--- EXPERIMENT NOTES --- EXPERIMENT PROPERTIES #Tue Feb 20 00:35:32 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_4/input.fasta input.names= mrbayes.params= codeml.params= --- PSRF SUMMARY Estimated marginal likelihoods for runs sampled in files "/opt/ADOPS/HIV1_N3/VIF_1_4/batch/allfiles/mrbayes/input.fasta.fasta.mrb.run1.p" and "/opt/ADOPS/HIV1_N3/VIF_1_4/batch/allfiles/mrbayes/input.fasta.fasta.mrb.run2.p": (Use the harmonic mean for Bayes factor comparisons of models) (Values are saved to the file /opt/ADOPS/HIV1_N3/VIF_1_4/batch/allfiles/mrbayes/input.fasta.fasta.mrb.lstat) Run Arithmetic mean Harmonic mean -------------------------------------- 1 -7755.72 -7799.42 2 -7754.11 -7800.93 -------------------------------------- TOTAL -7754.62 -7800.44 -------------------------------------- Model parameter summaries over the runs sampled in files "/opt/ADOPS/HIV1_N3/VIF_1_4/batch/allfiles/mrbayes/input.fasta.fasta.mrb.run1.p" and "/opt/ADOPS/HIV1_N3/VIF_1_4/batch/allfiles/mrbayes/input.fasta.fasta.mrb.run2.p": Summaries are based on a total of 3002 samples from 2 runs. Each run produced 2001 samples of which 1501 samples were included. Parameter summaries saved to file "/opt/ADOPS/HIV1_N3/VIF_1_4/batch/allfiles/mrbayes/input.fasta.fasta.mrb.pstat". 95% HPD Interval -------------------- Parameter Mean Variance Lower Upper Median min ESS* avg ESS PSRF+ ------------------------------------------------------------------------------------------------------ TL{all} 5.242726 0.125107 4.574893 5.939462 5.225802 860.12 1000.44 1.001 r(A<->C){all} 0.108352 0.000113 0.087233 0.129236 0.108167 773.61 808.15 1.000 r(A<->G){all} 0.293946 0.000762 0.243323 0.351600 0.294177 347.21 391.35 1.001 r(A<->T){all} 0.041448 0.000035 0.030583 0.053618 0.041263 834.29 834.69 1.000 r(C<->G){all} 0.032603 0.000060 0.017845 0.048168 0.032143 785.50 812.72 1.000 r(C<->T){all} 0.444983 0.001004 0.382612 0.505599 0.445002 342.54 387.44 1.001 r(G<->T){all} 0.078668 0.000106 0.059367 0.100106 0.078334 730.66 737.93 1.001 pi(A){all} 0.412998 0.000244 0.382918 0.442576 0.412896 658.44 659.57 1.000 pi(C){all} 0.165944 0.000148 0.142172 0.189146 0.166084 528.36 561.09 1.001 pi(G){all} 0.223716 0.000162 0.199474 0.249180 0.223457 674.95 683.43 1.000 pi(T){all} 0.197341 0.000148 0.172839 0.219938 0.197132 532.90 692.94 1.000 alpha{1,2} 0.491868 0.004089 0.378454 0.625028 0.485837 943.19 1011.62 1.000 alpha{3} 1.776698 0.096926 1.210081 2.382699 1.750281 1154.07 1264.29 1.000 pinvar{all} 0.219833 0.001106 0.156165 0.284423 0.220367 900.63 964.33 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 -7889.091955 Model 2: PositiveSelection -7842.634413 Model 0: one-ratio -8342.741706 Model 3: discrete -7833.22322 Model 7: beta -7853.822284 Model 8: beta&w>1 -7810.694289 Model 0 vs 1 907.2995020000017 Model 2 vs 1 92.9150840000002 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.US.x.K0547TOB8U.GU729863_) Pr(w>1) post mean +- SE for w 31 I 1.000** 2.697 37 G 0.995** 2.688 39 F 1.000** 2.697 63 K 0.990** 2.681 92 K 1.000** 2.697 101 D 0.820 2.391 127 R 0.993** 2.686 157 R 0.996** 2.690 165 A 1.000** 2.697 178 T 0.553 1.939 184 S 0.501 1.851 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.US.x.K0547TOB8U.GU729863_) Pr(w>1) post mean +- SE for w 31 I 1.000** 2.529 +- 0.167 37 G 0.994** 2.519 +- 0.203 39 F 1.000** 2.529 +- 0.167 63 K 0.989* 2.510 +- 0.225 92 K 1.000** 2.528 +- 0.168 101 D 0.820 2.243 +- 0.592 127 R 0.992** 2.515 +- 0.216 128 R 0.540 1.811 +- 0.749 157 R 0.995** 2.521 +- 0.196 165 A 1.000** 2.528 +- 0.169 178 T 0.564 1.852 +- 0.754 184 S 0.557 1.838 +- 0.749 Model 8 vs 7 86.25598999999966 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.US.x.K0547TOB8U.GU729863_) Pr(w>1) post mean +- SE for w 31 I 1.000** 2.367 37 G 0.995** 2.360 39 F 1.000** 2.367 63 K 0.991** 2.354 92 K 1.000** 2.367 101 D 0.863 2.173 127 R 0.993** 2.357 128 R 0.566 1.755 157 R 0.995** 2.361 165 A 1.000** 2.367 178 T 0.657 1.874 184 S 0.612 1.815 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.US.x.K0547TOB8U.GU729863_) Pr(w>1) post mean +- SE for w 31 I 1.000** 2.500 +- 0.026 37 G 0.995** 2.492 +- 0.112 39 F 1.000** 2.500 +- 0.026 63 K 0.990** 2.484 +- 0.156 92 K 1.000** 2.499 +- 0.031 101 D 0.843 2.253 +- 0.572 127 R 0.994** 2.490 +- 0.127 157 R 0.996** 2.493 +- 0.104 165 A 1.000** 2.499 +- 0.034 178 T 0.618 1.893 +- 0.772 184 S 0.541 1.776 +- 0.786
>C1 MENRWQVMIVWQVDRMRIRKWKSLVKHHMYISKKAKGWFYRHHYESTHPR ISSEVHIPLEDAKLVVTTYWGLHTGERDWHLGQGVSIEWRKKRYSTQVDP DLADQLIHLYYFDCFSESAIRNAILGRRVSPRCEYQAGHNKVGSLQYLAL AALIKPKRRKPPLPSVAKLTEDRWNKPQKTKDHRGSHTMNGHooo >C2 MENRWQVLVVRQVDRMKIRTWNSLVKHHMYISRRASGWFYRHHYESRHPK VSSEVHIPLGDARLVIKTYWGPLTGERAWHLGHGVSIEWRLRRYSTQVDP GLADQLIHMHYFDCFADSAIRKAILGQVVIHRCDYQAGHNKVGSLQYLAL TALIKPKKRKPPLPSVRKLVEDRWNKPQKTRGRRGNHTMNGHooo >C3 MENRWQAVIVWQVDRMRIRTWNSLVKHHMYVSKRAKNWFYRHHFETRHPK ISSEVHIPLGEARLVVKTYWGLHTGERDWHLGQGVSIEWRKGRYSTQVDP GLADQLIHIYYFDCFAESAIRQAILGHIVTSRCNYQAGHNKVGSLQYLAL TALVTPKKITPPLPSVRKLTEDRWNKPQRTKGHRGSHTMNGHooo >C4 MENRWQVLIVWQVDRMRIKTWHSLVKHHMYVSRKAKDWHYRHHYESRHPK VSSEVHIPLGEARIVVRTYWGLHTGEKDWQLGHGVSIEWRLKRYSTQIDP DLADQLIHLHYFNCFSESAIRRAILGQVVSPSCEYQAGHNKVGSLQYLAL KALVTPTRTKPPLPSVKKLTEDRWNKPQKTRGHRGSHTMNGCooo >C5 MENRWQVLIVWQVDRQKVKVWNSLVKYHKYRSRKAKEWHYRHHYESRNPR ISSSVYIPTGPAHIVVTTYWGLMPGERDEHMGHGVSIEWQYKEYTTQIDP ETADRMIHLHYFACFTESAIRKAILGQRVLTKCEYSAGHSQVGTLQLLAL RAVVKEKRNKPPLPSVQKLTEDRWNKHLRIKDQLESHSMHGHooo >C6 MENRWQVMIVWQVDRMRIRTWKSLVKHHIHVSKKAKGWFYRHHYESTHPR ISSEVHIPLGDAKLVIATYWGLHTGERDWHLGQGVSIEWRKEKYTTQVDP DLADQLIHRSYFDCFSESAIRNAILGYRVNPICEYQAGHSKVGSLQYLAL IALIKPKKRKPPLPSVKKLTEDRWNAPRKTKGHRGNHTMNGHooo >C7 MENRWQVMIVWQVDRMRIRTWNSLVKYHMYISKKAKNWNYRHHFQSRHPK VSSEVHIPLGDARLVVTTYWGLHTGEKDWQLGHGVSIEWRLRSYSTQIDP DQADQLIHIHYFDCFSDSAIRKALLGQVVSPKCEYLTGHNKVGSLQYLAL KALITPTKKRPPLPSVRILAEDRWNKPQKTRGRRGSHTMNGCooo >C8 MENRWQVMIVWQVDRMRINTWKSLVKYHMHVSKKAKKWSYRHHFENRNPR VSSEVHIPLEGAKLVIATYWGLHTGERDWHLGQGVSIEWRQGNYRTQIDP GLADQLIHIYYFDCFSESAIRSAILGHYISPRCNYQAGHNKVGSLQYLAL TALIAPKKTKPPLPSVKKLVEDRWNKPQKTKGHKESHTMNGHooo >C9 MENRWQVMIVWQVDRMRIRTWKSLVKHHMYVSKKAKGWVYRHHYENPHPR ISSEVHIPLGDARLVITTYWGLHTGERDWHLGQGVSIEWRKKRYSSQVDP NLADQLIHLHYFDCFSESAIRKAILGHIVSPSCEYQAGHNKVGSLQYLAL IALTTPKKIKPPLPSVAKLTEDRWNKPQKIKGHRGSHTMNGHooo >C10 MENRWQVMIVWQVDRMKIRTWNSLVKHHMYISKKANGWFYRHHYDCRHPK VSSEVHIPLGGARLVIKTYWGLQTGERDWHLGHGVSIEWRLRGYNTQIEP GLADQLIHMYYFDCFADSAIRKAILGHIVTGCEYQAGHPVGSLQYLALTA LIKPKRIKPPLPSIKKLVEDRWNNPQKIRGRRGNHTMNGHooooo >C11 MENRWQVMIVWQVDRMRIRTWHSLVKHHKYVSKKAKNWVYRHHFESRHPR ISSEVHIPLGDAILVVRTYWGLHTGEKDWHLGHGVSIEWRLRGYSTQIDP DQADQLIHLYYFDCFSESAIRKIILGQVVRPRCEYQTGHNKVGSLQYLAL KALVAPTKTKPPLPSVKILAEDRWNKPQKTKGPRESHTMNGCooo >C12 MENRWQVLIVWQVDRMKIRTWNSLVKHHMYISKRANKWVYRHHYESRHPK VSSEIHIPVGEAKLVIKTYWGLQTGERDWHLGHGVSIEWRMRKYTTQIEP GLADQLIHLYYFDCFADSAIRKAILGHIVIPRCDYQAGHNNKVGSLQYLA LTALIKPKKIKPPLPSIQKLVEDRWNNPQKIRGRRGNHTMNGHoo >C13 MENRWQVMIVWQVDRMRINTWKSLVKYHIHISKKASRWCYKHHFESRNPR VSSEVHIPLGEDRLVVTTYWGLHTGERDWHLGQGVSIEWRKRRYSTQVDP DLADQLIHLYYFDCFSESAIRHAILGRIVRPRCNYQAGHNKVGSLQYLAL TALITPKKTRPPLPSVKKLTEDRWNKPQKTKGHWGNHTMNGHooo >C14 MENRWQVLIVWQVDRMRIRTWNSLVKHHMYISRRAKGWVYRHHYESRHPK TSSEVHIPLGEAKLVIKTYWGLQTGERDWHLGHGVSIEWRLKRYSTQIDP GLADQLIHMYYFDCFAESAIRKALLGHIVIPRCDYQAGHNKVGSLQYLAL TALIKPKKRKPPLPSVRKLAEDRWNDPQKTRGRRGNHTMNGHooo >C15 MENRWQVLIVWQVDRMRIRTWNSLVKHHMYVSKRANGWFYRHHYESRHPK VSSEVYIPLGKARLVIKTYWGLQTGERDWHLGHGVSIEWRLGKYSTQVDP GLADQLIHMHYFDCFADSAIRKAILGHIVIPRCDYPAGHKKVGSLQYLAL TALIKPKKRKPPLPSVRKLAEDRWNNPQKTRDRRGNHTMNGHooo >C16 MENRWQVMIVWQVDRMRIRTWKSLVKHHMYCSKKAKGWYYRHHYESTHPK ISSEVHIPLGDARLVITTYWGLNTGERDWHLGQGISVEWRRKRYRTQVDP ELADRLIHLHYFDCFTDAAIRSALLGRIVRPRCEYQAGHNKVGSLQYLAL AALIPPKKIKPPLPSVRKLTEDRWNKPQKTKDHRGNHTMNGHooo >C17 MENRWQGLIVWQVDRMKIRTWNSLVKHHMYVSKRAKGWFYRHHYESRHPK LSSEVHIPLGEARLVIKTYWGLHTGERDWHLGHGVSIEWRLRRYSTQVDP SLADQLIHMHYFDCFTESAIRKAILGHIVIPRCDYQAGHNKVGSLQYLAL TALIKPKRIKPPLPSVSKLVEDRWNKPQKTRGRRGNHTMNGHooo >C18 MENRWQVMIVWQVDRMRIRAWKSVVKYHMHISKKAKGWFYRHHYESTHPK ISSEVHIPLGDAKLVIITYWGLHTGERDWHLGQGVSIEWRKRRYSTQVDP NLADQLIHLYYFDCFTESAIRNAILGNRVSPRCEYQAGHNKVGSLQYLAL VALITPKKRKPPLPSVAKLTEDRWNKPQRTKGHRGSPTMNGHooo >C19 MENRWQVMIVWQVDRMRIRTWKSLVKHHMYISGKAKGWFYRHHYESTNPR TSSEVHIPLGEAKLVITTYWGLHTGERDWHLGQGVSIEWRKKRYSTQVDP DLADQLIHLHYFDCFSESAIRSAILGHIVSPRCEYRAGHNKVGSLQYLAL TALVTPKKIKPPLPSVKKLTEDRWNKPQKTKGHRGSHTMNGHooo >C20 MENRWQVMIVWQVDRMRIRTWKSLVKHHMYVSKKAKGWFYRHHYESTHPR ISSEVHIPLGDARLVITTYWGLHTGERDWHLGQGVSIEWRQRRYSTQVDP NLADQLIHLYYFDCFSDSAIRKAIVGHIVSPRCEYQAGHNKVGSLQYLAL AALITPKKIRPPLPSVKKLTEDRWNKPQKTKGHRGSHTMNGHooo >C21 MENRWQVLIVWQVDRMKIRTWNSLVKHHMYTSKKASGWVYRHHYESRNPK ISSEVHIPLGEAKLVIKTYWGLQTGEREWHLGHGVSIEWRWESYSTQVDP GLADQLIHMHYFDCFTDSAIRKAILGHIVIHRCEYQAGHNKVGSLQYLAL TALIKPKKIKPPLPSVRKLVEDRWNNPQKTRGRRGNHTMNGHooo >C22 MENRWQVMIVWQVDRMRIRTWNSLVKHHMHISKKAKDWVYRHHYESTNPR ISSEVYIPLGDSRLVTTTYWGLHAGERDWHLGQGISIEWRKEKYSTQVDP DLADQLIHLYYFDCFSESAIRNAILGHRVSPRCEYQAGHNKVGSLQYLAL TALIKPKRRKPPLPSVKKLTEDRWNKSQKTKGHRGNHSMNGHooo >C23 MENRWQVMIVWQVDRMRIRTWNSIVKHHMYVSKKAKNWFYRHHYESRHPK VSSEVHIPLGDATLVVTTYWGLHTGEKEWHLGHGVSIEWRLRRYRTQVDP DLADQLIHLYYFDCFSESAIRNAILGHRVSPRCEYQAGHNKVGSLQYLAL AALITPKKTKPPLPSVRKLAEDRWNKPQKTRGHRGNQTMNGHooo >C24 MENRWQVMIVWQVDRMRIKTWKSLVKYHMYISKKAKGWFYRHHYQSNHPK ISSEVHIPLGDAELVIITYWGLHTGEREWHLGQGVSIEWRKKRYSTQIDP NLADQLIHLYYFDCFAESAIRNTILGCRVSPRCEYQAGHKKVGSLQYLAL AALTTPKKTKPPLPSVAKLTEDRWNKPQQTKGHRGNHTMNGHooo >C25 MENRWQVLTVWQVDRMKIRTWNSLVKHHMYVSKKANGWCYRHHYESRNPR VSSEVHIPLGDAKLVIKTYWGLQTGEREWHLGHGVSIEWRLRRYSTQVDP GLADQLIHMHYFDCFAESAIRSAILGHLVRPRCEYQAGHNKVGSLQYLAL TALTKPKKIKPPLPSVKKLVEDRWNKPQKTRGRRGSHTMNGHooo >C26 MENKWQVMIVWQVDRMRISTWKSLVKYHMHISKKAKKWSYRHHFESRHPR VSSEVHIPLEEAKLVVTTYWGLHTGEREWHLGQGVSIEWRQGMYSTQIDP GLADQLIHIYYFDCFSDSAIRKAILGYRVSPRCNYQAGHNKVGSLQYLAL TALIAPKKTKPPLPSVKKLVEDRWNKPREIRGHRGSHTMNGHooo >C27 MENRWQVMIVWQVDRMRIRTWKSLVKHHMYVSKKVKEWVYRHHYESTHPR ISSEVHIPLGEARLVVTTYWGLHTGERDWHLGQGVSIEWRKRRYNTQVDP DLADQLIHLYYFDCFSESAIRQALLGYRVSPRCEYQAGHNKVGSLQYLAL VAVITPKKRKPPLPSVKKLTEDRWNKPQKTKGHRGNRTMNGHooo >C28 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYISKKAKKWFYRHHYESRHPK VSSEVHIPLGDASLVVRTYWGLHTGEKDWQLGHGVSIEWRLRRYSTQIDP DLADQLIHLHYFNCFSDSAIRKAILGEIVSPSCEYPAGHNKVGSLQYLAL KALVTPTKRRPPLPSVRKLTEDRWNEPQKTRGLKGNHTMNGHooo >C29 MENRWQVMIVWQVDRMRIRTWHSLVKHHMYISKKAKNWVYRHHFESRHPK LSSEVHIPLGDARLVVKTYWGLQTGEKDWQLGHGVSIEWRLQRYSTQIDP DVADQLIHLHYFNCFSESAIRKAILGQVVSPRCDYQAGHNKVGSLQYLAL RALVAPKKIKPPLPSVKKLAEDRWNESQKTRGPRGSHTMNGHooo >C30 MENRWQVMIVWQVDRMRINAWKSIVKYHMYRSGKARKWFYRHHYESTHPR ISSEVHIPLGDAELVITTYWGLHTGERDWHLGQGVSIEWRKKRYSTQVDP DLADQLIHLYYFDCFSESAIRNAILGHRVSPRCEYQAGHNKVGSLQYLAL TALITPKRRKPPLPSVAKLTEDRWNKPQKTKGHRGSHTINGHooo >C31 MENRWQVLIVWQIDRMRIRTWNSLVKHHMYVSKRANKWVYRHHYESRNPR VSSEVHIPLGEAKLVIKTYWGLQTGERDWHLGHGVSIEWRQGIYSTQVDP GLADQLIHMHYFDCFADSAIRKAILGHIVIPRCDYQAGHNKVGSLQYLAL TALIKSKKRKPPLPSVRKLVEDRWNKPQKTRGRRGSHTMNGHooo >C32 MENRWQVMIVWQVDRMRIKTWKSLVKHHMYVSKKAKGWLYRHHYQSIHPR ISSEVHIPLGEASLVIKTYWGLHTGEREWHLGQGVSIEWRKGRYNTQVDP GLADQLIHLYYFDCFSESAIRNAILGHIVSPSCEYQAGHNKVGSLQYLAL TALRTPKKIKPPLPSVRKLTEDRWNKPQKTKGHRESHTMNGHooo >C33 MENRWQVMIVWQVDRMRIRTWHSLVKHHIHISKKAKNWLYKHHFESRHPR VSSEVHIPLGDARLVVRTYWGLHTGEKDWHLGHGVSIEWRLKSYSTQIDP DWADQLIHLHYFDCFSDSAIRKALLGQIVRPNCEYPTGHNKVGSLQYLAL KALVTPTKTKPPLPSVRILAEDRWNKPQKTRGPRESHTMNGCooo >C34 MENRWQVMIVWQVDRMRINTWKSIVKHHIYISKKAKRWIYKHHYESINPR ISSEIHIPLGDDTLVITTYWGLHTGERDWHLGQGVSIEWRKGRYSTQVDP GLADRLIHLHYFDCFSESAIKNAILGRIVRPRCEYPAGHNKVGSLQYLAL TALTTPKKRRPPLPSVRKLTEDRWNKPRQTKGHRGNHTMNGHooo >C35 MENRWQVMIVWQVDRMRIRTWISLVKHHMYISKKARGWCYRHHYESTNPR ISSEVHIPLEDARLVITTYWGLHTGERDWHLGQGVSIEWRKRKYSTQVDP GLADQLIHLHYFDCFSESAIRSAILGRIVSPSCDYQAGHNKVGSLQYLAL VALTKPKKRKPPLPSVKKLTEDRWNKPRKIKGHRESHTMNGHooo >C36 MENRWQVMIVWQVDRMRIRAWNSLVKHHMYISKKARGWFYRHHYESTHPK ISSEVHIPLGDAKLVITTYWGLHTGERDWHLGQGVSIEWRKKRYSTQVDP NLADQLIHLYYFDCFSESAIRQAILGHRVSPRCEYQAGHNKVGSLQYLAL TALITPKRTKPPFPSVARLTEDRWNKPQRTKGHRGSHTMDGHooo >C37 MENRWQVMIVWQVDRMRIRTWKSLVKHHMYISGKAKKWVYRHHYESTNPR ISSEVHIPLGDAKLVITTYWGLHTGERDWHLGQGVSIEWRKRRYNTQVDP DLADHLIHLHYFDCFSESAIRNAILGRLVSPKCEYLAGHNKVGSLQYLAL AALITPKKIKPPLPSVKKLTEDRWNKPQKTKGHRGSHTMNGHooo >C38 MENRWQVMIVWQVDRMRIRTWRSLVKHHIHISKKAKKWVYRHHYESQNPR VSSEVHIPLGEAKIVVRTYWGLQTGEKDWQLGHGVSIEWRQRQYSTQIDP DLADQLIHLNYFDCFSDSAIRKAILGQVVRRRCEYPSGHNKVGSLQYLAL QALTTQKRIRPPLPSVKKLTEDRWNKPQKIRDHRENPTMSGHooo >C39 MENRWQVMIVWQVDRMRIRTWHSIVKYHMYVSKKAKKWSYKHHYETRHPR VSSEVHIPLGDAKIVVKTYWGLHTGEKDWQLGHGVSIEWRLRRYSTQIDP DLADQLIHLHYFQCFSDTAIRKAILGQIVTPCCEYQTGHNKVGSLQYLAL KALVTPTRSRPPLPSVRKLTEDRWNKPQKTKGPRGNHTMNGCooo >C40 MENRWQVMIVWQVDRMRIRTWKSLVKHHMYVSGKAKKWFYRHHYESTHPR ISSEVHIPLGDEKLVITTYWGLHTGERDWHLGQGVSIEWRKGRYHTQVDP TLADQLIHLYYFDCFSESAIRNAILGHRVSPSCEYQAGHNKVGSLQYLAL VALRTPKKIKPPLPSVTKLTEDRWNKPRKTKGHKGSHSMNGHooo >C41 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYISGEAKGWGYRHHFESRHPK VSSEVHIPLGDARLVVRTYWGLQPGEKDWQLGHGVSIEWRQRKYSTQIDP DLADQLIHLHYFDCFSDSAIRKAILGQVVSPRCEYQAGHNKVGSLQYLAL KALVTPIRRKPPLPSVRKLTEDRWNKPQKTRGHRGNRSMNGHooo >C42 MENRWQVLIVWQVDRMKIRTWNSLVKHHMYISKRAKGWFYRHHYDSRHPK VSSEVHIPLGDARLVIKTYWGLQTGERDWHLGHGVSIEWRLRGYSTQVEP GLADQLIHMHYFDCFADSAIRKAILGHIVIPRCDYPAGHNKVGSLQYLAL TALIKPKKIRPPLPSIRKLVEDRWNNPQKTRGRRGNHTMNGHooo >C43 MENRWQVMIVWQVDRMRINTWKSLVKYHMHVSKKAKRWFYRHHYESRHPR VSSEVHIPLAEDELVITTYWGLHTGERDWHLGQGVSIEWRKNRYKTQVTP DLADQLIHLYYFDCFSESAIRNAILGYRVRPRCEYQAGHNKVGSLQYLAL TALITPKKIKPPLPSVRKLTEDRWNKPQKTKGHRGSQTMNGHooo >C44 MENRWQVMIVWQVDRKRIKTWNSLVKHHMYISKQTRNWFYRHHYESRNPR TSSEVHIPLGDAMLVVRTYWGLQPGEKEWQLGHGVSIEWRQKRYSTQVDP DLADQLIHLYYFDCFSDSAIRKAILGYRVSPRCNYQAGHNKVGSLQYLAL TALIAPKKVKPPLPSVRKLTEDRWNKPRKTRGRRENPTMNGHooo >C45 MENRWQVMIVWQVDRMRVKTWKSLVKHHMYISKKAKGWFYRHHYESTHPK ISSEVHIPIGEARLVIATYWGLHTGERDWHLGQGVSIEWRQRRYSTQVDP NLADQLIHVYYFDCFSESAIRNAILGHRVSPRCEYQAGHNKVGSLQYLAL TALVTPQQRKPPLPSVTKLTEDRWNKPQRTKGHRESHTINGHSSF >C46 MENRWQVMIVWQVDRMRIRTWNSLVKYHMYVSRKAKGWFYRHHYESRHPR VSSEVHIPLGDARIVIRTYWGLHTGEKDWQLGHGVSIEWKLKRYSTQIDP DLADQLIHLHYFNCFSESAIRKAILGEIVSPRCEYQAGHNKVGSLQYLAL KALVTTKGTKPPLPSVRKLTEDRWSKPQRIKGHRGSHTMNGHooo >C47 MENRWQVLIVWQVDRMRIRTWNSLVKHHMYTSKKANGWFYRHHYESRHPK VSSEVHIPLGEARLVIITYWGLQTGERDWHLGHGVSIEWRLKRYSTQVDP GLADQLIHMHYFDCFADSAIRKAILGHIVSPRCNYQAGRNKVGSLQYLAL TALIKPKKIKPPLPSVRKLVEDRWNKPQKIRDRRGSHTMNGHooo >C48 MENRWQVLIVWQVDRMRIRTWNSLVKHHMYVSRRANGWFYRHHYESRHPK VSSEVHIPLGDARLVITTYWGLQPGEREWLLGHGVSIEWRLKRYSTQIDP GLADQLIHMHYFDCFADSAIRKAILGHIVIPRCDYPAGHNKVGSLQYLAL TALVKPKQIKPPLPSVRKLVEDRWNDPQKIRGRRGNHTMNGHSRS >C49 MENRWQVLIVWQVDRMRIKTWNSLVKHHMYISKRARGWFYRHHYESRHPK ASSEVHIPLGEAKLVIITYWGLQTGEREWHLGQGVSIEWRLRRYSTQVDP GLADQLIHMHYFDCFADSAIRKAILGRIVIPRCDYQAGHNKVGSLQYLAL TALIKPKKIKPPLPSVRKLAEDRWNNPQKIRGRRGNHTMNGHooo >C50 MENKWQVLIVWQIDRMKIRTWNSLVKHHMYISKRANGWCYKHHYESRNPK ISSEVHIPLGEAKLVIITYWGLQTGEREWHLGHGVSIEWRMRSYSTQVDP GLADQLIHMHYFDCFAESAIRRAILGCRVSPRCDYQAGHNKVGSLQYLAL AILIKPIQRRPPLPSVRKLVEDRWNKPQTTRGRRGNHTMNGHooo 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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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: [482320] 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: [482320] 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: [482320] 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: [482320] 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: [482320] 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: [482320] 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: [482320] 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: [482320] 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: [482320] Library Relaxation: Multi_proc [8] Relaxation Summary: [482320]--->[481717] 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= 31.946 Mb, Max= 43.898 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 MENRWQVMIVWQVDRMRIRKWKSLVKHHMYISKKAKGWFYRHHYESTHPR C2 MENRWQVLVVRQVDRMKIRTWNSLVKHHMYISRRASGWFYRHHYESRHPK C3 MENRWQAVIVWQVDRMRIRTWNSLVKHHMYVSKRAKNWFYRHHFETRHPK C4 MENRWQVLIVWQVDRMRIKTWHSLVKHHMYVSRKAKDWHYRHHYESRHPK C5 MENRWQVLIVWQVDRQKVKVWNSLVKYHKYRSRKAKEWHYRHHYESRNPR C6 MENRWQVMIVWQVDRMRIRTWKSLVKHHIHVSKKAKGWFYRHHYESTHPR C7 MENRWQVMIVWQVDRMRIRTWNSLVKYHMYISKKAKNWNYRHHFQSRHPK C8 MENRWQVMIVWQVDRMRINTWKSLVKYHMHVSKKAKKWSYRHHFENRNPR C9 MENRWQVMIVWQVDRMRIRTWKSLVKHHMYVSKKAKGWVYRHHYENPHPR C10 MENRWQVMIVWQVDRMKIRTWNSLVKHHMYISKKANGWFYRHHYDCRHPK C11 MENRWQVMIVWQVDRMRIRTWHSLVKHHKYVSKKAKNWVYRHHFESRHPR C12 MENRWQVLIVWQVDRMKIRTWNSLVKHHMYISKRANKWVYRHHYESRHPK C13 MENRWQVMIVWQVDRMRINTWKSLVKYHIHISKKASRWCYKHHFESRNPR C14 MENRWQVLIVWQVDRMRIRTWNSLVKHHMYISRRAKGWVYRHHYESRHPK C15 MENRWQVLIVWQVDRMRIRTWNSLVKHHMYVSKRANGWFYRHHYESRHPK C16 MENRWQVMIVWQVDRMRIRTWKSLVKHHMYCSKKAKGWYYRHHYESTHPK C17 MENRWQGLIVWQVDRMKIRTWNSLVKHHMYVSKRAKGWFYRHHYESRHPK C18 MENRWQVMIVWQVDRMRIRAWKSVVKYHMHISKKAKGWFYRHHYESTHPK C19 MENRWQVMIVWQVDRMRIRTWKSLVKHHMYISGKAKGWFYRHHYESTNPR C20 MENRWQVMIVWQVDRMRIRTWKSLVKHHMYVSKKAKGWFYRHHYESTHPR C21 MENRWQVLIVWQVDRMKIRTWNSLVKHHMYTSKKASGWVYRHHYESRNPK C22 MENRWQVMIVWQVDRMRIRTWNSLVKHHMHISKKAKDWVYRHHYESTNPR C23 MENRWQVMIVWQVDRMRIRTWNSIVKHHMYVSKKAKNWFYRHHYESRHPK C24 MENRWQVMIVWQVDRMRIKTWKSLVKYHMYISKKAKGWFYRHHYQSNHPK C25 MENRWQVLTVWQVDRMKIRTWNSLVKHHMYVSKKANGWCYRHHYESRNPR C26 MENKWQVMIVWQVDRMRISTWKSLVKYHMHISKKAKKWSYRHHFESRHPR C27 MENRWQVMIVWQVDRMRIRTWKSLVKHHMYVSKKVKEWVYRHHYESTHPR C28 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYISKKAKKWFYRHHYESRHPK C29 MENRWQVMIVWQVDRMRIRTWHSLVKHHMYISKKAKNWVYRHHFESRHPK C30 MENRWQVMIVWQVDRMRINAWKSIVKYHMYRSGKARKWFYRHHYESTHPR C31 MENRWQVLIVWQIDRMRIRTWNSLVKHHMYVSKRANKWVYRHHYESRNPR C32 MENRWQVMIVWQVDRMRIKTWKSLVKHHMYVSKKAKGWLYRHHYQSIHPR C33 MENRWQVMIVWQVDRMRIRTWHSLVKHHIHISKKAKNWLYKHHFESRHPR C34 MENRWQVMIVWQVDRMRINTWKSIVKHHIYISKKAKRWIYKHHYESINPR C35 MENRWQVMIVWQVDRMRIRTWISLVKHHMYISKKARGWCYRHHYESTNPR C36 MENRWQVMIVWQVDRMRIRAWNSLVKHHMYISKKARGWFYRHHYESTHPK C37 MENRWQVMIVWQVDRMRIRTWKSLVKHHMYISGKAKKWVYRHHYESTNPR C38 MENRWQVMIVWQVDRMRIRTWRSLVKHHIHISKKAKKWVYRHHYESQNPR C39 MENRWQVMIVWQVDRMRIRTWHSIVKYHMYVSKKAKKWSYKHHYETRHPR C40 MENRWQVMIVWQVDRMRIRTWKSLVKHHMYVSGKAKKWFYRHHYESTHPR C41 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYISGEAKGWGYRHHFESRHPK C42 MENRWQVLIVWQVDRMKIRTWNSLVKHHMYISKRAKGWFYRHHYDSRHPK C43 MENRWQVMIVWQVDRMRINTWKSLVKYHMHVSKKAKRWFYRHHYESRHPR C44 MENRWQVMIVWQVDRKRIKTWNSLVKHHMYISKQTRNWFYRHHYESRNPR C45 MENRWQVMIVWQVDRMRVKTWKSLVKHHMYISKKAKGWFYRHHYESTHPK C46 MENRWQVMIVWQVDRMRIRTWNSLVKYHMYVSRKAKGWFYRHHYESRHPR C47 MENRWQVLIVWQVDRMRIRTWNSLVKHHMYTSKKANGWFYRHHYESRHPK C48 MENRWQVLIVWQVDRMRIRTWNSLVKHHMYVSRRANGWFYRHHYESRHPK C49 MENRWQVLIVWQVDRMRIKTWNSLVKHHMYISKRARGWFYRHHYESRHPK C50 MENKWQVLIVWQIDRMKIRTWNSLVKHHMYISKRANGWCYKHHYESRNPK ***:** : * *:** :: * *:**:* : * .. * *:**:: :*: C1 ISSEVHIPLEDAKLVVTTYWGLHTGERDWHLGQGVSIEWRKKRYSTQVDP C2 VSSEVHIPLGDARLVIKTYWGPLTGERAWHLGHGVSIEWRLRRYSTQVDP C3 ISSEVHIPLGEARLVVKTYWGLHTGERDWHLGQGVSIEWRKGRYSTQVDP C4 VSSEVHIPLGEARIVVRTYWGLHTGEKDWQLGHGVSIEWRLKRYSTQIDP C5 ISSSVYIPTGPAHIVVTTYWGLMPGERDEHMGHGVSIEWQYKEYTTQIDP C6 ISSEVHIPLGDAKLVIATYWGLHTGERDWHLGQGVSIEWRKEKYTTQVDP C7 VSSEVHIPLGDARLVVTTYWGLHTGEKDWQLGHGVSIEWRLRSYSTQIDP C8 VSSEVHIPLEGAKLVIATYWGLHTGERDWHLGQGVSIEWRQGNYRTQIDP C9 ISSEVHIPLGDARLVITTYWGLHTGERDWHLGQGVSIEWRKKRYSSQVDP C10 VSSEVHIPLGGARLVIKTYWGLQTGERDWHLGHGVSIEWRLRGYNTQIEP C11 ISSEVHIPLGDAILVVRTYWGLHTGEKDWHLGHGVSIEWRLRGYSTQIDP C12 VSSEIHIPVGEAKLVIKTYWGLQTGERDWHLGHGVSIEWRMRKYTTQIEP C13 VSSEVHIPLGEDRLVVTTYWGLHTGERDWHLGQGVSIEWRKRRYSTQVDP C14 TSSEVHIPLGEAKLVIKTYWGLQTGERDWHLGHGVSIEWRLKRYSTQIDP C15 VSSEVYIPLGKARLVIKTYWGLQTGERDWHLGHGVSIEWRLGKYSTQVDP C16 ISSEVHIPLGDARLVITTYWGLNTGERDWHLGQGISVEWRRKRYRTQVDP C17 LSSEVHIPLGEARLVIKTYWGLHTGERDWHLGHGVSIEWRLRRYSTQVDP C18 ISSEVHIPLGDAKLVIITYWGLHTGERDWHLGQGVSIEWRKRRYSTQVDP C19 TSSEVHIPLGEAKLVITTYWGLHTGERDWHLGQGVSIEWRKKRYSTQVDP C20 ISSEVHIPLGDARLVITTYWGLHTGERDWHLGQGVSIEWRQRRYSTQVDP C21 ISSEVHIPLGEAKLVIKTYWGLQTGEREWHLGHGVSIEWRWESYSTQVDP C22 ISSEVYIPLGDSRLVTTTYWGLHAGERDWHLGQGISIEWRKEKYSTQVDP C23 VSSEVHIPLGDATLVVTTYWGLHTGEKEWHLGHGVSIEWRLRRYRTQVDP C24 ISSEVHIPLGDAELVIITYWGLHTGEREWHLGQGVSIEWRKKRYSTQIDP C25 VSSEVHIPLGDAKLVIKTYWGLQTGEREWHLGHGVSIEWRLRRYSTQVDP C26 VSSEVHIPLEEAKLVVTTYWGLHTGEREWHLGQGVSIEWRQGMYSTQIDP C27 ISSEVHIPLGEARLVVTTYWGLHTGERDWHLGQGVSIEWRKRRYNTQVDP C28 VSSEVHIPLGDASLVVRTYWGLHTGEKDWQLGHGVSIEWRLRRYSTQIDP C29 LSSEVHIPLGDARLVVKTYWGLQTGEKDWQLGHGVSIEWRLQRYSTQIDP C30 ISSEVHIPLGDAELVITTYWGLHTGERDWHLGQGVSIEWRKKRYSTQVDP C31 VSSEVHIPLGEAKLVIKTYWGLQTGERDWHLGHGVSIEWRQGIYSTQVDP C32 ISSEVHIPLGEASLVIKTYWGLHTGEREWHLGQGVSIEWRKGRYNTQVDP C33 VSSEVHIPLGDARLVVRTYWGLHTGEKDWHLGHGVSIEWRLKSYSTQIDP C34 ISSEIHIPLGDDTLVITTYWGLHTGERDWHLGQGVSIEWRKGRYSTQVDP C35 ISSEVHIPLEDARLVITTYWGLHTGERDWHLGQGVSIEWRKRKYSTQVDP C36 ISSEVHIPLGDAKLVITTYWGLHTGERDWHLGQGVSIEWRKKRYSTQVDP C37 ISSEVHIPLGDAKLVITTYWGLHTGERDWHLGQGVSIEWRKRRYNTQVDP C38 VSSEVHIPLGEAKIVVRTYWGLQTGEKDWQLGHGVSIEWRQRQYSTQIDP C39 VSSEVHIPLGDAKIVVKTYWGLHTGEKDWQLGHGVSIEWRLRRYSTQIDP C40 ISSEVHIPLGDEKLVITTYWGLHTGERDWHLGQGVSIEWRKGRYHTQVDP C41 VSSEVHIPLGDARLVVRTYWGLQPGEKDWQLGHGVSIEWRQRKYSTQIDP C42 VSSEVHIPLGDARLVIKTYWGLQTGERDWHLGHGVSIEWRLRGYSTQVEP C43 VSSEVHIPLAEDELVITTYWGLHTGERDWHLGQGVSIEWRKNRYKTQVTP C44 TSSEVHIPLGDAMLVVRTYWGLQPGEKEWQLGHGVSIEWRQKRYSTQVDP C45 ISSEVHIPIGEARLVIATYWGLHTGERDWHLGQGVSIEWRQRRYSTQVDP C46 VSSEVHIPLGDARIVIRTYWGLHTGEKDWQLGHGVSIEWKLKRYSTQIDP C47 VSSEVHIPLGEARLVIITYWGLQTGERDWHLGHGVSIEWRLKRYSTQVDP C48 VSSEVHIPLGDARLVITTYWGLQPGEREWLLGHGVSIEWRLKRYSTQIDP C49 ASSEVHIPLGEAKLVIITYWGLQTGEREWHLGQGVSIEWRLRRYSTQVDP C50 ISSEVHIPLGEAKLVIITYWGLQTGEREWHLGHGVSIEWRMRSYSTQVDP **.::** :* **** .