--- EXPERIMENT NOTES --- EXPERIMENT PROPERTIES #Wed Mar 28 05:59:56 WEST 2018 codeml.models=0 1 2 3 7 8 mrbayes.mpich= mrbayes.ngen=1000000 tcoffee.alignMethod=MUSCLE tcoffee.params= tcoffee.maxSeqs=0 codeml.bin=codeml mrbayes.tburnin=2500 codeml.dir=/usr/bin/ input.sequences= mrbayes.pburnin=2500 mrbayes.bin=mb tcoffee.bin=t_coffee mrbayes.dir=/usr/bin/ tcoffee.dir= tcoffee.minScore=3 input.fasta=/opt/ADOPS/HIV1_A3/VIF_1_5/input.fasta input.names= mrbayes.params= codeml.params= --- PSRF SUMMARY Estimated marginal likelihoods for runs sampled in files "/opt/ADOPS/HIV1_A3/VIF_1_5/batch/allfiles/mrbayes/input.fasta.fasta.mrb.run1.p" and "/opt/ADOPS/HIV1_A3/VIF_1_5/batch/allfiles/mrbayes/input.fasta.fasta.mrb.run2.p": (Use the harmonic mean for Bayes factor comparisons of models) (Values are saved to the file /opt/ADOPS/HIV1_A3/VIF_1_5/batch/allfiles/mrbayes/input.fasta.fasta.mrb.lstat) Run Arithmetic mean Harmonic mean -------------------------------------- 1 -7854.25 -7897.91 2 -7850.61 -7908.84 -------------------------------------- TOTAL -7851.27 -7908.15 -------------------------------------- Model parameter summaries over the runs sampled in files "/opt/ADOPS/HIV1_A3/VIF_1_5/batch/allfiles/mrbayes/input.fasta.fasta.mrb.run1.p" and "/opt/ADOPS/HIV1_A3/VIF_1_5/batch/allfiles/mrbayes/input.fasta.fasta.mrb.run2.p": Summaries are based on a total of 3002 samples from 2 runs. Each run produced 2001 samples of which 1501 samples were included. Parameter summaries saved to file "/opt/ADOPS/HIV1_A3/VIF_1_5/batch/allfiles/mrbayes/input.fasta.fasta.mrb.pstat". 95% HPD Interval -------------------- Parameter Mean Variance Lower Upper Median min ESS* avg ESS PSRF+ ------------------------------------------------------------------------------------------------------ TL{all} 5.099327 0.091094 4.503776 5.683284 5.088049 767.07 893.22 1.000 r(A<->C){all} 0.119731 0.000119 0.099151 0.141831 0.119425 639.74 706.04 1.001 r(A<->G){all} 0.270478 0.000573 0.224280 0.316373 0.269795 291.88 334.95 1.001 r(A<->T){all} 0.042789 0.000035 0.031536 0.054397 0.042580 733.36 819.88 1.000 r(C<->G){all} 0.019033 0.000042 0.007431 0.032136 0.018472 706.20 846.20 1.000 r(C<->T){all} 0.461951 0.000800 0.404523 0.516300 0.461019 260.11 308.42 1.001 r(G<->T){all} 0.086018 0.000105 0.066620 0.105850 0.085501 700.58 748.33 1.000 pi(A){all} 0.427085 0.000221 0.400383 0.457205 0.426718 337.89 546.47 1.001 pi(C){all} 0.156690 0.000117 0.136434 0.179053 0.156319 468.14 535.99 1.000 pi(G){all} 0.230535 0.000158 0.206935 0.254649 0.230355 596.40 656.15 1.000 pi(T){all} 0.185690 0.000142 0.164437 0.210187 0.185521 495.18 538.62 1.000 alpha{1,2} 0.486277 0.003937 0.367113 0.609577 0.479621 870.09 961.76 1.001 alpha{3} 1.496415 0.062443 1.036251 1.993674 1.471311 1320.17 1338.63 1.000 pinvar{all} 0.208290 0.001112 0.140858 0.269696 0.207766 988.16 1033.28 1.000 ------------------------------------------------------------------------------------------------------ * Convergence diagnostic (ESS = Estimated Sample Size); min and avg values correspond to minimal and average ESS among runs. ESS value below 100 may indicate that the parameter is undersampled. + Convergence diagnostic (PSRF = Potential Scale Reduction Factor; Gelman and Rubin, 1992) should approach 1.0 as runs converge. Setting sumt conformat to Simple --- CODEML SUMMARY Model 1: NearlyNeutral -8107.653213 Model 2: PositiveSelection -8059.148864 Model 0: one-ratio -8518.161017 Model 3: discrete -8047.19834 Model 7: beta -8075.160662 Model 8: beta&w>1 -8036.11195 Model 0 vs 1 821.0156080000015 Model 2 vs 1 97.00869799999964 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.06.701010068_E_J1.GU331147_) Pr(w>1) post mean +- SE for w 31 I 0.963* 2.734 33 R 0.999** 2.799 37 D 1.000** 2.799 39 S 1.000** 2.800 47 S 0.983* 2.770 92 R 0.992** 2.785 95 S 0.941 2.695 101 D 0.876 2.576 127 N 0.981* 2.766 158 K 0.724 2.303 159 K 1.000** 2.799 167 R 1.000** 2.800 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.06.701010068_E_J1.GU331147_) Pr(w>1) post mean +- SE for w 31 I 0.961* 2.489 +- 0.366 33 R 0.999** 2.550 +- 0.224 37 D 1.000** 2.550 +- 0.223 39 S 1.000** 2.551 +- 0.220 47 S 0.982* 2.523 +- 0.297 92 R 0.992** 2.537 +- 0.260 95 S 0.944 2.458 +- 0.405 101 D 0.883 2.360 +- 0.528 127 N 0.980* 2.519 +- 0.304 158 K 0.781 2.188 +- 0.640 159 K 0.999** 2.550 +- 0.223 167 R 1.000** 2.551 +- 0.221 Model 8 vs 7 78.09742399999959 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.06.701010068_E_J1.GU331147_) Pr(w>1) post mean +- SE for w 31 I 0.948 2.261 33 R 0.999** 2.330 37 D 0.999** 2.331 39 S 1.000** 2.332 47 S 0.975* 2.298 92 R 0.985* 2.312 95 S 0.919 2.221 101 D 0.852 2.126 127 N 0.966* 2.286 158 K 0.712 1.933 159 K 0.999** 2.331 167 R 1.000** 2.332 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.06.701010068_E_J1.GU331147_) Pr(w>1) post mean +- SE for w 31 I 0.937 2.400 +- 0.384 33 R 0.999** 2.498 +- 0.054 37 D 0.999** 2.498 +- 0.053 39 S 1.000** 2.500 +- 0.018 47 S 0.970* 2.452 +- 0.269 92 R 0.981* 2.470 +- 0.213 95 S 0.890 2.327 +- 0.492 101 D 0.805 2.191 +- 0.627 127 N 0.958* 2.433 +- 0.317 158 K 0.601 1.871 +- 0.772 159 K 0.999** 2.498 +- 0.049 167 R 1.000** 2.500 +- 0.021
>C1 MENRWQVMIVWQVDRMRIKTWNSLVKHHKYISRKAKDWSYKHHYESSNPR ISSEVHIPLGDAKLVVTTYWGLHTGEKDWHLGQGVSIEWRIRRYSTQVDP DLADHLIHLYYFDCFSDSAIRNAILGNIVSPRCEYQAGHNKVGSLQYLAL TALITPKKKKPPLPSVRKLTEDRWNKPQETKGHRGSHTTNGHo >C2 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYVSKKAKNWSYRHHYESQHPK VSSEVHIPIGEARLVIRTYWGLQTGEKDWHLGHGVAIEWRQRNYSTQIDP DLADRLIHIQYFECFSESAIRRAILGQVVRHRCEYPSGHNKVGSLQYLAL KALTTPKRIRPPLPSVKKLTEDRWNKPQKIRGHRENPSMNGHo >C3 MENRWQVMIVWQVDRMRIRAWKSLVKHHMYISRKAKGWVYRHHYESTHPR ISSEVHIPLGDGKLVITTYWGLHTGERDWHLGQGVSIEWRKKSYSTQVDP NLADQLMHLYYFDCFSESAIRNAILGHRVSPRCEYQAGHNKVGSLQYLAL AALVTPKRIKPPLPSVAKLTEDRWNKPQKTKGHRGSHTMNGHo >C4 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYVSKKAKGWFYRHHYESHHPK VSSEVHIPLGDSRLVIITYWGLHTGERDWHLGQGVSIEWRKRKYSTQVDP GLADQLIHVYYFDCFSESAIRNAILGHVVRPRCEYQAGHNKVGSLQYLAL TALITPKKTKPPLPSVTKLTEDRWNKPQKTKGHRGSHTMSGHo >C5 MENRWQVMIVWQVDRMRIRTWKSLVKHHKYISKKTKNWVYRHHYDSPHPR ISSEVHIPLGENKLVITTYWGLHTGERDWHLGQGVSIEWRRGRYSTQVDP GLADQLIHMYYFDCFSESAIRNALLGRIVSPRCESQAGHSKVGSLQYLAL TALIKPKKIKPPLPSVTKLTEDRWNKPQKTKGHRGNHSMNGHo >C6 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYVSKKAKKWYYRHHYESQHPK ISSEVHIPLGEARLVIKTYWGLQTGEKDWQLGHGVSIEWRQRNYSTQIDP EVADRLIHLQYFDCFADSAIRRAILGQVVRYKCEYPSGHNKVGSLQYLAL RALTGPKGSRPPLPSVKKLTEDRWSEPQKTRGHRENPTMNGHo >C7 MANRWQVMIVWQVDRMRIRKWNSLVKHHIYISRKAKGWVYKHHYESTNPK ISSEVHIPLGDAKLVIKTYWGLHTGERDWHLGHGTSIEWRKERYNTQVDP DLADKLIHLHHFNCFSESAIRNAILGHRVSPRCEYQAGHNKVGSLQYLAL VALLTPKRRKPPLPSVAKLTEDKWNKPRKTKGHRGSHSMNGHo >C8 MENRWQVMIVWQVDRMRIRTWKSLVKHHMYVSKKAKGWAYRHHYESTHPR ISSEVHIPLGDAKLVVTTYWGLHTGEREWHLGQGVSIEWRKKRYNTQVDP DLADKLIHLHYFDCFSDSAIRHAILGRLVRPKCEYQAGHNKVGSLQYLAL IALTKPKKIKPPLPSVKKLTEDRWNKPQTTKGHRGNHTMYGHo >C9 MENRWQVLIVWQVDRQKVKVWNSLVKYHKYRSRKAKEWHYRHHYESRNPR ISSSVYIPTGPAHIVVTTYWGLMPGERDEHMGHGVSIEWQYKEYTTQIDP ETADRMIHLHYFACFTESAIRKAILGQRVLTKCEYSAGHSQVGTLQLLAL RAVVKEKRNKPPLPSVQKLTEDRWNKHLRIKDQLESHSMHGHo >C10 MENRWQVLIVWQIDRMKIRTWNSLVKHHMYISRRANGWFYRHHYESRHPK VSSEVHIPLGEARLVITTYWGLQTGEREWHLGHGVSIEWRLRRYKTQVDP GLADQLIHMHYFDCFAESAIRQAILGHIVIPRCDYQAGHNKVGSLQYLAL TALIKPKKIKPPLPSVQKLVEDRWNKPQKTRGRRGNHTMNGHo >C11 MENRWQVMIVWQVDRMRINTWKSLVKYHMNVSKKAKRWMYRHHYDSNHPK ISSEVHIPLGCAELVITTYWGLNTGERKWHLGQGVSIEWRLKRYRTQIDP SLADQLIHMHYFDCFSESAIRKAILGDIVSPRCDYQAGHNKVGSLQYLAL TALIKPKKRRPPLPSVQKLVEDRWNEPQKTRGHRESHTMNGHo >C12 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYVSKKAKDWCYRHHYESQNPK VSSEVHIPLGEAKLVIKTYWGLQTGERDWQLGHGVSIEWRQKNYSTQIDP DLADRLIHLQYFDCFSDSAIRKAILGQVVRSRCEYPSGHTKVGSLQYLAL KALTTTKRIKPPLPSVRKLTEDRWNEPQKIKGRRENPTMNGQo >C13 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYVSKQAKGWFYRHHYESRHPK VSSEVHIPLGDARLVIRTYWGLHTGEKDWHLGHGVSIEWRLRRYSTQIDP DMADQLIHLYYFNCFSESAIRKAILGQVVNPICDYQAGHNKVGSLQYLAL KALTTPTKIKPPLPSVRKLTEDRWNKPQRTKGHRGNHTMNGHo >C14 MENRWQVMIVWQVDRMRIRTWHSLVKHHKYISGKTKGWVYKHHYESSNPR ISSEVHIPLEEARLVVTTYWGLHTGEKDWQLGHGVSIEWRKRTYITQVDP DQADRLIHLHYFDCFSESAIRNAILGQRVSPRCEYQAGHSKVGSLQYLAL SVLVTPKKRKPPLPSVKKLTEDRWNKPQKTTGHRRSHSIIGHo >C15 MENRWQVMIVWQVDRMRIRTWKSLVKHHMYISGKAKGWFYRHHYESTNPR TSSEVHIPLGEAKLVITTYWGLHTGERDWHLGQGVSIEWRKKRYSTQVDP DLADQLIHLHYFDCFSESAIRSAILGHIVSPRCEYRAGHNKVGSLQYLAL TALVTPKKIKPPLPSVKKLTEDRWNKPQKTKGHRGSHTMNGHo >C16 MENRWQVMIVWQVDRMRISTWKSLVKHHMHISKEAKGWFYRHHYESTHPR ISSEVHIPLGEAKLVIITYWGLLTGERDWHLGQGVSIEWRKRRYSTQVDP NLADQLIHLYYFNCFSESAIRNAILGRIVSPSCEYPAGHNKVGSLQYLAL VALTTPKRRKPPLPSVRKLTEDRWNKPQRTKGHRGSHTMNGHo >C17 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYISGEAKGWGYRHHFESRHPK VSSEVHIPLGDARLVVRTYWGLQPGEKDWQLGHGVSIEWRQRKYSTQIDP DLADQLIHLHYFDCFSDSAIRKAILGQVVSPRCEYQAGHNKVGSLQYLAL KALVTPIRRKPPLPSVRKLTEDRWNKPQKTRGHRGNRSMNGHo >C18 MENRWQAMIVWQVDRMRIRTWKSLVKHHMYISGKAKGWVYKHHYDSTHPK IGSEVHIPLGDAKLVITTYWGLHTGERDWHLGQGVSIEWRRKRYSTQVEP GLADQLIHLYYFDCFSESAIRNALLGRVVSPRCDYLAGHNKVGSLQYLAL TALVTPKRRKPPLPSVAKLTEDRWNKPQKTKGHRGNHTMSGHo >C19 MENRWQVMIVWQVDRMRIRTWNSLVKYHMYRSRKAKEWFYRHHFESRHPK VSSEVHIPLGDARLVVKTYWGLHTGEREWHLGHGVSIEWRQKRYSTQIDP DLADQLIHLHYFDCFSESAIRKAILGQVVSPRCDYQAGHNKVGSLQYLAL KALITPTKTKPPLPSVKKLAEDRWNKPQKTRGHRGSRSMNGHo >C20 MENRWQVMIVWQVDRMRINTWKSLVKYHIHVSKKAKEWLYRHHYDSPHPK ISSEVHIPLGDARLVVTTYWGLHTGERDWHLGQGASIEWRKRKYRTQVDP DLADQLIHIYYFDCFSESAIRNALLGRIVSPRCDYQAGHNKVGSLQYLAL TALIKPKKTRPPLPSVRKLTEDRWNKPRKTKGHRENHTMNGHo >C21 MASRWQVMIVWQVDRMRINTWKSLVKYHMHISRKTKNWVYRHHYESTNPR ISSEVYIPLGDAKLVVTTYWGLHTGERDWHLGQGVSIEWRKGRYNTQVDP DLADQLIHLYYFDCFSESAIRKAILGHIVRPRCEYQAGHSKVGSLQYLAL VALTKTKKIKPPLPSVRKLTEDRWNKPQRTKDHRGSHTMNGHo >C22 