGAACATGGAAAAGTTTAGTAAAACACCATATGTATATCTCAAGGA C35 GATTAGAACATGGAAAAGTTTAGTAAAACACCATATGTACATTTCAGGGA C36 GATTAGAACATGGAACAGCTTAGTAAAGCACCATATGTATATTTCGAGGA C37 GATTAGCAAATGGAAAAGTTTAGTAAAATACCATATGTATATTTCAAAGA C38 GATTAGAACATGGAAAAGTTTAGTAAAACACCATATGTATATTTCAAAGA C39 GATTAAAACATGGAATAGTTTAGTAAAACACCATATATATATTTCAAAGA C40 GATTAGAACATGGAACAGTTTAGTAAAACATCATATGTATATCTCAAAGA C41 GATTAATGCATGGAAAAGTTTAGTAAAGTACCATATGCATGTTTCAAAGA C42 GATTAGAACATGGAAAAGTTTAGTAAAACACCATATGTATATTTCAAAGA C43 GATTAAAACATGGAAAAGTTTAGTAAAACACCATATGTATGTTTCAAAGA C44 GATTAGAGCATGGAAAAGTTTAGTAAAACATCATATGTATATTTCAGGGA C45 GATTAGAGCATGGAACAGTTTAGTAAAACACCATATGTATGTTTCAAAGA C46 GATTAGAACATGGCACAGTTTAGTAAAACACCATATACATATTTCAAAGA C47 GATTAACACATGGAAAAGTTTAGTAAAATACCATATGCATATTTCAAAGA C48 GATTAGAACATGGAACAGTTTAGTAAAACATCATATGTATGTCTCAAAGA C49 GATTAGAACATGGAACAGTTTAGTAAAACACCATATGTATATTTCAGGGA C50 GATTAGAACATGGAACAGTTTAGTAAAACATCATATGTATGTCTCAAAGA .** *. .. ***.: ** ****.**. * ** * . * . ** ...* C1 AAGCTAAAGGATGGGTCTATAGACATCACTATGAAAGCACTCATCCAAGA C2 AAGCTAAAGGATGGTTGTATAGACATCATTATGAATACCATCATCCAAGA C3 AAGCAAATAGATGGATTTATAAACATCACTATGAGAGCACTCATCCAAGA C4 GAGCTAAAGGGTGGTTTTACAGACATCATTATGAAAGCAGACATCCAAAA C5 GAGCAAAAAATTGGCTTTATAGACATCACTATGAAAGCAGACATCCAAAA C6 AAGCCAAGGGATGGCTTTATAGACATCACTATGAAAACACTCATCCAAGA C7 AAGCTAAGGGATGGTTTTATAGACATCACTATGAAAGTAATCATCCAAGA C8 AGGCTAAAGGATGGTTTTATAGACATCACTATGAAAGCACTCATCCAAGA C9 GAGCTAGTGGATGGTTCTACAGGCATCATTATGAAACCAGACATCCAAAA C10 AAGCTAAAAATTGGTCTTATAGACATCATTATGAAAGTCAGAATCCAAAG C11 AAGCTAGGGAATGGATTTATAGACATCATTATGAAAGCACTAATCCAAGA C12 GAGCTAGGGGATGGTTTTACAGACATCACTATGAAAGCAGACATCCAAAA C13 AAGCTAAAGGATGGTTGTATAGACATCACTATGACTGCCCACATCCAAAA C14 AAGCAAAAAATTGGTTGTATAAACATCACTTTGAAAGCAGGCATCCAAGA C15 AAGCTAAAAATTGGTTTTACAGACATCATTATGAAAGCCAGCATCCAAAG C16 AAACTATAAGGTGGTCTTATAAACATCATTATGAAAGCCAGAATCCAAAG C17 AAGCTAAGGGATGGTATTATAGACATCACTATGAAAGCACTCATCCAAAA C18 GAGCTAGTGGATGGTTTTATAGACATCATTATGAAAGCAGACATCCAAAA C19 AAGCTAAGGGTTGGTTTTATAGACATCACTATGAAAGTAGGCATCCAAAA C20 GAGCTAGTGGATGGTTTTACAGACACCATTATGACAGCAGACATCCAAAA C21 GAGCTGCTGGATGGTTCTACAGACATCATTATGAAAGCAGAAATCCAAGA C22 AAGCTAGGGGATGGTGTTATAGACATCACTATGAATGCAGTCATCCAAAA C23 GAACCAAAGAATGGGTTTACAGACATCATTATGATAGCAGACATCCAAAA C24 AAACTAAAAAATGGGTTTATAGACATCACTATGAAAGCATTAATCCAAGA C25 GAGCTAATAAATGGTTTTACAGACATCATGTTGAAAGCAGACATCCAAAA C26 AAGCTAAGAAATGGTTTTATAGACATCACTATGAAAGTAATCACCCAAGA C27 AAGCTAAAAATTGGTGGTATAGACATCATTATGAAAGCAGACATCCAAAA C28 