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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
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>XM_041576494.1 PREDICTED: Xenopus laevis cilia and flagella associated protein 70 L homeolog (cfap70.L), transcript variant X2, mRNA TAGAGAAGAGAGGGAAGAGTTTGTAAGAGCTACAAATTAGTATAATAAATCTGCAGTGGGGATTGGGAAA CTGGCCTCTTATTAAAGTAACAGAAATAAAAGAGAAAGTTACATTTTGTTAAACACATAATTATTGAAGC CTTATGTGACAGCATGTGTAGTTTCCGGTGTGTCATTCCATACATACATATAAGCCCATTCAGTCGTACA GTGAGCTGTATTGCAGGGGGACAACATGACTTGTAGCCGACACCAGTCAGCACTGGATCTGGCCTTTCCC ACTGGCAGAGCCGTTGCTATGGAGACAGCACTCGCAGCAGTGAAGGCTCGCCCTCCCGCACCCGTGCAGA TCACCGTCCTGAGAGCACTCAATGTGAAGGGAATAAAAGGTGATTTACTAATGAGCTACATCAGGTCGGA GTTTAATAATTCTCTCCTCGGAGACTCGCCAAAGCTTGAAGCCTCCCCAGACAGACCCACTGAGTTCAAT TTCACCTCTAGCTTTGACGTCACCCCCGATGGCCCCCACAGCTTGGATGATGTCGCTCACAAGCCAGTTG TATTAACTTTAATAGAAGTTTTGCCTAAGGAGAAGAAGCAGAAGGAGGAGAAGACTGTGGTCCTCGGACA GGCTGCTGTGGATCTGCTTCCTCTTCTGAAAGGTGAATGCAATTTCAAAGTCACCCTACCTCTCTACCCT GCGACTGGATCACCTCTAGAGGGCACACAAGTGGAGACAAAGCCAAGCCTAGAGGTGGCAGTTTGTGTCC CTGATCCTTTGCTTTCCGACGCACAAATAAATGATGGGAACATCCTCAGGGTGACAGTGGAATCTGTTTA TTGTGCCCCGGAGTCCTGGAATACTACAGGACCTGCGTACAATTATGTGATGAGCCTTCAGATGCCTCCT GCAGGAGAGCTCCCACATTGCCTTGTCTTTTCAAATGGAGCGTTAAAGGCTGGTGGAGAAGCAGATCCTG TTCCTCGTCCGAAAAAATGGTCCGTGACCGGCATGTCAGCAGCTGGTGCTCTGAACATCCCGGATTCCTT TATTCTTGGTGGTCCATATGAGGAGGAAAATGGGGAACTGAACCGAAAGGAGGACAAGGAATTCCGTGCT GATGCTGAGACTCTGAAGAAAAGGGTGACATGGGACACAGAGAGGAGGCGCTACCTCGATCCCTCTGCTT TGCTCAGCATACAGAAGCAGATTGCTGAGTGCCGCTACTGGCCAGTGGAGATAATGAGGACCCTTACCGT TGCACCTAACACAAAGGGAAAGCCTGGAAAAGTGGATAAAGGTGACGAAGATGGACAGATTTCCTTCCAC GGAGTTGCGTACATAAACATGGTTCCGCTTCTGTACCCCGGGGTTAAACATCTGCGAGGAGCATTCCGTA TCTCTCCCTATCAGGATGCTGAAGTGCTTGAAAAGACAAAATGCCAGTCCAGTGCCCTGCGAGATATTGC TCGACAAACCGGTTTGCAAAGTAGAGTCGGCTTTGCCCCGGCTGGAGTCAATTCTCCCCATGGCAAGCAG GCACCGAGCCGCATTGTGAGAGAAGATAAAGTCACCAAGGATAAAGACAACACCAGAAAGACCTCGGCCC CAGGGAAGCCATTAGACACAACATCGGAAGCAGAAACCATAGCGCCTGTCCCAGCTCAGACAGCGCCTCA GAATGTGGAAGGACAGCAATACACAGAGTCTGGCACTTATGTTGTCTTGGAACTGAGCCTGGAGAAGCCG CTGGTCCCTAAACGTCTGGCAGAAGAGATCGACCTAAGAGTAAGGGAACTTATACCCAGCCGGCCGCAGC