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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_041565128.1 PREDICTED: Xenopus laevis ASXL transcriptional regulator 2 S homeolog (asxl2.S), transcript variant X4, mRNA ACATCATACTAACAGTTAAAAGGTGAACAACCCCTTTAAAGTACAGCTTTGATCTGTCACCCATGTGGTG ATGCTTGGCCCTTGTATAGATTATTTAGGGCCCCTAGGTTGATTTTTTTGTTGGGCTCTTGGCTACTAGC AAAAGCAGCAGGTTATTTGGAGCAACAGACTGAATATATCATGACACTTCCTTGTTCCTTATCTAGTATT GTCTGTATGTATGTCACTGCCATCTGGACTAACTGCCGCCTATGTGTACACTGTATGTATATATGTACTG TATGTACCTGTATATGGACCCTGTCTGCCAATACAAGGAAGTTCAGCTCCAGTATTGAAAAGGTAATATT CCAAATGGTTGATAGGTTCAGTAACCTGGCAACCAGAAAGCAGTTTAATACTTTTGCACATCTTTGTATC CTTGTGTTCACACTCCATTGTAGCACAGGTGCAAATGCCTGGATACGGCACAGTGAGACCCCCTATGTTA CTACAGCACCGGTGAACAAGGGACACTATCTCTGTTAGTATTTTTCTCCCTTCTTTTTTAGTGAATCACA TTTCAGTTTATGTGAAGAAAGAGCAGGAAACCTGAGGCTGGAGAGCTGGTTAGGTGCAATCTAGAACCCA GCTGAACCCTTGGCCTTGCCCAGCTCTGCACTCTACAGCCGATTCCTTGGCCTTGCCCAGCTCTGCATTC TACAGCCGAACCCTTGGCCTTACCCGGCTCTGCACTCTACAGCCGAACCCTTGGCCTTGCCCGGCTCTGC ACTCTACAGCCGAACCCTTGGCCTTGCCCGGCTCTGCACTCTACAGCCGAACCCTTGGCCTTGCCCGGCT CTGCACTCTACAGCCGATTCCTTGGCCTTGCCCAGCTCTGCACACTACAGCCGATTCCTTAGCCTTGCCC AGCTCTGCACTCTACAGCCGATTCCTTGGCCTTCCCAGCTCTGCACTCTACAGCCGATTCCTTGGCCTTG CCCAGCTCTGCACTCTACAGCCGATTCCTTGGCCTTCCCAGCTCTGCACTCTACAGCCGATTCCTTGGCC TTGCCCAGCTCTGCACTCTACAGCCGAACCCTTGGCCTTGCCCAGCTCTGCACTCTACAGATGGTTCTTT GGCCTTGCCCAGCTCTGCACTCTACAGCCGATTCCTTGGCCTTGCCCAGCTCTGCACTCTACAGCTGAAC CCTTGGCCTTGCCCTGCTCTGCACTCTACAGCAGATTCCTTGGCCTTGCCCAGCTCTGCACTCTACAGAT GTTTCCTTGGCCTTGCCCAGCTTTGCACTCTACAGCCGTTTCTTTGGCCTTGCCCAGCTCTGCACTCTAC AGCCGTTTCTTTGGCCTTGCCCAGCTCTGCACTCCACAGCCGAACCCTTGGCCTTGCCCAGCTCTGCAGT CTACATCCATGGGGCAGATATCATTGTGTTCTTTTGGGTTTGTCTCAGACACAAGAGAATGTAGTTCTAA GCAACTTCCCAGTGTGCATTCATTACATTATTTTCTGCACTGTTGGTTCTGACTCCTGAAATATTATAGC AAATTAAGACATATGCTTAGGCAGAAAGAAAACTGACACATTGTTTCAAGAGTCAGACCTGCAGGATAGA AAGCGACAGACAGATCCTGTTGCAATAACACTTGCATTTACACATAACTCCCAGTGAGAATGAATACATA TTGGGAAGTTGCTTAGAATTCGATTCTCTTTGTTTAATATTAGTATTTACATCCGCTCTAACCGTTTCCT TTGTTTTTGAGAAGCTCTGCCCCGCTGCATGCTCTCTGGGTTCTGCAGCACTATTTCATAGGCCCTGTTT TTTTGTTTTTTTTCTTTAGAATTAGCACTTTTAGGTCTCAGTGACATCACCTTTTTTTTCAAATGTACTG