AAGCCAAAAGATGGGTTTATAAACATCACTTTGAAAGCAGGAATCCAAGA C29 AGGCTAAGGGATGGTTTTATAGACATCACTATGAAAGCAATCATCCAAAG C30 AAACTAAACATTGGTCTTATAGACATCATTATGAAATCCAGAATCCAAAA C31 AAGCTAAAAATTGGTTTTATAGACATCATTATGAAAGCAGACATCCAAGA C32 AAGCTGGAAGGTGGTTTTATAGACATCACTATGAAAGTAGACATCCAAAA C33 AAGCTAAAAATTGGTTTTATAGACATCATTATGAAAGCCAGCATCCAAAG C34 AAGCTAAGGGATGGTTTTATAGACATCACTATGAAAGCCCTCATCCAAGA C35 AAGCTAAGCGGTGGTTTTATAGACATCACTATGAAAGCACTCATCCAAGA C36 GAGCTAGTGGATGGTTCTACAGACATCATTATGAAAGCAGACACCCAAAA C37 AAGCTCAGGGATGGTCCTACAGACATCACTATGAAAGTAATAATCCAAGA C38 AAGCTAAAGGATGGTTTTATAGACATCACTATGAAAGCACTCATCCAAAA C39 AAGCCAGAGGATGGGTTTATAGACATCACTATGAGAGCACTCATCCAAAA C40 AAGCTAAAGATTGGTTTTATAGACATCACTTTGATTGCAAGCATCCAAAA C41 AAGCTAAGAAATGGGCTTATAGACATCACTATGACAGCACTCATCCAAAA C42 AAGCTAAGGGTTGGGTTTATAAACATCACTATGAAAACACTCATCCAAGA C43 AAGCTAAGGGATGGTCTTATAAACATCACTATGATAGCACTCATCCAAAA C44 AAGCTAGGGGATGGGTTTATAAACATCACTATGAAAGTCTTCATCCAAGA C45 AAGCTAGAGGATGGTTGTACAGACATCACTATGAAAGCGTCCATCCAAAA C46 AAGCTAAGAAATGGGTTTATAAACATCACTATGAGAGCACTAATCCAAAA C47 AAGCCAAAAGGTGGTTGTATAGACATCACTTTGAAAGCAGGCATCCAAGA C48 AAGCAAAAAATTGGTTTTATAGACATCACTTTGAATGCAGGCAGCCAAGA C49 AAGCTAAGAAATGGATTTATAAACATCACTATGAAAGCACTAATCCAAGA C50 AAGCTAAAGGTTGGTTTTATAGACATCACTATGAAAGTAGGCATCCAAGA ...* . *** ** *..** ** :*** : .* ****.. C1 ATAAGTTCAGAAGTACACATCCCACTAGGG---AATGCTAAATTAGTAAT C2 ATAAGTTCAGAAGTACACATTCCACTAGGGGATGATTCTAAATTGGTAAT C3 ATAAGTTCAGAAGTACACATCCCATTAGGG---GAGGCTAGGTTAGTAGT C4 GTAAGCTCAGAAGTACACATACCATTAGGG---GAGGCTAGATTAGTAAT C5 ATAAGTTCAGAAGTACACATCCCATTAGGA---GAGGCTACATTAGTAAT C6 ATCAGTTCAGAAGTACACATCCCACTAGGG---GATGCTAGATTAGTCAT C7 ATAAGTTCAGAAGTACACATCCCATTGGAG---GATGCTAAATTGGTAAT C8 ATAAGTTCAGAAGTACACATCCCACTAGGG---GATGCTGAATTAGTAGT C9 GTAAGTTCAGAAGTACACATCCCATTAGGG---GATGCTAGATTAATAGT C10 GTAAGTTCAGAAGTACATATCCCAATAGGA---GAGGCTAAATTAGTAAT C11 ACAAGTTCAGAAGTACACATCCCACTAGGG---GATGCTAAATTAGTAGT C12 GCAAGTTCAGAAGTACACATACCATTAGGG---GAGGCTAAATTAGTAAT C13 ATAAGTTCAGAAGTACACATCCCACTAGGA---GAAGCCAGACTGGTAGT C14 GTAAGTTCAGAAGTACACATACCATTAGGG---GATGCTAGATTAGTAGT C15 GTAAGTTCAGAAGTACATATCCCACTGGGA---GAGGCTAGATTAGTAAT C16 GTAAGTTCAGAAGTATATATCCCACTAGGA---GAGGCTAGACTAGTAAT C17 ATAAGTTCAGAAGTACACATCCCACTAGGG---GATGCTAAATTGGTAGT C18 GTAAGTTCAGAAGTACACATTCCATTAGGG---GAGGCTAGATTAGTAAT C19 GTAAGTTCAGAAGTACACATCCCACTAGGG---GGAGCTATGTTAATAAT C20 GTAAGTTCAGAAGTACACATCCCATTAGGG---GAAGCAAGGTTAGTAAT C21 GTAAGTTCAGAAGTACACATCCCATTAGGG---GATGCTAGATTAGTAAT C22 GTAAGTTCAGAAGTACACATCCCACTAGGG---GATGCTAGATTGGTAGT