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-- Genomes --
Xenopus laevis J-strain 10.1 Genome
Xenopus laevis J-strain 9.2 Genome
Xenopus laevis J-strain 9.1 Genome
Xenopus laevis J-strain 7.1 Genome
Xenopus laevis J-strain 6.0 Genome
Xenopus laevis outbred 1.0 Genome
Xenopus tropicalis 10.0 Genome
Xenopus tropicalis 9.1 Genome
Xenopus tropicalis 9.0 Genome
Xenopus tropicalis 8.0 Genome
Xenopus tropicalis 7.1 Genome
Xenopus tropicalis 4.1 Genome
-- mRNA --
Xenopus laevis and tropicalis mRNA
Xenopus laevis and tropicalis mRNA plus EST Clusters
Xenopus laevis and tropicalis mRNA plus CDS
Xenopus laevis mRNA plus EST Clusters
Xenopus tropicalis mRNA plus EST Clusters
Xenopus laevis and tropicalis EST
-- Protein --
Xenopus laevis and tropicalis Protein
-->
Xenopus laevis Protein
Xenopus tropicalis protein
???blast.query???
>XM_031891361.1 PREDICTED: Xenopus tropicalis myosin-4-like (LOC101730386), mRNA CGGGCCTATATATCCAGCCGGTCCCACTGCCCCCACACTCACAGCATCCTCTGCTGGACTGAGGGTTCCT TTCTGGTTCGGGGGAGACAAGAGTGAGTAGCGGCATGGCGTCGGACGCAGAGATGTCGGTATTCGGGGTG GCGGCCCCGTTCCTGCGCAAGCCTGAGAAGGAGAGGCTGGAGGCGCAGAACAAGCCCTTCGATGCCAAGA ATTCCTGCTTTGTGCACGATGACAAGGAGCTGTATGTGAAGGGGACCGTCGTCTCCCGCGATGGCGGCAA AGTCACCGTCAATACCGTGGATGATAAGACGGTTACAGTCAGGGAAGACCAAGTTAACCCCCAGAACCCC CCCAAGTTCGATAAGATTGAGGACATGGCCATGCTGACCCACCTGAACGAGGCGTCGGTGCTGTACAACC TGAAAGAGCGCTACGCGGCCTGGATGATCTATACCTACTCCGGCCTCTTCTGCGTCACCGTCAACCCCTA CAAATGGCTGCCAGTGTACAACCCCGAGGTTGTCGCCGGTTACAGGGGCAAGAAGCGCCAAGAAGCTCCG CCCCACATCTTCTCCATCTCAGATAACGCCTATCAGTTCATGTCACAAGATCGTGAGAACCAGTCAATCC TGATCACCGGAGAATCCGGGGCCGGAAAGACTGTGAACACCAAGCGCGTCATCCAGTACTTTGCAACAAT TGCAGCTATTGGCGACAGCAAGAAGAAGGAATCAACCAACAGACTGCAGGGGACGCTGGAGGATCAAATC ATTCAGGCCAACCCCCTGCTCGAGGCCTTCGGTAACGCCAAGACGGTCAGAAATGACAACTCCTCTCGCT TTGGTAAATTCATCAGGATCCACTTTGGAACCACAGGAAAACTGGCTTCCGCTGATATTGAAACCTATCT CCTGGAGAAATCCAGAGTTACGTTCCAGCTCTCAGCAGAGAGGAGCTACCACATTTTCTACCAGATCCTG ACCAACAAGAAACCCGAGATCGTCGAGATGCTCCTTCTGACCACCAACCCGTACGACTATGCCTTCATCA GCCAGGGGGAGATTGCAGTGAAGAGTATCGATGACGAAGAGGAATTGATGGCTACGGATAGCGCCATAGA TATCCTGGGCTTCACTACTGAAGAAAAGATGGGGATATACAAGATGACGGGAGCAGTCATGCACAAGGGA AACATGAAATTTAAGCAGAAGCAGAGAGAGGAACAGGCTGAGCCCGATGGCACAGAAGTTGCTGACAAAA TCGGTTACTTGATGGGTCTGAACTCAGCCGACTTGTTGAAGGCCCTTTGCTACCCGAGGGTAAAGGTTGG AAATGAATTTGTCACGAAGGGGCAAACTGTCCAACAGGTGTACAATGCCATCGGTGCCCTCAGCAAGTCT GTTTATGAGAAGCTTTTCTTGTGGATGGTCGCTCGTATCAACCAACAGTTGGACACCAAATTGCCCCGAC