MENRWQVLVVRQVDRMKIRTWNSLVKHHMYISRRASGWFYRHHYESRHPK VSSEVHIPLGDARLVIKTYWGPLTGERAWHLGHGVSIEWRLRRYSTQVDP GLADQLIHMHYFDCFADSAIRKAILGQVVIHRCDYQAGHNKVGSLQYLAL TALIKPKKRKPPLPSVRKLVEDRWNKPQKTRGRRGNHTMNGHo >C23 MENRWQVMIVWQVDRMRIRAWKSLVKHHMHISKKAKKWVYRHHYENTHPK ISSEVHIPLEDARLVITTYWGLQTGERDWHLGQGVSIEWRKKRYSTQVDP DLADKLIHLYYFDCFSESAIRNAILGHRVSPRCEYQAGHNKVGSLQYLAL TALIKPKKTKPPLPSVAKLTEDRWNKPQKTKGHRGSHTMNGHo >C24 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYVSKKAQGWFYRHHYESRHPR VSSEVHIPLGDARLIVRTYWGLHTGEKDWQLGHGVSIEWRQRKYSTQVDP DLADHLIHLHYFDCFSDSAIRRALLGQIVIPKCEYQAGHNKVGSLQYLAL TALITPKKRKPPLPSVRKLTEDRWNKPQRTKGHRGSHTMNGHo >C25 MENKWQVMIVWQVDRMRIRTWKSLVKHHMYISKKAKQWVYKHHYESTNPR ISSEVHIPLGDAKLVVTTYWGLHTGERDWHLGHGVSIEWRERRYSTQVDP DLADQLIHLYYFDCFSESAIRKALLGHIVRPRCDYQAGHNKVGSLQYLAL TALITPKKTKPPLPSVKKLTEDKWNKPQKTKGHRGSHTMSGHo >C26 MENRWQVMIVWQVDRMRIQAWHSLVKHHMYISKKAKGWAYRHHYESNHPR ISSEVRIPVGDATLVITTYWGLQTGERDWHLGRGVSVEWRKRKYRTQVDP DIADHLIHLYYFDCFSESAIRNAILGHVVNPKCEYHTGHDKVGSLQYLAL VALTKPKRRKPPLPSVRKLTEDRWNKPQKTKDHKESHTMNGHo >C27 MENRWQVMIVWQVDRMKIRTWNSLVKHHMYVSRRANGWFYRHHYESRHPK VSSEVHIPVGEARLVIKTYWGLQTGERDWHLGHGVSIEWRLGRYNTQIEP GLADQLIHMYYFDCFADSAIRKAILGHIVIPRCDYQAGHNNKVGSLQYLA LTALIKPKRIRPPLPSIKKLVEDRWNKPPKIMGRRGNHTMNGH >C28 MENRWQVLIVWQVDRMRIRTWNSLVKHHMYVSKRAKGWFYRHHYESRHPK ISSEVHIPLGDAKLVIKTYWGLQTGEREWHLGHGTSIEWILGGYSTQVDP GLADQLIHMHYFDCFAESAIRKAILGDRVSPRCDYQAGHNKVGSLQYLAL TALIKPKKIKPPLPSVKKLVEDRWNKPQKTRDRRGNHTMNGHo >C29 MENRWQVMIVWQVDRMRIRTWKSLVKHHMYISRKAKGWFYRHHYESTHPR ISSEVHIPLGEARLVVTTYWGLHTGEREWHLGQGVSIEWRKKRYSTQVDP GLADKLIHLYYFDCFSDSAIRHALLGRIVSPRCDYQAGHNKVGSLQYLAL TALIKPKKRKPPLPSVRKLTEDRWNEPQKIKGHRESHSMNGHo >C30 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYISKKAKKWVYRHHYENQHPK VSSEVHIPLGEARLVIRTYWGLQTGEKDWHLGHGVSIEWRQGNYNTQIDP DLADQLIHLNYFDCFSDSAIRKAILGQVVRRRCEYPSGHNKVGSLQYLAL KALTTQKKTRPPLPSVKKLTEDRWNEPQKIRGHRGNPTMSGHo >C31 MENRWQVLIVWQVDRMKIRTWNSLVKHHMYVSKRASGWYYRHHYESRHPK ISSEVHIPLGEARLVIATYWGLQTGERDWHLGHGVSIEWRLRRYRTQVDP ELADQLIHLHYFDCFTDTAIRKALLGHRVSPRCEYQAGHNKVGSLQYLAL TALIKPKRRKPPLPSVKKLVEDRWNKPQKTRDRRGNHTMNGHo >C32 MENRWQVMIVWQVDRMRIRTWNSLVKHHIYISKKAKKWVYRHHYNSQHPK VSSEVHIPLGEAKIVIITYWGLQTGEKDWQLGHGVSIEWRQKSYSTQIDP DLADQLIHLQYFECFSDSAIRKAILGQVVRRRCEYPSGHNKVGSLQYLAL RALTTPKRIRPPLPSVKKLTEDRWNKPQKIRGHRENPTMNGHo >C33 MENRWQVMIVWQVDRMRINTWKSLVKYHMHISKKAKGWFYRHHYESRHPR ISSEVHIPLKKAVIVITTYWGLHTGERDWHLGQGVSVEWRQGKYSTQIDP GLADQLIHQYYFDCFSESAIRSAILGQIVRHRCEYQAGHNKVGSLQYLAL TALITPKKGKPPLPSVAKLTEDRWNKPQKTKGRKGNHTMSGHo >C34 MENRWQVMIVWQVDRMRIRAWKSVVKYHMHISKKAKGWFYRHHYESTHPK ISSEVHIPLGDAKLVIITYWGLHTGERDWHLGQGVSIEWRKRRYSTQVDP NLADQLIHLYYFDCFTESAIRNAILGNRVSPRCEYQAGHNKVGSLQYLAL VALITPKKRKPPLPSVAKLTEDRWNKPQRTKGHRGSPTMNGHo >C35 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYISKEAKGWFYRHHYESGHPK VSSEVHIPLGEAKIVVRTYWGLHTGEKEWHLGHGVSIEWRLKRYSTQIDP DLADQLIHLHYFDCFSDSAIRKAILGQVVSPRCDYQTGHNKVGSLQYLAL KALVEPTRRKPPLPSVRKLTEDRWNKPRKTRGHRGNHTMNGCo >C36 MENRWQVLIVWQVDRMRIRTWNSLVKHHMYISKRASRWVYRHHYESRNPR ISSEVHIPLGEARLVIKTYWGLHTGERDWQLGHGVSIEWRLRRYSTQVDP GLADQLIHMHYFDCFADSAIRKAILGQVVSPRCDYQAGHNKVGSLQYLAL TALIKPKRRKPPLPSVRKLVEDRWNNPQKIRDRRGNHTMNGHo >C37 MENRWQVLIVWQVDRMRIRTWNSLVKHHMYISKRAKGWFYRHHYESRHPK VSSEVHIPLGEARLVIITYWSLQTGERDWHLGHGVSIEWRLRRYSTQIDP GLADQLIHMHYFDCFADSAIRRAILGHIVIPRCDYQAGHNKVGSLQYLAL TALIKPKKRKPPLPSVRKLAEDRWNKPQKTRDHRGNHTMNGHo >C38 MENRWQVMIVWQVDRMKINTWKSLVKYHMHVSKKAKRWSYKHHFESNNPR VSSEVHIPLEKAILVITTYWGLHPGERDWHLGQGVSIEWRQGRYRTQIDP GLADQLIHLYYFDCFTDTAIRGAILGHIVSPRCEYSAGHSKVGSLQYLAL TALIKPKRRKPPLPSVTKLTEDRWNEPRKTKGHQENHTMNGHo >C39 MENRWQVLIVWQVDRMKIRTWNSLVKHHMYVSKRAIGWCYRHHYDSRHPK VSSEVHIPLGEARLIIKTYWGLQTGERDWHLGHGVSIEWRLKNYNTQIEP GLADQLIHMYYFDCFADSAIRKAILGHVVIPRCDYQAGHNKVGSLQYLAL TALIKPKRIRPPLPSVRKLVEDRWNNPQKIRGRRGNHTTNGHo >C40 MENRWQVMIVWQVDRMRIRAWNSLVKHHMYISGKARKWVYKHHYETNNPR ISSEVHIPLGDNKLVITTYWGLHTGERDWHLGQGVSMEWRKGKYSTQVDP DLADQLIHMYYFDCFSDSAIRNALLGHRVSPRCEYQAGHRKVGSLQYLAL TALIKPKKIKPPLPSVKKLTEDRWNKPQKTKGRRESHSMSGHo >C41 MENRWQVMIVWQVDRMRIRTWKSLVKHHMHVSGKAKKWLYKHHYESINPR KSSEVHIPLGDARLVITTYWGLHTGERDWHLGQGVSIEWRKERYRTQVTP DMADQLIHMYYFDCFSDSAIRNAILGYRVSPRCEYQAGHSKVGSLQYLAL AALVTPKQTKPPLPSVTKLTEDRWNKPRKTKGHRGNHTMNGRo >C42 MENRWQVLIVWQVDRMKIRTWNSLVKHHMYVSRRANGWFYRHHYESRHPK ISSEVHIPLGDARLVIKTYWGLQTGERAWHLGHGVSIEWRLRRYSTQVDP GLADQLIHMHYFDCFAESAIRQAILGNRVSPRCDYQAGHNKVGSLQYLAL TALIKPKKVKPPLPSVRKLVEDRWNNPQKIRGRRGNHTMNGHo >C43 MENRWQVMIVWQVDRMRIRTCKRLVKHHMYVSGKARGWFYKHHYGSTHPK ISSEVHIQLGDAKLVVTTYWGLHSGERDWHLGQGVSIEWRTRRYSTHIDP ALADQLIHIFYFDCFSEAAIRKAIVGHRVSPRCEYQAGHNQVGSLQYLAL TALITPKRIKPPLPSVTKLTEDRWNKPQKTKGHRGSHTRNGHo >C44 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYVSKKAKKWVYRHHYESQNPK VSSEVHIPLGEAELVIITYWGLQTGEKEWHLGHGVSIEWRQRTYRTQIDP DLADRLIHLQYFDCFSDSAIRRTILGQVVRYRCEYPSGHNKVGSLQYLAL KALTNPKKIRPPLPSVKKLTEDRWNKPQKTMGHRENPTMNGHo >C45 MENRWQVLIVWQVDRMKIRTWNSLVKHHMYVSRRANGWFYRHHYENRHPR VSSEVHIPLGEARLVITTYWGLLPGEKEWHLGHGVSIEWRLRRYSTQVDP GLADQLIHMHYFDCFADSAIRQAILGHIVFPRCDYQAGHKQVGSLQYLAL TALIKPKKRKPPLPSIRKLVEDRWNNPQQIRGRRGNHTMNGHo >C46 MENRWQVMIVWQVDRMRISTWKSLVKYHIHISKRAQGWLYRHHYDCFNPK ISSEVHIPLGDARLVVRTYWGLHTGEREWHLGQGVSIEWRKRKYSTQVDP GLADQLIHIYYFDCFAESAIRKAILGHIVTPRCIYPAGHNKVGSLQYLAL TALIKPKQIKPPLPSVRKLTEDRWNKPQRTKGHRGSHTMNGHo >C47 MENRWQVLIVWQVDRMRIRTWNSLVKHHMYISKKASGWFYRHHYESRHPR ISSEVHIPLEDARLIIKTYWGLQPGEKDWQLGHGVSIEWRLRRYSTQVDP GLADQLIHMHYFDCFADSAIRKAILGHIVIHRCEYQAGHNKVGSLQYLAL TALIKPKKIKPPLPSVRKLVEDRWNDPQKIRGRRGNHTMNGHo >C48 MENRWQVMIVWQVDRMRIRAWKSLVKHHMYISRKAKRWFYRHHYESTHPR ISSEVHIPLGDAKLVILTYWGLHTGERDWHLGQGVSIEWRKKRYSTQVDP NLADQLIHLYYFDCFAESAIRNAILGTRVSPRCEYQAGHNKVGSLQYLAL VALITPKKIKPPLPSVAKLTEDRWNEPQKTKGHRGSHTMNGHo >C49 MENRWQVMIVWQVDRMRIKTWHSLVKHHMYVSKKAKNWSYRHHYESQNPK VSSEVHIPIGEARLVIRTYWGLQTGEKDWQLGHGVAIEWRQRNYCTQLDP DLADRLIHIQYFECFSESAIRRAILGQVVRHRCEYPSGHNKVGSLQYLAL KALATPKRIRPPLPSVKKLTEDRWNKPQKIRGHRENPSMNGHo >C50 MENRWQVMIVWQVDRMRIRTWKSLVKHHMYISKKAGKWFYRHHYESTHPK ISSEVHIPLGDAKLVITTYWGLHTGERDWHLGQGVSIEWRINRYSTQVDP GLADQLIHLYYFDCFSESAVRKAILGHRVRPRCEYQAGHNKVGSLQYLAL VALITPKKTKPPLPSVTKLTEDRWNKPQRTTGHRGSHTMNGHo PROGRAM: T-COFFEE Version_10.00.r1613 (2013-10-22 15:49:09 - Revision 1613 - Build 432) -full_log S [0] -genepred_score S [0] nsd -run_name S [0] -mem_mode S [0] mem -extend D [1] 1 -extend_mode S [0] very_fast_triplet -max_n_pair D [0] 10 -seq_name_for_quadruplet S [0] all -compact S [0] default -clean S [0] no -do_self FL [0] 0 -do_normalise D [0] 1000 -template_file S [0] -setenv S [0] 0 -template_mode S [0] -flip D [0] 0 -remove_template_file D [0] 0 -profile_template_file S [0] -in S [0] 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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: [473414] 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: [473414] 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: [473414] 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: [473414] 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: [473414] 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: [473414] 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: [473414] 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: [473414] 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: [473414] Library Relaxation: Multi_proc [8] Relaxation Summary: [473414]--->[473366] 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= 31.938 Mb, Max= 43.718 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 MENRWQVMIVWQVDRMRIKTWNSLVKHHKYISRKAKDWSYKHHYESSNPR C2 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYVSKKAKNWSYRHHYESQHPK C3 MENRWQVMIVWQVDRMRIRAWKSLVKHHMYISRKAKGWVYRHHYESTHPR C4 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYVSKKAKGWFYRHHYESHHPK C5 MENRWQVMIVWQVDRMRIRTWKSLVKHHKYISKKTKNWVYRHHYDSPHPR C6 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYVSKKAKKWYYRHHYESQHPK C7 MANRWQVMIVWQVDRMRIRKWNSLVKHHIYISRKAKGWVYKHHYESTNPK C8 MENRWQVMIVWQVDRMRIRTWKSLVKHHMYVSKKAKGWAYRHHYESTHPR C9 MENRWQVLIVWQVDRQKVKVWNSLVKYHKYRSRKAKEWHYRHHYESRNPR C10 MENRWQVLIVWQIDRMKIRTWNSLVKHHMYISRRANGWFYRHHYESRHPK C11 MENRWQVMIVWQVDRMRINTWKSLVKYHMNVSKKAKRWMYRHHYDSNHPK C12 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYVSKKAKDWCYRHHYESQNPK C13 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYVSKQAKGWFYRHHYESRHPK C14 MENRWQVMIVWQVDRMRIRTWHSLVKHHKYISGKTKGWVYKHHYESSNPR C15 MENRWQVMIVWQVDRMRIRTWKSLVKHHMYISGKAKGWFYRHHYESTNPR C16 MENRWQVMIVWQVDRMRISTWKSLVKHHMHISKEAKGWFYRHHYESTHPR C17 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYISGEAKGWGYRHHFESRHPK C18 MENRWQAMIVWQVDRMRIRTWKSLVKHHMYISGKAKGWVYKHHYDSTHPK C19 MENRWQVMIVWQVDRMRIRTWNSLVKYHMYRSRKAKEWFYRHHFESRHPK C20 MENRWQVMIVWQVDRMRINTWKSLVKYHIHVSKKAKEWLYRHHYDSPHPK C21 MASRWQVMIVWQVDRMRINTWKSLVKYHMHISRKTKNWVYRHHYESTNPR C22 MENRWQVLVVRQVDRMKIRTWNSLVKHHMYISRRASGWFYRHHYESRHPK C23 MENRWQVMIVWQVDRMRIRAWKSLVKHHMHISKKAKKWVYRHHYENTHPK C24 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYVSKKAQGWFYRHHYESRHPR C25 MENKWQVMIVWQVDRMRIRTWKSLVKHHMYISKKAKQWVYKHHYESTNPR C26 MENRWQVMIVWQVDRMRIQAWHSLVKHHMYISKKAKGWAYRHHYESNHPR C27 MENRWQVMIVWQVDRMKIRTWNSLVKHHMYVSRRANGWFYRHHYESRHPK C28 MENRWQVLIVWQVDRMRIRTWNSLVKHHMYVSKRAKGWFYRHHYESRHPK C29 MENRWQVMIVWQVDRMRIRTWKSLVKHHMYISRKAKGWFYRHHYESTHPR C30 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYISKKAKKWVYRHHYENQHPK C31 MENRWQVLIVWQVDRMKIRTWNSLVKHHMYVSKRASGWYYRHHYESRHPK C32 MENRWQVMIVWQVDRMRIRTWNSLVKHHIYISKKAKKWVYRHHYNSQHPK C33 MENRWQVMIVWQVDRMRINTWKSLVKYHMHISKKAKGWFYRHHYESRHPR C34 MENRWQVMIVWQVDRMRIRAWKSVVKYHMHISKKAKGWFYRHHYESTHPK C35 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYISKEAKGWFYRHHYESGHPK C36 MENRWQVLIVWQVDRMRIRTWNSLVKHHMYISKRASRWVYRHHYESRNPR C37 MENRWQVLIVWQVDRMRIRTWNSLVKHHMYISKRAKGWFYRHHYESRHPK C38 MENRWQVMIVWQVDRMKINTWKSLVKYHMHVSKKAKRWSYKHHFESNNPR C39 MENRWQVLIVWQVDRMKIRTWNSLVKHHMYVSKRAIGWCYRHHYDSRHPK