C23 GTAAGTTCAGAAGTACACATACCATTAGGG---GATGCTAAATTGGTAAT C24 ATAAGTTCAGAAGTACTCATTCCACTAGGG---GAAGATAAATTAGCAAT C25 GTAAGTTCAGAAGTACATATCCCATTAGGG---GATGCAAGATTAATAGT C26 ATAAGTTCAGAAGTACACATCCCACTAGGG---GAAGCTAAATTGGTAGT C27 GTAAGTTCAGAAACACACATCCCATTAGGG---GAGGCAAGATTAGTAAT C28 GTGAGCTCAGAAGTACACATCCCACTAGAG---GAAGCTAAATTAGTAAT C29 AAAAGTTCAGAAGTACACATCCCACTAGGG---GATGCTAAATTAGTAGT C30 GTAAGTTCAGAAGTACATATCCCACTAGGA---GAAGCTAAATTAGTAGT C31 GTAAGTTCAGAAGTACATATCCCACTAGGG---GATGCTAGATTAGTAGT C32 GTAAGTTCAGAAGTACACATCCCACTAGGG---AATGCCGAATTAGTAGT C33 GTAAGCTCAGAAGTACATATTCCCCTAGGA---GAGGCTAAATTAGTAAT C34 ATAAGTTCAGAAGTACACATCCCACTAGGG---GAGGCTAGATTGGTAAT C35 ATAAGTTCAGAAGTACACATCCCATTAGGA---GAAGCTAGATTGGTAAT C36 GTAAGTTCAGAAGTACACATCCCATTAGGA---GATGCCAGGTTAGTAAT C37 ATAAGCTCAGAAGTACACATCCCACTAGGG---GATGCTAAATTGGTGGT C38 ATAAGCTCAGAAGTACACATCCCACTAGGG---GATGCTAAACTGGTAAT C39 ATAAGTTCAGAAGTACACATCCCACTAGAG---GAAGCTAGATTAGTAGT C40 GTAAGTTCGGAAGTACACATTCCACTAGGG---GATGCTAGATTAGTAAT C41 ATAAGTTCAGAAGTACACATCCCACTAGGA---GATGCTAAACTAGTAGT C42 ATAAGTTCAGAAGTACACATCCCACTAGGG---GAGGCTGAATTAGTAGT C43 ATAAGTTCAGAAGTACACATCCCACTAGGG---GATGCTGAATTGGTAAT C44 ATAAGTTCAGAAGTACACATCCCACTAGGG---GATGCGAAATTGGTAAT C45 ATAAGTTCAGAAGTACACATCCCACTAGGG---GATGCTAAATTGGTAAT C46 ATAAGTTCAGAAGTCCACATCCCATTAGGG---GATGCTAAATTAGTAGT C47 ATAAGTTCAGAAGTACACATACCACTAGAA---GCAGCTAGATTAGTAAT C48 GTAAGTTCAGAAGTACACATCCCACTAGGG---GATGCCAAATTAGTAGT C49 ATAAGTTCAGAAGTACACATCCCACTAGGG---GATGCTAAATTAGTAGT C50 ATAAGTTCAGAAGTACACATCCCACTAGGG---GATGCTAGATTAATAGT . ** **.***. . : ** **. *.*.. . . . . *.. .* C1 AACAATATATTGGGGTCTGCATACAGGAGAAAGAAAATGGCATCTGGGTC C2 AACAACATATTGGAGTCTGCATACAGGAGAAAGAGACTGGCATTTGGGTC C3 ATCAACTTATTGGGGTCTGCATACAGGAGAAAGAGACTGGCATTTGGGTC C4 AATAACATATTGGAGTTTGCAGACAGGAGAAAGAGATTGGCATTTGGGTC C5 AATAACATATTGGGGTTTGCAAACAGGAGAAAGAGATTGGCATCTAGGTC C6 AATAACATATTGGGGTCTGCATACAGGAGAAAGAGAATGGCATTTGGGTC C7 AACAACATATTGGGGTCTGCATACAGGAGAAAGAGAATGGCATTTGGGTC C8 AACAAATTATTGGGGTCTGCATACAGGAGAAAGAGACTGGCATTTGGGTC C9 AAAAACATATTGGGGGTTGCAGACAGGAGAAAGAGCTTGGCATTTGGGTC C10 AAGAACATATTGGGGTCTGCAGACAGGGGAAAAGGATTGGCAATTGGGTC C11 AACAACATATTGGGGCCTGCATACAGGAGAAAGAGATTGGCATTTGGGTC C12 AATAACATATTGGGGTTTGCAAACAGGAGAAAGAGAGTGGCATTTGGGTC C13 GAGAACATATTGGGGTCTGCATACAGGAGAAAGAGAATGGCATCTGGGTC C14 AAGAACATATTGGGGTCTGCATACAGGAGAAAAAGACTGGCACTTGGGTC C15 AAGAACATATTGGGGTCTGCAGACAGGAGAAAAGGACTGGCACTTGGGTC C16 TAAAACATATTGGGGTCTGCAGACAGGAGAAAAGGACTGGCACTTGGGTC C17 