**: :*:*:*:**: * :*: * C1 DLADQLIHLYYFDCFSESAIRNAILGRRVSRCEYQAGHKVGSLQYLALAA C2 GLADQLIHMHYFDCFADSAIRKAILGQVVIRCDYQAGHKVGSLQYLALTA C3 GLADQLIHIYYFDCFAESAIRQAILGHIVTRCNYQAGHKVGSLQYLALTA C4 DLADQLIHLHYFNCFSESAIRRAILGQVVSSCEYQAGHKVGSLQYLALKA C5 ETADRMIHLHYFACFTESAIRKAILGQRVLKCEYSAGHQVGTLQLLALRA C6 DLADQLIHRSYFDCFSESAIRNAILGYRVNICEYQAGHKVGSLQYLALIA C7 DQADQLIHIHYFDCFSDSAIRKALLGQVVSKCEYLTGHKVGSLQYLALKA C8 GLADQLIHIYYFDCFSESAIRSAILGHYISRCNYQAGHKVGSLQYLALTA C9 NLADQLIHLHYFDCFSESAIRKAILGHIVSSCEYQAGHKVGSLQYLALIA C10 GLADQLIHMYYFDCFADSAIRKAILGHIVTGCEYQAGHPVGSLQYLALTA C11 DQADQLIHLYYFDCFSESAIRKIILGQVVRRCEYQTGHKVGSLQYLALKA C12 GLADQLIHLYYFDCFADSAIRKAILGHIVIRCDYQAGHKVGSLQYLALTA C13 DLADQLIHLYYFDCFSESAIRHAILGRIVRRCNYQAGHKVGSLQYLALTA C14 GLADQLIHMYYFDCFAESAIRKALLGHIVIRCDYQAGHKVGSLQYLALTA C15 GLADQLIHMHYFDCFADSAIRKAILGHIVIRCDYPAGHKVGSLQYLALTA C16 ELADRLIHLHYFDCFTDAAIRSALLGRIVRRCEYQAGHKVGSLQYLALAA C17 SLADQLIHMHYFDCFTESAIRKAILGHIVIRCDYQAGHKVGSLQYLALTA C18 NLADQLIHLYYFDCFTESAIRNAILGNRVSRCEYQAGHKVGSLQYLALVA C19 DLADQLIHLHYFDCFSESAIRSAILGHIVSRCEYRAGHKVGSLQYLALTA C20 NLADQLIHLYYFDCFSDSAIRKAIVGHIVSRCEYQAGHKVGSLQYLALAA C21 GLADQLIHMHYFDCFTDSAIRKAILGHIVIRCEYQAGHKVGSLQYLALTA C22 DLADQLIHLYYFDCFSESAIRNAILGHRVSRCEYQAGHKVGSLQYLALTA C23 DLADQLIHLYYFDCFSESAIRNAILGHRVSRCEYQAGHKVGSLQYLALAA C24 NLADQLIHLYYFDCFAESAIRNTILGCRVSRCEYQAGHKVGSLQYLALAA C25 GLADQLIHMHYFDCFAESAIRSAILGHLVRRCEYQAGHKVGSLQYLALTA C26 GLADQLIHIYYFDCFSDSAIRKAILGYRVSRCNYQAGHKVGSLQYLALTA C27 DLADQLIHLYYFDCFSESAIRQALLGYRVSRCEYQAGHKVGSLQYLALVA C28 DLADQLIHLHYFNCFSDSAIRKAILGEIVSSCEYPAGHKVGSLQYLALKA C29 DVADQLIHLHYFNCFSESAIRKAILGQVVSRCDYQAGHKVGSLQYLALRA C30 DLADQLIHLYYFDCFSESAIRNAILGHRVSRCEYQAGHKVGSLQYLALTA C31 GLADQLIHMHYFDCFADSAIRKAILGHIVIRCDYQAGHKVGSLQYLALTA C32 GLADQLIHLYYFDCFSESAIRNAILGHIVSSCEYQAGHKVGSLQYLALTA C33 DWADQLIHLHYFDCFSDSAIRKALLGQIVRNCEYPTGHKVGSLQYLALKA C34 GLADRLIHLHYFDCFSESAIKNAILGRIVRRCEYPAGHKVGSLQYLALTA C35 GLADQLIHLHYFDCFSESAIRSAILGRIVSSCDYQAGHKVGSLQYLALVA C36 NLADQLIHLYYFDCFSESAIRQAILGHRVSRCEYQAGHKVGSLQYLALTA C37 DLADHLIHLHYFDCFSESAIRNAILGRLVSKCEYLAGHKVGSLQYLALAA C38 DLADQLIHLNYFDCFSDSAIRKAILGQVVRRCEYPSGHKVGSLQYLALQA C39 DLADQLIHLHYFQCFSDTAIRKAILGQIVTCCEYQTGHKVGSLQYLALKA C40 TLADQLIHLYYFDCFSESAIRNAILGHRVSSCEYQAGHKVGSLQYLALVA C41 DLADQLIHLHYFDCFSDSAIRKAILGQVVSRCEYQAGHKVGSLQYLALKA C42 GLADQLIHMHYFDCFADSAIRKAILGHIVIRCDYPAGHKVGSLQYLALTA C43 DLADQLIHLYYFDCFSESAIRNAILGYRVRRCEYQAGHKVGSLQYLALTA C44 DLADQLIHLYYFDCFSDSAIRKAILGYRVSRCNYQAGHKVGSLQYLALTA C45 NLADQLIHVYYFDCFSESAIRNAILGHRVSRCEYQAGHKVGSLQYLALTA C46 DLADQLIHLHYFNCFSESAIRKAILGEIVSRCEYQAGHKVGSLQYLALKA C47 GLADQLIHMHYFDCFADSAIRKAILGHIVSRCNYQAGRKVGSLQYLALTA C48 GLADQLIHMHYFDCFADSAIRKAILGHIVIRCDYPAGHKVGSLQYLALTA C49 GLADQLIHMHYFDCFADSAIRKAILGRIVIRCDYQAGHKVGSLQYLALTA C50 GLADQLIHMHYFDCFAESAIRRAILGCRVSRCDYQAGHKVGSLQYLALAI **::** ** **:::**: ::* : *:* :*: **:** *** C1 LIKPKRRKPPLPSVAKLTEDRWNKPQKTKDHRGSHTMNGHoo C2 LIKPKKRKPPLPSVRKLVEDRWNKPQKTRGRRGNHTMNGHoo C3 LVTPKKITPPLPSVRKLTEDRWNKPQRTKGHRGSHTMNGHoo C4 LVTPTRTKPPLPSVKKLTEDRWNKPQKTRGHRGSHTMNGCoo C5 VVKEKRNKPPLPSVQKLTEDRWNKHLRIKDQLESHSMHGHoo C6 LIKPKKRKPPLPSVKKLTEDRWNAPRKTKGHRGNHTMNGHoo C7 LITPTKKRPPLPSVRILAEDRWNKPQKTRGRRGSHTMNGCoo C8 LIAPKKTKPPLPSVKKLVEDRWNKPQKTKGHKESHTMNGHoo C9 LTTPKKIKPPLPSVAKLTEDRWNKPQKIKGHRGSHTMNGHoo C10 LIKPKRIKPPLPSIKKLVEDRWNNPQKIRGRRGNHTMNGHoo C11 LVAPTKTKPPLPSVKILAEDRWNKPQKTKGPRESHTMNGCoo C12 LIKPKKIKPPLPSIQKLVEDRWNNPQKIRGRRGNHTMNGHoo C13 LITPKKTRPPLPSVKKLTEDRWNKPQKTKGHWGNHTMNGHoo C14 LIKPKKRKPPLPSVRKLAEDRWNDPQKTRGRRGNHTMNGHoo C15 LIKPKKRKPPLPSVRKLAEDRWNNPQKTRDRRGNHTMNGHoo C16 LIPPKKIKPPLPSVRKLTEDRWNKPQKTKDHRGNHTMNGHoo C17 LIKPKRIKPPLPSVSKLVEDRWNKPQKTRGRRGNHTMNGHoo C18 LITPKKRKPPLPSVAKLTEDRWNKPQRTKGHRGSPTMNGHoo C19 LVTPKKIKPPLPSVKKLTEDRWNKPQKTKGHRGSHTMNGHoo C20 LITPKKIRPPLPSVKKLTEDRWNKPQKTKGHRGSHTMNGHoo C21 LIKPKKIKPPLPSVRKLVEDRWNNPQKTRGRRGNHTMNGHoo C22 LIKPKRRKPPLPSVKKLTEDRWNKSQKTKGHRGNHSMNGHoo C23 LITPKKTKPPLPSVRKLAEDRWNKPQKTRGHRGNQTMNGHoo C24 LTTPKKTKPPLPSVAKLTEDRWNKPQQTKGHRGNHTMNGHoo C25 LTKPKKIKPPLPSVKKLVEDRWNKPQKTRGRRGSHTMNGHoo C26 LIAPKKTKPPLPSVKKLVEDRWNKPREIRGHRGSHTMNGHoo C27 VITPKKRKPPLPSVKKLTEDRWNKPQKTKGHRGNRTMNGHoo C28 LVTPTKRRPPLPSVRKLTEDRWNEPQKTRGLKGNHTMNGHoo C29 LVAPKKIKPPLPSVKKLAEDRWNESQKTRGPRGSHTMNGHoo C30 LITPKRRKPPLPSVAKLTEDRWNKPQKTKGHRGSHTINGHoo C31 LIKSKKRKPPLPSVRKLVEDRWNKPQKTRGRRGSHTMNGHoo C32 LRTPKKIKPPLPSVRKLTEDRWNKPQKTKGHRESHTMNGHoo C33 LVTPTKTKPPLPSVRILAEDRWNKPQKTRGPRESHTMNGCoo C34 LTTPKKRRPPLPSVRKLTEDRWNKPRQTKGHRGNHTMNGHoo C35 LTKPKKRKPPLPSVKKLTEDRWNKPRKIKGHRESHTMNGHoo C36 LITPKRTKPPFPSVARLTEDRWNKPQRTKGHRGSHTMDGHoo C37 LITPKKIKPPLPSVKKLTEDRWNKPQKTKGHRGSHTMNGHoo C38 LTTQKRIRPPLPSVKKLTEDRWNKPQKIRDHRENPTMSGHoo C39 LVTPTRSRPPLPSVRKLTEDRWNKPQKTKGPRGNHTMNGCoo C40 LRTPKKIKPPLPSVTKLTEDRWNKPRKTKGHKGSHSMNGHoo C41 LVTPIRRKPPLPSVRKLTEDRWNKPQKTRGHRGNRSMNGHoo C42 LIKPKKIRPPLPSIRKLVEDRWNNPQKTRGRRGNHTMNGHoo C43 LITPKKIKPPLPSVRKLTEDRWNKPQKTKGHRGSQTMNGHoo C44 LIAPKKVKPPLPSVRKLTEDRWNKPRKTRGRRENPTMNGHoo C45 LVTPQQRKPPLPSVTKLTEDRWNKPQRTKGHRESHTINGHSS C46 LVTTKGTKPPLPSVRKLTEDRWSKPQRIKGHRGSHTMNGHoo C47 LIKPKKIKPPLPSVRKLVEDRWNKPQKIRDRRGSHTMNGHoo C48 LVKPKQIKPPLPSVRKLVEDRWNDPQKIRGRRGNHTMNGHSR C49 LIKPKKIKPPLPSVRKLAEDRWNNPQKIRGRRGNHTMNGHoo C50 LIKPIQRRPPLPSVRKLVEDRWNKPQTTRGRRGNHTMNGHoo : **:**: *.****. :. . :: * 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 78.97 C1 C2 78.97 TOP 1 0 78.97 C2 C1 78.97 BOT 0 2 82.56 C1 C3 82.56 TOP 2 0 82.56 C3 C1 82.56 BOT 0 3 81.54 C1 C4 81.54 TOP 3 0 81.54 C4 C1 81.54 BOT 0 4 67.18 C1 C5 67.18 TOP 4 0 67.18 C5 C1 67.18 BOT 0 5 88.21 C1 C6 88.21 TOP 5 0 88.21 C6 C1 88.21 BOT 0 6 77.95 C1 C7 77.95 TOP 6 0 77.95 C7 C1 77.95 BOT 0 7 81.54 C1 C8 81.54 TOP 7 0 81.54 C8 C1 81.54 BOT 0 8 88.72 C1 C9 88.72 TOP 8 0 88.72 C9 C1 88.72 BOT 0 9 77.72 C1 C10 77.72 TOP 9 0 77.72 C10 C1 77.72 BOT 0 10 81.03 C1 C11 81.03 TOP 10 0 81.03 C11 C1 81.03 BOT 0 11 76.80 C1 C12 76.80 TOP 11 0 76.80 C12 C1 76.80 BOT 0 12 84.10 C1 C13 84.10 TOP 12 0 84.10 C13 C1 84.10 BOT 0 13 82.05 C1 C14 82.05 TOP 13 0 82.05 C14 C1 82.05 BOT 0 14 79.49 C1 C15 79.49 TOP 14 0 79.49 C15 C1 79.49 BOT 0 15 86.15 C1 C16 86.15 TOP 15 0 86.15 C16 C1 86.15 BOT 0 16 82.05 C1 C17 82.05 TOP 16 0 82.05 C17 C1 82.05 BOT 0 17 90.77 C1 C18 90.77 TOP 17 0 90.77 C18 C1 90.77 BOT 0 18 90.26 C1 C19 90.26 TOP 18 0 90.26 C19 C1 90.26 BOT 0 19 90.26 C1 C20 90.26 TOP 19 0 90.26 C20 C1 90.26 BOT 0 20 79.49 C1 C21 79.49 TOP 20 0 79.49 C21 C1 79.49 BOT 0 21 88.72 C1 C22 88.72 TOP 21 0 88.72 C22 C1 88.72 BOT 0 22 86.67 C1 C23 86.67 TOP 22 0 86.67 C23 C1 86.67 BOT 0 23 87.69 C1 C24 87.69 TOP 23 0 87.69 C24 C1 87.69 BOT 0 24 81.54 C1 C25 81.54 TOP 24 0 81.54 C25 C1 81.54 BOT 0 25 83.08 C1 C26 83.08 TOP 25 0 83.08 C26 C1 83.08 BOT 0 26 89.23 C1 C27 89.23 TOP 26 0 89.23 C27 C1 89.23 BOT 0 27 81.54 C1 C28 81.54 TOP 27 0 81.54 C28 C1 81.54 BOT 0 28 81.03 C1 C29 81.03 TOP 28 0 81.03 C29 C1 81.03 BOT 0 29 91.79 C1 C30 91.79 TOP 29 0 91.79 C30 C1 91.79 BOT 0 30 80.00 C1 C31 80.00 TOP 30 0 80.00 C31 C1 80.00 BOT 0 31 86.67 C1 C32 86.67 TOP 31 0 86.67 C32 C1 86.67 BOT 0 32 77.95 C1 C33 77.95 TOP 32 0 77.95 C33 C1 77.95 BOT 0 33 83.59 C1 C34 83.59 TOP 33 0 83.59 C34 C1 83.59 BOT 0 34 88.21 C1 C35 88.21 TOP 34 0 88.21 C35 C1 88.21 BOT 0 35 91.28 C1 C36 91.28 TOP 35 0 91.28 C36 C1 91.28 BOT 0 36 90.26 C1 C37 90.26 TOP 36 0 90.26 C37 C1 90.26 BOT 0 37 77.95 C1 C38 77.95 TOP 37 0 77.95 C38 C1 77.95 BOT 0 38 78.97 C1 C39 78.97 TOP 38 0 78.97 C39 C1 78.97 BOT 0 39 88.72 C1 C40 88.72 TOP 39 0 88.72 C40 C1 88.72 BOT 0 40 81.54 C1 C41 81.54 TOP 40 0 81.54 C41 C1 81.54 BOT 0 41 78.46 C1 C42 78.46 TOP 41 0 78.46 C42 C1 78.46 BOT 0 42 87.18 C1 C43 87.18 TOP 42 0 87.18 C43 C1 87.18 BOT 0 43 81.03 C1 C44 81.03 TOP 43 0 81.03 C44 C1 81.03 BOT 0 44 85.64 C1 C45 85.64 TOP 44 0 85.64 C45 C1 85.64 BOT 0 45 82.56 C1 C46 82.56 TOP 45 0 82.56 C46 C1 82.56 BOT 0 46 82.56 C1 C47 82.56 TOP 46 0 82.56 C47 C1 82.56 BOT 0 47 76.41 C1 C48 76.41 TOP 47 0 76.41 C48 C1 76.41 BOT 0 48 81.03 C1 C49 81.03 TOP 48 0 81.03 C49 C1 81.03 BOT 0 49 78.97 C1 C50 78.97 TOP 49 0 78.97 C50 C1 78.97 BOT 1 2 80.51 C2 C3 80.51 TOP 2 1 80.51 C3 C2 80.51 BOT 1 3 78.46 C2 C4 78.46 TOP 3 1 78.46 C4 C2 78.46 BOT 1 4 62.05 C2 C5 62.05 TOP 4 1 62.05 C5 C2 62.05 BOT 1 5 77.44 C2 C6 77.44 TOP 5 1 77.44 C6 C2 77.44 BOT 1 6 78.97 C2 C7 78.97 TOP 6 1 78.97 C7 C2 78.97 BOT 1 7 74.36 C2 C8 74.36 TOP 7 1 74.36 C8 C2 74.36 BOT 1 8 78.46 C2 C9 78.46 TOP 8 1 78.46 C9 C2 78.46 BOT 1 9 84.97 C2 C10 84.97 TOP 9 1 84.97 C10 C2 84.97 BOT 1 10 75.38 C2 C11 75.38 TOP 10 1 75.38 C11 C2 75.38 BOT 1 11 85.57 C2 C12 85.57 TOP 11 1 85.57 C12 C2 85.57 BOT 1 12 76.92 C2 C13 76.92 TOP 12 1 76.92 C13 C2 76.92 BOT 1 13 89.23 C2 C14 89.23 TOP 13 1 89.23 C14 C2 89.23 BOT 1 14 89.23 C2 C15 89.23 TOP 14 1 89.23 C15 C2 89.23 BOT 1 15 78.97 C2 C16 78.97 TOP 15 1 78.97 C16 C2 78.97 BOT 1 16 89.74 C2 C17 89.74 TOP 16 1 89.74 C17 C2 89.74 BOT 1 17 78.97 C2 C18 78.97 TOP 17 1 