C40 MENRWQVMIVWQVDRMRIRAWNSLVKHHMYISGKARKWVYKHHYETNNPR C41 MENRWQVMIVWQVDRMRIRTWKSLVKHHMHVSGKAKKWLYKHHYESINPR C42 MENRWQVLIVWQVDRMKIRTWNSLVKHHMYVSRRANGWFYRHHYESRHPK C43 MENRWQVMIVWQVDRMRIRTCKRLVKHHMYVSGKARGWFYKHHYGSTHPK C44 MENRWQVMIVWQVDRMRIRTWNSLVKHHMYVSKKAKKWVYRHHYESQNPK C45 MENRWQVLIVWQVDRMKIRTWNSLVKHHMYVSRRANGWFYRHHYENRHPR C46 MENRWQVMIVWQVDRMRISTWKSLVKYHIHISKRAQGWLYRHHYDCFNPK C47 MENRWQVLIVWQVDRMRIRTWNSLVKHHMYISKKASGWFYRHHYESRHPR C48 MENRWQVMIVWQVDRMRIRAWKSLVKHHMYISRKAKRWFYRHHYESTHPR C49 MENRWQVMIVWQVDRMRIKTWHSLVKHHMYVSKKAKNWSYRHHYESQNPK C50 MENRWQVMIVWQVDRMRIRTWKSLVKHHMYISKKAGKWFYRHHYESTHPK * .:**.::* *:** :: : :**:* * .: * *:**: :*: C1 ISSEVHIPLGDAKLVVTTYWGLHTGEKDWHLGQGVSIEWRIRRYSTQVDP C2 VSSEVHIPIGEARLVIRTYWGLQTGEKDWHLGHGVAIEWRQRNYSTQIDP C3 ISSEVHIPLGDGKLVITTYWGLHTGERDWHLGQGVSIEWRKKSYSTQVDP C4 VSSEVHIPLGDSRLVIITYWGLHTGERDWHLGQGVSIEWRKRKYSTQVDP C5 ISSEVHIPLGENKLVITTYWGLHTGERDWHLGQGVSIEWRRGRYSTQVDP C6 ISSEVHIPLGEARLVIKTYWGLQTGEKDWQLGHGVSIEWRQRNYSTQIDP C7 ISSEVHIPLGDAKLVIKTYWGLHTGERDWHLGHGTSIEWRKERYNTQVDP C8 ISSEVHIPLGDAKLVVTTYWGLHTGEREWHLGQGVSIEWRKKRYNTQVDP C9 ISSSVYIPTGPAHIVVTTYWGLMPGERDEHMGHGVSIEWQYKEYTTQIDP C10 VSSEVHIPLGEARLVITTYWGLQTGEREWHLGHGVSIEWRLRRYKTQVDP C11 ISSEVHIPLGCAELVITTYWGLNTGERKWHLGQGVSIEWRLKRYRTQIDP C12 VSSEVHIPLGEAKLVIKTYWGLQTGERDWQLGHGVSIEWRQKNYSTQIDP C13 VSSEVHIPLGDARLVIRTYWGLHTGEKDWHLGHGVSIEWRLRRYSTQIDP C14 ISSEVHIPLEEARLVVTTYWGLHTGEKDWQLGHGVSIEWRKRTYITQVDP C15 TSSEVHIPLGEAKLVITTYWGLHTGERDWHLGQGVSIEWRKKRYSTQVDP C16 ISSEVHIPLGEAKLVIITYWGLLTGERDWHLGQGVSIEWRKRRYSTQVDP C17 VSSEVHIPLGDARLVVRTYWGLQPGEKDWQLGHGVSIEWRQRKYSTQIDP C18 IGSEVHIPLGDAKLVITTYWGLHTGERDWHLGQGVSIEWRRKRYSTQVEP C19 VSSEVHIPLGDARLVVKTYWGLHTGEREWHLGHGVSIEWRQKRYSTQIDP C20 ISSEVHIPLGDARLVVTTYWGLHTGERDWHLGQGASIEWRKRKYRTQVDP C21 ISSEVYIPLGDAKLVVTTYWGLHTGERDWHLGQGVSIEWRKGRYNTQVDP C22 VSSEVHIPLGDARLVIKTYWGPLTGERAWHLGHGVSIEWRLRRYSTQVDP C23 ISSEVHIPLEDARLVITTYWGLQTGERDWHLGQGVSIEWRKKRYSTQVDP C24 VSSEVHIPLGDARLIVRTYWGLHTGEKDWQLGHGVSIEWRQRKYSTQVDP C25 ISSEVHIPLGDAKLVVTTYWGLHTGERDWHLGHGVSIEWRERRYSTQVDP C26 ISSEVRIPVGDATLVITTYWGLQTGERDWHLGRGVSVEWRKRKYRTQVDP C27 VSSEVHIPVGEARLVIKTYWGLQTGERDWHLGHGVSIEWRLGRYNTQIEP C28 ISSEVHIPLGDAKLVIKTYWGLQTGEREWHLGHGTSIEWILGGYSTQVDP C29 ISSEVHIPLGEARLVVTTYWGLHTGEREWHLGQGVSIEWRKKRYSTQVDP C30 VSSEVHIPLGEARLVIRTYWGLQTGEKDWHLGHGVSIEWRQGNYNTQIDP C31 ISSEVHIPLGEARLVIATYWGLQTGERDWHLGHGVSIEWRLRRYRTQVDP C32 VSSEVHIPLGEAKIVIITYWGLQTGEKDWQLGHGVSIEWRQKSYSTQIDP C33 ISSEVHIPLKKAVIVITTYWGLHTGERDWHLGQGVSVEWRQGKYSTQIDP C34 ISSEVHIPLGDAKLVIITYWGLHTGERDWHLGQGVSIEWRKRRYSTQVDP C35 VSSEVHIPLGEAKIVVRTYWGLHTGEKEWHLGHGVSIEWRLKRYSTQIDP C36 ISSEVHIPLGEARLVIKTYWGLHTGERDWQLGHGVSIEWRLRRYSTQVDP C37 VSSEVHIPLGEARLVIITYWSLQTGERDWHLGHGVSIEWRLRRYSTQIDP C38 VSSEVHIPLEKAILVITTYWGLHPGERDWHLGQGVSIEWRQGRYRTQIDP C39 VSSEVHIPLGEARLIIKTYWGLQTGERDWHLGHGVSIEWRLKNYNTQIEP C40 ISSEVHIPLGDNKLVITTYWGLHTGERDWHLGQGVSMEWRKGKYSTQVDP C41 KSSEVHIPLGDARLVITTYWGLHTGERDWHLGQGVSIEWRKERYRTQVTP C42 ISSEVHIPLGDARLVIKTYWGLQTGERAWHLGHGVSIEWRLRRYSTQVDP C43 ISSEVHIQLGDAKLVVTTYWGLHSGERDWHLGQGVSIEWRTRRYSTHIDP C44 VSSEVHIPLGEAELVIITYWGLQTGEKEWHLGHGVSIEWRQRTYRTQIDP C45 VSSEVHIPLGEARLVITTYWGLLPGEKEWHLGHGVSIEWRLRRYSTQVDP C46 ISSEVHIPLGDARLVVRTYWGLHTGEREWHLGQGVSIEWRKRKYSTQVDP C47 ISSEVHIPLEDARLIIKTYWGLQPGEKDWQLGHGVSIEWRLRRYSTQVDP C48 ISSEVHIPLGDAKLVILTYWGLHTGERDWHLGQGVSIEWRKKRYSTQVDP C49 VSSEVHIPIGEARLVIRTYWGLQTGEKDWQLGHGVAIEWRQRNYCTQLDP C50 ISSEVHIPLGDAKLVITTYWGLHTGERDWHLGQGVSIEWRINRYSTQVDP .*.* * ::: ***. .**: ::*:*.::** * *:: * C1 DLADHLIHLYYFDCFSDSAIRNAILGNIVSPRCEYQAGHNKVGSLQYLAL C2 DLADRLIHIQYFECFSESAIRRAILGQVVRHRCEYPSGHNKVGSLQYLAL C3 NLADQLMHLYYFDCFSESAIRNAILGHRVSPRCEYQAGHNKVGSLQYLAL C4 GLADQLIHVYYFDCFSESAIRNAILGHVVRPRCEYQAGHNKVGSLQYLAL C5 GLADQLIHMYYFDCFSESAIRNALLGRIVSPRCESQAGHSKVGSLQYLAL C6 EVADRLIHLQYFDCFADSAIRRAILGQVVRYKCEYPSGHNKVGSLQYLAL C7 DLADKLIHLHHFNCFSESAIRNAILGHRVSPRCEYQAGHNKVGSLQYLAL C8 DLADKLIHLHYFDCFSDSAIRHAILGRLVRPKCEYQAGHNKVGSLQYLAL C9 ETADRMIHLHYFACFTESAIRKAILGQRVLTKCEYSAGHSQVGTLQLLAL C10 GLADQLIHMHYFDCFAESAIRQAILGHIVIPRCDYQAGHNKVGSLQYLAL C11 SLADQLIHMHYFDCFSESAIRKAILGDIVSPRCDYQAGHNKVGSLQYLAL C12 DLADRLIHLQYFDCFSDSAIRKAILGQVVRSRCEYPSGHTKVGSLQYLAL C13 DMADQLIHLYYFNCFSESAIRKAILGQVVNPICDYQAGHNKVGSLQYLAL C14 DQADRLIHLHYFDCFSESAIRNAILGQRVSPRCEYQAGHSKVGSLQYLAL C15 DLADQLIHLHYFDCFSESAIRSAILGHIVSPRCEYRAGHNKVGSLQYLAL C16 NLADQLIHLYYFNCFSESAIRNAILGRIVSPSCEYPAGHNKVGSLQYLAL C17 DLADQLIHLHYFDCFSDSAIRKAILGQVVSPRCEYQAGHNKVGSLQYLAL C18 GLADQLIHLYYFDCFSESAIRNALLGRVVSPRCDYLAGHNKVGSLQYLAL C19 DLADQLIHLHYFDCFSESAIRKAILGQVVSPRCDYQAGHNKVGSLQYLAL C20 DLADQLIHIYYFDCFSESAIRNALLGRIVSPRCDYQAGHNKVGSLQYLAL C21 DLADQLIHLYYFDCFSESAIRKAILGHIVRPRCEYQAGHSKVGSLQYLAL C22 GLADQLIHMHYFDCFADSAIRKAILGQVVIHRCDYQAGHNKVGSLQYLAL C23 DLADKLIHLYYFDCFSESAIRNAILGHRVSPRCEYQAGHNKVGSLQYLAL C24 DLADHLIHLHYFDCFSDSAIRRALLGQIVIPKCEYQAGHNKVGSLQYLAL C25 DLADQLIHLYYFDCFSESAIRKALLGHIVRPRCDYQAGHNKVGSLQYLAL C26 DIADHLIHLYYFDCFSESAIRNAILGHVVNPKCEYHTGHDKVGSLQYLAL C27 GLADQLIHMYYFDCFADSAIRKAILGHIVIPRCDYQAGHNKVGSLQYLAL C28 GLADQLIHMHYFDCFAESAIRKAILGDRVSPRCDYQAGHNKVGSLQYLAL C29 GLADKLIHLYYFDCFSDSAIRHALLGRIVSPRCDYQAGHNKVGSLQYLAL C30 DLADQLIHLNYFDCFSDSAIRKAILGQVVRRRCEYPSGHNKVGSLQYLAL C31 ELADQLIHLHYFDCFTDTAIRKALLGHRVSPRCEYQAGHNKVGSLQYLAL C32 DLADQLIHLQYFECFSDSAIRKAILGQVVRRRCEYPSGHNKVGSLQYLAL C33 GLADQLIHQYYFDCFSESAIRSAILGQIVRHRCEYQAGHNKVGSLQYLAL C34 NLADQLIHLYYFDCFTESAIRNAILGNRVSPRCEYQAGHNKVGSLQYLAL C35 DLADQLIHLHYFDCFSDSAIRKAILGQVVSPRCDYQTGHNKVGSLQYLAL C36 GLADQLIHMHYFDCFADSAIRKAILGQVVSPRCDYQAGHNKVGSLQYLAL C37 GLADQLIHMHYFDCFADSAIRRAILGHIVIPRCDYQAGHNKVGSLQYLAL C38 GLADQLIHLYYFDCFTDTAIRGAILGHIVSPRCEYSAGHSKVGSLQYLAL C39 GLADQLIHMYYFDCFADSAIRKAILGHVVIPRCDYQAGHNKVGSLQYLAL C40 DLADQLIHMYYFDCFSDSAIRNALLGHRVSPRCEYQAGHRKVGSLQYLAL C41 DMADQLIHMYYFDCFSDSAIRNAILGYRVSPRCEYQAGHSKVGSLQYLAL C42 GLADQLIHMHYFDCFAESAIRQAILGNRVSPRCDYQAGHNKVGSLQYLAL C43 ALADQLIHIFYFDCFSEAAIRKAIVGHRVSPRCEYQAGHNQVGSLQYLAL C44 DLADRLIHLQYFDCFSDSAIRRTILGQVVRYRCEYPSGHNKVGSLQYLAL C45 GLADQLIHMHYFDCFADSAIRQAILGHIVFPRCDYQAGHKQVGSLQYLAL C46 GLADQLIHIYYFDCFAESAIRKAILGHIVTPRCIYPAGHNKVGSLQYLAL C47 GLADQLIHMHYFDCFADSAIRKAILGHIVIHRCEYQAGHNKVGSLQYLAL C48 NLADQLIHLYYFDCFAESAIRNAILGTRVSPRCEYQAGHNKVGSLQYLAL C49 DLADRLIHIQYFECFSESAIRRAILGQVVRHRCEYPSGHNKVGSLQYLAL C50 GLADQLIHLYYFDCFSESAVRKAILGHRVRPRCEYQAGHNKVGSLQYLAL **:::* :* **:::*:* :::* * * :** :**:** *** C1 TALITPKKKKPPLPSVRKLTEDRWNKPQETKGHRGSHTTNGH C2 KALTTPKRIRPPLPSVKKLTEDRWNKPQKIRGHRENPSMNGH C3 AALVTPKRIKPPLPSVAKLTEDRWNKPQKTKGHRGSHTMNGH C4 TALITPKKTKPPLPSVTKLTEDRWNKPQKTKGHRGSHTMSGH C5 TALIKPKKIKPPLPSVTKLTEDRWNKPQKTKGHRGNHSMNGH C6 RALTGPKGSRPPLPSVKKLTEDRWSEPQKTRGHRENPTMNGH C7 VALLTPKRRKPPLPSVAKLTEDKWNKPRKTKGHRGSHSMNGH C8 IALTKPKKIKPPLPSVKKLTEDRWNKPQTTKGHRGNHTMYGH C9 RAVVKEKRNKPPLPSVQKLTEDRWNKHLRIKDQLESHSMHGH C10 TALIKPKKIKPPLPSVQKLVEDRWNKPQKTRGRRGNHTMNGH C11 TALIKPKKRRPPLPSVQKLVEDRWNEPQKTRGHRESHTMNGH C12 KALTTTKRIKPPLPSVRKLTEDRWNEPQKIKGRRENPTMNGQ C13 KALTTPTKIKPPLPSVRKLTEDRWNKPQRTKGHRGNHTMNGH C14 SVLVTPKKRKPPLPSVKKLTEDRWNKPQKTTGHRRSHSIIGH C15 TALVTPKKIKPPLPSVKKLTEDRWNKPQKTKGHRGSHTMNGH C16 VALTTPKRRKPPLPSVRKLTEDRWNKPQRTKGHRGSHTMNGH C17 KALVTPIRRKPPLPSVRKLTEDRWNKPQKTRGHRGNRSMNGH C18 TALVTPKRRKPPLPSVAKLTEDRWNKPQKTKGHRGNHTMSGH C19 KALITPTKTKPPLPSVKKLAEDRWNKPQKTRGHRGSRSMNGH C20 TALIKPKKTRPPLPSVRKLTEDRWNKPRKTKGHRENHTMNGH C21 VALTKTKKIKPPLPSVRKLTEDRWNKPQRTKDHRGSHTMNGH C22 TALIKPKKRKPPLPSVRKLVEDRWNKPQKTRGRRGNHTMNGH C23 TALIKPKKTKPPLPSVAKLTEDRWNKPQKTKGHRGSHTMNGH C24 TALITPKKRKPPLPSVRKLTEDRWNKPQRTKGHRGSHTMNGH C25 TALITPKKTKPPLPSVKKLTEDKWNKPQKTKGHRGSHTMSGH C26 VALTKPKRRKPPLPSVRKLTEDRWNKPQKTKDHKESHTMNGH C27 TALIKPKRIRPPLPSIKKLVEDRWNKPPKIMGRRGNHTMNGH C28 TALIKPKKIKPPLPSVKKLVEDRWNKPQKTRDRRGNHTMNGH C29 TALIKPKKRKPPLPSVRKLTEDRWNEPQKIKGHRESHSMNGH C30 KALTTQKKTRPPLPSVKKLTEDRWNEPQKIRGHRGNPTMSGH C31 TALIKPKRRKPPLPSVKKLVEDRWNKPQKTRDRRGNHTMNGH C32 RALTTPKRIRPPLPSVKKLTEDRWNKPQKIRGHRENPTMNGH C33 TALITPKKGKPPLPSVAKLTEDRWNKPQKTKGRKGNHTMSGH C34 VALITPKKRKPPLPSVAKLTEDRWNKPQRTKGHRGSPTMNGH C35 KALVEPTRRKPPLPSVRKLTEDRWNKPRKTRGHRGNHTMNGC C36 TALIKPKRRKPPLPSVRKLVEDRWNNPQKIRDRRGNHTMNGH C37 TALIKPKKRKPPLPSVRKLAEDRWNKPQKTRDHRGNHTMNGH C38 TALIKPKRRKPPLPSVTKLTEDRWNEPRKTKGHQENHTMNGH C39 TALIKPKRIRPPLPSVRKLVEDRWNNPQKIRGRRGNHTTNGH C40 TALIKPKKIKPPLPSVKKLTEDRWNKPQKTKGRRESHSMSGH C41 AALVTPKQTKPPLPSVTKLTEDRWNKPRKTKGHRGNHTMNGR C42 TALIKPKKVKPPLPSVRKLVEDRWNNPQKIRGRRGNHTMNGH C43 TALITPKRIKPPLPSVTKLTEDRWNKPQKTKGHRGSHTRNGH C44 KALTNPKKIRPPLPSVKKLTEDRWNKPQKTMGHRENPTMNGH C45 TALIKPKKRKPPLPSIRKLVEDRWNNPQQIRGRRGNHTMNGH C46 TALIKPKQIKPPLPSVRKLTEDRWNKPQRTKGHRGSHTMNGH C47 TALIKPKKIKPPLPSVRKLVEDRWNDPQKIRGRRGNHTMNGH C48 VALITPKKIKPPLPSVAKLTEDRWNEPQKTKGHRGSHTMNGH C49 KALATPKRIRPPLPSVKKLTEDRWNKPQKIRGHRENPSMNGH C50 VALITPKKTKPPLPSVTKLTEDRWNKPQRTTGHRGSHTMNGH .: :*****: **.