AGTACTTCATTGGTGTGTTGGATATTGCTGGGTTTGAAATCTTTGATTTGAACAGCTTGGAGCAGCTCTG CATCAACTTCACCAATGAGAAGCTCCAACAGTTCTTCAACCACCACATGTTCGTGCTGGAACAGGAAGAG TACAAGAAGGAAGGCATCGATTGGGAGTTTATTGACTTCGGCATGGATCTGGCTGCCTGTATTGAGCTCA TTGAGAAGCCCATGGGCATTTTCTCCATCCTTGAAGAGGAGTGCATGTTCCCCAAGGCCACCGATACCTC CTTCAAGAACAAGCTGTACGACCAGCACTTGGGCAAGTGCAAGAACTTTGAGAAGCCAAAACCCGCCAAG GGCAAAGCTGAAGCTCATTTCTCTCTGGTGCACTACGCCGGTACCGTGGACTATAACATCTGCGGCTGGT TGGACAAGAACAAGGACCCACTGAATGAGACAGTTGTGGGGCTGTACCAGAAGTCTCCTGTTAAACTCCT GTCCTTCCTCTACTCCTCCTATTCCGGAGCAGATAGTGCTGGAGATGGTGCAAAGAGTGGAAAAAAGAAG AAAGGTTCATCTTTCCAGACTGTGTCTGCACTCTTCAGAGAAAACTTAAATAAGCTGATGACCAACCTGA GGAGCACTCACCCTCACTTTGTGCGTTGTCTGATTCCCAATGAGTCCAAGACTCCTGGGATCATGGAGAA TCATCTCATCATTCACCAACTGAGATGTAATGGCGTGCTGGAGGGTATCAGGATCTGCAGAAAGGGATTC CCAAGCAGAATCCTCTATGCAGACTTTAAGCAACGATACAAAATCCTAAATGCCAATGCGATCCCAGAGG GGCAATTTATCGACAGCAAGAAGGCATCTGAGAAACTGCTGACTTCTATTGATATTGATCACACTCAGTA CAGATTCGGACACACCAAGGTGTTCTTTAAAGCTGGCCTTCTGGGTGTCCTGGAAGAAATGCGAGATGAC AAGTTGGCAGAAATTATAACAAAGACTCAGGCCCTGTGCCGAGGATTCCTAATGAGGGTGGAATTCAAGA AGATGGTGGAGAGAAGAGACGCCATATATGTCATCCAGTATAACGTCAGGGCATTTATGAATGTCAAGCA CTGGCCTTGGATGAAGTTGTACTTCAAGATCAAGCCTCTTCTGAAGAGCGCAGAGACTGAGAAGGAGATG GCAAACATGAAAGAGGAGTTTGCGAAAACCAAGGAAGCTCTGACTAAGTCCGATGCAAGGAAGAAAGAAC TAGAAGAGAAGATGGTGGCTCTTCTGCAGGAAAAGAACGATCTACAACTGCAGTGTCAAAGTGAGTCTGA AAACTTAGCTGATGCAGAAGAGAGATGTGAAGGTCTCATCAAAAACAAAATTAATTTGGAGGCCAAGATT AAGGAGCTGACTGAGAGGCTGGAGGATGAGGAGGAAAGCAATGCTGAGCTAACAGCCAAGAAGAGAAAAC TGGAGGATGAATGCTCCGAGCTGAAGAAAGATATTGATGATCTGGAGTTGACCTTAGCTAAAGTGGAAAA GGAAAAGCATGCCACTGAAAACAAGGTTAAAAACCTCACTGAAGAAATGGCAGGTCTTGATGAGAACATC TCAAGGATCACCAAAGAGAAGAAAGCCCTGCAAGAGGCACATCAGCAAACACTGGATGACCTTCAGGCAG AAGAGGACAAAGTCAGTTCTCTCTCAAAGGCTAAAACTAAGTTGGAGCAACAAGTGGATGATCTGGAAGG TTCCCTGGAGCAAGAGAAGAAACTCCGTCTCGACCTTGAGAGAGCCAAGAGGAAGCTGGAAGGGGATCTG AAGTTGTCTCAGGAGACCATCATGGACCTTGAAAATGACAAACAGCAAACAGAGGAAAAATTAAAAAAAA AAGACTTTGAAATGAGTCAGCTTCAATCAAAGATTGAGGATGAGCAGACATTGGCATCCCAACTGCAGAA GAAGATCAAGGAACTCCAGGCCCGTATAGAGGAGGTTGAGGAGGAGATAGAAGCTGAGCGTGCCGCTCGT GCTAAAGTAGAGAAGCAAAGGTCTGATCTATCCAGGGAACTTGAGGAGATCAGTGAAAGGCTGGAAGAGG CTGGAGGTGCAACATCTGCCCAGATTGAGATGAACAAGAAACGGGAAGCTGAATTCCAGAAACTCAGGCG GGACCTGGAAGAGTCCACCCTTCAGCATGAAGCAACTTCCGCTGCTTTGCGCAAGAAGCACGCCGATAGC GTTGCCGAACTGGGGGAACAAATTGACAACCTGCAGAGAGTAAAACAGAAGCTAGAGAAAGAGAAGAGCG AACTAAAGATGGAGATTGACGACCTTGCAAGTAACTTAGAGAACGTCTCCAAGTCAAAGGCCAACATTGA