78.97 C18 C2 78.97 BOT 1 18 79.49 C2 C19 79.49 TOP 18 1 79.49 C19 C2 79.49 BOT 1 19 81.03 C2 C20 81.03 TOP 19 1 81.03 C20 C2 81.03 BOT 1 20 88.72 C2 C21 88.72 TOP 20 1 88.72 C21 C2 88.72 BOT 1 21 76.92 C2 C22 76.92 TOP 21 1 76.92 C22 C2 76.92 BOT 1 22 82.05 C2 C23 82.05 TOP 22 1 82.05 C23 C2 82.05 BOT 1 23 77.95 C2 C24 77.95 TOP 23 1 77.95 C24 C2 77.95 BOT 1 24 87.69 C2 C25 87.69 TOP 24 1 87.69 C25 C2 87.69 BOT 1 25 76.92 C2 C26 76.92 TOP 25 1 76.92 C26 C2 76.92 BOT 1 26 77.44 C2 C27 77.44 TOP 26 1 77.44 C27 C2 77.44 BOT 1 27 81.03 C2 C28 81.03 TOP 27 1 81.03 C28 C2 81.03 BOT 1 28 80.51 C2 C29 80.51 TOP 28 1 80.51 C29 C2 80.51 BOT 1 29 77.44 C2 C30 77.44 TOP 29 1 77.44 C30 C2 77.44 BOT 1 30 87.69 C2 C31 87.69 TOP 30 1 87.69 C31 C2 87.69 BOT 1 31 77.95 C2 C32 77.95 TOP 31 1 77.95 C32 C2 77.95 BOT 1 32 75.90 C2 C33 75.90 TOP 32 1 75.90 C33 C2 75.90 BOT 1 33 75.38 C2 C34 75.38 TOP 33 1 75.38 C34 C2 75.38 BOT 1 34 79.49 C2 C35 79.49 TOP 34 1 79.49 C35 C2 79.49 BOT 1 35 78.97 C2 C36 78.97 TOP 35 1 78.97 C36 C2 78.97 BOT 1 36 77.95 C2 C37 77.95 TOP 36 1 77.95 C37 C2 77.95 BOT 1 37 73.33 C2 C38 73.33 TOP 37 1 73.33 C38 C2 73.33 BOT 1 38 75.90 C2 C39 75.90 TOP 38 1 75.90 C39 C2 75.90 BOT 1 39 75.90 C2 C40 75.90 TOP 39 1 75.90 C40 C2 75.90 BOT 1 40 82.05 C2 C41 82.05 TOP 40 1 82.05 C41 C2 82.05 BOT 1 41 90.77 C2 C42 90.77 TOP 41 1 90.77 C42 C2 90.77 BOT 1 42 76.92 C2 C43 76.92 TOP 42 1 76.92 C43 C2 76.92 BOT 1 43 79.49 C2 C44 79.49 TOP 43 1 79.49 C44 C2 79.49 BOT 1 44 76.41 C2 C45 76.41 TOP 44 1 76.41 C45 C2 76.41 BOT 1 45 78.46 C2 C46 78.46 TOP 45 1 78.46 C46 C2 78.46 BOT 1 46 88.21 C2 C47 88.21 TOP 46 1 88.21 C47 C2 88.21 BOT 1 47 87.18 C2 C48 87.18 TOP 47 1 87.18 C48 C2 87.18 BOT 1 48 89.23 C2 C49 89.23 TOP 48 1 89.23 C49 C2 89.23 BOT 1 49 84.62 C2 C50 84.62 TOP 49 1 84.62 C50 C2 84.62 BOT 2 3 79.49 C3 C4 79.49 TOP 3 2 79.49 C4 C3 79.49 BOT 2 4 62.56 C3 C5 62.56 TOP 4 2 62.56 C5 C3 62.56 BOT 2 5 79.49 C3 C6 79.49 TOP 5 2 79.49 C6 C3 79.49 BOT 2 6 77.44 C3 C7 77.44 TOP 6 2 77.44 C7 C3 77.44 BOT 2 7 81.03 C3 C8 81.03 TOP 7 2 81.03 C8 C3 81.03 BOT 2 8 84.62 C3 C9 84.62 TOP 8 2 84.62 C9 C3 84.62 BOT 2 9 79.27 C3 C10 79.27 TOP 9 2 79.27 C10 C3 79.27 BOT 2 10 78.97 C3 C11 78.97 TOP 10 2 78.97 C11 C3 78.97 BOT 2 11 79.38 C3 C12 79.38 TOP 11 2 79.38 C12 C3 79.38 BOT 2 12 82.56 C3 C13 82.56 TOP 12 2 82.56 C13 C3 82.56 BOT 2 13 83.59 C3 C14 83.59 TOP 13 2 83.59 C14 C3 83.59 BOT 2 14 82.56 C3 C15 82.56 TOP 14 2 82.56 C15 C3 82.56 BOT 2 15 80.00 C3 C16 80.00 TOP 15 2 80.00 C16 C3 80.00 BOT 2 16 85.13 C3 C17 85.13 TOP 16 2 85.13 C17 C3 85.13 BOT 2 17 83.08 C3 C18 83.08 TOP 17 2 83.08 C18 C3 83.08 BOT 2 18 85.13 C3 C19 85.13 TOP 18 2 85.13 C19 C3 85.13 BOT 2 19 85.64 C3 C20 85.64 TOP 19 2 85.64 C20 C3 85.64 BOT 2 20 81.54 C3 C21 81.54 TOP 20 2 81.54 C21 C3 81.54 BOT 2 21 80.00 C3 C22 80.00 TOP 21 2 80.00 C22 C3 80.00 BOT 2 22 83.08 C3 C23 83.08 TOP 22 2 83.08 C23 C3 83.08 BOT 2 23 81.54 C3 C24 81.54 TOP 23 2 81.54 C24 C3 81.54 BOT 2 24 81.54 C3 C25 81.54 TOP 24 2 81.54 C25 C3 81.54 BOT 2 25 80.51 C3 C26 80.51 TOP 25 2 80.51 C26 C3 80.51 BOT 2 26 83.59 C3 C27 83.59 TOP 26 2 83.59 C27 C3 83.59 BOT 2 27 79.49 C3 C28 79.49 TOP 27 2 79.49 C28 C3 79.49 BOT 2 28 80.51 C3 C29 80.51 TOP 28 2 80.51 C29 C3 80.51 BOT 2 29 81.54 C3 C30 81.54 TOP 29 2 81.54 C30 C3 81.54 BOT 2 30 83.08 C3 C31 83.08 TOP 30 2 83.08 C31 C3 83.08 BOT 2 31 86.15 C3 C32 86.15 TOP 31 2 86.15 C32 C3 86.15 BOT 2 32 76.41 C3 C33 76.41 TOP 32 2 76.41 C33 C3 76.41 BOT 2 33 80.00 C3 C34 80.00 TOP 33 2 80.00 C34 C3 80.00 BOT 2 34 80.51 C3 C35 80.51 TOP 34 2 80.51 C35 C3 80.51 BOT 2 35 84.62 C3 C36 84.62 TOP 35 2 84.62 C36 C3 84.62 BOT 2 36 81.03 C3 C37 81.03 TOP 36 2 81.03 C37 C3 81.03 BOT 2 37 72.82 C3 C38 72.82 TOP 37 2 72.82 C38 C3 72.82 BOT 2 38 77.95 C3 C39 77.95 TOP 38 2 77.95 C39 C3 77.95 BOT 2 39 83.08 C3 C40 83.08 TOP 39 2 83.08 C40 C3 83.08 BOT 2 40 78.97 C3 C41 78.97 TOP 40 2 78.97 C41 C3 78.97 BOT 2 41 82.05 C3 C42 82.05 TOP 41 2 82.05 C42 C3 82.05 BOT 2 42 83.08 C3 C43 83.08 TOP 42 2 83.08 C43 C3 83.08 BOT 2 43 77.44 C3 C44 77.44 TOP 43 2 77.44 C44 C3 77.44 BOT 2 44 82.56 C3 C45 82.56 TOP 44 2 82.56 C45 C3 82.56 BOT 2 45 80.51 C3 C46 80.51 TOP 45 2 80.51 C46 C3 80.51 BOT 2 46 84.10 C3 C47 84.10 TOP 46 2 84.10 C47 C3 84.10 BOT 2 47 79.49 C3 C48 79.49 TOP 47 2 79.49 C48 C3 79.49 BOT 2 48 82.56 C3 C49 82.56 TOP 48 2 82.56 C49 C3 82.56 BOT 2 49 77.95 C3 C50 77.95 TOP 49 2 77.95 C50 C3 77.95 BOT 3 4 67.69 C4 C5 67.69 TOP 4 3 67.69 C5 C4 67.69 BOT 3 5 77.44 C4 C6 77.44 TOP 5 3 77.44 C6 C4 77.44 BOT 3 6 83.59 C4 C7 83.59 TOP 6 3 83.59 C7 C4 83.59 BOT 3 7 76.92 C4 C8 76.92 TOP 7 3 76.92 C8 C4 76.92 BOT 3 8 82.56 C4 C9 82.56 TOP 8 3 82.56 C9 C4 82.56 BOT 3 9 76.17 C4 C10 76.17 TOP 9 3 76.17 C10 C4 76.17 BOT 3 10 84.62 C4 C11 84.62 TOP 10 3 84.62 C11 C4 84.62 BOT 3 11 75.26 C4 C12 75.26 TOP 11 3 75.26 C12 C4 75.26 BOT 3 12 78.97 C4 C13 78.97 TOP 12 3 78.97 C13 C4 78.97 BOT 3 13 80.51 C4 C14 80.51 TOP 13 3 80.51 C14 C4 80.51 BOT 3 14 77.44 C4 C15 77.44 TOP 14 3 77.44 C15 C4 77.44 BOT 3 15 76.92 C4 C16 76.92 TOP 15 3 76.92 C16 C4 76.92 BOT 3 16 81.54 C4 C17 81.54 TOP 16 3 81.54 C17 C4 81.54 BOT 3 17 78.46 C4 C18 78.46 TOP 17 3 78.46 C18 C4 78.46 BOT 3 18 83.59 C4 C19 83.59 TOP 18 3 83.59 C19 C4 83.59 BOT 3 19 81.54 C4 C20 81.54 TOP 19 3 81.54 C20 C4 81.54 BOT 3 20 76.92 C4 C21 76.92 TOP 20 3 76.92 C21 C4 76.92 BOT 3 21 78.46 C4 C22 78.46 TOP 21 3 78.46 C22 C4 78.46 BOT 3 22 84.10 C4 C23 84.10 TOP 22 3 84.10 C23 C4 84.10 BOT 3 23 80.00 C4 C24 80.00 TOP 23 3 80.00 C24 C4 80.00 BOT 3 24 80.00 C4 C25 80.00 TOP 24 3 80.00 C25 C4 80.00 BOT 3 25 77.95 C4 C26 77.95 TOP 25 3 77.95 C26 C4 77.95 BOT 3 26 81.54 C4 C27 81.54 TOP 26 3 81.54 C27 C4 81.54 BOT 3 27 87.18 C4 C28 87.18 TOP 27 3 87.18 C28 C4 87.18 BOT 3 28 86.15 C4 C29 86.15 TOP 28 3 86.15 C29 C4 86.15 BOT 3 29 80.51 C4 C30 80.51 TOP 29 3 80.51 C30 C4 80.51 BOT 3 30 77.95 C4 C31 77.95 TOP 30 3 77.95 C31 C4 77.95 BOT 3 31 81.54 C4 C32 81.54 TOP 31 3 81.54 C32 C4 81.54 BOT 3 32 84.10 C4 C33 84.10 TOP 32 3 84.10 C33 C4 84.10 BOT 3 33 74.87 C4 C34 74.87 TOP 33 3 74.87 C34 C4 74.87 BOT 3 34 78.97 C4 C35 78.97 TOP 34 3 78.97 C35 C4 78.97 BOT 3 35 80.51 C4 C36 80.51 TOP 35 3 80.51 C36 C4 80.51 BOT 3 36 81.03 C4 C37 81.03 TOP 36 3 81.03 C37 C4 81.03 BOT 3 37 80.00 C4 C38 80.00 TOP 37 3 80.00 C38 C4 80.00 BOT 3 38 85.64 C4 C39 85.64 TOP 38 3 85.64 C39 C4 85.64 BOT 3 39 80.00 C4 C40 80.00 TOP 39 3 80.00 C40 C4 80.00 BOT 3 40 86.15 C4 C41 86.15 TOP 40 3 86.15 C41 C4 86.15 BOT 3 41 76.41 C4 C42 76.41 TOP 41 3 76.41 C42 C4 76.41 BOT 3 42 80.00 C4 C43 80.00 TOP 42 3 80.00 C43 C4 80.00 BOT 3 43 78.46 C4 C44 78.46 TOP 43 3 78.46 C44 C4 78.46 BOT 3 44 79.49 C4 C45 79.49 TOP 44 3 79.49 C45 C4 79.49 BOT 3 45 88.21 C4 C46 88.21 TOP 45 3 88.21 C46 C4 88.21 BOT 3 46 81.03 C4 C47 81.03 TOP 46 3 81.03 C47 C4 81.03 BOT 3 47 78.46 C4 C48 78.46 TOP 47 3 78.46 C48 C4 78.46 BOT 3 48 77.95 C4 C49 77.95 TOP 48 3 77.95 C49 C4 77.95 BOT 3 49 75.38 C4 C50 75.38 TOP 49 3 75.38 C50 C4 75.38 BOT 4 5 64.10 C5 C6 64.10 TOP 5 4 64.10 C6 C5 64.10 BOT 4 6 61.54 C5 C7 61.54 TOP 6 4 61.54 C7 C5 61.54 BOT 4 7 62.05 C5 C8 62.05 TOP 7 4 62.05 C8 C5 62.05 BOT 4 8 65.64 C5 C9 65.64 TOP 8 4 65.64 C9 C5 65.64 BOT 4 9 62.69 C5 C10 62.69 TOP 9 4 62.69 C10 C5 62.69 BOT 4 10 64.62 C5 C11 64.62 TOP 10 4 64.62 C11 C5 64.62 BOT 4 11 62.89 C5 C12 62.89 TOP 11 4 62.89 C12 C5 62.89 BOT 4 12 62.05 C5 C13 62.05 TOP 12 4 62.05 C13 C5 62.05 BOT 4 13 63.59 C5 C14 63.59 TOP 13 4 63.59 C14 C5 63.59 BOT 4 14 63.08 C5 C15 63.08 TOP 14 4 63.08 C15 C5 63.08 BOT 4 15 64.10 C5 C16 64.10 TOP 15 4 64.10 C16 C5 64.10 BOT 4 16 64.62 C5 C17 64.62 TOP 16 4 64.62 C17 C5 64.62 BOT 4 17 64.10 C5 C18 64.10 TOP 17 4 64.10 C18 C5 64.10 BOT 4 18 66.15 C5 C19 66.15 TOP 18 4 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TOP 31 30 82.05 C32 C31 82.05 BOT 30 32 76.92 C31 C33 76.92 TOP 32 30 76.92 C33 C31 76.92 BOT 30 33 77.95 C31 C34 77.95 TOP 33 30 77.95 C34 C31 77.95 BOT 30 34 81.54 C31 C35 81.54 TOP 34 30 81.54 C35 C31 81.54 BOT 30 35 79.49 C31 C36 79.49 TOP 35 30 79.49 C36 C31 79.49 BOT 30 36 81.03 C31 C37 81.03 TOP 36 30 81.03 C37 C31 81.03 BOT 30 37 77.44 C31 C38 77.44 TOP 37 30 77.44 C38 C31 77.44 BOT 30 38 77.44 C31 C39 77.44 TOP 38 30 77.44 C39 C31 77.44 BOT 30 39 79.49 C31 C40 79.49 TOP 39 30 79.49 C40 C31 79.49 BOT 30 40 80.00 C31 C41 80.00 TOP 40 30 80.00 C41 C31 80.00 BOT 30 41 88.72 C31 C42 88.72 TOP 41 30 88.72 C42 C31 88.72 BOT 30 42 80.00 C31 C43 80.00 TOP 42 30 80.00 C43 C31 80.00 BOT 30 43 81.03 C31 C44 81.03 TOP 43 30 81.03 C44 C31 81.03 BOT 30 44 76.92 C31 C45 76.92 TOP 44 30 76.92 C45 C31 76.92 BOT 30 45 78.97 C31 C46 78.97 TOP 45 30 78.97 C46 C31 78.97 BOT 30 46 90.26 C31 C47 90.26 TOP 46 30 90.26 C47 C31 90.26 BOT 30 47 86.15 C31 C48 86.15 TOP 47 30 86.15 C48 C31 86.15 BOT 30 48 88.72 C31 C49 88.72 TOP 48 30 88.72 C49 C31 88.72 BOT 30 49 86.67 C31 C50 86.67 TOP 49 30 86.67 C50 C31 86.67 BOT 31 32 77.95 C32 C33 77.95 TOP 32 31 77.95 C33 C32 77.95 BOT 31 33 84.62 C32 C34 84.62 TOP 33 31 84.62 C34 C32 84.62 BOT 31 34 86.15 C32 C35 86.15 TOP 34 31 86.15 C35 C32 86.15 BOT 31 35 85.64 C32 C36 85.64 TOP 35 31 85.64 C36 C32 85.64 BOT 31 36 87.69 C32 C37 87.69 TOP 36 31 87.69 C37 C32 87.69 BOT 31 37 75.38 C32 C38 75.38 TOP 37 31 75.38 C38 C32 75.38 BOT 31 38 77.95 C32 C39 77.95 TOP 38 31 77.95 C39 C32 77.95 BOT 31 39 89.74 C32 C40 89.74 TOP 39 31 89.74 C40 C32 89.74 BOT 31 40 77.95 C32 C41 77.95 TOP 40 31 77.95 C41 C32 77.95 BOT 31 41 79.49 C32 C42 79.49 TOP 41 31 79.49 C42 C32 79.49 BOT 31 42 87.69 C32 C43 87.69 TOP 42 31 87.69 C43 C32 87.69 BOT 31 43 80.00 C32 C44 80.00 TOP 43 31 80.00 C44 C32 80.00 BOT 31 44 86.15 C32 C45 86.15 TOP 44 31 86.15 C45 C32 86.15 BOT 31 45 81.54 C32 C46 81.54 TOP 45 31 81.54 C46 C32 81.54 BOT 31 46 82.56 C32 C47 82.56 TOP 46 31 82.56 C47 C32 82.56 BOT 31 47 77.44 C32 C48 77.44 TOP 47 31 77.44 C48 C32 77.44 BOT 31 48 82.56 C32 C49 82.56 TOP 48 31 82.56 C49 C32 82.56 BOT 31 49 76.92 C32 C50 76.92 TOP 49 31 76.92 C50 C32 76.92 BOT 