**:*.. .: . : * 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 75.65 C1 C2 75.65 TOP 1 0 75.65 C2 C1 75.65 BOT 0 2 85.49 C1 C3 85.49 TOP 2 0 85.49 C3 C1 85.49 BOT 0 3 84.46 C1 C4 84.46 TOP 3 0 84.46 C4 C1 84.46 BOT 0 4 83.94 C1 C5 83.94 TOP 4 0 83.94 C5 C1 83.94 BOT 0 5 75.13 C1 C6 75.13 TOP 5 0 75.13 C6 C1 75.13 BOT 0 6 82.90 C1 C7 82.90 TOP 6 0 82.90 C7 C1 82.90 BOT 0 7 83.94 C1 C8 83.94 TOP 7 0 83.94 C8 C1 83.94 BOT 0 8 65.28 C1 C9 65.28 TOP 8 0 65.28 C9 C1 65.28 BOT 0 9 78.24 C1 C10 78.24 TOP 9 0 78.24 C10 C1 78.24 BOT 0 10 78.24 C1 C11 78.24 TOP 10 0 78.24 C11 C1 78.24 BOT 0 11 77.20 C1 C12 77.20 TOP 11 0 77.20 C12 C1 77.20 BOT 0 12 81.87 C1 C13 81.87 TOP 12 0 81.87 C13 C1 81.87 BOT 0 13 83.42 C1 C14 83.42 TOP 13 0 83.42 C14 C1 83.42 BOT 0 14 87.05 C1 C15 87.05 TOP 14 0 87.05 C15 C1 87.05 BOT 0 15 84.46 C1 C16 84.46 TOP 15 0 84.46 C16 C1 84.46 BOT 0 16 80.83 C1 C17 80.83 TOP 16 0 80.83 C17 C1 80.83 BOT 0 17 82.90 C1 C18 82.90 TOP 17 0 82.90 C18 C1 82.90 BOT 0 18 80.83 C1 C19 80.83 TOP 18 0 80.83 C19 C1 80.83 BOT 0 19 82.38 C1 C20 82.38 TOP 19 0 82.38 C20 C1 82.38 BOT 0 20 83.94 C1 C21 83.94 TOP 20 0 83.94 C21 C1 83.94 BOT 0 21 77.72 C1 C22 77.72 TOP 21 0 77.72 C22 C1 77.72 BOT 0 22 84.97 C1 C23 84.97 TOP 22 0 84.97 C23 C1 84.97 BOT 0 23 86.01 C1 C24 86.01 TOP 23 0 86.01 C24 C1 86.01 BOT 0 24 87.56 C1 C25 87.56 TOP 24 0 87.56 C25 C1 87.56 BOT 0 25 79.27 C1 C26 79.27 TOP 25 0 79.27 C26 C1 79.27 BOT 0 26 75.00 C1 C27 75.00 TOP 26 0 75.00 C27 C1 75.00 BOT 0 27 77.72 C1 C28 77.72 TOP 27 0 77.72 C28 C1 77.72 BOT 0 28 85.49 C1 C29 85.49 TOP 28 0 85.49 C29 C1 85.49 BOT 0 29 76.68 C1 C30 76.68 TOP 29 0 76.68 C30 C1 76.68 BOT 0 30 77.72 C1 C31 77.72 TOP 30 0 77.72 C31 C1 77.72 BOT 0 31 76.68 C1 C32 76.68 TOP 31 0 76.68 C32 C1 76.68 BOT 0 32 80.31 C1 C33 80.31 TOP 32 0 80.31 C33 C1 80.31 BOT 0 33 84.97 C1 C34 84.97 TOP 33 0 84.97 C34 C1 84.97 BOT 0 34 80.31 C1 C35 80.31 TOP 34 0 80.31 C35 C1 80.31 BOT 0 35 79.79 C1 C36 79.79 TOP 35 0 79.79 C36 C1 79.79 BOT 0 36 79.79 C1 C37 79.79 TOP 36 0 79.79 C37 C1 79.79 BOT 0 37 78.76 C1 C38 78.76 TOP 37 0 78.76 C38 C1 78.76 BOT 0 38 74.09 C1 C39 74.09 TOP 38 0 74.09 C39 C1 74.09 BOT 0 39 83.94 C1 C40 83.94 TOP 39 0 83.94 C40 C1 83.94 BOT 0 40 82.90 C1 C41 82.90 TOP 40 0 82.90 C41 C1 82.90 BOT 0 41 79.27 C1 C42 79.27 TOP 41 0 79.27 C42 C1 79.27 BOT 0 42 81.35 C1 C43 81.35 TOP 42 0 81.35 C43 C1 81.35 BOT 0 43 77.72 C1 C44 77.72 TOP 43 0 77.72 C44 C1 77.72 BOT 0 44 77.20 C1 C45 77.20 TOP 44 0 77.20 C45 C1 77.20 BOT 0 45 81.35 C1 C46 81.35 TOP 45 0 81.35 C46 C1 81.35 BOT 0 46 79.79 C1 C47 79.79 TOP 46 0 79.79 C47 C1 79.79 BOT 0 47 86.53 C1 C48 86.53 TOP 47 0 86.53 C48 C1 86.53 BOT 0 48 75.13 C1 C49 75.13 TOP 48 0 75.13 C49 C1 75.13 BOT 0 49 85.49 C1 C50 85.49 TOP 49 0 85.49 C50 C1 85.49 BOT 1 2 76.68 C2 C3 76.68 TOP 2 1 76.68 C3 C2 76.68 BOT 1 3 80.83 C2 C4 80.83 TOP 3 1 80.83 C4 C2 80.83 BOT 1 4 76.17 C2 C5 76.17 TOP 4 1 76.17 C5 C2 76.17 BOT 1 5 88.08 C2 C6 88.08 TOP 5 1 88.08 C6 C2 88.08 BOT 1 6 75.13 C2 C7 75.13 TOP 6 1 75.13 C7 C2 75.13 BOT 1 7 77.20 C2 C8 77.20 TOP 7 1 77.20 C8 C2 77.20 BOT 1 8 63.21 C2 C9 63.21 TOP 8 1 63.21 C9 C2 63.21 BOT 1 9 76.68 C2 C10 76.68 TOP 9 1 76.68 C10 C2 76.68 BOT 1 10 75.65 C2 C11 75.65 TOP 10 1 75.65 C11 C2 75.65 BOT 1 11 87.56 C2 C12 87.56 TOP 11 1 87.56 C12 C2 87.56 BOT 1 12 83.42 C2 C13 83.42 TOP 12 1 83.42 C13 C2 83.42 BOT 1 13 75.65 C2 C14 75.65 TOP 13 1 75.65 C14 C2 75.65 BOT 1 14 78.76 C2 C15 78.76 TOP 14 1 78.76 C15 C2 78.76 BOT 1 15 77.72 C2 C16 77.72 TOP 15 1 77.72 C16 C2 77.72 BOT 1 16 83.42 C2 C17 83.42 TOP 16 1 83.42 C17 C2 83.42 BOT 1 17 75.13 C2 C18 75.13 TOP 17 1 75.13 C18 C2 75.13 BOT 1 18 80.83 C2 C19 80.83 TOP 18 1 80.83 C19 C2 80.83 BOT 1 19 76.17 C2 C20 76.17 TOP 19 1 76.17 C20 C2 76.17 BOT 1 20 72.02 C2 C21 72.02 TOP 20 1 72.02 C21 C2 72.02 BOT 1 21 75.65 C2 C22 75.65 TOP 21 1 75.65 C22 C2 75.65 BOT 1 22 77.20 C2 C23 77.20 TOP 22 1 77.20 C23 C2 77.20 BOT 1 23 79.79 C2 C24 79.79 TOP 23 1 79.79 C24 C2 79.79 BOT 1 24 76.17 C2 C25 76.17 TOP 24 1 76.17 C25 C2 76.17 BOT 1 25 75.65 C2 C26 75.65 TOP 25 1 75.65 C26 C2 75.65 BOT 1 26 78.12 C2 C27 78.12 TOP 26 1 78.12 C27 C2 78.12 BOT 1 27 76.68 C2 C28 76.68 TOP 27 1 76.68 C28 C2 76.68 BOT 1 28 76.17 C2 C29 76.17 TOP 28 1 76.17 C29 C2 76.17 BOT 1 29 88.60 C2 C30 88.60 TOP 29 1 88.60 C30 C2 88.60 BOT 1 30 77.20 C2 C31 77.20 TOP 30 1 77.20 C31 C2 77.20 BOT 1 31 89.64 C2 C32 89.64 TOP 31 1 89.64 C32 C2 89.64 BOT 1 32 76.17 C2 C33 76.17 TOP 32 1 76.17 C33 C2 76.17 BOT 1 33 76.17 C2 C34 76.17 TOP 33 1 76.17 C34 C2 76.17 BOT 1 34 80.31 C2 C35 80.31 TOP 34 1 80.31 C35 C2 80.31 BOT 1 35 76.68 C2 C36 76.68 TOP 35 1 76.68 C36 C2 76.68 BOT 1 36 79.27 C2 C37 79.27 TOP 36 1 79.27 C37 C2 79.27 BOT 1 37 72.54 C2 C38 72.54 TOP 37 1 72.54 C38 C2 72.54 BOT 1 38 78.24 C2 C39 78.24 TOP 38 1 78.24 C39 C2 78.24 BOT 1 39 73.58 C2 C40 73.58 TOP 39 1 73.58 C40 C2 73.58 BOT 1 40 74.09 C2 C41 74.09 TOP 40 1 74.09 C41 C2 74.09 BOT 1 41 76.68 C2 C42 76.68 TOP 41 1 76.68 C42 C2 76.68 BOT 1 42 74.09 C2 C43 74.09 TOP 42 1 74.09 C43 C2 74.09 BOT 1 43 89.64 C2 C44 89.64 TOP 43 1 89.64 C44 C2 89.64 BOT 1 44 73.58 C2 C45 73.58 TOP 44 1 73.58 C45 C2 73.58 BOT 1 45 73.58 C2 C46 73.58 TOP 45 1 73.58 C46 C2 73.58 BOT 1 46 77.20 C2 C47 77.20 TOP 46 1 77.20 C47 C2 77.20 BOT 1 47 76.17 C2 C48 76.17 TOP 47 1 76.17 C48 C2 76.17 BOT 1 48 96.37 C2 C49 96.37 TOP 48 1 96.37 C49 C2 96.37 BOT 1 49 77.20 C2 C50 77.20 TOP 49 1 77.20 C50 C2 77.20 BOT 2 3 87.56 C3 C4 87.56 TOP 3 2 87.56 C4 C3 87.56 BOT 2 4 86.01 C3 C5 86.01 TOP 4 2 86.01 C5 C3 86.01 BOT 2 5 75.13 C3 C6 75.13 TOP 5 2 75.13 C6 C3 75.13 BOT 2 6 86.53 C3 C7 86.53 TOP 6 2 86.53 C7 C3 86.53 BOT 2 7 86.01 C3 C8 86.01 TOP 7 2 86.01 C8 C3 86.01 BOT 2 8 65.80 C3 C9 65.80 TOP 8 2 65.80 C9 C3 65.80 BOT 2 9 79.79 C3 C10 79.79 TOP 9 2 79.79 C10 C3 79.79 BOT 2 10 79.79 C3 C11 79.79 TOP 10 2 79.79 C11 C3 79.79 BOT 2 11 77.72 C3 C12 77.72 TOP 11 2 77.72 C12 C3 77.72 BOT 2 12 81.87 C3 C13 81.87 TOP 12 2 81.87 C13 C3 81.87 BOT 2 13 81.35 C3 C14 81.35 TOP 13 2 81.35 C14 C3 81.35 BOT 2 14 91.19 C3 C15 91.19 TOP 14 2 91.19 C15 C3 91.19 BOT 2 15 88.08 C3 C16 88.08 TOP 15 2 88.08 C16 C3 88.08 BOT 2 16 80.83 C3 C17 80.83 TOP 16 2 80.83 C17 C3 80.83 BOT 2 17 88.60 C3 C18 88.60 TOP 17 2 88.60 C18 C3 88.60 BOT 2 18 81.35 C3 C19 81.35 TOP 18 2 81.35 C19 C3 81.35 BOT 2 19 81.35 C3 C20 81.35 TOP 19 2 81.35 C20 C3 81.35 BOT 2 20 84.97 C3 C21 84.97 TOP 20 2 84.97 C21 C3 84.97 BOT 2 21 77.20 C3 C22 77.20 TOP 21 2 77.20 C22 C3 77.20 BOT 2 22 90.67 C3 C23 90.67 TOP 22 2 90.67 C23 C3 90.67 BOT 2 23 81.35 C3 C24 81.35 TOP 23 2 81.35 C24 C3 81.35 BOT 2 24 86.53 C3 C25 86.53 TOP 24 2 86.53 C25 C3 86.53 BOT 2 25 82.90 C3 C26 82.90 TOP 25 2 82.90 C26 C3 82.90 BOT 2 26 77.08 C3 C27 77.08 TOP 26 2 77.08 C27 C3 77.08 BOT 2 27 80.83 C3 C28 80.83 TOP 27 2 80.83 C28 C3 80.83 BOT 2 28 86.01 C3 C29 86.01 TOP 28 2 86.01 C29 C3 86.01 BOT 2 29 77.20 C3 C30 77.20 TOP 29 2 77.20 C30 C3 77.20 BOT 2 30 79.79 C3 C31 79.79 TOP 30 2 79.79 C31 C3 79.79 BOT 2 31 79.27 C3 C32 79.27 TOP 31 2 79.27 C32 C3 79.27 BOT 2 32 82.90 C3 C33 82.90 TOP 32 2 82.90 C33 C3 82.90 BOT 2 33 90.16 C3 C34 90.16 TOP 33 2 90.16 C34 C3 90.16 BOT 2 34 80.83 C3 C35 80.83 TOP 34 2 80.83 C35 C3 80.83 BOT 2 35 79.27 C3 C36 79.27 TOP 35 2 79.27 C36 C3 79.27 BOT 2 36 79.27 C3 C37 79.27 TOP 36 2 79.27 C37 C3 79.27 BOT 2 37 77.72 C3 C38 77.72 TOP 37 2 77.72 C38 C3 77.72 BOT 2 38 76.17 C3 C39 76.17 TOP 38 2 76.17 C39 C3 76.17 BOT 2 39 86.01 C3 C40 86.01 TOP 39 2 86.01 C40 C3 86.01 BOT 2 40 84.97 C3 C41 84.97 TOP 40 2 84.97 C41 C3 84.97 BOT 2 41 79.79 C3 C42 79.79 TOP 41 2 79.79 C42 C3 79.79 BOT 2 42 83.94 C3 C43 83.94 TOP 42 2 83.94 C43 C3 83.94 BOT 2 43 76.68 C3 C44 76.68 TOP 43 2 76.68 C44 C3 76.68 BOT 2 44 75.13 C3 C45 75.13 TOP 44 2 75.13 C45 C3 75.13 BOT 2 45 81.35 C3 C46 81.35 TOP 45 2 81.35 C46 C3 81.35 BOT 2 46 78.76 C3 C47 78.76 TOP 46 2 78.76 C47 C3 78.76 BOT 2 47 93.78 C3 C48 93.78 TOP 47 2 93.78 C48 C3 93.78 BOT 2 48 74.61 C3 C49 74.61 TOP 48 2 74.61 C49 C3 74.61 BOT 2 49 88.60 C3 C50 88.60 TOP 49 2 88.60 C50 C3 88.60 BOT 3 4 84.97 C4 C5 84.97 TOP 4 3 84.97 C5 C4 84.97 BOT 3 5 78.76 C4 C6 78.76 TOP 5 3 78.76 C6 C4 78.76 BOT 3 6 81.87 C4 C7 81.87 TOP 6 3 81.87 C7 C4 81.87 BOT 3 7 84.46 C4 C8 84.46 TOP 7 3 84.46 C8 C4 84.46 BOT 3 8 62.18 C4 C9 62.18 TOP 8 3 62.18 C9 C4 62.18 BOT 3 9 83.42 C4 C10 83.42 TOP 9 3 83.42 C10 C4 83.42 BOT 3 10 80.83 C4 C11 80.83 TOP 10 3 80.83 C11 C4 80.83 BOT 3 11 79.27 C4 C12 79.27 TOP 11 3 79.27 C12 C4 79.27 BOT 3 12 86.53 C4 C13 86.53 TOP 12 3 86.53 C13 C4 86.53 BOT 3 13 79.27 C4 C14 79.27 TOP 13 3 79.27 C14 C4 79.27 BOT 3 14 87.56 C4 C15 87.56 TOP 14 3 87.56 C15 C4 87.56 BOT 3 15 85.49 C4 C16 85.49 TOP 15 3 85.49 C16 C4 85.49 BOT 3 16 82.38 C4 C17 82.38 TOP 16 3 82.38 C17 C4 82.38 BOT 3 17 85.49 C4 C18 85.49 TOP 17 3 85.49 C18 C4 85.49 BOT 3 18 84.46 C4 C19 84.46 TOP 18 3 84.46 C19 C4 84.46 BOT 3 19 84.97 C4 C20 84.97 TOP 19 3 84.97 C20 C4 84.97 BOT 3 20 80.83 C4 C21 80.83 TOP 20 3 80.83 C21 C4 80.83 BOT 3 21 82.38 C4 C22 82.38 TOP 21 3 82.38 C22 C4 82.38 BOT 3 22 88.08 C4 C23 88.08 TOP 22 3 88.08 C23 C4 88.08 BOT 3 23 86.53 C4 C24 86.53 TOP 23 3 86.53 C24 C4 86.53 BOT 3 24 87.05 C4 C25 87.05 TOP 24 3 87.05 C25 C4 87.05 BOT 3 25 81.35 C4 C26 81.35 TOP 25 3 81.35 C26 C4 81.35 BOT 3 26 80.73 C4 C27 80.73 TOP 26 3 80.73 C27 C4 80.73 BOT 3 27 83.42 C4 C28 83.42 TOP 27 3 83.42 C28 C4 83.42 BOT 3 28 84.46 C4 C29 84.46 TOP 28 3 84.46 C29 C4 84.46 BOT 3 29 81.87 C4 C30 81.87 TOP 29 3 81.87 C30 C4 81.87 BOT 3 30 81.87 C4 C31 81.87 TOP 30 3 81.87 C31 C4 81.87 BOT 3 31 79.27 C4 C32 79.27 TOP 31 3 79.27 C32 C4 79.27 BOT 3 32 85.49 C4 C33 85.49 TOP 32 3 85.49 C33 C4 85.49 BOT 3 33 88.08 C4 C34 88.08 TOP 33 3 88.08 C34 C4 88.08 BOT 3 34 80.83 C4 C35 80.83 TOP 34 3 80.83 C35 C4 80.83 BOT 3 35 80.83 C4 C36 80.83 TOP 35 3 80.83 C36 C4 80.83 BOT 3 36 85.49 C4 C37 85.49 TOP 36 3 85.49 C37 C4 85.49 BOT 3 37 78.76 C4 C38 78.76 TOP 37 3 78.76 C38 C4 78.76 BOT 3 38 80.31 C4 C39 80.31 TOP 38 3 80.31 C39 C4 80.31 BOT 3 39 84.46 C4 C40 84.46 TOP 39 3 84.46 C40 C4 84.46 BOT 3 40 83.94 C4 C41 83.94 TOP 40 3 83.94 C41 C4 83.94 BOT 3 41 83.42 C4 C42 83.42 TOP 41 3 83.42 C42 C4 83.42 BOT 3 42 83.42 C4 C43 83.42 TOP 42 3 83.42 C43 C4 83.42 BOT 3 43 80.83 C4 C44 80.83 TOP 43 3 80.83 C44 C4 80.83 BOT 3 44 79.27 C4 C45 79.27 TOP 44 3 79.27 C45 C4 79.27 BOT 3 45 83.94 C4 C46 83.94 TOP 45 3 83.94 C46 C4 83.94 BOT 3 46 81.87 C4 C47 81.87 TOP 46 3 81.87 C47 C4 81.87 BOT 3 47 87.56 C4 C48 87.56 TOP 47 3 87.56 C48 C4 87.56 BOT 3 48 78.24 C4 C49 78.24 TOP 48 3 78.24 C49 C4 78.24 BOT 3 49 89.64 C4 C50 89.64 TOP 49 3 89.64 C50 C4 89.64 BOT 4 5 73.58 C5 C6 