AACAACATATTGGGGTCTACATACAGGAGAAAGAGACTGGCATTTGGGTC C18 AACCACATTTTGGGGTCTGCAAACAGGGGAAAGAGAATGGCATTTAGGTC C19 AAGAACATATTGGGGTCTGAATACAGGAGAAAGAGACTGGCACTTGGGTC C20 AAAGACATATTGGGGGTTGCAAACAGGAGAAAGAGAGTGGCATTTAGGTA C21 AAAAACATATTGGGGGTTGCAGACAGGAGAAAGAGCTTGGCATTTAGGGC C22 AAAAACATATTGGGGTCTACATACAGGAGAAAGAGATTGGCATTTAGGTC C23 AAAAACATATTGGGGTTTGCAAACAGGAGAAAGAGACTGGCATTTGGGTC C24 AACAACATATTGGGGTCTGCATACAGGAGAAAGAGATTGGCATTTGGGTC C25 AAAAACATATTGGGGGTTGCAAACAGGAGAAAGAGAATGGCATCTGGGTC C26 AACAACATATTGGGGTCTGCATACTGGAGAAAGAGATTGGCATTTGGGTC C27 AACAACATATTGGGGTTTGCAAACAGGAGAAAGAAGTTGGCATTTGGGTC C28 AACAACATACTGGGGACTGCATACAGGAGAAAGAGATTGGCATCTGGGTC C29 AACAACATATTGGGGTCTGCATACAGGAGAAAGAGATTGGCATTTGGGTC C30 AAAAACATATTGGGGTCTGCAGACAGGAGAAAGAGACTGGCAATTGGGTC C31 AAGAACTTATTGGGGTCTACATACAGGAGAAAAAGACTGGCAATTGGGTC C32 AAAAACATATTGGGGTCTGCATACAGGAGAAAGAGACTGGCACTTGGGTC C33 AAGAACATATTGGGGTCTGCAGACAGGAGAAAAGGACTGGCAATTGGGTC C34 AACAACATATTGGGGTCTGCATACAGGAGAAAGAGACTGGCATTTGGGTC C35 AATAACATATTGGGGTCTGCATACAGGAGAGAGAGACTGGCATTTGGGTC C36 AAAAACATATTGGGGTCCGCTAACAGGAGAAAGAGCTTGGCATTTGGGTC C37 AGCAACATATTGGGGTCTGCATACAGGAGAAAGAGAATGGCATTTGGGTC C38 AATAACATATTGGGGTCTGCATACAGGAGAAAGAGACTGGCATTTGGGTC C39 AACAACATATTGGGGTCTGCATGCAGGAGAAAGAGACTGGCATTTGGGTC C40 AAAAACATATTGGGGTCTGCATCCAGGAGAAAAAGACTGGCAGTTGGGTC C41 AACAACATATTGGGGTCTGCATACAGGAGAAAGAGACTGGCATTTGGGTC C42 AACAACATATTGGGGTCTGCATACAGGAGAAAGAGACTGGCATTTGGGTC C43 AACAACATATTGGGGTCTGCATACAGGAGAAAGAGACTGGCATTTGGGCC C44 AACAACATATTGGGGTCTACATACAGGAGAAAGAGACTGGCATTTGGGTC C45 AACAACATATTGGGGTCTGCATACAGGAGAAAGAGACTGGCATTTGGGTC C46 AAAAACATATTGGGGTCTGCATACAGGAGAACAAGACTGGCATTTGGGTC C47 AACAACATACTGGGGACTGCATACAGGAGAAAGAGATTGGCATCTGGGTC C48 AAGAACATATTGGGGTCTGCATACAGGAGAAAAAGACTGGCAATTGGGTC C49 AACAACATATTGGGGACTGCATACAGGAGAAAGAGACTGGCATTTGGGTC C50 AAGAACATATTGGGGTCTGCATACAGGAGAAAAAGACTGGCACTTGGGTC * :*: ***.* ..: *:**.**..... ***** *.** . C1 AGGGAGTCTCCATAGAATGGAGGAAAAAGAGCTATAACACACAAGTAAAC C2 AAGGAGTCTCCGTGGAATGGAGGAAAAGGAGATATAGCACACAAGTAGAC C3 ATGGAGTCTCCATAGAATGGAGGGAAAGGAGCTATAGCACACAAATAGAC C4 ATGGAGTCTCCATAGAATGGAGATTGAGGAGATATAGCACACAAATAGAC C5 ATGGAGTCTCCATAGAATGGAGGCTAAAAAGATATAGCACACAAATAGAT C6 AGGGAGTCGCCATAGAATGGAGGAAAAAGAGATATAGCACACAAGTAGAC C7 AGGGAGTCTCCATAGAATGGAGGAAAAGGAGATATAGCACACAAGTAGAC C8 AAGGAGTCTCCATAGAATGGAGGAAAAAGAGATTTAGCACACAAGTAGAC C9 ATGGAGTCTCCATAGAATGGAGATTGAGAAAATATAGCACACAAGTAGAC C10 ATGGGGTCTCCATAGAATGGAGGCAGAAAAAATATAGCACACAAATAGAT C11 AAGGAGTCTCCATAGAATGGAGACAAAGGAGATATAGCACACAAGTAGAC