TTCCCAGGCGCAATGCTGGAGCAGCCAAGGCAGTGATGGATTACCACAACCAGATCAGCAGCATCACCAA CTCCATCCTGGAGGAATATTGTGCACTGTTTGGGAAGAAGGCAACTGAGGAAGAGGAGTTGGACCAGCAG GCCTTGGAAGAGCAGAAGTGCCAGCTGAACTATGAGCTGAACTGTACTGGGAAATACTTTGCATTCAAGG AGCAGCTGAAGCATGCCGTGGTGAAGATTGTAAGAGAGAAGTATCTGAAAACAACAGCGTTTGAGGACCC AGAGCAGCTGCAGGCGTTCCTGAGTGAGCTGTATGTCTACTTGGTTGACCAGATGCACATCTCCCTGAAC AAGACGTTGTTTGATGACAGAGGGGAGTCAGCGCCACCTCCAATGACTGATACACAGCAGCTCCTGAGAT TCGCCAGGGAGGCAGAGATCACCGGCAACTTTCATCTGGCCAATACCTTTTATCAGGAGAGATTGGCTCG TGACCGTCAGTGCGTAGATCATTGGCTGGATTATGGCAGCTTCAACCTTCTGACCGACGATTACATCAAA GCCCAAGAGTGTTTCCACGAGGCGGTGGCTTTAAAGCGAGATCACTTGCCCAGCTTACTCCTGTGTGGGA CTGCCGCTGCCATGCTGGATCACTACAAAGACGCAGAGGTGTTTTTTGAAGATGCCACCTGCACAGATCC CACTAGCTCATTGGCTTGGACCATGTTAGGGTTGTTCTATGAAATGCAAGGCAATGACATACGGATGGAA ATGGCTTTCTCCGAGGCGGCCAGACTCCACCAGGCAACATTATCACTAGAGGGTCACATGGCTCTGTCAG GTGTTAAAACAGCAGGGGGCGCTAGCTCTAAATCAGCACCTGACAATGCCAGCGAGAAAGTTTCCAAAGG AGCGACTGAGGGGCCCCGTGAAAATGTTCCCACGTCCAGCCGAGCTGAATCACCATCAGTAAATATTTCC TTGGGGAGCCGTCCAGTCGACGAGAAGATCTCGCTCACAAGGCGCGTGTCAGTGTCCTCTCTCCGGAGCA AGTCCACCAAGGCAGCAACTCACAAAGAAGTAACAGCTGCCGTCAGTGTGGAACCAGAACCCCAGTCTCA AGCCGTCAGCATCTTCATGGAGGCCGCCCAGTTTCTAGCACAAGTCAATGCGTTGCAGTTTGTACAGAGA GCTCTTGCCCATGACTTGCTCAGCCCAGATGGAGGCCCAACCTGCAGGTACCACCTGATGTGCGCTCAGA TGCACCTTAAGAAGAAGGAGCTAGAAAAGGCCGAGCAGAATCTCCAGGAGGCTTCCCAGATCAACCACCA GAATCCGGATGTTTGGGCTCTCAAAGGACACATGAACTTCCTGATTGGTAGAAAGAATGAGGCCAGGGAC TGCTATGAGCACACACTCAGCCTGGTGATCGACGCCTCAGACACCCACCCTGTGTACCTGCGCCTTGGAT CCATCTACCTTGATGAAGAAAAGTATGAAAAAGCCAAGAACACATACCTGCTGGCTTGCAAACAGTCGCC AACGTGCCTGACCTGGTTGGGAGCAGGAATCGCTTGTTATCGGCTGGAGGAGATGGAAGAAGCAGAGGAC GCACTCTCAGAAGCAAACGCCTTGAACAACAACAATGCGGAGGTGTGGGGTTACCTGACTCTCGTCTGTC TGAAGACTGGGAGGCAGCTGGAGGCCGAGCAATCATACAAATACACAAGGAAGTTGAATCTACAGAATGA GGATTTACTCACAGAGATCCACACGTTACAGGAGGAGGTCGGCTTTGGAGACCCAGCCTTCTAATGACAG TTTTGGTGTGGCATCTCCGCGGCACCCGGTGTCAAAGTCACACAGATGAGCTGCCCGTGCTCTGCTGATG TATGTGGTCCCGGAAAGCTTCAGTTCCCTTCTTGGACTCAATGTCATAAACACCTGCTGCAAAAACTGGA ACCTTCTGTTTACTGTTCATTAATAATATTAATAAACAAATTCTTTCAAAAGAAA
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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