73.58 TOP 5 4 73.58 C6 C5 73.58 BOT 4 6 79.27 C5 C7 79.27 TOP 6 4 79.27 C7 C5 79.27 BOT 4 7 83.42 C5 C8 83.42 TOP 7 4 83.42 C8 C5 83.42 BOT 4 8 62.69 C5 C9 62.69 TOP 8 4 62.69 C9 C5 62.69 BOT 4 9 80.83 C5 C10 80.83 TOP 9 4 80.83 C10 C5 80.83 BOT 4 10 81.35 C5 C11 81.35 TOP 10 4 81.35 C11 C5 81.35 BOT 4 11 75.13 C5 C12 75.13 TOP 11 4 75.13 C12 C5 75.13 BOT 4 12 79.27 C5 C13 79.27 TOP 12 4 79.27 C13 C5 79.27 BOT 4 13 80.31 C5 C14 80.31 TOP 13 4 80.31 C14 C5 80.31 BOT 4 14 86.53 C5 C15 86.53 TOP 14 4 86.53 C15 C5 86.53 BOT 4 15 83.94 C5 C16 83.94 TOP 15 4 83.94 C16 C5 83.94 BOT 4 16 76.68 C5 C17 76.68 TOP 16 4 76.68 C17 C5 76.68 BOT 4 17 86.53 C5 C18 86.53 TOP 17 4 86.53 C18 C5 86.53 BOT 4 18 78.24 C5 C19 78.24 TOP 18 4 78.24 C19 C5 78.24 BOT 4 19 84.97 C5 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BOT 30 32 76.68 C31 C33 76.68 TOP 32 30 76.68 C33 C31 76.68 BOT 30 33 80.83 C31 C34 80.83 TOP 33 30 80.83 C34 C31 80.83 BOT 30 34 81.35 C31 C35 81.35 TOP 34 30 81.35 C35 C31 81.35 BOT 30 35 89.12 C31 C36 89.12 TOP 35 30 89.12 C36 C31 89.12 BOT 30 36 88.60 C31 C37 88.60 TOP 36 30 88.60 C37 C31 88.60 BOT 30 37 78.76 C31 C38 78.76 TOP 37 30 78.76 C38 C31 78.76 BOT 30 38 86.01 C31 C39 86.01 TOP 38 30 86.01 C39 C31 86.01 BOT 30 39 78.76 C31 C40 78.76 TOP 39 30 78.76 C40 C31 78.76 BOT 30 40 77.72 C31 C41 77.72 TOP 40 30 77.72 C41 C31 77.72 BOT 30 41 88.60 C31 C42 88.60 TOP 41 30 88.60 C42 C31 88.60 BOT 30 42 78.24 C31 C43 78.24 TOP 42 30 78.24 C43 C31 78.24 BOT 30 43 78.24 C31 C44 78.24 TOP 43 30 78.24 C44 C31 78.24 BOT 30 44 84.46 C31 C45 84.46 TOP 44 30 84.46 C45 C31 84.46 BOT 30 45 77.72 C31 C46 77.72 TOP 45 30 77.72 C46 C31 77.72 BOT 30 46 86.01 C31 C47 86.01 TOP 46 30 86.01 C47 C31 86.01 BOT 30 47 79.79 C31 C48 79.79 TOP 47 30 79.79 C48 C31 79.79 BOT 30 48 75.13 C31 C49 75.13 TOP 48 30 75.13 C49 C31 75.13 BOT 30 49 81.35 C31 C50 81.35 TOP 49 30 81.35 C50 C31 81.35 BOT 31 32 76.68 C32 C33 76.68 TOP 32 31 76.68 C33 C32 76.68 BOT 31 33 77.20 C32 C34 77.20 TOP 33 31 77.20 C34 C32 77.20 BOT 31 34 83.42 C32 C35 83.42 TOP 34 31 83.42 C35 C32 83.42 BOT 31 35 78.76 C32 C36 78.76 TOP 35 31 78.76 C36 C32 78.76 BOT 31 36 79.27 C32 C37 79.27 TOP 36 31 79.27 C37 C32 79.27 BOT 31 37 72.54 C32 C38 72.54 TOP 37 31 72.54 C38 C32 72.54 BOT 31 38 78.76 C32 C39 78.76 TOP 38 31 78.76 C39 C32 78.76 BOT 31 39 75.13 C32 C40 75.13 TOP 39 31 75.13 C40 C32 75.13 BOT 31 40 74.09 C32 C41 74.09 TOP 40 31 74.09 C41 C32 74.09 BOT 31 41 74.61 C32 C42 74.61 TOP 41 31 74.61 C42 C32 74.61 BOT 31 42 73.58 C32 C43 73.58 TOP 42 31 73.58 C43 C32 73.58 BOT 31 43 89.12 C32 C44 89.12 TOP 43 31 89.12 C44 C32 89.12 BOT 31 44 72.54 C32 C45 72.54 TOP 44 31 72.54 C45 C32 72.54 BOT 31 45 73.58 C32 C46 73.58 TOP 45 31 73.58 C46 C32 73.58 BOT 31 46 78.24 C32 C47 78.24 TOP 46 31 78.24 C47 C32 78.24 BOT 31 47 77.72 C32 C48 77.72 TOP 47 31 77.72 C48 C32 77.72 BOT 31 48 87.05 C32 C49 87.05 TOP 48 31 87.05 C49 C32 87.05 BOT 31 49 79.27 C32 C50 79.27 TOP 49 31 79.27 C50 C32 79.27 BOT 32 33 83.94 C33 C34 83.94 TOP 33 32 83.94 C34 C33 83.94 BOT 32 34 77.72 C33 C35 77.72 TOP 34 32 77.72 C35 C33 77.72 BOT 32 35 78.24 C33 C36 78.24 TOP 35 32 78.24 C36 C33 78.24 BOT 32 36 80.31 C33 C37 80.31 TOP 36 32 80.31 C37 C33 80.31 BOT 32 37 81.35 C33 C38 81.35 TOP 37 32 81.35 C38 C33 81.35 BOT 32 38 75.13 C33 C39 75.13 TOP 38 32 75.13 C39 C33 75.13 BOT 32 39 80.31 C33 C40 80.31 TOP 39 32 80.31 C40 C33 80.31 BOT 32 40 78.76 C33 C41 78.76 TOP 40 32 78.76 C41 C33 78.76 BOT 32 41 78.24 C33 C42 78.24 TOP 41 32 78.24 C42 C33 78.24 BOT 32 42 77.72 C33 C43 77.72 TOP 42 32 77.72 C43 C33 77.72 BOT 32 43 75.65 C33 C44 75.65 TOP 43 32 75.65 C44 C33 75.65 BOT 32 44 75.13 C33 C45 75.13 TOP 44 32 75.13 C45 C33 75.13 BOT 32 45 80.31 C33 C46 80.31 TOP 45 32 80.31 C46 C33 80.31 BOT 32 46 80.31 C33 C47 80.31 TOP 46 32 80.31 C47 C33 80.31 BOT 32 47 83.42 C33 C48 83.42 TOP 47 32 83.42 C48 C33 83.42 BOT 32 48 74.09 C33 C49 74.09 TOP 48 32 74.09 C49 C33 74.09 BOT 32 49 83.94 C33 C50 83.94 TOP 49 32 83.94 C50 C33 83.94 BOT 33 34 79.79 C34 C35 79.79 TOP 34 33 79.79 C35 C34 79.79 BOT 33 35 78.76 C34 C36 78.76 TOP 35 33 78.76 C36 C34 78.76 BOT 33 36 81.87 C34 C37 81.87 TOP 36 33 81.87 C37 C34 81.87 BOT 33 37 78.76 C34 C38 78.76 TOP 37 33 78.76 C38 C34 78.76 BOT 33 38 74.09 C34 C39 74.09 TOP 38 33 74.09 C39 C34 74.09 BOT 33 39 81.87 C34 C40 81.87 TOP 39 33 81.87 C40 C34 81.87 BOT 33 40 82.38 C34 C41 82.38 TOP 40 33 82.38 C41 C34 82.38 BOT 33 41 81.35 C34 C42 81.35 TOP 41 33 81.35 C42 C34 81.35 BOT 33 42 82.38 C34 C43 82.38 TOP 42 33 82.38 C43 C34 82.38 BOT 33 43 77.20 C34 C44 77.20 TOP 43 33 77.20 C44 C34 77.20 BOT 33 44 75.13 C34 C45 75.13 TOP 44 33 75.13 C45 C34 75.13 BOT 33 45 83.94 C34 C46 83.94 TOP 45 33 83.94 C46 C34 83.94 BOT 33 46 78.76 C34 C47 78.76 TOP 46 33 78.76 C47 C34 78.76 BOT 33 47 92.75 C34 C48 92.75 TOP 47 33 92.75 C48 C34 92.75 BOT 33 48 74.09 C34 C49 74.09 TOP 48 33 74.09 C49 C34 74.09 BOT 33 49 90.16 C34 C50 90.16 TOP 49 33 90.16 C50 C34 90.16 BOT 34 35 82.90 C35 C36 82.90 TOP 35 34 82.90 C36 C35 82.90 BOT 34 36 84.97 C35 C37 84.97 TOP 36 34 84.97 C37 C35 84.97 BOT 34 37 75.13 C35 C38 75.13 TOP 37 34 75.13 C38 C35 75.13 BOT 34 38 79.79 C35 C39 79.79 TOP 38 34 79.79 C39 C35 79.79 BOT 34 39 74.61 C35 C40 74.61 TOP 39 34 74.61 C40 C35 74.61 BOT 34 40 78.24 C35 C41 78.24 TOP 40 34 78.24 C41 C35 78.24 BOT 34 41 80.31 C35 C42 80.31 TOP 41 34 80.31 C42 C35 80.31 BOT 34 42 77.20 C35 C43 77.20 TOP 42 34 77.20 C43 C35 77.20 BOT 34 43 81.35 C35 C44 81.35 TOP 43 34 81.35 C44 C35 81.35 BOT 34 44 79.27 C35 C45 79.27 TOP 44 34 79.27 C45 C35 79.27 BOT 34 45 77.20 C35 C46 77.20 TOP 45 34 77.20 C46 C35 77.20 BOT 34 46 79.27 C35 C47 79.27 TOP 46 34 79.27 C47 C35 79.27 BOT 34 47 80.31 C35 C48 80.31 TOP 47 34 80.31 C48 C35 80.31 BOT 34 48 77.20 C35 C49 77.20 TOP 48 34 77.20 C49 C35 77.20 BOT 34 49 80.83 C35 C50 80.83 TOP 49 34 80.83 C50 C35 80.83 BOT 35 36 89.64 C36 C37 89.64 TOP 36 35 89.64 C37 C36 89.64 BOT 35 37 76.68 C36 C38 76.68 TOP 37 35 76.68 C38 C36 76.68 BOT 35 38 87.56 C36 C39 87.56 TOP 38 35 87.56 C39 C36 87.56 BOT 35 39 79.27 C36 C40 79.27 TOP 39 35 79.27 C40 C36 79.27 BOT 35 40 77.72 C36 C41 77.72 TOP 40 35 77.72 C41 C36 77.72 BOT 35 41 90.16 C36 C42 90.16 TOP 41 35 90.16 C42 C36 90.16 BOT 35 42 75.13 C36 C43 75.13 TOP 42 35 75.13 C43 C36 75.13 BOT 35 43 76.68 C36 C44 76.68 TOP 43 35 76.68 C44 C36 76.68 BOT 35 44 87.05 C36 C45 87.05 TOP 44 35 87.05 C45 C36 87.05 BOT 35 45 79.79 C36 C46 79.79 TOP 45 35 79.79 C46 C36 79.79 BOT 35 46 90.16 C36 C47 90.16 TOP 46 35 90.16 C47 C36 90.16 BOT 35 47 81.35 C36 C48 81.35 TOP 47 35 81.35 C48 C36 81.35 BOT 35 48 76.17 C36 C49 76.17 TOP 48 35 76.17 C49 C36 76.17 BOT 35 49 80.31 C36 C50 80.31 TOP 49 35 80.31 C50 C36 80.31 BOT 36 37 77.20 C37 C38 77.20 TOP 37 36 77.20 C38 C37 77.20 BOT 36 38 87.56 C37 C39 87.56 TOP 38 36 87.56 C39 C37 87.56 BOT 36 39 77.20 C37 C40 77.20 TOP 39 36 77.20 C40 C37 77.20 BOT 36 40 77.20 C37 C41 77.20 TOP 40 36 77.20 C41 C37 77.20 BOT 36 41 89.12 C37 C42 89.12 TOP 41 36 89.12 C42 C37 89.12 BOT 36 42 77.20 C37 C43 77.20 TOP 42 36 77.20 C43 C37 77.20 BOT 36 43 80.31 C37 C44 80.31 TOP 43 36 80.31 C44 C37 80.31 BOT 36 44 87.56 C37 C45 87.56 TOP 44 36 87.56 C45 C37 87.56 BOT 36 45 80.83 C37 C46 80.83 TOP 45 36 80.83 C46 C37 80.83 BOT 36 46 88.60 C37 C47 88.60 TOP 46 36 88.60 C47 C37 88.60 BOT 36 47 81.35 C37 C48 81.35 TOP 47 36 81.35 C48 C37 81.35 BOT 36 48 76.17 C37 C49 76.17 TOP 48 36 76.17 C49 C37 76.17 BOT 36 49 82.38 C37 C50 82.38 TOP 49 36 82.38 C50 C37 82.38 BOT 37 38 74.61 C38 C39 74.61 TOP 38 37 74.61 C39 C38 74.61 BOT 37 39 77.72 C38 C40 77.72 TOP 39 37 77.72 C40 C38 77.72 BOT 37 40 81.87 C38 C41 81.87 TOP 40 37 81.87 C41 C38 81.87 BOT 37 41 74.09 C38 C42 74.09 TOP 41 37 74.09 C42 C38 74.09 BOT 37 42 76.17 C38 C43 76.17 TOP 42 37 76.17 C43 C38 76.17 BOT 37 43 75.13 C38 C44 75.13 TOP 43 37 75.13 C44 C38 75.13 BOT 37 44 75.13 C38 C45 75.13 TOP 44 37 75.13 C45 C38 75.13 BOT 37 45 76.68 C38 C46 76.68 TOP 45 37 76.68 C46 C38 76.68 BOT 37 46 75.65 C38 C47 75.65 TOP 46 37 75.65 C47 C38 75.65 BOT 37 47 79.27 C38 C48 79.27 TOP 47 37 79.27 C48 C38 79.27 BOT 37 48 72.02 C38 C49 72.02 TOP 48 37 72.02 C49 C38 72.02 BOT 37 49 78.24 C38 C50 78.24 TOP 49 37 78.24 C50 C38 78.24 BOT 38 39 74.09 C39 C40 74.09 TOP 39 38 74.09 C40 C39 74.09 BOT 38 40 74.09 C39 C41 74.09 TOP 40 38 74.09 C41 C39 74.09 BOT 38 41 88.08 C39 C42 88.08 TOP 41 38 88.08 C42 C39 88.08 BOT 38 42 74.61 C39 C43 74.61 TOP 42 38 74.61 C43 C39 74.61 BOT 38 43 76.68 C39 C44 76.68 TOP 43 38 76.68 C44 C39 76.68 BOT 38 44 84.97 C39 C45 84.97 TOP 44 38 84.97 C45 C39 84.97 BOT 38 45 77.72 C39 C46 77.72 TOP 45 38 77.72 C46 C39 77.72 BOT 38 46 86.53 C39 C47 86.53 TOP 46 38 86.53 C47 C39 86.53 BOT 38 47 76.68 C39 C48 76.68 TOP 47 38 76.68 C48 C39 76.68 BOT 38 48 75.65 C39 C49 75.65 TOP 48 38 75.65 C49 C39 75.65 BOT 38 49 77.20 C39 C50 77.20 TOP 49 38 77.20 C50 C39 77.20 BOT 39 40 82.90 C40 C41 82.90 TOP 40 39 82.90 C41 C40 82.90 BOT 39 41 77.72 C40 C42 77.72 TOP 41 39 77.72 C42 C40 77.72 BOT 39 42 79.27 C40 C43 79.27 TOP 42 39 79.27 C43 C40 79.27 BOT 39 43 76.17 C40 C44 76.17 TOP 43 39 76.17 C44 C40 76.17 BOT 39 44 75.13 C40 C45 75.13 TOP 44 39 75.13 C45 C40 75.13 BOT 39 45 78.76 C40 C46 78.76 TOP 45 39 78.76 C46 C40 78.76 BOT 39 46 78.24 C40 C47 78.24 TOP 46 39 78.24 C47 C40 78.24 BOT 39 47 84.97 C40 C48 84.97 TOP 47 39 84.97 C48 C40 84.97 BOT 39 48 72.02 C40 C49 72.02 TOP 48 39 72.02 C49 C40 72.02 BOT 39 49 82.90 C40 C50 82.90 TOP 49 39 82.90 C50 C40 82.90 BOT 40 41 77.20 C41 C42 77.20 TOP 41 40 77.20 C42 C41 77.20 BOT 40 42 79.27 C41 C43 79.27 TOP 42 40 79.27 C43 C41 79.27 BOT 40 43 76.68 C41 