32 33 76.92 C33 C34 76.92 TOP 33 32 76.92 C34 C33 76.92 BOT 32 34 77.44 C33 C35 77.44 TOP 34 32 77.44 C35 C33 77.44 BOT 32 35 76.41 C33 C36 76.41 TOP 35 32 76.41 C36 C33 76.41 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 84.62 C33 C39 84.62 TOP 38 32 84.62 C39 C33 84.62 BOT 32 39 75.38 C33 C40 75.38 TOP 39 32 75.38 C40 C33 75.38 BOT 32 40 83.08 C33 C41 83.08 TOP 40 32 83.08 C41 C33 83.08 BOT 32 41 77.44 C33 C42 77.44 TOP 41 32 77.44 C42 C33 77.44 BOT 32 42 77.44 C33 C43 77.44 TOP 42 32 77.44 C43 C33 77.44 BOT 32 43 77.95 C33 C44 77.95 TOP 43 32 77.95 C44 C33 77.95 BOT 32 44 74.36 C33 C45 74.36 TOP 44 32 74.36 C45 C33 74.36 BOT 32 45 81.54 C33 C46 81.54 TOP 45 32 81.54 C46 C33 81.54 BOT 32 46 78.46 C33 C47 78.46 TOP 46 32 78.46 C47 C33 78.46 BOT 32 47 75.90 C33 C48 75.90 TOP 47 32 75.90 C48 C33 75.90 BOT 32 48 75.90 C33 C49 75.90 TOP 48 32 75.90 C49 C33 75.90 BOT 32 49 72.31 C33 C50 72.31 TOP 49 32 72.31 C50 C33 72.31 BOT 33 34 84.62 C34 C35 84.62 TOP 34 33 84.62 C35 C34 84.62 BOT 33 35 81.54 C34 C36 81.54 TOP 35 33 81.54 C36 C34 81.54 BOT 33 36 85.64 C34 C37 85.64 TOP 36 33 85.64 C37 C34 85.64 BOT 33 37 75.90 C34 C38 75.90 TOP 37 33 75.90 C38 C34 75.90 BOT 33 38 77.44 C34 C39 77.44 TOP 38 33 77.44 C39 C34 77.44 BOT 33 39 83.59 C34 C40 83.59 TOP 39 33 83.59 C40 C34 83.59 BOT 33 40 75.90 C34 C41 75.90 TOP 40 33 75.90 C41 C34 75.90 BOT 33 41 77.44 C34 C42 77.44 TOP 41 33 77.44 C42 C34 77.44 BOT 33 42 84.10 C34 C43 84.10 TOP 42 33 84.10 C43 C34 84.10 BOT 33 43 76.41 C34 C44 76.41 TOP 43 33 76.41 C44 C34 76.41 BOT 33 44 79.49 C34 C45 79.49 TOP 44 33 79.49 C45 C34 79.49 BOT 33 45 77.44 C34 C46 77.44 TOP 45 33 77.44 C46 C34 77.44 BOT 33 46 76.41 C34 C47 76.41 TOP 46 33 76.41 C47 C34 76.41 BOT 33 47 73.85 C34 C48 73.85 TOP 47 33 73.85 C48 C34 73.85 BOT 33 48 77.95 C34 C49 77.95 TOP 48 33 77.95 C49 C34 77.95 BOT 33 49 76.41 C34 C50 76.41 TOP 49 33 76.41 C50 C34 76.41 BOT 34 35 85.13 C35 C36 85.13 TOP 35 34 85.13 C36 C35 85.13 BOT 34 36 88.21 C35 C37 88.21 TOP 36 34 88.21 C37 C35 88.21 BOT 34 37 76.92 C35 C38 76.92 TOP 37 34 76.92 C38 C35 76.92 BOT 34 38 75.90 C35 C39 75.90 TOP 38 34 75.90 C39 C35 75.90 BOT 34 39 86.15 C35 C40 86.15 TOP 39 34 86.15 C40 C35 86.15 BOT 34 40 79.49 C35 C41 79.49 TOP 40 34 79.49 C41 C35 79.49 BOT 34 41 79.49 C35 C42 79.49 TOP 41 34 79.49 C42 C35 79.49 BOT 34 42 81.54 C35 C43 81.54 TOP 42 34 81.54 C43 C35 81.54 BOT 34 43 79.49 C35 C44 79.49 TOP 43 34 79.49 C44 C35 79.49 BOT 34 44 82.56 C35 C45 82.56 TOP 44 34 82.56 C45 C35 82.56 BOT 34 45 81.03 C35 C46 81.03 TOP 45 34 81.03 C46 C35 81.03 BOT 34 46 82.05 C35 C47 82.05 TOP 46 34 82.05 C47 C35 82.05 BOT 34 47 77.44 C35 C48 77.44 TOP 47 34 77.44 C48 C35 77.44 BOT 34 48 82.56 C35 C49 82.56 TOP 48 34 82.56 C49 C35 82.56 BOT 34 49 79.49 C35 C50 79.49 TOP 49 34 79.49 C50 C35 79.49 BOT 35 36 86.67 C36 C37 86.67 TOP 36 35 86.67 C37 C36 86.67 BOT 35 37 74.87 C36 C38 74.87 TOP 37 35 74.87 C38 C36 74.87 BOT 35 38 76.41 C36 C39 76.41 TOP 38 35 76.41 C39 C36 76.41 BOT 35 39 87.18 C36 C40 87.18 TOP 39 35 87.18 C40 C36 87.18 BOT 35 40 80.00 C36 C41 80.00 TOP 40 35 80.00 C41 C36 80.00 BOT 35 41 78.97 C36 C42 78.97 TOP 41 35 78.97 C42 C36 78.97 BOT 35 42 84.62 C36 C43 84.62 TOP 42 35 84.62 C43 C36 84.62 BOT 35 43 80.00 C36 C44 80.00 TOP 43 35 80.00 C44 C36 80.00 BOT 35 44 86.67 C36 C45 86.67 TOP 44 35 86.67 C45 C36 86.67 BOT 35 45 83.08 C36 C46 83.08 TOP 45 35 83.08 C46 C36 83.08 BOT 35 46 82.56 C36 C47 82.56 TOP 46 35 82.56 C47 C36 82.56 BOT 35 47 77.44 C36 C48 77.44 TOP 47 35 77.44 C48 C36 77.44 BOT 35 48 81.54 C36 C49 81.54 TOP 48 35 81.54 C49 C36 81.54 BOT 35 49 78.46 C36 C50 78.46 TOP 49 35 78.46 C50 C36 78.46 BOT 36 37 78.97 C37 C38 78.97 TOP 37 36 78.97 C38 C37 78.97 BOT 36 38 78.97 C37 C39 78.97 TOP 38 36 78.97 C39 C37 78.97 BOT 36 39 90.26 C37 C40 90.26 TOP 39 36 90.26 C40 C37 90.26 BOT 36 40 80.51 C37 C41 80.51 TOP 40 36 80.51 C41 C37 80.51 BOT 36 41 78.46 C37 C42 78.46 TOP 41 36 78.46 C42 C37 78.46 BOT 36 42 86.15 C37 C43 86.15 TOP 42 36 86.15 C43 C37 86.15 BOT 36 43 78.46 C37 C44 78.46 TOP 43 36 78.46 C44 C37 78.46 BOT 36 44 83.08 C37 C45 83.08 TOP 44 36 83.08 C45 C37 83.08 BOT 36 45 81.54 C37 C46 81.54 TOP 45 36 81.54 C46 C37 81.54 BOT 36 46 80.00 C37 C47 80.00 TOP 46 36 80.00 C47 C37 80.00 BOT 36 47 75.38 C37 C48 75.38 TOP 47 36 75.38 C48 C37 75.38 BOT 36 48 80.51 C37 C49 80.51 TOP 48 36 80.51 C49 C37 80.51 BOT 36 49 77.95 C37 C50 77.95 TOP 49 36 77.95 C50 C37 77.95 BOT 37 38 80.00 C38 C39 80.00 TOP 38 37 80.00 C39 C38 80.00 BOT 37 39 74.36 C38 C40 74.36 TOP 39 37 74.36 C40 C38 74.36 BOT 37 40 82.56 C38 C41 82.56 TOP 40 37 82.56 C41 C38 82.56 BOT 37 41 75.38 C38 C42 75.38 TOP 41 37 75.38 C42 C38 75.38 BOT 37 42 76.41 C38 C43 76.41 TOP 42 37 76.41 C43 C38 76.41 BOT 37 43 78.97 C38 C44 78.97 TOP 43 37 78.97 C44 C38 78.97 BOT 37 44 73.33 C38 C45 73.33 TOP 44 37 73.33 C45 C38 73.33 BOT 37 45 78.46 C38 C46 78.46 TOP 45 37 78.46 C46 C38 78.46 BOT 37 46 76.41 C38 C47 76.41 TOP 46 37 76.41 C47 C38 76.41 BOT 37 47 73.33 C38 C48 73.33 TOP 47 37 73.33 C48 C38 73.33 BOT 37 48 75.38 C38 C49 75.38 TOP 48 37 75.38 C49 C38 75.38 BOT 37 49 72.31 C38 C50 72.31 TOP 49 37 72.31 C50 C38 72.31 BOT 38 39 77.44 C39 C40 77.44 TOP 39 38 77.44 C40 C39 77.44 BOT 38 40 83.08 C39 C41 83.08 TOP 40 38 83.08 C41 C39 83.08 BOT 38 41 76.92 C39 C42 76.92 TOP 41 38 76.92 C42 C39 76.92 BOT 38 42 77.95 C39 C43 77.95 TOP 42 38 77.95 C43 C39 77.95 BOT 38 43 76.41 C39 C44 76.41 TOP 43 38 76.41 C44 C39 76.41 BOT 38 44 73.85 C39 C45 73.85 TOP 44 38 73.85 C45 C39 73.85 BOT 38 45 84.62 C39 C46 84.62 TOP 45 38 84.62 C46 C39 84.62 BOT 38 46 76.41 C39 C47 76.41 TOP 46 38 76.41 C47 C39 76.41 BOT 38 47 75.38 C39 C48 75.38 TOP 47 38 75.38 C48 C39 75.38 BOT 38 48 75.90 C39 C49 75.90 TOP 48 38 75.90 C49 C39 75.90 BOT 38 49 73.33 C39 C50 73.33 TOP 49 38 73.33 C50 C39 73.33 BOT 39 40 78.97 C40 C41 78.97 TOP 40 39 78.97 C41 C40 78.97 BOT 39 41 76.41 C40 C42 76.41 TOP 41 39 76.41 C42 C40 76.41 BOT 39 42 87.18 C40 C43 87.18 TOP 42 39 87.18 C43 C40 87.18 BOT 39 43 77.95 C40 C44 77.95 TOP 43 39 77.95 C44 C40 77.95 BOT 39 44 84.10 C40 C45 84.10 TOP 44 39 84.10 C45 C40 84.10 BOT 39 45 81.03 C40 C46 81.03 TOP 45 39 81.03 C46 C40 81.03 BOT 39 46 79.49 C40 C47 79.49 TOP 46 39 79.49 C47 C40 79.49 BOT 39 47 75.38 C40 C48 75.38 TOP 47 39 75.38 C48 C40 75.38 BOT 39 48 77.95 C40 C49 77.95 TOP 48 39 77.95 C49 C40 77.95 BOT 39 49 74.36 C40 C50 74.36 TOP 49 39 74.36 C50 C40 74.36 BOT 40 41 81.03 C41 C42 81.03 TOP 41 40 81.03 C42 C41 81.03 BOT 40 42 77.95 C41 C43 77.95 TOP 42 40 77.95 C43 C41 77.95 BOT 40 43 83.59 C41 C44 83.59 TOP 43 40 83.59 C44 C41 83.59 BOT 40 44 78.97 C41 C45 78.97 TOP 44 40 78.97 C45 C41 78.97 BOT 40 45 84.62 C41 C46 84.62 TOP 45 40 84.62 C46 C41 84.62 BOT 40 46 81.03 C41 C47 81.03 TOP 46 40 81.03 C47 C41 81.03 BOT 40 47 81.03 C41 C48 81.03 TOP 47 40 81.03 C48 C41 81.03 BOT 40 48 80.00 C41 C49 80.00 TOP 48 40 80.00 C49 C41 80.00 BOT 40 49 78.46 C41 C50 78.46 TOP 49 40 78.46 C50 C41 78.46 BOT 41 42 77.95 C42 C43 77.95 TOP 42 41 77.95 C43 C42 77.95 BOT 41 43 78.97 C42 C44 78.97 TOP 43 41 78.97 C44 C42 78.97 BOT 41 44 76.41 C42 C45 76.41 TOP 44 41 76.41 C45 C42 76.41 BOT 41 45 77.95 C42 C46 77.95 TOP 45 41 77.95 C46 C42 77.95 BOT 41 46 89.74 C42 C47 89.74 TOP 46 41 89.74 C47 C42 89.74 BOT 41 47 88.72 C42 C48 88.72 TOP 47 41 88.72 C48 C42 88.72 BOT 41 48 90.77 C42 C49 90.77 TOP 48 41 90.77 C49 C42 90.77 BOT 41 49 85.13 C42 C50 85.13 TOP 49 41 85.13 C50 C42 85.13 BOT 42 43 79.49 C43 C44 79.49 TOP 43 42 79.49 C44 C43 79.49 BOT 42 44 82.56 C43 C45 82.56 TOP 44 42 82.56 C45 C43 82.56 BOT 42 45 82.05 C43 C46 82.05 TOP 45 42 82.05 C46 C43 82.05 BOT 42 46 81.03 C43 C47 81.03 TOP 46 42 81.03 C47 C43 81.03 BOT 42 47 75.38 C43 C48 75.38 TOP 47 42 75.38 C48 C43 75.38 BOT 42 48 80.00 C43 C49 80.00 TOP 48 42 80.00 C49 C43 80.00 BOT 42 49 74.36 C43 C50 74.36 TOP 49 42 74.36 C50 C43 74.36 BOT 43 44 76.92 C44 C45 76.92 TOP 44 43 76.92 C45 C44 76.92 BOT 43 45 78.97 C44 C46 78.97 TOP 45 43 78.97 C46 C44 78.97 BOT 43 46 81.54 C44 C47 81.54 TOP 46 43 81.54 C47 C44 81.54 BOT 43 47 78.97 C44 C48 78.97 TOP 47 43 78.97 C48 C44 78.97 BOT 43 48 82.56 C44 C49 82.56 TOP 48 43 82.56 C49 C44 82.56 BOT 43 49 77.44 C44 C50 77.44 TOP 49 43 77.44 C50 C44 77.44 BOT 44 45 79.49 C45 C46 79.49 TOP 45 44 79.49 C46 C45 79.49 BOT 44 46 79.49 C45 C47 79.49 TOP 46 44 79.49 C47 C45 79.49 BOT 44 47 76.41 C45 C48 76.41 TOP 47 44 76.41 C48 C45 76.41 BOT 44 48 78.97 C45 C49 78.97 TOP 48 44 78.97 C49 C45 78.97 BOT 44 49 76.92 C45 C50 76.92 TOP 49 44 76.92 C50 C45 76.92 BOT 45 46 82.56 C46 C47 82.56 TOP 46 45 82.56 C47 C46 82.56 BOT 45 47 81.03 C46 C48 81.03 TOP 47 45 81.03 C48 C46 81.03 BOT 45 48 78.46 C46 C49 78.46 TOP 48 45 78.46 C49 C46 78.46 BOT 45 49 73.85 C46 C50 73.85 TOP 49 45 73.85 C50 C46 73.85 BOT 46 47 89.23 C47 C48 89.23 TOP 47 46 89.23 C48 C47 89.23 BOT 46 48 91.28 C47 C49 91.28 TOP 48 46 91.28 C49 C47 91.28 BOT 46 49 84.62 C47 C50 84.62 TOP 49 46 84.62 C50 C47 84.62 BOT 47 48 88.72 C48 C49 88.72 TOP 48 47 88.72 C49 C48 88.72 BOT 47 49 81.54 C48 C50 81.54 TOP 49 47 81.54 C50 C48 81.54 BOT 48 49 86.15 C49 C50 86.15 TOP 49 48 86.15 C50 C49 86.15 AVG 0 C1 * 83.21 AVG 1 C2 * 80.35 AVG 2 C3 * 80.83 AVG 3 C4 * 80.03 AVG 4 C5 * 63.97 AVG 5 C6 * 80.75 AVG 6 C7 * 78.41 AVG 7 C8 * 78.75 AVG 8 C9 * 83.11 AVG 9 C10 * 79.32 AVG 10 C11 * 78.88 AVG 11 C12 * 79.52 AVG 12 C13 * 80.36 AVG 13 C14 * 82.32 AVG 14 C15 * 81.07 AVG 15 C16 * 80.10 AVG 16 C17 * 82.49 AVG 17 C18 * 82.03 AVG 18 C19 * 84.06 AVG 19 C20 * 84.35 AVG 20 C21 * 81.40 AVG 21 C22 * 80.75 AVG 22 C23 * 82.90 AVG 23 C24 * 80.95 AVG 24 C25 * 82.09 AVG 25 C26 * 79.48 AVG 26 C27 * 82.11 AVG 27 C28 * 81.12 AVG 28 C29 * 80.30 AVG 29 C30 * 81.87 AVG 30 C31 * 81.64 AVG 31 C32 * 82.42 AVG 32 C33 * 78.02 AVG 33 C34 * 79.01 AVG 34 C35 * 81.69 AVG 35 C36 * 82.23 AVG 36 C37 * 82.62 AVG 37 C38 * 76.47 AVG 38 C39 * 78.09 AVG 39 C40 * 81.50 AVG 40 C41 * 80.47 AVG 41 C42 * 81.20 AVG 42 C43 * 81.47 AVG 43 C44 * 79.00 AVG 44 C45 * 79.70 AVG 45 C46 * 80.55 AVG 46 C47 * 82.62 AVG 47 C48 * 79.24 AVG 48 C49 * 81.94 AVG 49 C50 * 78.27 TOT TOT * 80.50 CLUSTAL W (1.83) multiple sequence alignment C1 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C2 ATGGAAAACAGATGGCAGGTGCTGGTTGTGCGGCAGGTAGACAGGATGAA C3 ATGGAAAACAGATGGCAGGCAGTGATTGTGTGGCAGGTAGACAGAATGAG C4 ATGGAAAACAGATGGCAGGTGCTGATTGTATGGCAGGTAGACAGGATGAG C5 ATGGAAAACAGATGGCAGGTACTGATAGTGTGGCAAGTAGACAGACAGAA C6 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGATGAG C7 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGATGAG C8 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C9 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTGGACAGGATGAG C10 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGATGAA C11 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGATGAG C12 ATGGAAAACAGATGGCAGGTGCTGATTGTGTGGCAGGTAGACAGGATGAA C13 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGATGAG C14 ATGGAAAACAGATGGCAGGTGCTGATTGTGTGGCAGGTAGACAGGATGAG C15 ATGGAAAACAGATGGCAGGTGCTGATTGTGTGGCAGGTAGACAGGATGAG C16 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C17 ATGGAAAACAGATGGCAGGGGCTGATTGTGTGGCAGGTAGACAGGATGAA C18 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C19 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C20 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGAATGAG C21 ATGGAAAACAGATGGCAGGTGCTGATTGTGTGGCAGGTAGACAGGATGAA C22 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGAATGAG C23 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGATGAG C24 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C25 ATGGAAAACAGATGGCAGGTGCTGACTGTGTGGCAGGTAGACAGGATGAA C26 ATGGAAAACAAATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGATGAG C27 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C28 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGATGAG C29 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGATGAG C30 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C31 ATGGAAAACAGATGGCAGGTGCTGATTGTGTGGCAGATAGACAGGATGAG C32 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C33 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGATGAG C34 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C35 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C36 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C37 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C38 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGATGAG C39 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTGGACAGGATGAG C40 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C41 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGATGAG C42 ATGGAAAACAGATGGCAGGTGCTGATTGTGTGGCAGGTAGACAGGATGAA C43 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGATGAG C44 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGAAGAG C45 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C46 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGATGAG C47 ATGGAAAACAGATGGCAGGTGCTGATTGTGTGGCAGGTAGACAGGATGAG C48 ATGGAAAACAGATGGCAGGTGCTGATTGTGTGGCAGGTAGACAGGATGAG C49 ATGGAAAACAGATGGCAGGTGCTGATTGTGTGGCAGGTAGACAGGATGAG C50 ATGGAAAACAAATGGCAGGTGCTGATTGTATGGCAAATAGACAGAATGAA **********.******** . **. :**. ****..*.*****..:**. C1 GATTAGGAAATGGAAAAGTTTAGTAAAACACCATATGTATATCTCAAAGA C2 GATTAGAACATGGAACAGCTTAGTAAAGCACCATATGTATATTTCGAGGA C3 GATTAGAACATGGAACAGTTTAGTAAAACATCATATGTATGTCTCAAAGA C4 AATTAAAACATGGCACAGTTTAGTAAAACATCATATGTATGTCTCAAGAA C5 AGTGAAAGTGTGGAACAGCCTGGTGAAATACCATAAGTACAGGTCTAGGA C6 GATTAGAACATGGAAAAGTTTAGTAAAACACCATATACACGTTTCAAAGA C7 GATTAGAACATGGAACAGTTTAGTAAAGTATCATATGTATATCTCAAAGA C8 GATTAACACATGGAAAAGTTTAGTAAAGTACCATATGCATGTTTCAAAGA C9 GATTAGAACATGGAAAAGTTTAGTAAAACATCATATGTATGTTTCAAAAA C10 GATTAGGACATGGAATAGTTTAGTAAAACACCATATGTATATTTCAAAGA C11 GATTAGAACATGGCACAGTTTAGTAAAGCATCATAAGTATGTCTCAAAGA C12 GATTAGAACATGGAATAGTTTAGTAAAACACCATATGTATATTTCAAAGA C13 GATTAACACATGGAAAAGTTTAGTAAAATACCATATACACATTTCAAAGA C14 GATTAGAACATGGAACAGTTTAGTAAAGCACCACATGTATATATCAAGGA C15 GATCAGAACATGGAATAGTTTAGTAAAGCACCATATGTATGTTTCAAAGA C16 GATTAGAACATGGAAGAGTTTAGTAAAACACCATATGTATTGTTCAAAGA C17 GATTAGAACATGGAATAGTTTAGTAAAGCATCATATGTATGTTTCAAAGA C18 GATTAGAGCATGGAAAAGTGTAGTAAAATATCATATGCATATTTCAAAGA C19 GATTAGAACATGGAAAAGTTTAGTTAAACACCATATGTATATTTCAGGGA C20 GATTAGAACATGGAAAAGTTTAGTAAAACACCATATGTATGTTTCAAAGA C21 GATTAGAACATGGAATAGTTTAGTAAAGCACCATATGTATACTTCAAAGA C22 GATTAGAACATGGAATAGTTTAGTAAAACACCATATGCATATTTCAAAGA C23 GATTAGAACATGGAACAGTATAGTAAAACATCATATGTATGTCTCAAAGA C24 GATTAAAACATGGAAAAGTTTAGTAAAATACCATATGTATATCTCAAAGA C25 GATTAGAACATGGAATAGTTTAGTAAAGCATCATATGTATGTCTCAAAGA C26 GATTAGCACATGGAAAAGTTTAGTAAAATACCATATGCATATTTCAAAGA C27 GATTAGAACATGGAAAAGTTTAGTAAAACACCATATGTATGTTTCAAAGA C28 GATTAGAACATGGAACAGTTTAGTAAAACATCATATGTACATCTCAAAGA C29 GATTAGAACATGGCACAGTTTAGTAAAACATCATATGTATATCTCAAAGA C30 GATTAATGCATGGAAAAGTATAGTAAAATACCATATGTATAGGTCAGGGA C31 GATTAGAACATGGAACAGTTTAGTAAAGCACCATATGTATGTTTCAAAGA C32 GATTAAAACATGGAAAAGTTTAGTAAAACACCATATGTATGTTTCAAAGA C33 GATTAGAACATGGCACAGTTTAGTAAAACATCACATACATATCTCAAAGA C34 GATTAACACATGGAAAAGCATAGTAAAACACCATATATATATTTCAAAGA C35 GATTAGAACATGGATAAGTCTAGTAAAACACCATATGTATATTTCAAAGA C36 GATTAGAGCATGGAACAGTTTAGTAAAACACCATATGTATATTTCAAAGA C37 GATTAGAACATGGAAAAGTTTAGTAAAACACCATATGTATATTTCAGGGA C38 GATTAGAACATGGCGCAGTTTGGTAAAACATCATATACATATCTCAAAGA C39 AATTAGAACATGGCATAGTATAGTAAAATATCATATGTATGTCTCAAAGA C40 GATTAGAACATGGAAAAGTTTAGTAAAACACCATATGTATGTTTCAGGGA C41 GATTAGGACATGGAACAGTTTAGTAAAACATCATATGTATATCTCAGGGG C42 GATTAGAACATGGAATAGTTTAGTAAAACACCATATGTATATTTCAAAGA C43 GATTAACACATGGAAAAGTTTAGTAAAATACCATATGCATGTGTCAAAGA C44 AATTAAAACATGGAACAGTTTAGTAAAACATCATATGTATATATCAAAAC C45 GGTTAAAACATGGAAAAGTCTAGTAAAACACCATATGTATATCTCAAAGA C46 GATTAGAACATGGAATAGTTTAGTAAAATATCACATGTATGTCTCACGGA C47 GATTAGAACATGGAATAGTTTAGTGAAACACCATATGTATACCTCAAAGA C48 GATTAGAACATGGAATAGTTTAGTAAAGCACCATATGTATGTCTCAAGAA C49 GATTAAAACATGGAATAGTTTAGTAAAGCACCATATGTATATTTCAAAGA C50 GATTAGAACATGGAATAGTTTAGTAAAGCACCACATGTATATTTCAAAGA ..* *. . .***. ** *.** **. * ** *:. * ** .. C1 AAGCTAAGGGATGGTTTTATAGACATCACTATGAAAGCACTCATCCAAGA C2 GAGCTAGTGGATGGTTCTACAGACATCATTATGAAAGCAGACACCCAAAA C3 GAGCAAAAAATTGGTTTTATAGACATCATTTTGAAACCAGGCATCCAAAA C4 AAGCTAAAGATTGGCATTATAGACATCACTATGAAAGTAGGCATCCAAAA C5 AGGCCAAGGAATGGCATTACAGACATCATTATGAATCTAGAAATCCAAGA C6 AAGCTAAAGGATGGTTTTATAGACATCACTATGAAAGCACTCATCCAAGA C7 AAGCTAAAAATTGGAATTATAGACACCACTTTCAAAGCAGGCATCCAAAA C8 AAGCTAAAAAATGGTCTTATAGACATCACTTTGAAAACAGGAATCCAAGA C9 AGGCTAAGGGATGGGTTTATAGACATCACTATGAAAACCCTCATCCAAGA C10 AAGCTAATGGATGGTTTTATAGACATCATTATGACTGTAGACATCCAAAA C11 AAGCAAAAAATTGGGTTTATAGACATCACTTTGAAAGCAGGCATCCAAGA C12 GAGCTAATAAATGGGTTTATAGACATCATTATGAAAGCAGACATCCAAAA C13 AAGCTAGCAGATGGTGTTATAAACATCACTTTGAAAGCAGGAATCCAAGA C14 GAGCTAAAGGATGGGTTTACAGACATCATTATGAAAGCAGACATCCAAAA C15 GAGCTAATGGGTGGTTTTACAGACATCATTATGAAAGCAGACATCCAAAA C16 AAGCTAAGGGATGGTATTATAGACATCACTATGAAAGCACTCACCCAAAA C17 GAGCTAAGGGATGGTTCTATAGACATCATTATGAAAGCAGACATCCAAAA C18 AGGCTAAGGGATGGTTTTATAGACATCACTATGAGAGTACTCATCCAAAA C19 AAGCTAAAGGATGGTTTTATAGACATCACTATGAAAGCACTAATCCAAGA C20 AAGCTAAGGGATGGTTTTATAGACATCACTATGAAAGCACCCATCCAAGA C21 AAGCTAGTGGATGGGTTTACAGACACCATTATGAAAGTAGAAATCCAAAA C22 AAGCTAAAGACTGGGTCTATAGACATCACTATGAAAGCACTAATCCAAGA C23 AAGCTAAAAATTGGTTTTATAGACATCACTATGAAAGTAGACATCCAAAA C24 AAGCTAAAGGATGGTTTTATAGACATCATTATCAAAGTAATCATCCAAAA C25 AAGCTAATGGGTGGTGTTACAGACATCATTATGAAAGCAGAAATCCAAGA C26 AAGCCAAAAAATGGTCTTATAGACATCATTTTGAAAGCAGGCATCCAAGA C27 AAGTTAAGGAATGGGTTTATAGACATCATTATGAAAGCACTCATCCAAGA C28 AAGCAAAAAAGTGGTTTTATAGACATCACTATGAAAGCAGGCATCCAAAA C29 AAGCAAAAAATTGGGTTTATAGACATCACTTTGAAAGCAGGCATCCAAAA C30 AAGCCAGGAAGTGGTTTTATAGACATCATTATGAAAGCACTCATCCAAGA C31 GAGCTAATAAATGGGTTTACAGACATCATTATGAAAGCAGAAATCCTAGA C32 AAGCTAAGGGATGGTTGTATAGACATCACTATCAAAGCATTCATCCAAGA C33 AAGCAAAAAATTGGTTGTATAAACATCACTTTGAAAGCAGGCATCCAAGA C34 AAGCTAAGAGATGGATTTATAAACATCACTATGAAAGCATTAATCCAAGA C35 AAGCTAGGGGATGGTGTTACAGACATCACTATGAAAGCACTAATCCAAGA C36 AAGCTAGGGGATGGTTTTATAGACATCACTATGAAAGCACTCATCCAAAA C37 AAGCTAAGAAATGGGTTTATAGACATCACTATGAAAGCACTAATCCAAGA C38 AAGCTAAAAAGTGGGTTTATAGACATCATTATGAAAGCCAGAATCCAAGG C39 AAGCTAAAAAGTGGTCTTATAAACATCACTATGAAACCAGGCATCCAAGA C40 AAGCTAAGAAATGGTTTTATAGACACCACTATGAAAGTACTCACCCAAGA C41 AAGCTAAAGGTTGGGGCTATAGACATCACTTTGAAAGCAGGCATCCAAAA C42 GAGCTAAGGGATGGTTTTACAGACATCATTATGACAGCAGACATCCAAAA C43 AAGCCAAAAGATGGTTCTATAGACATCACTATGAAAGCAGACATCCAAGA C44 AAACTAGAAACTGGTTTTATAGACATCACTATGAGAGCAGGAATCCAAGG C45 AAGCTAAAGGATGGTTTTATAGACATCACTATGAAAGCACTCATCCAAAA C46 AAGCTAAAGGTTGGTTCTATAGACATCACTATGAAAGCAGGCATCCAAGA C47 AGGCTAATGGATGGTTCTACAGACATCATTATGAGAGCCGTCATCCAAAA C48 GAGCTAATGGATGGTTTTACAGACATCATTATGAAAGCAGACATCCAAAA C49 GAGCTAGGGGATGGTTTTACAGACATCACTATGAAAGCAGACATCCAAAA C50 GAGCTAATGGATGGTGTTACAAACATCATTATGAAAGCAGAAATCCAAAA ... *. .. *** ** *.*** ** *:* * : . .