AAACAGGAAGTTCGATATGATCAACTACCCACTTCCTTATATGAGCAAAAGTATAGTGCGTTCCGCCACA GCGAGGATTCAACTGTCGGTTTCAAAAATCTATTTAAATTGAAGAAGGATAATTAATGTAAGCGCGGGGT TTGTTAATAATCCAACCAGCGAGCGAGCAGATCAGGGGGATCCGAATTGGAGTTCAATGTGACAAGGTTG TAACGGCCTTTAGAGTGAAGTACCATGCACAGAGACATAGAGCAGCGAGAAGGGGAACAGCAAAGAGTCG CATCTAGAATATCCCAGCCATCCTCTCCCCAATCAGGCTGTCCATCTCCCTCCATCCCTGCGGGGAAAGT CATCTCTCCATCCCAGAAGCACAGCAAGAAGGCCCTCAAACAGGCTCTGAAGCAGCAACAGCAGAGGAAG AAGCAGCAGCAGAGGGTGGGTATGCCAGTCCCTGCCAGCCAGCGCCTCCTGCTGACTACAGTGAAGACTG CAAGCAACGTGCCACCTGCTAAGCCCACCCCAACCCACACGTGGGAAGCAAAACAGACAGAAGTGCAAGC AAGTAGTGCCCCCATCTCTGCTCCATCCGGCACCTCTCTGGCATCTCTCCATGGACTGGGGAAGAAGCCA CTGCCCAGATCAGACAGGCTGCAAGCCAGACATATAAAAAGAACCAAATGTGCAGAGATCGACGTAGAGA CTCCAGACTCCATCTTGGTGAATACCAACCTACGGGCGCTGATAAACAAGCACACGTTCTCCCTCCTCCC CGGCGACTGTCAGCAACGGCTCCTCCTGCTTCTGCCTGAAGTGGACCGACCGACTGCTCCGGACGGCCTG ATGAAACTGAACAGTTCAGCCCTAAATAATGAGTTCTTTACCTCTGCATCTCAGAGCTGGAAGGAGCGCC TCTCAGAAGGGGAATTCACCCCAGAGATGCAGCTTCGGATTCGCCAGGAAATTGAGAAAGAGAAGAAGGT GGAGTCATGGAAGGAACGATTCTATGAGAGTTACTATGGGGAGAACTCTGGGCTAAACCCAGACGATTAC AGAGAGCTGATTGCAGAAACCAGTGATAATGTGACCAGAACCCACGTCTCCCCTCCAAAGGAACAGGGTA AGTCCGACCAGAGCCCCGATCTCCAGCCGACTGAAGCCAAGCTTGAGACCACAACCCAGAAGCAAATAAA TGAACGTGCCCCGATAAAGAAAGAAAATGAAGAAGTCATGGTTCATGTGAAGGCAGAATTACCAACAGCT GGTGATACAGTGCACCCCCCAGATATAACGGATACCAAAGAGAAAGTCGCTACCATTCCTGTGAAGGTGA CAGAGGGCACTGCAGAGGTTATAACCCCAGTTCCCAGCAAAGAGACTGTGCAATTAATAACCCCTAAGCC TGAGGAGATGGACTCAGAGAGCCCACCAGCACCGAGCCCACTAAACAGCCCAGTCCCTATACAAACTCCC AGTGCTCCTCCAGCCACCGCTGCGCTGTCTCAGGATTCTGCAGAGGAGGGGTCTACGGAGATGGCGGAGC TCGCGCTCGGCACAAGAGTCAAGAGGAAGTTGGATGTAGGCGCCGGGGATTCGGATCCGTCTGGGAAATT CATACGAATGTCGGAGCAGCAAGAAATCCAGCGGCCATTTCGTGACTTGTGCAGCCCCAGTACCAAAGGG ACAGCGCAGGCGTCGGAACAAAAAGTGCCCCCACTTAAGATCCCTGTCTCTTTGTTTTTCTCAAAGCCCT TTCCAAGCAACCGGGTCTCTTCCAGGCCCTATTTTCCGAGCACCGGTACCAGTCCCAGTAGAACAGGAGC AAGGACCCTGGCAGACATCAAAGCCAAAGCCCAGTTGGCTCGAGCCCAGAGAGCAGCAGCAGCAGCAGCA ACATCAGCCGGCCTCTCCGTTACTTCATCAGTCCCAGGGCCAGGACCTGGAGGAGGAGGAGGAGGAGCTG GGCCTGGGACAGGAGCGAGGAATCCAGCAGATGGCGCCAGTGAAACAGGACACAGGGCTGGAGTACTGGA CATGGGACGTACTGGAAGCTGGAGAGGTGAGAGGGGAAATCCAGCCCATTCATCAAGTAGCCAGAGTTCC