C44 76.68 TOP 43 40 76.68 C44 C41 76.68 BOT 40 44 74.09 C41 C45 74.09 TOP 44 40 74.09 C45 C41 74.09 BOT 40 45 78.24 C41 C46 78.24 TOP 45 40 78.24 C46 C41 78.24 BOT 40 46 75.65 C41 C47 75.65 TOP 46 40 75.65 C47 C41 75.65 BOT 40 47 83.94 C41 C48 83.94 TOP 47 40 83.94 C48 C41 83.94 BOT 40 48 73.58 C41 C49 73.58 TOP 48 40 73.58 C49 C41 73.58 BOT 40 49 83.42 C41 C50 83.42 TOP 49 40 83.42 C50 C41 83.42 BOT 41 42 77.72 C42 C43 77.72 TOP 42 41 77.72 C43 C42 77.72 BOT 41 43 75.65 C42 C44 75.65 TOP 43 41 75.65 C44 C42 75.65 BOT 41 44 90.67 C42 C45 90.67 TOP 44 41 90.67 C45 C42 90.67 BOT 41 45 79.79 C42 C46 79.79 TOP 45 41 79.79 C46 C42 79.79 BOT 41 46 89.12 C42 C47 89.12 TOP 46 41 89.12 C47 C42 89.12 BOT 41 47 82.90 C42 C48 82.90 TOP 47 41 82.90 C48 C42 82.90 BOT 41 48 74.09 C42 C49 74.09 TOP 48 41 74.09 C49 C42 74.09 BOT 41 49 81.87 C42 C50 81.87 TOP 49 41 81.87 C50 C42 81.87 BOT 42 43 72.54 C43 C44 72.54 TOP 43 42 72.54 C44 C43 72.54 BOT 42 44 73.58 C43 C45 73.58 TOP 44 42 73.58 C45 C43 73.58 BOT 42 45 79.27 C43 C46 79.27 TOP 45 42 79.27 C46 C43 79.27 BOT 42 46 76.17 C43 C47 76.17 TOP 46 42 76.17 C47 C43 76.17 BOT 42 47 83.42 C43 C48 83.42 TOP 47 42 83.42 C48 C43 83.42 BOT 42 48 71.50 C43 C49 71.50 TOP 48 42 71.50 C49 C43 71.50 BOT 42 49 84.97 C43 C50 84.97 TOP 49 42 84.97 C50 C43 84.97 BOT 43 44 74.09 C44 C45 74.09 TOP 44 43 74.09 C45 C44 74.09 BOT 43 45 74.09 C44 C46 74.09 TOP 45 43 74.09 C46 C44 74.09 BOT 43 46 76.17 C44 C47 76.17 TOP 46 43 76.17 C47 C44 76.17 BOT 43 47 76.68 C44 C48 76.68 TOP 47 43 76.68 C48 C44 76.68 BOT 43 48 87.56 C44 C49 87.56 TOP 48 43 87.56 C49 C44 87.56 BOT 43 49 78.24 C44 C50 78.24 TOP 49 43 78.24 C50 C44 78.24 BOT 44 45 76.68 C45 C46 76.68 TOP 45 44 76.68 C46 C45 76.68 BOT 44 46 87.56 C45 C47 87.56 TOP 46 44 87.56 C47 C45 87.56 BOT 44 47 77.20 C45 C48 77.20 TOP 47 44 77.20 C48 C45 77.20 BOT 44 48 70.98 C45 C49 70.98 TOP 48 44 70.98 C49 C45 70.98 BOT 44 49 77.20 C45 C50 77.20 TOP 49 44 77.20 C50 C45 77.20 BOT 45 46 78.76 C46 C47 78.76 TOP 46 45 78.76 C47 C46 78.76 BOT 45 47 81.87 C46 C48 81.87 TOP 47 45 81.87 C48 C46 81.87 BOT 45 48 73.06 C46 C49 73.06 TOP 48 45 73.06 C49 C46 73.06 BOT 45 49 83.42 C46 C50 83.42 TOP 49 45 83.42 C50 C46 83.42 BOT 46 47 81.35 C47 C48 81.35 TOP 47 46 81.35 C48 C47 81.35 BOT 46 48 75.65 C47 C49 75.65 TOP 48 46 75.65 C49 C47 75.65 BOT 46 49 81.35 C47 C50 81.35 TOP 49 46 81.35 C50 C47 81.35 BOT 47 48 74.09 C48 C49 74.09 TOP 48 47 74.09 C49 C48 74.09 BOT 47 49 90.16 C48 C50 90.16 TOP 49 47 90.16 C50 C48 90.16 BOT 48 49 75.13 C49 C50 75.13 TOP 49 48 75.13 C50 C49 75.13 AVG 0 C1 * 80.65 AVG 1 C2 * 78.13 AVG 2 C3 * 81.94 AVG 3 C4 * 82.84 AVG 4 C5 * 80.38 AVG 5 C6 * 77.24 AVG 6 C7 * 78.55 AVG 7 C8 * 81.01 AVG 8 C9 * 63.67 AVG 9 C10 * 80.74 AVG 10 C11 * 79.04 AVG 11 C12 * 78.12 AVG 12 C13 * 81.36 AVG 13 C14 * 76.91 AVG 14 C15 * 83.21 AVG 15 C16 * 81.02 AVG 16 C17 * 80.14 AVG 17 C18 * 80.34 AVG 18 C19 * 80.49 AVG 19 C20 * 79.44 AVG 20 C21 * 78.55 AVG 21 C22 * 79.63 AVG 22 C23 * 82.36 AVG 23 C24 * 81.02 AVG 24 C25 * 81.57 AVG 25 C26 * 76.95 AVG 26 C27 * 78.86 AVG 27 C28 * 80.77 AVG 28 C29 * 81.67 AVG 29 C30 * 78.75 AVG 30 C31 * 80.49 AVG 31 C32 * 78.31 AVG 32 C33 * 79.18 AVG 33 C34 * 81.53 AVG 34 C35 * 80.03 AVG 35 C36 * 80.82 AVG 36 C37 * 81.80 AVG 37 C38 * 76.46 AVG 38 C39 * 78.35 AVG 39 C40 * 79.00 AVG 40 C41 * 78.85 AVG 41 C42 * 80.80 AVG 42 C43 * 77.66 AVG 43 C44 * 78.45 AVG 44 C45 * 77.80 AVG 45 C46 * 78.76 AVG 46 C47 * 80.19 AVG 47 C48 * 82.47 AVG 48 C49 * 76.32 AVG 49 C50 * 82.31 TOT TOT * 79.50 CLUSTAL W (1.83) multiple sequence alignment C1 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C2 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGATGAG C3 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C4 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C5 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C6 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGATGAG C7 ATGGCAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C8 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C9 ATGGAAAACAGATGGCAGGTACTGATAGTGTGGCAAGTAGACAGACAGAA C10 ATGGAAAACAGATGGCAGGTGCTGATTGTGTGGCAGATAGACAGGATGAA C11 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGATGAG C12 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGATGAG C13 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGATGAG C14 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C15 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C16 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C17 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGATGAG C18 ATGGAAAACAGATGGCAGGCAATGATTGTGTGGCAAGTAGACAGGATGAG C19 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGATGAG C20 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C21 ATGGCAAGCAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C22 ATGGAAAACAGATGGCAGGTGCTGGTTGTGCGGCAGGTAGACAGGATGAA C23 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C24 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGATGAG C25 ATGGAAAACAAATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGATGAG C26 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C27 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGATGAA C28 ATGGAAAACAGATGGCAGGTGCTGATTGTGTGGCAGGTAGACAGGATGAG C29 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C30 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGATGAG C31 ATGGAAAACAGATGGCAGGTGCTGATTGTGTGGCAAGTAGACAGGATGAA C32 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGATGAG C33 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C34 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C35 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGATGAG C36 ATGGAAAACAGATGGCAGGTGCTGATTGTGTGGCAGGTAGACAGGATGAG C37 ATGGAAAACAGATGGCAGGTGCTGATTGTGTGGCAGGTAGACAGGATGAG C38 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGATGAA C39 ATGGAAAACAGATGGCAGGTGCTGATTGTGTGGCAGGTAGACAGGATGAA C40 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C41 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C42 ATGGAAAACAGATGGCAGGTGCTGATTGTGTGGCAGGTAGACAGGATGAA C43 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C44 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGATGAG C45 ATGGAAAACAGATGGCAGGTGCTGATTGTGTGGCAGGTAGACAGGATGAA C46 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C47 ATGGAAAACAGATGGCAGGTGCTGATTGTGTGGCAGGTAGACAGGATGAG C48 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG C49 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAGGTAGACAGGATGAG C50 ATGGAAAACAGATGGCAGGTGATGATTGTGTGGCAAGTAGACAGGATGAG ****.**.**.******** ..**.*:*** ****..*******..:**. C1 GATTAAAACATGGAACAGTTTAGTAAAACACCATAAGTATATTTCAAGGA C2 GATTAGAACATGGAACAGTTTAGTAAAACATCATATGTATGTCTCAAAGA C3 GATTAGAGCATGGAAAAGTTTAGTAAAACACCATATGTATATCTCAAGGA C4 GATTAGAACATGGAACAGTTTAGTAAAACACCATATGTATGTCTCAAAGA C5 GATTAGAACATGGAAAAGTTTAGTGAAACACCATAAGTATATTTCAAAGA C6 GATTAGAACATGGAACAGTTTAGTAAAACATCATATGTATGTCTCAAAGA C7 GATTAGAAAATGGAACAGTTTAGTAAAACACCATATATATATTTCAAGAA C8 GATTAGAACATGGAAAAGTTTAGTAAAACACCATATGTATGTTTCAAAGA C9 AGTGAAAGTGTGGAACAGCCTGGTGAAATACCATAAGTACAGGTCTAGGA C10 GATTAGAACATGGAATAGTCTAGTAAAGCATCATATGTATATTTCAAGGA C11 GATTAATACATGGAAAAGTTTAGTAAAATACCATATGAATGTTTCAAAGA C12 GATCAGAACATGGAATAGTTTAGTAAAACATCATATGTATGTCTCAAAGA C13 GATTAGAACATGGAACAGTTTAGTAAAACATCATATGTATGTCTCAAAGC C14 GATTAGAACATGGCACAGTCTAGTAAAACACCATAAATATATTTCAGGAA C15 GATTAGAACATGGAAAAGTTTAGTTAAACACCATATGTATATTTCAGGGA C16 GATTAGCACATGGAAAAGTTTAGTAAAACATCATATGCATATTTCAAAGG C17 GATTAGGACATGGAACAGTTTAGTAAAACATCATATGTATATCTCAGGGG C18 GATTAGAACATGGAAAAGTTTAGTAAAACACCATATGTATATTTCAGGGA C19 GATTAGAACATGGAACAGTTTAGTAAAATATCACATGTATAGATCTAGGA C20 GATTAATACATGGAAAAGTTTAGTAAAATACCATATTCATGTGTCAAAGA C21 GATTAATACATGGAAAAGTCTAGTAAAATACCATATGCATATTTCAAGGA C22 GATTAGAACATGGAACAGCTTAGTAAAGCACCATATGTATATTTCGAGGA C23 GATTAGGGCATGGAAAAGCTTAGTAAAACACCATATGCATATTTCAAAGA C24 GATTAGAACATGGAACAGTTTAGTAAAACATCATATGTATGTCTCAAAGA C25 GATTAGAACATGGAAAAGTTTAGTAAAACACCATATGTATATTTCAAAAA C26 GATTCAAGCATGGCACAGTTTAGTAAAACACCATATGTATATTTCAAAGA C27 GATTAGAACATGGAATAGTTTAGTAAAACACCATATGTATGTTTCAAGGA C28 GATCAGAACATGGAATAGTTTAGTAAAACACCATATGTATGTTTCAAAGA C29 GATTAGAACATGGAAAAGTTTAGTAAAACATCATATGTATATCTCAAGAA C30 GATTAGAACATGGAACAGTTTAGTAAAACATCACATGTATATATCAAAGA C31 AATTAGAACATGGAATAGTTTAGTAAAGCACCACATGTATGTTTCAAAGA C32 GATTAGGACATGGAACAGTTTAGTAAAACATCATATATATATCTCAAAGA C33 GATTAACACATGGAAAAGTTTAGTAAAGTACCATATGCATATTTCAAAGA C34 GATTAGAGCATGGAAAAGTGTAGTAAAATATCATATGCATATTTCAAAGA C35 GATTAGAACATGGAACAGTTTAGTAAAACACCATATGTATATCTCAAAGG C36 GATTAGAACATGGAATAGTTTAGTAAAACATCATATGTATATTTCAAAGA C37 GATCAGAACATGGAATAGTCTAGTAAAACACCATATGTATATTTCAAAGA C38 GATTAACACATGGAAAAGTTTAGTAAAATACCATATGCATGTTTCAAAGA C39 GATTAGAACCTGGAATAGTTTAGTAAAACATCATATGTATGTTTCAAAGA C40 GATTAGAGCATGGAATAGTTTAGTGAAACACCATATGTATATTTCAGGAA C41 GATTAGAACATGGAAAAGTTTAGTAAAACATCATATGCATGTTTCAGGGA C42 GATCAGAACATGGAATAGCTTAGTAAAGCACCATATGTATGTTTCAAGGA C43 GATTAGAACATGCAAAAGGTTAGTAAAACACCATATGTATGTTTCAGGGA C44 GATTAGAACATGGAACAGTTTAGTAAAACATCATATGTATGTCTCAAAGA C45 GATCAGAACATGGAATAGTTTAGTAAAGCACCATATGTATGTTTCAAGGA C46 GATTAGTACATGGAAAAGTTTAGTAAAATATCACATACATATTTCAAAGA C47 GATTAGAACATGGAATAGTTTAGTAAAGCACCATATGTATATTTCAAAGA C48 GATTAGAGCATGGAAAAGTTTAGTAAAACACCATATGTATATTTCAAGGA C49 GATTAAAACATGGCACAGTTTAGTAAAACATCATATGTATGTCTCAAAGA C50 GATTAGAACATGGAAAAGTTTAGTAAAACACCATATGTATATCTCAAAGA ..* .. . ** .* ** *.