* **:*.. C1 ATAAGTTCAGAAGTACACATCCCACTAGAAGATGCTAAGTTGGTAGTAAC C2 GTAAGTTCAGAAGTACACATCCCATTAGGAGATGCCAGGTTAGTAATAAA C3 ATAAGTTCAGAAGTGCACATCCCATTAGGAGAAGCTAGACTGGTAGTAAA C4 GTAAGTTCAGAAGTGCACATCCCACTAGGGGAGGCTAGAATAGTAGTAAG C5 ATCAGTTCAAGTGTATATATTCCAACAGGGCCGGCTCATATAGTAGTGAC C6 ATAAGTTCAGAAGTACATATCCCACTAGGGGATGCTAAATTAGTAATAGC C7 GTAAGTTCAGAAGTACACATCCCACTAGGGGATGCTAGATTAGTGGTAAC C8 GTAAGTTCAGAAGTACACATCCCACTAGAGGGAGCTAAATTAGTAATAGC C9 ATAAGTTCAGAAGTACACATCCCGCTAGGGGATGCTAGATTGGTAATAAC C10 GTAAGCTCAGAAGTACACATCCCATTAGGAGGGGCTAGATTAGTAATAAA C11 ATAAGTTCAGAAGTACACATCCCACTAGGGGATGCTATACTAGTAGTAAG C12 GTAAGTTCAGAAATACACATCCCAGTAGGAGAGGCTAAATTAGTAATAAA C13 GTAAGTTCAGAAGTACACATCCCACTAGGGGAAGATAGGTTAGTAGTAAC C14 ACAAGTTCAGAAGTACACATACCATTAGGGGAGGCTAAATTAGTAATAAA C15 GTAAGTTCAGAAGTATACATACCATTAGGGAAGGCTAGATTAGTAATAAA C16 ATAAGTTCAGAAGTACACATCCCACTAGGAGATGCTAGATTAGTAATAAC C17 TTAAGTTCAGAAGTACACATCCCATTAGGGGAAGCTAGATTAGTAATAAA C18 ATAAGTTCAGAAGTACACATCCCATTAGGGGACGCAAAATTGGTAATAAT C19 ACAAGTTCAGAAGTACACATCCCACTAGGGGAAGCTAAATTGGTAATAAC C20 ATAAGTTCAGAAGTACACATCCCATTAGGGGATGCTAGATTGGTGATAAC C21 ATAAGTTCAGAAGTACACATCCCATTAGGAGAAGCTAAATTAGTAATAAA C22 ATAAGTTCAGAAGTATACATCCCACTAGGGGATAGTAGACTGGTAACAAC C23 GTAAGCTCAGAAGTACACATCCCACTGGGGGATGCTACATTAGTAGTAAC C24 ATAAGTTCAGAAGTACACATCCCATTAGGGGATGCAGAATTGGTAATAAT C25 GTAAGTTCAGAAGTACACATCCCATTAGGGGATGCTAAATTAGTCATCAA C26 GTAAGTTCAGAAGTACACATCCCACTAGAAGAAGCTAAATTAGTAGTAAC C27 ATAAGTTCAGAAGTACACATCCCACTAGGGGAAGCTAGACTGGTAGTCAC C28 GTGAGTTCAGAAGTACACATCCCACTAGGGGATGCTAGCTTAGTAGTAAG C29 TTAAGTTCAGAAGTACACATCCCACTAGGGGATGCTAGATTAGTAGTAAA C30 ATAAGTTCAGAAGTACACATCCCACTAGGAGATGCTGAATTGGTAATAAC C31 GTAAGTTCAGAAGTACACATTCCATTAGGGGAGGCCAAATTAGTGATAAA C32 ATAAGTTCAGAAGTACATATCCCACTAGGAGAGGCTAGCTTGGTAATAAA C33 GTAAGTTCAGAAGTACACATACCATTAGGGGATGCTAGATTAGTAGTAAG C34 ATAAGTTCAGAAATACACATCCCACTAGGGGATGATACATTAGTAATAAC C35 ATAAGTTCAGAAGTACACATCCCACTAGAAGATGCCAGATTGGTGATAAC C36 ATAAGTTCAGAAGTACACATCCCACTAGGGGATGCCAAATTGGTAATAAC C37 ATAAGTTCAGAAGTACACATCCCACTAGGGGATGCTAAATTAGTAATAAC C38 GTAAGTTCAGAAGTACATATCCCACTAGGAGAGGCTAAAATAGTAGTAAG C39 GTAAGTTCAGAAGTGCACATCCCACTAGGGGATGCTAAAATAGTAGTAAA C40 ATAAGTTCAGAAGTACACATCCCACTAGGGGATGAGAAATTGGTAATAAC C41 GTAAGTTCAGAAGTGCACATCCCACTAGGGGATGCGAGATTAGTGGTAAG C42 GTAAGTTCAGAAGTACACATCCCCTTAGGGGATGCTAGACTAGTAATAAA C43 GTAAGTTCAGAAGTACACATCCCACTAGCAGAAGATGAATTAGTGATAAC C44 ACAAGCTCAGAAGTACACATCCCACTAGGGGATGCTATGTTAGTAGTAAG C45 ATAAGTTCAGAAGTACACATCCCAATAGGGGAAGCTAGATTGGTAATAGC C46 GTAAGTTCAGAAGTACACATCCCATTAGGGGATGCTAGAATAGTAATAAG C47 GTAAGTTCAGAAGTACACATCCCATTAGGGGAAGCTAGATTAGTAATAAT C48 GTAAGTTCAGAAGTACACATACCATTAGGGGATGCTAGATTAGTAATAAC C49 GCAAGTTCAGAAGTACACATACCATTAGGGGAGGCTAAATTAGTAATAAT C50 ATAAGTTCAGAAGTACACATCCCATTAGGGGAGGCTAAATTAGTAATAAT ** ***..:.*. * ** ** .* . . *.** . . C1 AACATATTGGGGCCTGCATACAGGAGAGAGAGACTGGCATTTGGGTCAGG C2 AACATATTGGGGTCCGCTAACAGGAGAAAGAGCTTGGCATTTGGGTCACG C3 AACATATTGGGGTCTGCATACAGGAGAAAGAGACTGGCATCTGGGTCAGG C4 AACATATTGGGGTCTGCATACAGGAGAAAAGGACTGGCAATTGGGCCATG C5 CACATATTGGGGATTGATGCCAGGAGAAAGAGATGAACATATGGGACATG C6 AACATATTGGGGTCTGCATACAGGAGAAAGAGACTGGCATTTGGGTCAGG C7 AACATATTGGGGTCTGCATACAGGAGAAAAGGATTGGCAATTGGGTCATG C8 AACATACTGGGGGCTGCATACAGGAGAAAGAGATTGGCACCTGGGTCAGG C9 CACGTATTGGGGTCTGCATACAGGAGAAAGAGACTGGCATTTGGGTCAGG C10 AACATATTGGGGGTTGCAAACAGGAGAAAGAGATTGGCATTTGGGTCATG C11 AACATATTGGGGTCTGCATACAGGAGAAAAAGACTGGCACTTGGGTCATG C12 AACATATTGGGGGTTGCAAACAGGAGAAAGAGATTGGCATTTGGGTCATG C13 AACATATTGGGGTCTGCATACAGGAGAAAGAGACTGGCATTTGGGTCAAG C14 AACATATTGGGGTTTGCAAACAGGAGAAAGAGATTGGCATTTGGGTCATG C15 AACATATTGGGGTTTGCAAACAGGAGAAAGAGATTGGCATTTGGGTCATG C16 AACATATTGGGGGCTGAATACAGGAGAAAGGGACTGGCATTTGGGTCAGG C17 AACATATTGGGGTCTGCATACAGGAGAAAGGGATTGGCATTTGGGTCATG C18 AACATATTGGGGTCTACATACTGGAGAAAGAGATTGGCATTTGGGTCAGG C19 AACATATTGGGGTCTGCATACAGGAGAAAGAGATTGGCATTTGGGTCAGG C20 AACATATTGGGGTCTGCATACAGGAGAAAGAGACTGGCATTTGGGTCAGG C21 AACATACTGGGGGTTGCAAACAGGAGAAAGAGAATGGCATTTGGGTCATG C22 AACATATTGGGGTCTACATGCAGGAGAAAGAGACTGGCATTTGGGTCAGG C23 AACATATTGGGGTCTGCATACAGGAGAAAAAGAATGGCATTTGGGTCATG C24 AACATATTGGGGTCTACATACAGGAGAAAGAGAATGGCATTTGGGTCAGG C25 AACATATTGGGGGTTACAGACAGGAGAAAGAGAGTGGCATTTGGGTCATG C26 AACATATTGGGGTCTGCATACAGGAGAAAGAGAGTGGCATCTGGGTCAGG C27 AACATATTGGGGTCTGCACACAGGAGAAAGAGACTGGCATTTGGGTCAGG C28 AACATATTGGGGTCTACATACAGGAGAAAAAGATTGGCAGTTGGGTCATG C29 AACATATTGGGGTCTGCAGACAGGAGAAAAAGATTGGCAATTGGGTCATG C30 AACATATTGGGGTCTGCATACAGGAGAAAGAGACTGGCACTTGGGTCAGG C31 AACTTATTGGGGTTTGCAAACAGGGGAAAGAGATTGGCATTTGGGTCATG C32 GACATATTGGGGTCTGCATACAGGAGAAAGAGAATGGCATTTGGGTCAAG C33 AACATATTGGGGTCTGCATACAGGAGAAAAAGACTGGCACTTGGGTCATG C34 AACTTATTGGGGTCTGCATACAGGAGAAAGAGACTGGCATTTAGGTCAGG C35 AACATATTGGGGTCTGCATACAGGAGAAAGAGACTGGCATTTGGGTCAGG C36 AACATATTGGGGGCTGCATACAGGAGAAAGAGACTGGCATTTGGGTCAGG C37 AACATATTGGGGTCTGCATACAGGAGAGAGAGACTGGCATTTGGGTCAGG C38 AACATATTGGGGTCTGCAGACAGGAGAAAAGGACTGGCAATTGGGTCATG C39 AACATATTGGGGTCTGCATACAGGAGAAAAAGATTGGCAATTGGGTCATG C40 AACATATTGGGGTCTCCATACAGGAGAAAGAGACTGGCATTTGGGTCAGG C41 AACATATTGGGGGCTGCAGCCAGGAGAAAAAGACTGGCAATTGGGTCATG C42 AACATATTGGGGGTTGCAAACAGGAGAAAGAGATTGGCACTTGGGCCATG C43 AACATACTGGGGTCTGCATACAGGAGAAAGAGATTGGCATTTGGGTCAGG C44 AACATATTGGGGTCTGCAGCCAGGAGAAAAAGAATGGCAATTGGGTCATG C45 AACATATTGGGGTCTGCATACAGGAGAAAGAGACTGGCATTTGGGTCAAG C46 AACATATTGGGGTCTGCATACAGGAGAAAAAGACTGGCAATTGGGTCATG C47 AACATATTGGGGTTTGCAAACAGGAGAAAGAGATTGGCATTTGGGTCATG C48 AACATATTGGGGTTTGCAACCAGGGGAGAGAGAGTGGCTTTTGGGTCATG C49 AACATATTGGGGTTTGCAAACAGGAGAAAGAGAGTGGCATTTGGGTCAGG C50 AACATATTGGGGTTTGCAAACAGGAGAAAGAGAGTGGCATTTGGGTCATG ** ** ***** .: *:**.**.*..*. ..*: *.** ** * C1 GAGTCTCCATAGAATGGAGAAAAAAGAGATACAGCACACAGGTAGACCCT C2 GAGTCTCCATAGAATGGAGATTGAGAAGATATAGCACACAAGTAGACCCT C3 GAGTCTCCATAGAATGGAGGAAAGGGAGATATAGCACACAAGTAGACCCT C4 GGGTCTCCATAGAATGGAGACTAAAAAGATATAGCACACAAATAGATCCT C5 GGGTTAGTATAGAATGGCAGTACAAGGAGTATACAACACAGATTGATCCT C6 GAGTCTCCATAGAATGGAGGAAAGAGAAATATACTACACAAGTAGACCCT C7 GGGTCTCCATAGAATGGAGGCTAAGAAGCTATAGCACACAAATAGATCCT C8 GAGTCTCCATAGAATGGAGGCAGGGAAATTATAGGACACAAATAGACCCT C9 GAGTCTCCATAGAATGGAGGAAGAAGAGGTATAGCTCACAAGTCGACCCT C10 GAGTCTCCATAGAATGGCGATTGAGAGGCTATAACACACAAATAGAACCT C11 GGGTCTCCATAGAATGGAGGCTAAGAGGATATAGCACACAAATAGATCCT C12 GAGTCTCCATAGAATGGAGAATGAGAAAATATACCACACAAATAGAACCT C13 GAGTCTCCATAGAATGGAGGAAAAGGAGATATAGCACACAAGTAGACCCT C14 GAGTCTCCATAGAATGGAGATTGAAGAGATATAGTACACAAATAGACCCT C15 GAGTCTCCATAGAATGGAGATTGGGAAAATATAGCACACAAGTAGACCCT C16 GAATCTCAGTAGAATGGAGAAGGAAGAGATATCGCACACAAGTAGACCCT C17 GAGTCTCCATAGAATGGAGATTGAGAAGATATAGCACACAAGTAGACCCT C18 GAGTCTCCATAGAGTGGAGGAAAAGGAGATATAGCACACAAGTAGACCCT C19 GAGTCTCCATAGAATGGAGGAAGAAGAGATATAGCACACAAGTAGACCCT C20 GAGTCTCCATAGAATGGAGGCAAAGGAGATATAGCACACAAGTAGACCCT C21 GAGTCTCCATAGAATGGAGATGGGAAAGTTATAGCACACAAGTAGACCCT C22 GAATCTCCATAGAATGGAGGAAAGAGAAATACAGTACACAGGTAGACCCT C23 GGGTCTCCATAGAATGGAGGCTGAGAAGGTACAGAACACAAGTAGATCCT C24 GAGTCTCCATAGAATGGAGGAAAAAGAGATATAGCACACAAATAGACCCG C25 GAGTCTCCATAGAATGGAGATTGAGAAGATATAGCACACAAGTAGACCCT C26 GAGTCTCCATAGAATGGAGGCAGGGGATGTATAGCACACAAATAGACCCT C27 GAGTCTCCATAGAATGGAGGAAAAGGAGATATAACACACAAGTAGACCCT C28 GAGTCTCCATAGAATGGAGGCTAAGAAGATATAGCACACAAATAGATCCT C29 GGGTCTCCATAGAATGGAGGCTACAAAGATATAGCACACAAATAGATCCT C30 GAGTCTCCATAGAATGGAGGAAAAAGAGATATAGCACACAAGTAGACCCT C31 GGGTCTCCATAGAATGGAGACAGGGAATATATAGCACACAGGTAGATCCT C32 GAGTCTCCATAGAATGGAGGAAAGGAAGATATAACACACAAGTAGACCCA C33 GGGTCTCCATAGAATGGAGGCTGAAAAGTTATAGCACACAAATAGATCCT C34 GAGTCTCCATAGAATGGAGGAAAGGGAGATATAGCACACAAGTAGACCCT C35 GAGTCTCCATAGAATGGAGGAAAAGGAAATATAGCACACAAGTAGACCCT C36 GAGTCTCCATAGAATGGAGGAAAAAGAGATATAGCACACAAGTAGACCCT C37 GGGTCTCCATAGAATGGAGGAAAAGGAGATATAACACTCAAGTAGACCCT C38 GAGTCTCCATAGAATGGAGGCAGAGACAATATAGCACACAAATAGATCCT C39 GGGTCTCCATAGAATGGAGGCTAAGAAGATACAGTACACAAATAGATCCT C40 GAGTCTCCATAGAATGGAGGAAAGGGAGATATCACACACAAGTAGACCCT C41 GGGTCTCTATAGAATGGAGGCAGAGAAAATATAGCACACAAATAGATCCT C42 GAGTATCCATAGAATGGAGATTGAGAGGATATAGTACACAAGTAGAACCT C43 GAGTCTCCATAGAATGGAGGAAAAACAGATATAAAACACAAGTAACCCCT C44 GGGTCTCCATAGAATGGAGGCAGAAAAGATATAGTACACAAGTAGATCCT C45 GAGTCTCCATAGAATGGAGACAAAGGAGATATAGCACACAAGTAGACCCT C46 GGGTCTCCATAGAATGGAAGCTAAAAAGATATAGCACACAAATAGATCCT C47 GAGTCTCCATAGAATGGAGATTGAAAAGATATAGCACACAAGTAGACCCT C48 GAGTCTCCATAGAATGGAGATTGAAAAGATATAGCACACAAATAGACCCT C49 GAGTCTCCATAGAATGGAGATTGAGAAGGTATAGCACACAAGTAGACCCT C50 GAGTCTCCATAGAATGGAGAATGAGAAGCTATAGCACACAGGTAGACCCT *..* : .****.***... . ** . :*:**..* .. ** C1 GACCTAGCAGACCAACTAATTCATCTGTATTACTTTGATTGTTTTTCAGA C2 GGCCTGGCAGATCAGCTAATTCATATGCATTATTTTGATTGTTTTGCAGA C3 GGCCTAGCAGACCAACTAATTCACATATATTATTTTGATTGTTTTGCAGA C4 GACCTGGCAGATCAACTAATTCATCTGCATTATTTTAACTGTTTTTCAGA C5 GAAACAGCAGACAGGATGATACATCTGCACTATTTTGCCTGTTTTACAGA C6 GACTTAGCAGACCAACTAATTCATCGGTCCTACTTTGATTGTTTTTCAGA C7 GACCAGGCAGACCAACTAATTCATATACATTATTTTGACTGTTTTTCAGA C8 GGCCTGGCAGACCAACTGATCCATATATATTATTTTGACTGTTTTTCAGA C9 AACCTAGCAGACCAACTAATTCACCTGCATTATTTTGATTGTTTTTCAGA C10 GGCCTGGCAGACCAGCTAATTCATATGTATTATTTTGATTGTTTTGCAGA C11 GACCAGGCAGACCAACTAATTCATCTGTATTATTTTGACTGTTTTTCAGA C12 GGCCTGGCAGACCAGCTAATTCATTTGTATTATTTTGATTGTTTTGCAGA C13 GACCTAGCAGACCAACTAATTCATCTGTATTATTTTGATTGTTTTTCAGA C14 GGCCTGGCAGACCAGCTAATTCATATGTATTATTTTGATTGTTTTGCAGA C15 GGCCTGGCAGACCAGCTAATTCATATGCATTATTTTGATTGTTTTGCAGA C16 GAACTAGCAGACCGCCTAATTCATCTGCATTATTTTGATTGTTTTACAGA C17 AGTCTGGCAGACCAGCTAATCCACATGCATTATTTTGATTGTTTTACAGA C18 AATCTAGCAGACCAACTGATTCACCTGTATTACTTTGATTGTTTTACAGA C19 GACCTAGCAGACCAACTAATTCATCTGCATTACTTTGATTGTTTTTCAGA C20 AACCTAGCAGATCAACTAATTCATCTGTATTACTTTGATTGTTTTTCAGA C21 GGCCTGGCAGACCAGCTAATTCATATGCATTATTTTGATTGTTTTACAGA C22 GACCTAGCAGACCAACTAATTCATCTGTATTACTTTGATTGTTTTTCAGA C23 GACCTGGCAGACCAACTAATTCATCTGTATTATTTTGACTGTTTTTCAGA C24 AACCTAGCAGACCAACTGATTCATCTGTATTACTTTGATTGTTTTGCAGA C25 GGCCTGGCAGACCAACTAATTCATATGCATTATTTTGATTGTTTTGCAGA C26 GGCCTGGCAGACCAACTGATCCATATATATTATTTTGATTGTTTTTCAGA C27 GACCTAGCAGACCAACTAATTCACCTGTATTACTTTGATTGTTTTTCAGA C28 GACCTGGCAGATCAACTAATTCATCTGCATTATTTTAACTGTTTTTCAGA C29 GATGTGGCGGACCAACTAATTCACCTGCATTATTTTAACTGTTTTTCAGA C30 GACCTAGCAGACCAACTAATTCATCTGTATTACTTTGATTGTTTTTCAGA C31 GGCCTGGCAGACCAGCTAATTCATATGCATTATTTTGATTGTTTTGCAGA C32 GGCCTAGCAGACCAACTAATTCATCTGTATTACTTTGATTGTTTTTCAGA C33 GACTGGGCAGACCAACTAATTCACCTACATTATTTTGACTGTTTTTCAGA C34 GGCCTAGCAGACCGACTAATTCACCTGCACTATTTTGATTGTTTTTCAGA C35 GGCCTAGCAGACCAACTAATACATCTGCATTACTTTGATTGTTTTTCAGA C36 AACCTAGCAGACCAACTAATTCATCTGTATTATTTTGATTGTTTTTCAGA C37 GACCTAGCAGACCACCTAATTCATCTGCATTATTTTGATTGTTTTTCAGA C38 GACCTAGCAGACCAACTGATTCATCTAAATTATTTTGACTGTTTTTCAGA C39 GACCTGGCAGACCAACTAATTCATCTGCATTATTTTCAATGTTTTTCAGA C40 ACCCTAGCAGACCAATTAATTCATCTGTACTACTTTGATTGTTTTTCAGA C41 GACCTGGCAGACCAGCTAATTCATCTGCATTATTTTGACTGTTTTTCAGA C42 GGCCTGGCAGACCAGCTAATTCATATGCATTATTTTGATTGTTTTGCAGA C43 GACCTAGCAGACCAACTAATTCACCTGTATTATTTTGATTGTTTTTCAGA C44 GACCTGGCAGACCAACTAATCCATCTGTATTATTTTGACTGTTTTTCAGA C45 AACCTAGCAGATCAATTAATTCATGTGTATTACTTTGATTGTTTTTCAGA C46 GACTTGGCAGACCAACTAATTCATCTGCATTATTTTAACTGTTTTTCAGA C47 GGCCTGGCAGACCAACTAATTCATATGCATTATTTTGATTGTTTTGCAGA C48 GGCCTGGCAGACCAGCTAATTCATATGCATTATTTTGATTGTTTTGCAGA C49 GGCCTGGCAGACCAGCTAATTCATATGCATTATTTTGATTGTTTTGCAGA C50 GGCCTGGCAGACCAACTAATTCATATGCATTATTTTGATTGTTTTGCAGA . .**.** .. *.