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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_041562943.1 PREDICTED: Xenopus laevis erythrocyte membrane protein band 4.1-like 2 L homeolog (epb41l2.L), transcript variant X9, mRNA ACCGCGTGTTACTAGCAGCAGCAGATTGTGCATCTGTGACGAACTGCTCCGTCCTTCATAGTCACTCCCA GGCGGCTGCGTGCCACGTCATTGCGCTTATATACTCTGTAGTCGCGACCGAACTCTGGGAGAGCGGGACT ACTGTGTCTGAGGTACTAGGGGCATTTAAACGGTGATGCGGGACTTTTAAAAAGCGATCTGGGACCGCGG CTGCTGTGTTATGAAAATCGGGATTGTCCCACGTGTGTGACAGTTGGGAGAATAACCTTTGAACATGACA ACGGAAGCAACATCTGGCATTGAATTAAATGATTCAAGACAGCCTGAGGATCAAGAAGAGCAGCCTGCGA CTTCTAGTGAAGAGAGTCAACAGGTACAAGAGAAAACAGATCAAGAAATCAAGAACAACTCTGGTGAAAC AGAGCAAGTAAAAGACCCGCCTTCTCCTTCTACAAGTTCTGGGCAGCAGAGCCCTGAAAAACAACAAAAG GAGATATCTGAAAGCAAAGGGATTTCTAGATTTTTGCCCCCATGGCTTAAAAAGCAAAAAACCCATAGTC AGGATGATAGCAATGAAGGTGGAGACAAAAATATCCTCAGTGATAAAAGTAATGCTAAAGAGGCTTCAGG CCCCTCACAGGTAAAAGAGGAAGTGGATATTACACATGAAAAGTCATCAGAAGATCAGTCTGTGGAGCTA AAGGCAGACAATAAGGAGGAGAAGCAGCCCATCGGTGCAGAGATTCAGCCTACCAAGGAAGATAACATAG AAGACATACAAAAGACAGCCGATGAAAAGGACAAACAAGAAAGTGAAAAGGAAGTTAGGGATGCCCAATT TACAGAAGGAAAGGAGATGTCCCATAAAACTACCAAGAAGATGAAAACAGTATTATGCAAAGTTACGTTG TTGGATGGGACTGAATATAGCTGTGATATAGAGAAACGTGCAAAAGGTCAGGCATTATTTGCGAAGGTCT GTGAACATCTTAATTTACTGGAAACTGACTATTTTGGATTGATCTATCAAGTTTCTGCTAACCAGAGAAA CTGGCTGGATTCCACAAAAGAAATCAAGAGGCAAATCAGACGGACCCCGTGGCTATTTGTCTTCAGTGTC AAATTCTATCCTCCTGAGCCGTCACAATTATCAGAAGATATAACAAGATACTTGCTGTGCCTTCAAATCC GCCAGGATATATCCTCTGGGCGTCTACCATGTTCATTTGCGACTCACACAATCCTCGGTTCATACACACT TCAAGCTGAGGTGGGAGATTATGAAGCAAGTGAGCACAGCGATGACTACATCAGCGGTTTTCAATTTGCT CCTAATCAGACAAAGGAAATGGAAGATAAGATTGTGCAACTGCATAAAACACACAGGGGCCTGACTCCAG CTGAAGCCGAACTTCAGTTTTTAGAGAATGCCAAAAAACTCTCTATGTATGGTGTAGATCTACACTATGC AAAGGATTCTGAAGGTGTAGATATCATGCTTGGCGTATGTTCAAATGGATTGCTGATTTACAAGGACAGA CTGCGGATTAACCGATTTGCTTGGCCTAAAATCTTGAAAATTTCATACAAAAGAAGCAACTTTTACATAA AAGTCAGGCCAGGGGAGATGGAACAGTTTGAGAGTACCATCGGTTTTAAGCTGCCAAACCATCGAGCTGC AAAGAGGTTATGGAAAGTTTGCGTTGAGCACCACACCTTCTTTAGGCTCTCCGCTCCTGCACAAACTCCG AAAGCCAAATTCTTGACTTTGGGTTCCAAGTTTCGATACAGCGGCCGCACCCAGGCACAGACAAGAGAGG CCAGCATAAAGATAGACAGGCCAGCCCCATTTTTTGAACGAACATCTAGTAAACGCGTGTCCAGAAGTCT