** **. * ** *: * . ** ... C1 AAGCTAAGGACTGGTCTTATAAACATCACTATGAAAGCAGTAATCCAAGA C2 AAGCTAAAAATTGGTCTTATAGACATCATTATGAAAGCCAACATCCAAAG C3 AAGCTAAGGGATGGGTTTATAGACATCACTATGAAAGTACTCATCCAAGA C4 AAGCTAAAGGATGGTTTTATAGACATCACTATGAAAGCCATCATCCAAAA C5 AAACTAAGAACTGGGTTTATAGACATCACTATGACAGCCCTCATCCAAGA C6 AAGCTAAAAAGTGGTATTATAGACATCATTATGAAAGCCAGCATCCAAAG C7 AAGCAAAGGGATGGGTTTATAAACATCATTATGAAAGTACTAATCCAAAA C8 AAGCTAAGGGATGGGCCTATAGACATCACTATGAAAGCACTCATCCAAGA C9 AGGCCAAGGAATGGCATTACAGACATCATTATGAATCTAGAAATCCAAGA C10 GAGCTAATGGATGGTTTTACAGACATCATTATGAAAGCAGACATCCAAAA C11 AAGCCAAAAGATGGATGTATAGACATCACTATGACAGCAATCATCCAAAA C12 AAGCTAAAGATTGGTGTTATAGACATCATTATGAAAGCCAGAATCCAAAG C13 AAGCTAAAGGTTGGTTTTATAGACATCACTATGAAAGCAGGCATCCAAAA C14 AAACTAAAGGATGGGTTTATAAACATCACTATGAAAGCAGTAATCCAAGA C15 AAGCTAAAGGATGGTTTTATAGACATCACTATGAAAGCACTAATCCAAGA C16 AAGCTAAAGGATGGTTCTATAGACATCATTATGAAAGCACTCATCCAAGG C17 AAGCTAAAGGTTGGGGCTATAGACATCACTTTGAAAGCAGGCATCCAAAA C18 AAGCTAAGGGATGGGTTTATAAACATCACTATGATAGCACTCATCCAAAA C19 AAGCTAAGGAGTGGTTTTATAGACATCACTTTGAAAGTAGGCATCCAAAA C20 AAGCTAAGGAATGGTTGTATAGACATCACTATGACAGCCCTCATCCAAAA C21 AAACTAAAAATTGGGTTTATAGACATCACTATGAAAGCACTAATCCAAGA C22 GAGCTAGTGGATGGTTCTACAGACATCATTATGAAAGCAGACACCCAAAA C23 AAGCTAAGAAATGGGTGTATAGACATCACTATGAAAACACTCATCCAAAA C24 AAGCTCAAGGTTGGTTTTATAGACATCACTATGAAAGTAGGCATCCAAGA C25 AAGCTAAGCAATGGGTTTATAAACATCACTATGAAAGCACTAATCCAAGG C26 AAGCTAAGGGATGGGCTTATAGACATCACTATGAAAGCAACCACCCAAGA C27 GAGCTAATGGATGGTTTTACAGGCATCATTATGAAAGCAGACACCCAAAA C28 GAGCTAAAGGATGGTTCTACAGACATCACTATGAAAGCAGACATCCAAAA C29 AAGCTAAGGGATGGTTTTATAGACATCACTATGAAAGCACTCATCCAAGA C30 AAGCTAAAAAGTGGGTTTATAGACATCATTATGAAAACCAGCATCCAAAG C31 GAGCTAGTGGATGGTATTATAGACATCATTATGAAAGCAGGCATCCAAAA C32 AGGCTAAAAAGTGGGTTTATAGACATCATTATAACAGCCAGCATCCAAAG C33 AAGCCAAAGGATGGTTTTATAGACATCACTATGAAAGCAGGCATCCAAGA C34 AGGCTAAGGGATGGTTTTATAGACATCACTATGAGAGTACTCATCCAAAA C35 AAGCTAAAGGCTGGTTTTATAGACATCACTATGAAAGTGGGCATCCAAAA C36 GAGCTAGTAGATGGGTCTACAGACATCATTATGAAAGTAGAAATCCAAGA C37 GAGCTAAAGGGTGGTTTTACAGACATCATTATGAAAGCAGACATCCAAAA C38 AAGCCAAAAGATGGTCTTATAAGCATCACTTTGAAAGCAACAATCCAAGA C39 GAGCTATTGGATGGTGTTACAGACATCATTATGATAGCAGACATCCAAAA C40 AAGCTAGGAAATGGGTTTATAAACATCACTATGAGACCAATAATCCAAGA C41 AAGCTAAGAAATGGTTGTATAAACATCACTATGAAAGCATTAATCCAAGA C42 GAGCGAATGGATGGTTCTACAGACATCACTATGAAAGCAGACATCCAAAA C43 AAGCTAGGGGATGGTTTTATAAACATCACTATGGAAGCACTCATCCAAAA C44 AAGCTAAAAAATGGGTCTATAGACATCATTATGAAAGCCAGAATCCAAAA C45 GAGCTAATGGATGGTTTTACAGACATCATTATGAAAACAGACATCCAAGA C46 GAGCTCAAGGATGGTTGTATAGACATCACTATGACTGTTTCAACCCAAAA C47 AAGCTAGTGGATGGTTTTACAGACATCATTATGAAAGCAGACATCCAAGA C48 AAGCTAAGAGATGGTTTTATAGACATCACTATGAAAGTACTCATCCAAGA C49 AAGCTAAAAATTGGTCTTATAGACATCATTATGAAAGCCAGAATCCAAAG C50 AAGCTGGGAAATGGTTTTATAGACACCATTATGAAAGTACTCATCCAAAA ...* . *** ** *..** ** *:*.. : .* ****.. C1 ATAAGTTCAGAAGTACACATCCCACTAGGGGATGCTAAATTGGTAGTAAC C2 GTAAGTTCAGAAGTACATATCCCAATAGGAGAAGCTAGATTAGTAATAAG C3 ATAAGTTCAGAAGTTCACATCCCACTAGGGGATGGGAAATTGGTAATAAC C4 GTAAGTTCAGAAGTACACATCCCACTAGGGGATAGTAGATTGGTAATAAT C5 ATAAGTTCAGAAGTACATATCCCACTAGGGGAAAATAAATTGGTAATAAC C6 ATAAGCTCAGAAGTACACATCCCACTAGGAGAGGCTAGATTAGTAATAAA C7 ATAAGTTCAGAAGTACACATCCCACTAGGGGATGCTAAATTGGTAATAAA C8 ATAAGTTCAGAAGTACACATCCCACTAGGGGATGCTAAATTAGTAGTAAC C9 ATCAGTTCAAGTGTATATATTCCAACAGGGCCGGCTCATATAGTAGTGAC C10 GTAAGTTCAGAAGTACACATCCCATTAGGGGAAGCTAGATTAGTAATAAC C11 ATAAGCTCAGAAGTACACATCCCACTAGGATGTGCTGAATTAGTAATAAC C12 GTAAGTTCAGAAGTACATATCCCACTAGGAGAGGCTAAATTAGTAATAAA C13 GTAAGTTCAGAAGTACACATCCCACTAGGGGACGCTAGATTAGTAATAAG C14 ATAAGTTCAGAAGTACACATCCCACTAGAGGAAGCTAGATTGGTGGTAAC C15 ACAAGTTCAGAAGTACACATCCCACTAGGGGAAGCTAAATTGGTAATAAC C16 ATAAGTTCAGAAGTACACATCCCACTAGGGGAGGCTAAATTGGTCATAAT C17 GTAAGTTCAGAAGTGCACATCCCACTAGGGGATGCGAGATTAGTGGTAAG C18 ATAGGTTCAGAAGTACACATCCCACTAGGGGATGCTAAATTGGTAATAAC C19 GTAAGTTCAGAAGTACACATCCCACTAGGGGATGCTAGATTAGTAGTAAA C20 ATAAGTTCAGAAGTACACATCCCGCTAGGGGACGCTAGATTAGTAGTAAC C21 ATAAGTTCAGAAGTGTACATCCCACTAGGGGACGCTAAATTAGTAGTGAC C22 GTAAGTTCAGAAGTACACATCCCATTAGGAGATGCCAGGTTAGTAATAAA C23 ATAAGTTCAGAAGTACACATTCCACTAGAGGATGCTAGATTAGTAATAAC C24 GTAAGTTCAGAAGTACACATCCCACTAGGAGATGCTAGATTAATAGTAAG C25 ATAAGTTCAGAAGTACACATCCCACTAGGGGATGCTAAATTAGTAGTGAC C26 ATAAGTTCAGAAGTACGCATCCCAGTAGGGGATGCTACATTAGTAATAAC C27 GTAAGCTCAGAAGTACACATCCCAGTAGGAGAGGCTAGATTAGTAATAAA C28 ATAAGTTCAGAAGTACACATCCCATTAGGGGATGCTAAATTAGTAATAAA C29 ATAAGTTCAGAAGTACACATCCCACTAGGGGAGGCTAGATTAGTAGTAAC C30 GTGAGTTCAGAAGTACATATCCCACTAGGAGAGGCTAGATTAGTAATAAG C31 ATAAGTTCAGAAGTACACATTCCATTAGGGGAAGCTAGATTGGTAATAGC C32 GTAAGTTCAGAAGTACATATTCCACTAGGAGAGGCTAAAATAGTAATAAT C33 ATAAGTTCAGAAGTACACATCCCACTAAAGAAAGCTGTAATAGTAATAAC C34 ATAAGTTCAGAAGTACACATCCCATTAGGGGACGCAAAATTGGTAATAAT C35 GTAAGTTCAGAAGTACACATCCCACTAGGAGAAGCTAAAATAGTAGTAAG C36 ATAAGTTCAGAAGTACACATACCATTAGGGGAGGCTAGATTGGTAATAAA C37 GTAAGCTCAGAAGTACACATACCATTAGGGGAGGCTAGATTAGTAATAAT C38 GTAAGTTCAGAAGTGCACATCCCACTAGAGAAAGCTATCTTAGTAATAAC C39 GTAAGTTCAGAAGTACACATCCCATTAGGAGAGGCTAGATTAATAATAAA C40 ATAAGTTCAGAAGTACACATCCCACTAGGGGATAATAAATTGGTAATAAC C41 AAAAGTTCAGAAGTACACATTCCACTAGGGGATGCTCGTTTAGTAATAAC C42 ATAAGTTCAGAAGTGCACATCCCATTAGGGGATGCGAGATTGGTAATAAA C43 ATAAGTTCAGAAGTACATATCCAACTAGGAGATGCTAAATTGGTAGTAAC C44 GTAAGTTCAGAAGTACATATCCCACTAGGAGAGGCTGAATTAGTAATAAT C45 GTGAGTTCAGAAGTACATATACCATTAGGGGAAGCTAGATTAGTAATAAC C46 ATAAGTTCAGAGGTACACATCCCACTAGGAGACGCTAGACTGGTAGTAAG C47 ATAAGCTCAGAAGTACACATCCCATTAGAGGATGCAAGATTAATAATAAA C48 ATAAGTTCAGAAGTACACATTCCACTAGGGGATGCAAAATTGGTAATACT C49 GTAAGTTCAGAAGTACATATCCCAATAGGAGAGGCTAGATTAGTGATAAG C50 ATAAGTTCAGAAGTACACATCCCGCTAGGGGATGCTAAATTGGTAATAAC . .* ***.. ** . ** *.. *... . *..* .*. C1 AACATATTGGGGTCTGCATACAGGAGAAAAAGACTGGCATTTGGGACAGG C2 AACATATTGGGGTCTGCAGACAGGAGAAAAGGACTGGCACTTGGGTCATG C3 AACATATTGGGGTCTACATACAGGAGAAAGAGACTGGCATTTGGGTCAGG C4 AACATATTGGGGTCTGCATACAGGAGAAAGAGACTGGCATTTGGGTCAGG C5 AACATATTGGGGTCTGCATACAGGAGAAAGAGACTGGCATTTGGGTCAGG C6 AACATATTGGGGTCTGCAGACAGGAGAAAAGGACTGGCAATTGGGTCATG C7 AACATATTGGGGGTTACATACAGGAGAAAGGGACTGGCATTTGGGTCATG C8 AACATATTGGGGTCTGCATACAGGAGAAAGAGAATGGCATCTGGGTCAGG C9 CACATATTGGGGATTGATGCCAGGAGAAAGAGATGAACATATGGGACATG C10 AACATATTGGGGTTTGCAGACAGGAGAAAGAGAATGGCATTTGGGTCATG C11 AACATATTGGGGTCTAAATACAGGAGAAAGAAAATGGCATTTGGGCCAGG C12 AACATATTGGGGTCTGCAGACAGGAGAAAGGGACTGGCAATTGGGTCATG C13 AACATATTGGGGTCTGCATACAGGAGAAAAAGATTGGCACTTGGGTCATG C14 AACATATTGGGGTCTGCATACAGGAGAAAAAGACTGGCAGTTAGGTCATG C15 AACATATTGGGGTCTGCATACAGGAGAAAGAGATTGGCATTTGGGTCAGG C16 AACATATTGGGGTCTGCTTACAGGAGAAAGAGACTGGCATTTGGGTCAAG C17 AACATATTGGGGGCTGCAGCCAGGAGAAAAAGACTGGCAATTGGGTCATG C18 AACATATTGGGGTCTGCATACAGGAGAAAGAGACTGGCACTTGGGCCAGG C19 AACATATTGGGGCCTGCATACAGGAGAAAGAGAATGGCACTTGGGTCATG C20 AACCTATTGGGGTCTGCATACAGGAGAAAGAGACTGGCATTTGGGTCAGG C21 AACATATTGGGGTCTGCATACAGGAGAAAGAGACTGGCACTTGGGTCAGG C22 AACATATTGGGGTCCGCTAACAGGAGAAAGAGCTTGGCATTTGGGTCACG C23 AACATATTGGGGTCTGCAAACAGGAGAAAGAGACTGGCATTTGGGTCAGG C24 AACATATTGGGGTCTGCATACAGGAGAAAAGGACTGGCAATTGGGTCATG C25 AACTTATTGGGGTCTGCATACAGGAGAAAGAGACTGGCATTTGGGTCATG C26 AACATATTGGGGTCTGCAGACAGGAGAAAGAGATTGGCATTTGGGTCGGG C27 AACATATTGGGGGTTGCAAACAGGAGAAAGAGATTGGCATTTGGGTCATG C28 AACATATTGGGGGTTGCAGACAGGAGAAAGAGAATGGCATTTGGGTCACG C29 AACATATTGGGGTCTGCATACAGGAGAAAGAGAATGGCATTTGGGTCAGG C30 AACATATTGGGGTTTGCAGACAGGAGAAAAGGACTGGCACTTGGGTCATG C31 AACATATTGGGGTTTGCAAACAGGGGAAAGAGATTGGCACTTGGGTCATG C32 AACATATTGGGGTCTGCAGACAGGAGAAAAAGACTGGCAATTGGGTCACG C33 AACATACTGGGGGCTGCATACAGGAGAAAGAGATTGGCATCTAGGTCAGG C34 AACATATTGGGGTCTACATACTGGAGAAAGAGATTGGCATTTGGGTCAGG C35 AACATATTGGGGTCTACATACAGGAGAAAAAGAGTGGCACTTGGGTCATG C36 AACATATTGGGGTTTGCATACAGGAGAAAGGGATTGGCAATTGGGTCATG C37 AACATATTGGAGTTTGCAGACAGGAGAAAGAGATTGGCATTTGGGTCATG C38 AACATACTGGGGACTGCATCCAGGAGAAAGAGATTGGCATTTGGGTCAGG C39 AACATATTGGGGGTTACAAACAGGAGAAAGAGATTGGCATTTGGGTCATG C40 AACATATTGGGGTCTGCATACAGGAGAAAGAGATTGGCATTTGGGTCAAG C41 AACATATTGGGGTCTGCATACAGGAGAAAGAGACTGGCATTTGGGCCAGG C42 AACATATTGGGGGTTGCAAACAGGAGAAAGGGCTTGGCATTTGGGTCATG C43 AACATATTGGGGCTTACATTCAGGAGAGAGAGACTGGCATTTGGGTCAGG C44 AACATATTGGGGTCTGCAGACAGGAGAAAAGGAATGGCATTTGGGTCATG C45 AACATATTGGGGTCTGCTACCAGGAGAAAAAGAGTGGCATTTGGGTCATG C46 AACATATTGGGGTCTACATACAGGAGAAAGAGAATGGCATCTGGGTCAGG C47 AACATATTGGGGTTTGCAACCAGGAGAAAAAGATTGGCAGTTGGGTCATG C48 AACATATTGGGGTCTACATACAGGAGAAAGAGATTGGCATTTGGGTCAGG C49 AACATATTGGGGTCTGCAGACAGGAGAAAAGGACTGGCAATTGGGTCATG C50 AACATATTGGGGTCTGCATACAGGGGAAAGAGACTGGCATTTAGGTCAGG .** ** ***.* ..: *:**.**.*.... ..** *.** *. * C1 GAGTCTCCATAGAATGGAGGATAAGAAGATATAGCACACAAGTAGACCCT C2 GAGTCGCCATAGAATGGAGGCAAAGAAACTATAGCACACAAATAGATCCT C3 GAGTCTCCATAGAATGGAGGAAGAAGAGCTATAGCACACAAGTAGACCCT C4 GAGTTTCCATAGAATGGAGGAAAAGGAAATATAGCACACAAGTAGACCCT C5 GAGTCTCCATAGAATGGAGGAGAGGAAGATATAGCACACAAGTAGACCCT C6 GAGTCTCCATAGAATGGAGACAGAGAAACTATAGCACACAAATAGATCCT C7 GAACCTCCATAGAATGGAGGAAAGAGAGATACAACACACAAGTAGACCCT C8 GAGTCTCCATAGAATGGAGAAAAAAGAGATATAACACACAAGTAGACCCT C9 GGGTTAGTATAGAATGGCAGTACAAGGAGTATACAACACAGATTGATCCT C10 GAGTCTCCATAGAATGGAGATTAAGAAGATATAAAACACAAGTAGACCCT C11 GAGTCTCCATAGAATGGAGGTTGAAAAGATACAGAACACAAATAGACCCT C12 GAGTCTCCATAGAGTGGAGGCAGAAAAATTATAGCACACAAATAGACCCT C13 GGGTCTCCATAGAATGGAGGCTAAGAAGATATAGCACACAAATAGATCCT C14 GAGTCTCCATAGAATGGAGGAAAAGGACATATATAACACAAGTAGACCCT C15 GAGTCTCCATAGAATGGAGGAAGAAGAGATATAGCACACAAGTAGACCCT C16 GAGTCTCCATAGAATGGAGGAAAAGGAGATATAGCACACAAGTAGACCCC C17 GGGTCTCTATAGAATGGAGGCAGAGAAAATATAGCACACAAATAGATCCT C18 GAGTCTCCATAGAATGGAGAAGAAAGAGATATAGCACACAAGTAGAACCT C19 GGGTCTCCATAGAATGGAGGCAGAAAAGATATAGCACACAAATAGATCCT C20 GAGCCTCCATAGAATGGAGGAAAAGGAAATATAGAACACAAGTAGACCCT C21 GAGTCTCCATAGAATGGAGAAAAGGGAGATATAACACACAAGTAGACCCT C22 GAGTCTCCATAGAATGGAGATTGAGAAGATATAGCACACAAGTAGACCCT C23 GAGTCTCCATAGAATGGAGAAAAAAGAGATATAGCACACAAGTAGACCCT C24 GGGTCTCCATAGAATGGAGGCAGAGAAAATACAGCACACAAGTAGATCCT C25 GAGTCTCTATAGAATGGAGAGAAAGGAGATACAGCACACAAGTAGACCCT C26 GAGTCTCCGTAGAATGGAGAAAGAGGAAATATAGAACACAAGTAGACCCC C27 GAGTCTCCATAGAATGGAGATTGGGCAGATATAACACACAAATAGAACCT C28 GAACCTCCATAGAATGGATATTGGGAGGATATAGCACACAAGTAGACCCT C29 GAGTCTCCATAGAATGGAGAAAAAAGAGATATAGCACACAAGTAGACCCT C30 GAGTCTCCATAGAATGGAGGCAGGGAAATTATAACACACAAATAGATCCT C31 GAGTCTCCATAGAATGGAGACTGAGAAGATATAGAACACAAGTAGACCCT C32 GAGTCTCCATAGAATGGAGGCAGAAAAGTTATAGCACACAAATAGATCCT C33 GAGTCTCCGTAGAGTGGAGGCAGGGGAAATATAGTACACAAATAGACCCT C34 GAGTCTCCATAGAGTGGAGGAAAAGGAGATATAGCACACAAGTAGACCCT C35 GGGTCTCCATAGAATGGAGGCTAAAAAGATATAGCACACAAATAGATCCT C36 GAGTCTCCATAGAATGGAGATTGAGAAGATATAGCACACAAGTAGACCCT C37 GAGTCTCCATAGAATGGAGATTGAGGAGATATAGCACACAAATAGACCCT C38 GAGTCTCCATAGAATGGAGGCAGGGGAGGTATAGGACACAAATAGACCCT C39 GAGTCTCCATAGAATGGAGATTGAAAAACTATAACACACAAATAGAACCT C40 GAGTCTCCATGGAATGGAGGAAAGGAAAATATAGCACACAAGTAGACCCT C41 GGGTCTCCATAGAATGGAGGAAAGAGAGATATAGAACACAAGTAACCCCT C42 GAGTCTCCATAGAATGGAGATTGAGAAGATATAGCACACAAGTAGACCCT C43 GAGTCTCCATAGAATGGAGGACAAGGAGATATAGCACCCACATAGACCCT C44 GAGTCTCCATAGAATGGAGGCAGAGAACATATAGAACACAAATAGATCCT C45 GAGTCTCCATAGAATGGAGATTGAGAAGATATAGCACACAGGTAGACCCT C46 GAGTCTCCATAGAATGGAGAAAAAGGAAATATAGCACACAAGTAGACCCT C47 GAGTCTCCATAGAATGGAGATTGAGAAGATATAGCACACAAGTAGACCCT C48 GAGTCTCCATAGAATGGAGGAAAAAGAGATATAGCACACAAGTAGACCCT C49 GAGTCGCCATAGAATGGAGGCAAAGAAACTATTGCACACAACTAGATCCT C50 GAGTCTCCATAGAATGGAGGATTAACAGATATAGCACACAAGTAGACCCC *.. .