C12 AGGGAGTCTCCATAGAATGGAGATTGAGAAGGTATAGCACACAAGTAGAC C13 AGGGGGTCTCCATAGAATGGAGGAAGAGGAGATATAGCACACAAGTAGAC C14 ATGGGGTCTCCATAGAATGGAGGCTGAAAAGTTATAGCACACAAATAGAT C15 ATGGAGTCTCCATAGAATGGAGGCAGGGAAAATATAGCACACAGCTAGAT C16 ATGGAGTCTCCATAGAATGGAGACAGAAAAACTATTGCACACAAATAGAT C17 AGGGAGTCTCCATAGAATGGAGGAAAAGGAGATATAGCACACAAGTAGAC C18 ATGGAGTCTCCATAGAGTGGAGACTGAGAAGATATAGCACACAAGTAGAC C19 ATGGGGTCTCCATAGAATGGAGACAGAGAAGGTATAGCACACAAATAGAT C20 ATGGAGTCTCCATAGAATGGAGATTGAGAAGATATAGCACACAAGTAGAT C21 ATGGGGTCTCCATAGAATGGAGAATGAAAAGATATAGCACGCAAGTAGAC C22 AGGGAGTCTCCATAGAATGGAGGAAAAGGAAATATAGCACACAGGTAGAC C23 ATGGGGTCTCCATAGAATGGAGATTGAGAGGATATAACACACAAGTAACC C24 AGGGAGTCTCCATAGAATGGAGGAAAGGGAAATATAGCACACAAGTAGAC C25 ATGGAGTCTCCATAGAATGGAGATTGAAAAGATATAGTACACAAGTAGAC C26 AGGGAGTCTCCATAGAATGGAGGAAAAGGAGATATAGCACACAAGTAGAC C27 ATGGAGTCTCCATAGAATGGAGATTGAGAAAATATAGCACACAAGTAGAC C28 AGGGAGTCTCCATAGAATGGAGGCAGGGGAAGTATAGTACACAAATAGAC C29 AGGGAGTCTCCATAGAATGGAGGAAAAGGAGATATAGTACACAAGTAGAC C30 ATGGAGTCTCCATAGAATGGTGGCAGAAAAACTATAACACACAAATAGAT C31 ATGGGGTCTCCATAGAATGGAGGCTAAAAAAATATAGCACACAAATAGAT C32 ATGGGGTCTCCATAGAATGGAGACAGAAGAGATATAGCACACAAATAGAT C33 ATGGAGTCTCCATAGAATGGAGGCAGGGAAGATATAACACACAAATAGAT C34 AGGGAGTCTCCATAGAATGGAGGAAAAGGAGATATAATACACAAGTAACC C35 AGGGAGTCTCCATAGAATGGAGGAAAAGGAGATATCGCACACAAGTAACC C36 ACGGAGTCTCCATAGAATGGAGATTGAGAAGATATAGCACACAAGTAGAC C37 AGGGAGTCTCCATAGAATGGAGGAAAAGGAAATATAACACACAAGTAGAC C38 AGGGAGTCTCCATAGAATGGAGGAAAAGGAAATATAGCACACAAATAGAT C39 AGGGAGTCTCCATAGAATGGAGAGAAAAGAAATATAGAACACAAGTAGAC C40 ATGGGGTCTCCATAGAATGGAAACTAAAAAGATATAGCACACAAATAGAT C41 AGGGAGTCTCCATGGAATGGAGGAAAAAGAGATATAGCACACAAGTGGAC C42 AGGGAGTCTCCATAGAATGGAGGACAAGGGGATATAGCACGCAAGTAGAA C43 AGGGAGTCTCCATAGAATGGAGGAGAAAGAGATATAGCACACAAGTAGAA C44 AGGGAGTCTCCATAGAATGGAGGAAAAAGAGATATAGCACACAAGTAGAC C45 ATGGAGTCTCCATAGAATGGAGGAAAAGGAGATATAGCACACAAATAGAC C46 ATGGAGTCTCCATAGAATGGAGGGAAAAGAGATATAACACACAAGTAGAC C47 AGGGAGTCTCCATAGAATGGAGACAGGAAAGGTATAGGACACAAGTAGAC C48 ATGGGGTGTCCATAGAATGGAGGCTAAGAAGATATAGCACACAAATAGAC C49 AGGGAGTCTCCATAGAATGGAGAGAAAGGAGATATAGCACACAAGTAGAC C50 ATGGGGTCTCCATAGAATGGAGGCTAAAAAGATATAGCACACAAGTAGAT * **.** **.*.**.***:.. ...... *:* . **.