AGGGAGACCCAGAACGCAGTGCAGGTATCACCTGACAGTGCAGCAAGAGCACAGCTACTGCAAAAACCCA GTCTACAACCCAGAAACCCAATAACAGGAGCCCGAACATCTCCAGCCTCCAACCGCCTCTTACCAGCCCA AAGCTGTGCCAGCATCCGAATGCCCAATCCGTTATCTGCTAATGCTGATAGGCTGGTAGCAATATCTGGC AATGCTGATAGGCTGGTAGCAATATCTGGTAGTGCAGCCATTGGGGTTGCAGACATAGTTCCATCAAGCA CAACCTGTCCATCACCACAGAATGTAAAAAGCAACCGGTCCAATGTTCCCAATGAAGTCAGACCTAGAAT TTCTTCGGGGACTCAGACAATCCCACCAAGGCCTGTCATGTCTCAGCCAGTGAGCTTTAACCCTTCTGCC CCAGCCAAAGATCAGGCACCCAGTCAGGCAGCAGCTCCAGTTGCAAGCACTCAGAGAGGACCTACAAAGA CGGGATCCAGCATACCCGCCAATAACCCTCTGGTAACCCAACTCCTGCAGGGCAAGAATGTCCCCATGGA GCAGATACTGCCCAGACCCCTCAACAAGGTAGAAATGAAGACTATTCCTCTAGGTTCAGCTCAGACAGAG AGGGGAACTAACACTGCTGGAGTTCATTTCCCTCCTGGCAGCAACATGGTAAGTGGAGAGGATTCAGTAA AACCCTCGCACATGGCTGTTCAACAGCTGGAAAGGTTTCTTATCCAAAATCGCCAGCTGCCCTCCAGTCA AAGGATCCTGCAGCTCTTCTCTGGAAGAGATCTGAGCAATATTAGCAGCAGCCAATCACAGAGCCAGGAA GCAGCCGGCAGTGCCGCCCAAGAGCAATCTCTGCAATCCCTGATCAGAAAAATTCAACAAGAGAAATCAT TGGTCGGCCCCAATCCAGCTGAACTGAGTGAGAACGTATCCGCCAGCCAAAGACTTGGCTTTGTGGGCAG GCGAACGTCTAAACCCGCCATGTCCGGGCACTACTTGCTAAACGTCGCTACGTATGGACGGGTTCCCGAG AGCTTCAGACGGACACAGACTGTAAGTCCTGAGCGGGGCATGAGCCTAAACGACCCTGAGAAGTGTCAAA CCATAGACGACGAATCAGAGTCCGTTACAGAGAGCGAAGAGGAAGAAAGCAAAAGTGAGATGAATCCAGA GGAATGTGAGGCTGCCCCCCAATACTCCTCAGCCTCACTCAGGTCTGCAAAACCCGAGGGCCCCATGTTT GATCTGAAAGAAACTGTCCAGGCATTATCAAGGGGGGACATTTATAACGAGTCCAACATAGCCAGAGACT TTATCCAAGCGGCACAGGCCAAGATGGTGAATGTATTGGGCATAAAGCTGAAAGGTGAGGCTTCTGAGCT GTTCAAGTCCCACCAGGGCTCCCAGCCGCCCCATTCTGATCACATGCACACGCCAATTGGATCCAGTTAC GGAGGCACAATCAATATCACCACTTCACCCGAGGGAATGCACGGACCCTCCGTCCCTACAGGGGCCCACG TCGTTCCAGCTAACGCCGACAATCTGGTCTCCTTCTCTGTAACTGTGACCACCATCCCATCAGGCCACAT TGTAAACTCAGGTGATCACGACCAACCCGTGTCTGTCCAGGCCTTCACCGATGAGCCCGGCGCGGACTCA GCTCCTTCCAAATGCTACTGTCGATTAAAAGCCATGATCATTTGTAAAGGCTGCGGAGCCTTCTGCCATG ACGATTGCATTGGGCCCTCGAAGCTCTGCGTCTCCTGTCTGGTGGTGCGGTGATCCATGGTTCCAATCTC ATTGGCTCTGCAGCGGAGAAGGAGGGTACTCTCATCAATCAGCAATGTTGACATGTTTGCACTTATGAAA TCCTGTATATAATATATATATATGTGTGTGTGTGTGAGTGAGGGGTCAGAATATGCCTTTTTTAGATTTT AAAGGATAAGTAAACCTTTAAAACAAGTGAA
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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