*.**.***. . .. . ** : **.** *:.. ** C1 GACCTAGCAGACCATCTAATTCATCTGTATTACTTTGATTGTTTTTCAGA C2 GACCTAGCAGACCGACTGATTCATATACAATATTTTGAATGTTTTTCAGA C3 AATCTAGCAGACCAACTAATGCACCTGTACTACTTTGACTGTTTTTCAGA C4 GGCCTAGCAGACCAATTAATTCATGTGTATTACTTTGATTGTTTTTCAGA C5 GGCCTAGCAGACCAACTAATTCATATGTATTACTTTGATTGTTTTTCAGA C6 GAAGTAGCAGACCGACTGATTCATCTACAATATTTTGACTGTTTTGCAGA C7 GACCTAGCAGACAAACTAATCCATTTGCATCATTTTAATTGTTTTTCAGA C8 GACTTAGCAGACAAACTAATTCACCTGCATTATTTTGATTGTTTTTCAGA C9 GAAACAGCAGACAGGATGATACATCTGCACTATTTTGCCTGTTTTACAGA C10 GGCCTGGCAGACCAGCTAATTCATATGCATTATTTTGATTGTTTTGCAGA C11 AGTCTGGCAGACCAACTAATTCATATGCATTACTTTGATTGTTTTTCAGA C12 GACCTAGCAGACCGACTGATTCATCTACAATATTTTGACTGTTTTTCAGA C13 GACATGGCAGACCAACTGATTCATCTGTATTATTTTAACTGTTTTTCAGA C14 GACCAAGCAGACCGACTAATTCACCTGCATTACTTTGATTGTTTTTCAGA C15 GACCTAGCAGACCAACTAATTCATCTGCATTACTTTGATTGTTTTTCAGA C16 AATCTAGCAGATCAACTAATTCATCTGTATTATTTTAATTGTTTTTCAGA C17 GACCTGGCAGACCAGCTAATTCATCTGCATTATTTTGACTGTTTTTCAGA C18 GGCCTAGCAGACCAACTAATTCATCTGTATTATTTTGATTGTTTTTCAGA C19 GACCTAGCAGACCAACTGATTCACCTGCATTATTTTGACTGTTTTTCAGA C20 GACCTAGCAGACCAACTAATTCATATATATTATTTTGATTGTTTTTCAGA C21 GACCTAGCAGACCAACTAATTCATCTGTATTATTTTGATTGTTTTTCAGA C22 GGCCTGGCAGATCAGCTAATTCATATGCATTATTTTGATTGTTTTGCAGA C23 GACCTAGCAGACAAACTAATTCATCTATATTACTTTGATTGTTTTTCAGA C24 GACCTAGCAGACCATCTCATTCATCTGCATTATTTTGACTGTTTTTCAGA C25 GACCTAGCAGACCAACTAATTCATCTGTATTATTTTGATTGTTTTTCAGA C26 GACATAGCAGACCATCTAATTCATCTGTATTATTTTGATTGTTTTTCAGA C27 GGCCTGGCAGATCAGCTAATTCATATGTATTATTTTGATTGTTTTGCAGA C28 GGCTTGGCAGATCAACTAATTCATATGCACTATTTTGATTGTTTTGCAGA C29 GGCCTAGCAGACAAACTAATCCATCTGTATTATTTTGATTGTTTTTCAGA C30 GACCTAGCAGACCAACTGATTCATCTAAATTATTTTGACTGTTTTTCAGA C31 GAATTGGCAGACCAACTAATTCACTTGCATTATTTTGATTGTTTTACAGA C32 GACCTAGCAGACCAACTGATTCATCTACAATATTTTGAATGTTTTTCAGA C33 GGCCTAGCAGACCAACTGATTCATCAATATTATTTTGATTGTTTTTCAGA C34 AATCTAGCAGACCAACTGATTCACCTGTATTACTTTGATTGTTTTACAGA C35 GATCTGGCAGACCAACTAATTCATCTGCATTATTTTGACTGTTTTTCAGA C36 GGCCTGGCAGACCAGCTAATTCATATGCATTATTTTGATTGTTTTGCAGA C37 GGCCTGGCAGACCAGCTAATTCATATGCATTATTTTGATTGTTTTGCAGA C38 GGCCTGGCAGACCAACTGATCCATCTTTATTATTTTGATTGTTTTACAGA C39 GGCCTGGCAGACCAGCTAATTCATATGTATTATTTTGATTGTTTTGCAGA C40 GACCTAGCAGACCAACTAATTCATATGTATTATTTTGATTGTTTTTCAGA C41 GACATGGCAGACCAATTAATTCATATGTATTATTTTGATTGTTTTTCAGA C42 GGCCTGGCAGACCAACTAATTCATATGCATTATTTTGATTGTTTTGCAGA C43 GCACTAGCAGACCAACTAATTCATATATTTTACTTTGATTGTTTTTCAGA C44 GACCTAGCAGACCGACTGATTCATCTACAATATTTTGACTGTTTTTCAGA C45 GGCCTGGCAGACCAGCTAATTCATATGCATTATTTTGATTGTTTTGCAGA C46 GGCCTGGCAGATCAACTAATTCATATATATTATTTTGATTGTTTTGCAGA C47 GGCCTGGCAGATCAGCTAATTCATATGCATTATTTTGATTGTTTTGCAGA C48 AACCTAGCAGACCAACTGATTCATCTGTATTATTTTGATTGTTTTGCAGA C49 GACCTAGCAGACCGACTGATTCATATACAATATTTTGAATGTTTTTCAGA C50 GGCTTAGCAGACCAACTAATTCATCTGTATTATTTTGATTGTTTTTCAGA . .***** .. * ** ** : : * ***.. ****** **** C1 CTCTGCTATAAGAAATGCCATATTAGGAAATATAGTTAGCCCTAGGTGTG C2 ATCTGCCATAAGGAGAGCCATATTAGGACAAGTAGTTAGGCATAGGTGTG C3 ATCTGCTATAAGAAATGCCATATTAGGACATAGAGTTAGCCCTAGGTGTG C4 ATCTGCTATAAGAAATGCCATATTAGGACATGTAGTTAGACCTAGGTGTG C5 ATCTGCTATAAGAAATGCCTTATTAGGACGTATAGTTAGTCCTAGGTGTG C6 CTCTGCCATAAGGAGAGCCATACTAGGACAAGTAGTTAGATATAAGTGTG C7 ATCTGCTATAAGGAATGCCATATTAGGACATAGAGTTAGTCCTAGGTGTG C8 CTCTGCTATAAGACATGCCATATTAGGACGTTTAGTTAGGCCTAAGTGTG C9 ATCAGCAATCAGGAAAGCAATCCTAGGGCAGAGAGTACTGACCAAGTGTG C10 ATCTGCCATAAGACAAGCCATATTAGGACACATAGTTATTCCTAGGTGTG C11 ATCTGCCATAAGGAAAGCCATATTAGGAGATATAGTTAGCCCTAGGTGTG C12 CTCTGCCATAAGGAAAGCCATATTAGGACAAGTAGTTAGAAGTAGGTGTG C13 ATCTGCCATAAGGAAAGCCATATTAGGACAAGTAGTTAACCCTATTTGTG C14 ATCTGCTATAAGAAATGCCATATTAGGACAGAGAGTTAGTCCTAGATGTG C15 ATCTGCTATAAGAAGTGCCATATTAGGACATATAGTTAGTCCTAGGTGTG C16 ATCTGCTATAAGAAATGCCATATTAGGACGTATAGTTAGTCCTAGTTGTG C17 CTCTGCCATAAGGAAAGCCATATTAGGACAAGTAGTTAGTCCTAGGTGTG C18 ATCTGCTATAAGAAATGCCCTTTTAGGACGAGTAGTTAGCCCTAGGTGTG C19 ATCTGCCATAAGGAAAGCCATATTAGGACAAGTAGTTAGCCCTAGGTGTG C20 ATCTGCTATAAGAAATGCCTTATTAGGACGAATAGTTAGCCCTAGGTGTG C21 ATCTGCCATAAGAAAAGCCATATTAGGACATATAGTCAGACCTAGGTGTG C22 CTCTGCCATAAGAAAAGCCATATTAGGACAAGTAGTTATTCATAGGTGTG C23 ATCTGCTATAAGAAATGCCATATTAGGACATAGAGTTAGTCCTAGGTGTG C24 CTCTGCCATAAGGAGAGCACTATTAGGACAAATAGTTATACCTAAGTGTG C25 ATCTGCTATAAGAAAGGCCCTACTAGGACATATAGTTAGACCTAGGTGTG C26 GTCTGCTATAAGAAATGCCATATTAGGACATGTAGTTAACCCTAAGTGTG C27 CTCTGCCATAAGGAAAGCCATATTAGGACACATAGTTATTCCTAGGTGTG C28 ATCTGCCATAAGAAAAGCCATATTAGGAGATAGAGTTAGCCCTAGGTGTG C29 CTCTGCTATAAGACATGCCTTGTTAGGACGTATAGTTAGCCCTAGGTGTG C30 CTCTGCCATAAGGAAAGCCATATTAGGACAAGTAGTTAGACGTAGGTGTG C31 CACTGCCATAAGGAAAGCCTTATTAGGACATAGAGTTAGCCCTAGGTGTG C32 CTCTGCCATAAGGAAAGCCATATTAGGACAAGTAGTTAGACGTAGGTGTG C33 ATCTGCTATAAGAAGTGCCATATTAGGACAAATAGTTAGACATAGGTGTG C34 ATCTGCTATAAGAAATGCCATCTTAGGAAATAGAGTTAGTCCTAGGTGTG C35 CTCTGCCATAAGGAAAGCCATATTAGGGCAAGTAGTTAGCCCTAGGTGTG C36 CTCTGCCATAAGAAAAGCCATATTAGGACAAGTAGTTAGTCCTAGGTGTG C37 CTCTGCCATAAGAAGAGCCATATTAGGACACATAGTTATTCCTAGGTGTG C38 CACTGCCATAAGAGGTGCCATATTAGGACACATAGTTAGCCCTAGGTGTG C39 CTCTGCCATAAGAAAAGCCATATTAGGACACGTAGTTATTCCTAGGTGTG C40 TTCTGCTATAAGAAATGCCCTATTAGGACATAGAGTTAGTCCTAGGTGTG C41 CTCTGCTATAAGAAATGCCATATTAGGATATAGAGTTAGCCCTAGGTGTG C42 ATCTGCCATAAGACAAGCCATATTAGGAAATAGAGTTAGCCCTAGGTGTG C43 AGCTGCTATAAGAAAGGCCATAGTAGGACATAGAGTTAGTCCTAGGTGTG C44 CTCTGCCATAAGGAGAACCATATTAGGACAAGTAGTTAGATATAGGTGTG C45 CTCTGCCATAAGACAAGCCATATTAGGACACATAGTTTTTCCTAGGTGTG C46 ATCTGCCATAAGAAAAGCCATATTAGGACACATAGTTACTCCTAGGTGTA C47 CTCTGCCATAAGAAAAGCCATACTAGGACACATAGTTATTCATAGGTGTG C48 ATCGGCTATAAGAAATGCCATCTTAGGAACTAGAGTTAGTCCTAGGTGTG C49 ATCTGCCATAAGGAGAGCCATATTAGGACAAGTAGTTAGGCATAGGTGTG C50 ATCTGCTGTAAGGAAAGCCATATTAGGACATAGAGTTAGACCTAGGTGTG * ** .*.**. . .*. * ****. *** * ***. C1 AATATCAAGCAGGACAT---AATAAGGTAGGATCTCTACAGTACTTGGCC C2 AATATCCGTCAGGACAT---AACAAGGTAGGATCCCTACAATATTTGGCA C3 AATATCAAGCAGGACAT---AACAAGGTAGGATCTTTACAGTACTTGGCA C4 AATATCAAGCAGGACAT---AACAAGGTAGGATCTTTACAGTACTTGGCA C5 AATCTCAAGCAGGACAT---AGCAAGGTAGGATCCCTACAGTACTTGGCA C6 AATATCCATCAGGACAT---AACAAGGTAGGATCTCTACAATACTTGGCA C7 AATATCAAGCAGGACAT---AATAAGGTAGGGTCTCTACAATACTTGGCA C8 AATATCAAGCAGGACAT---AACAAGGTAGGGTCTCTACAGTACTTGGCA C9 AATACTCTGCAGGACAT---AGTCAGGTAGGGACACTACAACTACTAGCT C10 ACTATCAAGCAGGACAT---AATAAGGTAGGATCTTTACAATACTTGGCA C11 ACTATCAAGCAGGACAT---AATAAGGTAGGATCTCTACAATATCTGGCA C12 AGTATCCATCAGGACAT---ACCAAGGTAGGATCCCTACAATATTTGGCA C13 ATTATCAAGCAGGACAT---AACAAGGTAGGATCTCTACAATATTTAGCA C14 AATATCAAGCAGGACAT---AGCAAAGTAGGATCTCTACAGTACTTGGCA C15 AATATCGAGCAGGACAT---AATAAGGTAGGATCTCTACAGTACTTGGCA C16 AATATCCAGCAGGACAT---AACAAGGTAGGATCTCTACAGTACTTGGCA C17 AATATCAAGCAGGACAT---AACAAGGTAGGATCGCTACAATATTTGGCA C18 ATTATCTAGCAGGACAT---AACAAGGTAGGATCCCTACAGTACTTGGCA C19 ACTATCAAGCAGGACAC---AATAAGGTAGGATCGCTACAATATTTGGCA C20 ATTATCAAGCAGGACAC---AACAAGGTAGGATCTCTACAGTACTTGGCA C21 AATATCAAGCAGGACAT---AGCAAGGTAGGATCTTTACAGTACTTGGCA C22 ACTATCAAGCAGGACAT---AATAAGGTAGGATCTCTACAATACTTGGCA C23 AATATCAAGCAGGACAT---AACAAGGTAGGATCCCTACAGTACTTGGCA C24 AATATCAAGCAGGGCAT---AACAAGGTAGGATCTTTACAGTATTTGGCA C25 ATTATCAAGCAGGACAT---AACAAGGTAGGATCTCTACAGTACTTGGCA C26 AATATCATACAGGACAT---GACAAAGTAGGGTCTCTACAGTACTTGGCA C27 ACTATCAAGCAGGACATAATAATAAGGTAGGATCTCTACAATATTTGGCC C28 ACTATCAAGCAGGACAT---AACAAGGTAGGATCTCTACAATACTTGGCA C29 ATTATCAAGCAGGACAT---AACAAGGTAGGATCTCTACAGTACTTGGCA C30 AATACCCATCAGGACAT---AATAAGGTAGGATCCCTACAATATCTGGCA C31 AGTATCAAGCAGGACAT---AATAAGGTAGGATCTCTACAATACCTGGCA C32 AATATCCATCAGGACAT---AACAAGGTAGGATCCCTACAATATTTGGCA C33 AATATCAAGCAGGACAT---AACAAGGTAGGATCTCTACAGTACTTGGCA C34 AATATCAAGCAGGACAT---AACAAGGTAGGATCTCTACAGTACTTGGCA C35 ACTATCAAACAGGACAT---AACAAGGTAGGATCTCTACAATATTTAGCA C36 ATTATCAAGCAGGACAT---AATAAGGTAGGATCTCTACAATACTTGGCA C37 ACTATCAAGCAGGACAT---AATAAGGTAGGATCTCTACAATACTTGGCA C38 AATATTCAGCAGGACAT---AGTAAGGTAGGATCTCTACAGTACTTGGCA C39 ATTATCAAGCAGGACAT---AATAAGGTAGGATCTCTACAATACCTGGCA C40 AATATCAAGCAGGACAT---AGAAAGGTAGGGTCTCTACAGTACTTGGCA C41 AATATCAAGCAGGACAT---AGTAAGGTAGGATCCCTACAATACTTGGCA C42 ACTATCAAGCAGGACAT---AACAAGGTAGGATCTCTACAATACTTGGCA C43 AATATCAAGCAGGACAT---AACCAGGTAGGATCTCTACAGTACTTGGCA C44 AATATCCATCAGGACAT---AACAAGGTAGGATCCCTACAGTATTTGGCA C45 ACTACCAAGCAGGACAT---AAGCAGGTAGGATCTTTACAATACCTGGCA C46 TTTATCCAGCAGGACAT---AACAAGGTAGGATCTTTGCAATATTTGGCA C47 AATATCAAGCAGGACAT---AATAAGGTAGGATCTCTACAGTACTTGGCA C48 AATATCAAGCAGGACAT---AATAAGGTAGGATCTTTACAGTACTTGGCA C49 AATATCCGTCAGGACAC---AACAAGGTAGGATCTCTACAATATTTGGCA C50 AATATCAAGCAGGACAT---AACAAGGTAGGGTCTCTACAGTATTTGGCA