**. *... C1 CCTAACCTAGCAGACAAACTAATTCACCTGCATTATTTTAATTGTTTTTC C2 CCTAACTTAGCAGACCAACTAATTCACCTGTATTACTTTGATTGTTTTTC C3 CCTGACCTAGCAGACCAACTAATTCACCTGTATTATTTTGATTGTTTTTC C4 CCTGGCCTGGCAGACCAGCTAATTCATATGCATTATTTTGATTGTTTTGC C5 CCTGACCTAGCAGACCAACTAATTCATCTGCATTATTTTGACTGTTTTTC C6 CCTGGCCTAGCAGACCAACTAATCCATATGTATTATTTTGATTGTTTTTC C7 CCGGACCTAGCAGACCAACTAATTCACCTGTATTACTTTGATTGTTTTTC C8 CCTAGCCTAGCAGACCAACTAATTCATCAATATTATTTTGATTGTTTTTC C9 CCTGGCCTGGCAGACCAGCTAATTCATATGTATTATTTTGATTGTTTTAC C10 CCTGACCTAGCAGACCAACTGATTCATCTACAATATTTTGACTGTTTTTC C11 CCTGAACTAGCAGACCAACTAATTCATATGTACTATTTTGATTGTTTTTC C12 CCTGGCCTGGCAGACCAGCTAATTCATATGCATTATTTTGATTGTTTTGC C13 CCTGGCCTGGCAGACCAACTAATTCATTTATATTATTTTGATTGTTTTGC C14 CCTGACTGGGCAGACCAACTAATTCACCTACATTATTTTGACTGTTTTTC C15 CCTGACCTAGCAGACCAACTGATTCATATACACTATTTTGACTGTTTTTC C16 CCTGACCTAGCAGACCGACTGATTCATCTGCAATATTTTGACTGTTTTTC C17 CCTGAACAAGCAGACCAACTAATTCATCTGTATTACTTTGACTGTTTTTC C18 CCTGGCCTGGCAGACCAACTAATTCATATGCATTATTTTGATTGTTTTGC C19 CCTGACCTAGCAGACCAACTGATTCACCTGCATTATTTTGACTGTTTTTC C20 CCTGGCCTGGCAGACCAGCTAATTCATATGCATTATTTTGATTGTTTTGC C21 CCTGGCTTGGCAGACCAACTAATTCATATGCATTATTTTGATTGTTTTGC C22 CCTAGCACAGCAGACCAACTAATTCACCTGCATTACTTTGATTGTTTTTC C23 CCTGACCTGGCAGACCAGCTAATTCATATGCATTATTTTGATTGTTTTGC C24 CCTGACCTAGCAGACCAACTAATTCATCTGTATTATTTTGATTGTTTTTC C25 CCTGACTTGGCGGACCAGCTAATTCATGTGCATTATTTTGATTGTTTTGC C26 CCTGACCTAGCAGACCATCTAATTCATCTGTATTACTTTGATTGTTTTTC C27 CCTGGCCTGGCAGACCAACTAATTCATATGCATTATTTTGATTGTTTTGC C28 CCTGGCCTGGCAGACCAACTGATCCATATATATTATTTTGATTGTTTTAC C29 CCTGGCACAGCAGACCAACTAATTCATCTGTATTATTTTGATTGTTTTTC C30 CCTGACCTAGCAGACCAACTGATTCACCTACAATATTTTGACTGTTTTTC C31 CCTGACCTGGCAGACCAACTAATTCATCTGCATTATTTTAACTGTTTTTC C32 CCTGACCTAGCAGACCAACTGATTCACCTGCACTATTTTGACTGTTTTTC C33 CCTGACCTAGCAGACCAACTGATTCATTTACAATATTTTGACTGTTTTTC C34 CCTGACCTGGCAGACCAACTAATTCATCTGTATTACTTTGATTGTTTTTC C35 CCTGACCTAGCAGACCAACTAATTCATCTGTATTACTTTGATTGTTTTTC C36 CCTGGCCTGGCAGATCAGCTAATTCATATGCATTATTTTGATTGTTTTGC C37 CCTGGCCTAGCAGACCAACTAATTCATCTGTATTACTTTGATTGTTTTTC C38 CCTAACCTAGCAGACCAACTAATTCATCTGCATTACTTTGATTGTTTTTC C39 CCTGACCTAGCAGACCAACTAATTCACCAATACTATTTTGATTGTTTTTC C40 CCTGACCTGGCAGACCAACTAATCCATCTGCATTATTTTAATTGTTTTTC C41 CCTGACCTAGCAGACCAACTAATTCATCTGTATTATTTTAATTGTTTTTC C42 CCTGACCTAGCAGACCAACTAATCCATCTGTATCACTTTGATTGTTTTTC C43 CCTGGCCTAGCAGACCGACTAATTCATCTGCATTATTTTGATTGTTTTTC C44 CCTAACCTAGCAGACCAACTAATTCATCTGTATTACTTTGATTGTTTTTC C45 CCTGACCTAGCAGACCAACTAATTCATCTGTATTATTTTGATTGTTTTTC C46 CCTGACCTAGCAGACCAACTAATTCATCTGTATTACTTTGATTGTTTTTC C47 CCTGACCTAGCAGACCAACTGATCCATATATATTATTTTAATTGTTTTTC C48 CCTGACCTGGCAGACCAACTAATTCATCAACATTATTTTGACTGTTTTTC C49 CCTGACCTAGCAGACCAACTAATTCATATATATTATTTTGACTGTTTTTC C50 CCTGACCAGGCAGACCAACTAATTCATCTGCATTATTTTGACTGTTTTTC ** ... .**.