** ** . . ** *** . ****** **** C1 ATCTGCTATAAGAAATGCCATATTAGGACGTAGAGTTAGCCCTAGGTGTG C2 CTCTGCCATAAGAAAAGCCATATTAGGACAAGTAGTTATTCATAGGTGTG C3 ATCTGCTATAAGACAAGCCATATTAGGACATATAGTTACTTCTAGGTGTA C4 ATCTGCCATAAGGAGAGCCATATTAGGACAAGTAGTTAGCCCTAGTTGTG C5 ATCAGCAATCAGGAAAGCAATCCTAGGGCAGAGAGTACTGACCAAGTGTG C6 ATCTGCTATAAGAAATGCCATATTAGGATATAGAGTAAATCCTATTTGTG C7 CTCTGCCATAAGGAAAGCCCTATTAGGACAAGTAGTTAGCCCTAAGTGTG C8 ATCTGCCATAAGGAGTGCCATATTAGGACATTACATTAGCCCTAGGTGTA C9 ATCAGCTATAAGAAAAGCCATATTAGGACATATAGTTAGCCCTAGTTGTG C10 CTCTGCCATAAGGAAAGCCATATTAGGACACATAGTTACT---GGGTGTG C11 ATCTGCCATAAGGAAAATCATATTAGGACAAGTAGTTAGACCTAGGTGTG C12 CTCTGCCATAAGAAAAGCCATATTAGGACACATAGTTATTCCTAGGTGTG C13 ATCTGCTATAAGACATGCCATATTAGGACGCATAGTTAGGCCTAGGTGCA C14 ATCTGCCATAAGGAAAGCCTTATTAGGACATATAGTTATTCCTAGGTGTG C15 CTCTGCCATAAGGAAAGCCATATTAGGACACATAGTTATTCCTAGGTGTG C16 CGCTGCTATAAGAAGTGCCTTATTAGGACGTATAGTTAGGCCTAGGTGTG C17 ATCTGCCATAAGAAAAGCCATATTAGGACATATAGTCATTCCTAGGTGTG C18 ATCTGCTATAAGAAATGCCATCTTAGGAAATAGAGTTAGTCCTAGGTGTG C19 ATCTGCTATAAGAAGTGCCATATTAGGACATATAGTTAGTCCTAGGTGTG C20 CTCTGCTATAAGAAAAGCCATAGTAGGACATATAGTTAGCCCTAGGTGTG C21 CTCTGCCATAAGGAAAGCCATATTAGGACACATAGTTATTCATAGGTGTG C22 ATCTGCTATAAGAAATGCCATATTAGGACATAGAGTTAGCCCTAGGTGTG C23 ATCTGCCATAAGGAATGCCATATTAGGACATAGAGTTAGTCCTAGGTGTG C24 GTCTGCTATAAGAAATACCATCTTAGGATGTAGAGTTAGTCCTAGGTGTG C25 ATCTGCCATAAGGAGTGCTATATTAGGACATCTAGTTAGACCTAGGTGTG C26 TTCTGCCATAAGGAAAGCCATATTAGGATATAGAGTTAGCCCTAGGTGTA C27 ATCTGCCATAAGACAAGCCCTATTAGGATATAGAGTTAGTCCTAGGTGTG C28 CTCTGCCATAAGGAAAGCCATATTAGGAGAAATAGTTAGTCCTAGTTGTG C29 ATCTGCCATAAGGAAAGCCATATTAGGACAAGTAGTTAGCCCTAGGTGTG C30 ATCTGCTATAAGAAATGCCATATTAGGACATAGAGTTAGTCCTAGGTGTG C31 CTCTGCCATAAGAAAAGCCATATTAGGACATATAGTTATTCCTAGGTGTG C32 ATCTGCTATAAGAAATGCCATATTAGGACATATAGTTAGTCCTAGTTGTG C33 CTCTGCCATAAGGAAAGCCTTATTAGGACAAATAGTTAGACCTAATTGTG C34 ATCTGCTATAAAAAATGCCATATTAGGACGTATAGTTAGACCTAGGTGTG C35 ATCCGCTATAAGAAGTGCCATATTAGGACGTATAGTTAGTCCTAGTTGTG C36 ATCTGCTATAAGACAGGCCATATTAGGACATAGAGTTAGTCCTAGGTGTG C37 GTCTGCCATAAGAAATGCCATATTAGGACGTTTAGTTAGTCCTAAGTGTG C38 CTCTGCCATAAGGAAAGCCATATTAGGACAAGTAGTTAGACGTAGGTGTG C39 CACTGCCATAAGGAAAGCCATATTAGGACAAATAGTTACCCCTTGTTGTG C40 ATCTGCTATAAGAAATGCCATATTAGGACATAGAGTTAGTCCTAGTTGTG C41 CTCTGCCATAAGGAAAGCCATATTAGGACAAGTAGTTAGTCCTAGGTGTG C42 CTCTGCCATAAGAAAAGCCATATTAGGACACATAGTTATTCCTAGGTGTG C43 ATCTGCTATAAGGAATGCCATATTAGGATATAGAGTTAGACCTAGGTGTG C44 CTCTGCCATAAGGAAAGCCATATTAGGATATAGAGTCAGTCCTAGGTGTA C45 ATCTGCTATAAGAAATGCCATACTAGGACATAGAGTTAGTCCCAGGTGTG C46 ATCTGCTATAAGGAAAGCCATATTAGGAGAAATAGTTAGTCCTAGGTGTG C47 CTCTGCCATAAGAAAAGCCATATTAGGACATATAGTTAGCCCTAGGTGCA C48 CTCTGCCATAAGAAAAGCCATATTAGGACACATAGTTATCCCTAGGTGTG C49 CTCTGCCATAAGAAAAGCCATATTAGGACGCATAGTTATTCCTAGGTGTG C50 ATCTGCCATAAGGAGAGCCATATTAGGATGTAGAGTTAGCCCTAGGTGTG * ** **.*.... . *. ****. . ..* . ** . C1 AATATCAAGCAGGACAT---AACAAGGTAGGATCTCTACAGTACTTGGCA C2 ACTATCAAGCAGGACAT---AATAAGGTAGGATCTCTACAATACTTGGCA C3 ATTATCAAGCAGGACAT---AACAAGGTAGGATCTTTACAATACTTGGCA C4 AATACCAAGCAGGACAT---AACAAGGTAGGATCCCTGCAATATTTGGCA C5 AATACTCTGCAGGACAT---AGTCAGGTAGGGACACTACAACTACTAGCT C6 AATATCAAGCAGGACAT---AGCAAGGTAGGATCCCTACAGTACTTGGCA C7 AATATCTAACAGGACAT---AACAAGGTAGGATCTCTACAATATTTAGCG C8 ACTACCAAGCAGGACAT---AATAAGGTAGGATCTCTACAATATTTGGCA C9 AATATCAAGCAGGACAT---AACAAGGTAGGATCTCTACAGTACTTGGCA C10 AATATCAAGCAGGACAT------CCGGTAGGATCTCTACAGTACTTGGCA C11 AATATCAAACAGGACAC---AACAAGGTAGGATCTCTACAATATTTAGCA C12 ACTATCAAGCAGGACATAATAATAAGGTAGGATCTCTACAATACTTGGCA C13 ATTATCAAGCAGGACAT---AACAAGGTAGGATCTCTACAGTACTTGGCA C14 ACTATCAAGCAGGACAT---AATAAGGTAGGATCTCTACAATACTTGGCA C15 ACTACCCAGCAGGACAT---AAGAAGGTAGGATCTCTACAATACTTGGCA C16 AATATCAAGCAGGACAT---AACAAGGTAGGATCTCTACAGTACTTGGCA C17 ATTATCAAGCAGGACAT---AATAAGGTAGGATCTCTACAGTACTTGGCA C18 AATATCAAGCAGGACAT---AACAAGGTAGGATCTCTACAGTACTTGGCA C19 AATATCGAGCAGGACAT---AATAAGGTAGGATCTCTACAGTACTTGGCA C20 AATATCAAGCAGGACAT---AACAAGGTAGGATCTTTACAGTACCTGGCA C21 AATATCAAGCAGGACAT---AATAAGGTAGGATCTCTACAATACTTGGCA C22 AATATCAAGCAGGACAT---AACAAGGTAGGATCTCTACAGTACTTGGCA C23 AATATCAAGCAGGACAT---AATAAGGTAGGATCTTTACAATATCTTGCA C24 AATACCAAGCGGGACAT---AAAAAGGTAGGATCCCTACAGTACTTGGCA C25 AATATCAAGCAGGACAT---AATAAGGTAGGATCTCTACAATACTTGGCA C26 ACTATCAAGCAGGACAT---AACAAGGTAGGATCCCTACAATATTTGGCA C27 AATATCAAGCAGGACAC---AATAAGGTAGGATCTCTACAGTACTTGGCA C28 AATATCCAGCAGGACAT---AACAAGGTAGGATCTCTACAATATTTGGCA C29 ACTATCAAGCAGGACAT---AACAAGGTAGGATCTCTACAATATTTGGCA C30 AATATCAAGCAGGACAT---AACAAGGTAGGATCTCTGCAGTACTTGGCA C31 ACTATCAAGCAGGACAT---AATAAGGTAGGATCACTACAATACTTGGCA C32 AATATCAAGCAGGACAT---AACAAGGTAGGATCTCTACAGTACTTGGCA C33 AATATCCAACAGGACAT---AACAAGGTAGGATCTCTACAATATTTAGCA C34 AGTATCCAGCAGGACAC---AACAAGGTAGGATCTCTACAGTACTTGGCA C35 ATTACCAAGCAGGACAT---AACAAGGTAGGATCTCTACAGTACTTGGCA C36 AATATCAAGCAGGACAT---AACAAGGTAGGATCTCTACAGTACTTGGCA C37 AATACCTAGCAGGACAT---AACAAGGTAGGATCTCTACAGTACTTGGCA C38 AATATCCATCAGGACAC---AACAAGGTAGGATCCCTACAATATTTGGCA C39 AATATCAGACAGGACAC---AACAAGGTAGGATCTCTGCAATATTTAGCA C40 AATATCAAGCAGGACAT---AACAAGGTAGGATCTCTGCAATACTTGGCA C41 AATATCAAGCAGGACAT---AACAAGGTAGGATCGCTACAATATTTGGCA C42 ACTATCCAGCAGGACAT---AATAAGGTAGGATCTCTACAATACTTGGCA C43 AATATCAAGCAGGACAT---AACAAGGTAGGGTCTCTACAGTACTTGGCT C44 ATTATCAGGCAGGACAT---AACAAGGTAGGATCCCTACAATATTTGGCA C45 AATATCAAGCAGGACAT---AACAAGGTAGGGTCTCTGCAGTACTTGGCA C46 AATATCAAGCAGGACAT---AACAAGGTAGGATCTCTACAATATTTGGCA C47 ACTATCAAGCAGGACGT---AACAAGGTAGGATCGCTACAATACTTGGCA C48 ACTATCCAGCAGGACAT---AATAAGGTAGGATCTCTACAATACTTGGCA C49 ACTATCAAGCAGGACAT---AATAAGGTAGGATCTCTACAATACTTGGCA C50 ACTATCAAGCAGGACAT---AATAAGGTAGGATCTCTACAATACCTGGCA * ** *.****. ..******.:* *.**. : * ** C1 CTAGCAGCATTAATAAAACCAAAAAGGAGAAAGCCACCTTTACCTAGTGT C2 CTGACAGCACTGATAAAACCAAAAAAGAGAAAGCCACCTCTGCCCAGTGT C3 CTAACAGCATTAGTAACACCAAAAAAGATAACACCCCCTTTACCTAGTGT C4 CTGAAAGCACTAGTAACACCAACAAGGACAAAGCCACCTTTGCCTAGTGT C5 CTAAGAGCTGTAGTGAAAGAAAAAAGAAATAAGCCTCCCCTACCCAGTGT C6 CTAATAGCATTAATAAAACCAAAAAAGAGAAAGCCACCTTTACCTAGTGT C7 CTGAAAGCATTAATAACACCAACAAAGAAAAGGCCACCTTTGCCTAGTGT C8 CTAACAGCATTAATAGCTCCAAAGAAGACAAAGCCGCCTTTGCCTAGTGT C9 CTAATAGCATTAACAACACCAAAAAAGATAAAGCCACCTTTGCCTAGTGT C10 CTAACCGCACTGATAAAACCAAAAAGGATAAAGCCACCTCTGCCTAGTAT C11 CTAAAAGCATTAGTAGCACCAACAAAGACAAAGCCACCTTTGCCTAGTGT C12 CTGACAGCATTGATAAAACCAAAAAAGATCAAGCCACCTCTGCCTAGTAT C13 CTAACAGCATTAATAACACCAAAAAAGACAAGGCCACCCTTACCTAGTGT C14 CTGACAGCATTGATAAAACCAAAAAAGAGAAAGCCACCTCTGCCTAGTGT C15 CTGACAGCATTGATAAAACCAAAAAAGAGAAAGCCACCTCTGCCTAGTGT C16 CTAGCAGCATTAATACCACCAAAAAAGATAAAGCCACCTTTACCTAGTGT C17 CTGACAGCATTGATAAAGCCAAAAAGGATAAAACCACCTCTGCCTAGTGT C18 CTGGTAGCATTAATAACACCAAAAAAGAGAAAACCACCCCTGCCTAGTGT C19 CTAACAGCATTAGTAACACCAAAGAAGATAAAGCCACCTTTGCCTAGTGT C20 CTAGCAGCATTAATAACACCAAAAAAGATAAGACCACCTTTGCCTAGTGT C21 CTGACAGCATTGATAAAACCAAAAAAGATAAAGCCACCTCTGCCTAGTGT C22 CTCACAGCATTAATAAAACCAAAAAGGAGAAAGCCACCTCTGCCTAGTGT C23 CTAGCAGCATTAATAACTCCAAAAAAGACAAAGCCACCTTTACCTAGTGT C24 CTAGCAGCATTAACAACACCAAAGAAGACAAAGCCACCTTTGCCTAGTGT C25 CTGACAGCATTGACAAAACCAAAAAAGATAAAGCCACCTCTGCCTAGTGT C26 CTAACAGCATTAATAGCTCCAAAGAAGACAAAGCCACCTTTGCCTAGTGT C27 CTAGTAGCAGTAATAACACCAAAAAAGAGAAAGCCACCTTTGCCCAGTGT C28 CTGAAAGCATTAGTAACACCAACAAAGAGAAGGCCACCTTTGCCTAGTGT C29 CTGAGAGCATTAGTAGCACCAAAAAAGATAAAGCCACCTTTGCCTAGTGT C30 CTAACAGCATTAATAACACCAAAAAGGAGAAAGCCACCTTTGCCTAGTGT C31 CTGACAGCATTAATAAAATCAAAAAAGAGAAAGCCACCTCTGCCTAGTGT C32 CTAACAGCATTAAGAACACCAAAGAAGATAAAGCCACCTTTGCCTAGTGT C33 CTGAAAGCATTAGTAACACCAACAAAGACAAAGCCACCTTTGCCTAGCGT C34 CTAACTGCATTAACAACACCAAAGAAGAGAAGGCCACCTTTACCCAGTGT C35 CTAGTAGCATTAACAAAACCAAAAAAGAGAAAGCCACCTCTGCCTAGTGT C36 CTAACAGCATTAATAACACCAAAAAGGACAAAACCACCTTTCCCTAGTGT C37 CTAGCAGCACTAATAACACCAAAAAAGATAAAGCCACCTTTGCCTAGTGT C38 CTGCAAGCATTAACAACACAAAAAAGGATAAGGCCACCTCTGCCTAGTGT C39 CTGAAAGCATTAGTGACACCAACAAGGAGTAGACCACCTTTACCTAGTGT C40 CTAGTAGCATTAAGAACACCAAAAAAGATAAAGCCACCCTTGCCTAGTGT C41 TTAAAAGCATTAGTAACACCAATAAGGAGAAAGCCACCTTTGCCTAGTGT C42 CTGACAGCACTGATAAAACCAAAAAAGATAAGGCCACCTCTGCCTAGTAT C43 CTAACAGCATTAATAACACCAAAAAAGATAAAGCCACCTCTGCCTAGTGT C44 TTAACAGCATTAATAGCCCCAAAGAAGGTAAAGCCGCCTTTGCCTAGTGT C45 CTAACAGCATTAGTAACACCACAACAGAGAAAGCCACCTTTGCCTAGTGT C46 CTGAAAGCATTAGTAACTACAAAAGGGACAAAGCCACCTCTGCCTAGTGT C47 CTGACAGCATTAATAAAACCAAAAAAGATAAAGCCACCTCTGCCTAGTGT C48 CTGACAGCATTGGTAAAACCAAAGCAGATAAAGCCGCCTCTGCCTAGTGT C49 CTGACAGCATTGATAAAGCCAAAAAAGATAAAGCCACCTCTGCCTAGTGT C50 CTGGCAATATTGATAAAACCAATACAGAGAAGGCCACCTCTGCCTAGCGT * . : *.. . . .*. . ... * .** ** * ** ** .* C1 TGCAAAACTGACAGAGGATAGATGGAACAAGCCCCAGAAGACCAAGGACC C2 TAGGAAATTAGTAGAGGATAGATGGAACAAGCCCCAGAAGACCAGGGGCC C3 TAGGAAGCTGACAGAAGACAGATGGAACAAGCCCCAGAGGACCAAGGGCC C4 TAAGAAACTAACAGAAGATAGATGGAACAAGCCCCAGAAGACCAGGGGCC C5 CCAGAAATTAACAGAAGATAGATGGAACAAGCACCTGAGGATCAAGGACC C6 TAAGAAACTAACAGAGGATAGATGGAACGCGCCCCGGAAGACCAAGGGCC C7 TAGGATATTAGCAGAGGATAGATGGAACAAGCCCCAGAAGACCAGGGGCC C8 CAAGAAACTAGTAGAAGATAGATGGAACAAGCCCCAGAAGACCAAGGGCC C9 TGCAAAATTGACAGAGGATAGATGGAACAAGCCCCAGAAGATCAAGGGCC C10 TAAGAAATTAGTAGAGGATAGATGGAACAACCCCCAGAAGATCAGGGGCC C11 TAAGATACTAGCAGAGGATAGATGGAACAAGCCCCAGAAGACCAAGGGCC C12 TCAGAAATTAGTAGAGGATAGATGGAACAATCCCCAGAAGATCAGGGGCC C13 CAAGAAACTGACAGAGGATAGATGGAACAAGCCCCAGAAAACCAAGGGCC C14 TAGGAAATTAGCAGAAGATAGATGGAACGACCCCCAGAAAACCAGGGGCC C15 TAGGAAATTAGCAGAGGATAGATGGAACAACCCCCAGAAGACCAGGGACC C16 TAGGAAGCTGACAGAGGATAGATGGAACAAGCCCCAGAAGACCAAGGACC C17 TAGCAAGTTAGTAGAGGATAGATGGAACAAGCCCCAGAAGACCAGGGGCC C18 TGCAAAATTGACAGAGGATAGATGGAACAAGCCCCAGAGGACCAAGGGCC C19 TAAGAAACTGACAGAGGATAGATGGAACAAGCCCCAGAAGACCAAGGGCC C20 TAAGAAGCTGACAGAGGATAGATGGAACAAGCCCCAGAAGACCAAGGGCC C21 TAGGAAATTAGTAGAGGATAGATGGAACAACCCCCAGAAGACCAGGGGCC C22 TAAGAAACTAACAGAGGATAGATGGAACAAGTCCCAGAAGACCAAGGGCC C23 TAGGAAATTAGCAGAAGATAGATGGAACAAGCCCCAGAAGACCAGGGGCC C24 TGCAAAACTAACAGAGGATAGATGGAACAAGCCCCAGCAGACCAAGGGCC C25 TAAGAAATTAGTAGAGGATAGATGGAACAAGCCCCAGAAGACCAGGGGCC C26 CAAGAAACTAGTAGAAGATAGATGGAACAAGCCCCGGGAGATCAGGGGCC C27 TAAGAAATTGACAGAGGATAGATGGAACAAGCCCCAGAAGACCAAGGGCC C28 CAGGAAATTAACAGAGGACAGATGGAACGAGCCCCAGAAGACCAGGGGCC C29 TAAGAAACTAGCAGAGGACAGATGGAACGAGTCCCAGAAGACCAGGGGCC C30 TGCGAAACTAACAGAGGATAGATGGAACAAGCCCCAGAAGACCAAGGGCC C31 TAGGAAATTAGTGGAGGATAGATGGAACAAGCCCCAGAAGACCAGGGGCC C32 TAGG