AAAAGTGAGCCGTGTGCTTGAGGACCAACTCAGTGAGATAAAGTCAAGGGATGATGAGCACCAACGTATT ATTAATGACCTCACTGCGCAGAAGGCCAGGCTGCAGACTGAGACCGGTGAACAGTCCCGTCAGCTGGAAG AGAAGGAGTCTCTGATCTCCCAGTTGAGCAGAGCAAAGCAGGCCTTTACCCAGCAGACTGAGGAACTGAA GAGACAGCTGGAGGAGGAATCTAAAGCCAAAAATGCTCTGGCCCACGCCCTGCAGTCTTCGCGCCATGAC TGCGACTTACTCCGGGAGCAATTTGAAGAGGAACAGGAGGCAAAGGCTGAGCTTCAGCGCTCCTTGTCCA AGGCCAACACTGAAGTCTCCCAGTGGAGAACAAAATATGAGACAGACGCCATTCAGCGCACGGAGGAGCT GGAAGAGGCCAAGAAGAAACTTGCCCAGCGCCTGCAGGAAGCAGAGGAGCAGGTGGAGGCCGTGAACTCT AAATGTGCCTCCTTGGAGAAGACCAAACAGAGGCTCCAGGCGGAAGTAGAGGACCTGATGGTGGATGTGG AGAGAGCCAATAGCGCAGCTGCTGCTCTGGATAAGAAGCAGAGAAACTTTGATAAGGTACTTGTAGAATG GAAACAAAAGTACGAGGAAGGCCAGTCTGAGCTGGAAGCAGCCCAAAAAGAAGCCCGTTCCTTGAGCACT GAGATCTTCAAGATGAAGAATGCTTATGAGGAGGCCCTGGAACATCTGGAAACCATGAAACGGGAGAACA AGAACTTGCAGCAGGAGATCTCAGATCTGACTGAGCAAATGGGAGAGACAGTAAAAAATATACATGAGCT GGAGAAGGCCAAGAAGCAGGTGGAACAGGAGAAGGGAGACCTACAAGCGGCTCTGGAGGAGGCTGAGGGA TCTCTGGAGCACGAGGAAGCCAAGATCCTGCGTATCCAGCTGGAGCTGAACCAAGTGAAATCAGAGGTAG ACCGGAAGATTGCCGAGAAGGACGAAGAAATTGAGCAACTGAAGAGAAACACCCAGAGAGTCATAGACAC CATGCAGAGCACATTGGACTCGGAGATCAGAAGTAGAAACGACGCCCTGAGGCTGAAAAAGAAGATGGAA GGTGACTTGAATGAACTGGAAATCCAACTGGGTCACGCCAACCGCCAAGCAGGGGAGGCCCAGAAGCAGC TGAGGAACGTGCAGGCGCAGCTTAAGGACACACAGCTTCAGTTGGACGATGCAACCAGGGCCCAAGACGA TATGAAGGAGCAGTTGGCCGTGGTTGAACGCAGAAATAACCTGCAACAGGCTGAGATTGAGGAGATGCGG TCAGCTCTGGAACAGACAGAGAGGTCTCGCAAGGTGGCTGAGCAGGAACTTCTGGATGCAAGTGAACGTG TTCAGCTCTTGCACTCACAGAACACAAGTCTCCTAAACACCAAGAAGAAGCTAGAGAGTGACATCGTTCA GTTGCAGAACGAGGTCGAGGAGTCTGTTCAGGAAGCCCGGAATGCTGAGGAGAAAGCCAAAAAGGCCATC ACAGATGCTGCCATGATGGCAGAGGAGCTGAAGAAGGAGCAGGACACCAGTGCCCACTTAGAGAGGATGA AGAAGAATCTGGAACAGACCGTGAAGGACCTACAGCACCGCTTGGATGAAGCTGAGCAGCTGGCAATGAA GGGAGGCAAGAAGCAGCTCCAGAAACTGGAGTCTCGGGTGCGCGAGCTGGAGAATGAACTGGATGCCGAG CAGAAGCGCGGCTCCGAGGGCATCAAGGGAGTGCGCAAGTACGAGCGAAGAGTGAAGGAACTGACCTACC AGACCGAGGAGGACAGGAAGAATGTGCTGAGACTGCAGGACCTGGTGGACAAACTGCAGCTGAAGGTCAA GGCCTACAAGAGGCAGGCTGAGGAGTCGGAGGAGCAGGCCAATGCCTACCTGGCGCGCTTCAGGAAGGTG CAGCACGAGCTGGAGGAGTCCGAGGAGAGGGCCGACATTGCCGAGTCCCAGGTCAACAAGCTCCGAGCCA AGAGCCGGGACATTGGCAAGAAAGGAGAAAATGAGTAAATCCGGCCTGAGATACGGGTGCCAGGGATACG GGTGCCAGGGATACAGGTGCCTGGAAGGGGGCGCAAAATGCAGGTTTCCCCCTTAGATTTCCTTCCATCA CCTCCATATTGGGCTCTGTATGTTTGTACAATAAATGCACGGGAACTGGAA
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Automatically set to False for sequences longer than 4500 bytes
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BLAST time is limited to 30 seconds