** .. **.** ** :. * * ***.* ****** * C1 AAACTCTGCTATAAGACATGCCATATTAGGACACATAGTTAGGCCTACGT C2 AGACTCTGCTATAAGAAATGCCATAGTAGGACGCTTAGTTAGGCCTAGGT C3 AGAATCTGCTATAAGAAATGCCATATTAGGACGTATAGTTAGACCTAGGT C4 AGACTCTGCCATAAGAAGAGCCATATTAGGACACATAGTTATTCCTAGGT C5 AGAATCTGCCATAAGGAAAGCCCTATTAGGACAAATAGTTAGCCCTAGCT C6 AGAGTCTGCTATAAGAAATGCCATATTAGGACGTTTAGTTAATCCTAGGT C7 AGAATCTGCTATAAGAAATGCCATATTAGGACATAGAGTTAGTCCTAGGT C8 AGAATCGGCCATAAGAAATGCCATATTAGGACGTATAGTTAGGCCTAGGT C9 AGAATCTGCCATAAGACAAGCCATATTAGGACACATAGTTATTCCTAGGT C10 AGACTCTGCCATAAGGAGAGCCATATTAGGACAAGTAGTTAGACATAGGT C11 AGAAACTGCTATAAGACAAGCCATATTAGGACGCATAGTTAGACCTAGGT C12 AGACTCTGCCATAAGAAAAGCCATATTAGGACGCATAGTTATTCCTAGGT C13 AGAATCTGCCATAAGGAAGGCCATATTAGGACAGATAGTTACTCCTAGGT C14 AGACTCTGCCATAAGGAAAGCCTTATTAGGACAAATAGTTAGACCTAATT C15 AGACTCTGCCATAAGGAAAGCCATATTAGGACAAGTAGTTAGACGTAGGT C16 AGAATCTGCCATAAGGAAAGCCATATTAGGACAAGTAGTTAGATATAGGT C17 AGAATCTGCTATAAGAAATTCCATATTAGGACATAGAGTTAGTCCTAGGT C18 AGACTCTGCCATAAGGAAAGCCATATTAGGACATAGAGTTAGCCCTAGGT C19 AGAATCTGCCATAAGGAATGCCATATTAGGAGAAATAGTTAGACCTAGGT C20 AGACTCTGCCATAAGAAAAGCCATACTAGGACACATAGTTATTCCTAGGT C21 AGACTCTGCCATAAGAAAAGCCATATTAGGACATATAGTTAGCCCTAGGT C22 AGACTCTGCTATAAGAAATGCCATATTAGGACGTATAGTTAGCCCTAGGT C23 AGACTCTGCCATAAGAAAAGCCATATTAGGCCACATAGTTATCCCTAGGT C24 AGAATCTGCTATAAGAAATGCACTATTAGGACATATAGCTAGACCTAGGT C25 AGACTCTGCCATAAGAAAAGCCATATTAGGACACATAGTTATCCCTAGGT C26 AGACTCTGCTATAAGACAAGCCATATTAGGATATAGAGTTAGTCCTAGTT C27 AGAATCTGCCATAAGGAATGCCATCTTAGGACATATAGTTAGCCCTAGGT C28 AGACTCTGCCATAAGGGAAGCCACATTAGGACATAGAATTAGCCCTAGGT C29 AGAGTCTGCTATAAGAAGTGCCATAGTAGGACGCTTAGTTATTCCTAAGT C30 AGAATCTGCTATAAGGAGAGCCATATTAGGACAAGTAGTTATAAGTAGGT C31 AGACTCTGCCATAAGGAAAGCCATATTAGGACAAGTAGTTAGCCCTAGTT C32 AGAATCTGCCATAAGGAAAACCATATTAGGACAAGTAGTTAGACCTAGGT C33 AGACTCTGCCATAAGGAGAGCCATATTAGGACAAGTAGTTAGACGTAGGT C34 AGAAGCTGCTATAAGAAGTGCCATATTAGGACATATAGTTAGTCCTAGGT C35 AGAATCTGCTATCAGAAATACCATATTAGGACATAGAGTTAGTCCTAGGT C36 AGACTCTGCCATAAGAAAAGCCATATTAGGACAAGTAGTTATTCATAGGT C37 AGAATCTGCTATAAGAAATGCCATACTAGGATATAGAGTTAGTCCTAGGT C38 AGAATCTGCTATAAGAAAAGCCATATTAGGACATAGAGTTAGCCCTAGTT C39 AGAATCTGCCATAAGAAATGCCATAGTAGGATGTATAGTTAGACCTAGGT C40 AGACTCTGCCATAAGGAAAGCCATATTAGGACAAGTAGTTAGCCCTAGTT C41 AGAGTCTGCTATAAGAAATGCCTTGTTAGGACATAAAGTTAGTCCTAGTT C42 AGAATCTGCTATAAGAAATGCCCTATTAGGACATAGAGTTAGTCCTAGGT C43 AGAATCTGCTATAAGAAATGCCATTTTAGGACGTGTAGTTAGCCCTAGTT C44 AGAATCTGCTATAAGAAAAGCCATATTAGGACATATAGTTAGTCCTAGGT C45 AGAATCTGCTATAAGAAAGGCCATATTAGGAGAAGTAGTTAGTCATAGGT C46 AGACTCTGCTATAAGAAAGGCCATATTAGGACACATAGTTAGTCCTAGGT C47 AGAATCTGCTATAAGAAATGCCATATTAGGACACATAGTTAGCCCTAGGT C48 AGACTCTGCCATAAGGAAAGCCATACTAGGACAAGTAGTTAGCCCTAGGT C49 AGAATCTGCCATAGGAAATGCCATATTAGGACATAGAGTTAGACCTAGGT C50 AGACTCTGCCATAAGGAAAGCCATATTAGGACAAGTGGTTAGCCCTAGTT *.* * ** **..*. . *. ****. . .. ** ** * C1 GTAAATATCAAGCAGAACATAACACGGTAGGGTCGCTACAGTACTTGGCA C2 GTGAATGTCCAACAGGACATAAAAAGGTAGGATCTCTACAGTACTTGGCA C3 GTGATTATCAAGCAGGACATAACAAGGTAGGATCTCTACAGTACTTGGCA C4 GTGACTATCAAGCAGGACATAATAAGGTAGGATCTCTACAATACTTGGCA C5 GTGACTATCAAGCAGGACATAATAAAGTAGGATCTCTACAATACCTAGCA C6 GTGAATATAGAGCAGGACATAACAAGGTAGGCTCTCTACAATACTTGGCC C7 GTGAATATCAAGCAGGACATAACAAGGTAGGATCTCTACAGTACTTGGCA C8 GTGAGTATCAAGCAGGACATAACAAGGTAGGGTCTCTACAGTACTTGGCA C9 GTGATTATCAAGCAGGACATAATAAGGTAGGATCCCTACAATATTTGGCA C10 GTGAATATCCATCAGGACATAATAAGGTAGGATCCCTACAATATTTGGCA C11 GTGAGTTTCAAGCAGGACATAACAAGGTAGGATCTCTACAGTACTTGGCG C12 GTGACTATCAAGCAGGACATAATAAGGTAGGATCTCTACAATACTTGGCA C13 GTAATTATCAAGCAGGACACAACAAGGTAGGATCTTTACAATATTTGGCA C14 GTGAATATCCAACAGGACATAACAAGGTAGGATCTCTACAATATTTAGCA C15 GTGAATACCCAGCAGGACATAACAAGGTAGGATCCCTACAATATTTGGCA C16 GTGAATACCCATCAGGACACAACAAGGTAGGATCCCTACAATATTTGGCA C17 GTGAATATCAAGCAGGACATAACAAGGTAGGATCTCTACAGTACTTGGCA C18 GTGATTATCAAGCAGGACATAATAAGGTAGGATCTCTACAATACCTGGCA C19 GTGAATATCAAGCAGGACATAACAAGGTAGGGTCGCTACAATATTTGGCA C20 GTGACTATCAAGCAGGACATAATAAGGTAGGATCTTTACAATACTTGGCA C21 GTGACTATCAAGCAGGACATAACAAGGTAGGATCCCTACAATACTTGGCA C22 GTGAATATCAAGCAGGACATAACAAGGTAGGGTCTCTACAGTACTTGGCA C23 GTGATTATCAAGCAGGACATAATAAGGTAGGATCTCTACAATACTTAGCA C24 GTGAGTATCAAGCAGGACATAACAAGGTAGGATCTCTACAGTACTTGGCA C25 GTGACTATCAAGCAGGACATAATAAGGTAGGGTCTCTACAATTCTTGGCA C26 GTGAATATCAAGCAGGACATAACAAGGTAGGATCTCTACAGTACTTGGCA C27 GTGACTATCAAGCAGGACATAATAAGGTAGGATCTCTACAATATCTAGCA C28 GTAACTATCAAGCAGGACATAACAAGGTAGGATCCCTACAATATTTGGCA C29 GTGAATATCAAGCAGGACATCCCAAGGTAGAATCTCTACAATACTTGGCA C30 GTGAATATCCATCAGGACATAACAAGGTAGGATCCCTACAATATTTGGCA C31 GTGAATATCAAGCAGGACATAACAAGGTAGGATCTCTACAATATTTGGCA C32 GTGAATATCAAGCAGGACACAATAAGGTAGGATCTCTACAATATTTGGCA C33 GTGAGTATCCATCAGGACATAACAAGGTAGGATCCCTACAATATTTGGCA C34 GTGAATATCAAGCAGGACATAACAAGGTAGGATCTCTACAGTACTTGGCA C35 GTGAATATCAAGCAGGACATAACAAGGTAGGATCTCTACAGTACTTGGCA C36 GTGACTATCAAGCAGGACATAATAAGGTAGGATCTCTACAATACTTGGCA C37 GTGAATATCAAGCAGGACATAATAAGGTAGGATCTCTACAGTACTTGGCA C38 GTGAATATCAAGCAGGACATAACAAGGTAGGATCTCTACAGTACTTGGCA C39 GTGAATATCAAGCAGGACATAACAAGGTAGGATCTCTACAGTACTTGGCA C40