TGATGGAGCACCCATTGGTGGCACAACAGACCAAAGTTTACTTAAAGACTATACTTATGCTAAAGCTGAC GGTGCTGTTGACGGTATTGTCAAGGCACAAGAAAAGGCCATTCAAGAAAGTGCTGAGGTTTCTCCTGCTA AAAGTGCACAGCTCTTCCTTCCAAAAGATGCAAAGAAGCTTATACCCAGAGCAAGAGGAATGCGCACTGG CCTGAGTGATGCTCTTGAGAATTCAGATGAGATTCAGAACATAGTAGAAGAGACAAAACTGTCAGATTCT GATACTAGTGAACCATCCGTTGCAGAAGATGGCAAAGTAGGCATTAACAGGGAAGCTGAATGTTCCAGTG ATGCTGTCGAGCAAAGCACAGAAGTAAAAGAAGTAGAGAAGAAAGATACAGGGTCTTTGTCTTCGTCAGA TGGAAATAGTGACAGTGAGAATGAAGAAGCTGAGTATCAGACTGAAAGCCAGTTATCTGAAGATGTGCTA AAGGAAGAACTTGAAGAAAGCCCTGAAGAAGAAGTGCAAGAAGAGAAGACAAAGACAGAAGAGGTCATCC AGGTCATCGAACCAGATAGTAGCACTGTGGCGTCTGTCGCTCATTTAGAAGAGATAACCGAAAATGTGAC CAAAGAAATAACCGTAACCACATTTCAATCTTCAGAAACTAACATTATGATTAATGAAGAGGTCCACCAC CAAGAACAGCCTAAAATTAATGGAGATGTATCTCACGTTGATGTGGATACATCATCTGAAATAATTTGTT GTTCAGAGCCTCCTGTTGTGAAGACAGAGATGGTCACCATTTCTGATGCTACACAAAGAACTGAAATTAC TACTAAAGAAGTCCCAATTGTACAGACAGAGACTAAAACAATTACTTATGAATCTGCTCAGCTGGATGAC AGTGGTGACATAGAACCTGGTGTCTTACTAAGTGCACAAACCATCACATCTGATTCTGTTCTTACAACCA CAACTACACACATCACTAAGACAGGGAAAGGTGGAATAGCAGAGACAAGAATTGAAAAGCGCATTGTCAT CAGTGGAGATTCAGACATTGACCATGATGAGGCATTAGCTCAAGCAATAAAGGAAGCCAAAGAACAGCAC CCAGATATGTCTATTACTCGTGTAGTGGTCCACAAGGAAACAGAGCTCATGGAAGAAGAAGAGGAAGCTT AATTTAAAGAATATTTGAAGATGCAAAAATTTTATGAAGTAATTTGAACCATACAGCCTGCTACTAAATT GTCTGGTTCTGGCAAGCTTGACGGGAAGGCGAAGATGCCAACGTAAAACCTCAGCTTGATATCTATACTG TTCCATGCCTATCTACTTGTTTCTCTGTTATAACCACTTCTTAACATTCATAGCTTTAGCACGGTTTAAA CAACTCTTTAAACAACCATTTTTCCAGATTGTATAGTTGTAGAGAATACACAATCTTTGTCACTAGCATA GTTTTTTTTTTTTTTCTTTATTCCTGTGTCATTTAAAGCCTCTGGCAGTGGCACTTTTCAGACTTACAGA TTATTCAGGTCAATCCACTCTTTGAAGTAATCTAATACATTTTACACATTTCTTATATTTGCATAATGTA TTTCACTTTCACTGTTTTATACTGATATTTGTACTTTCAATCTCAAAGTGAAAGCAATATTAGTTCTCTG TTACTTAAGGAGGTTCAAAGATGAAGATGAAATTTTACATTTTTCTAAAGGAATTTTATTTGTGAGCAGA AGTTCAGCCAGCCTTGTGTGGTCTTCACATTTTGTACTGCCATATTTGTACCGAACATCTGCTACAAATG ATTGAAAAATAAAATAACATAAAAACATTCCAGGGAAAAATAGATGTAAAAAGGCACATCTGTGTTCAGT AAAAGAAGGAAACCTTTTTGGCAGCTTGTTACTTTTGTCCTACTCTGAATTTGAATACACATGTAAAACA TTTTTTTTTTTTTAGTCTGTGTCTTCATTGTGAAAGTGGCTTGCCTATAGTAAAAACTGAAATATCCTTT TAACGGTTTATGCAGGGTTTTATTAAGCAAAATGGATGCAGTTACAGTCCTATTGCCAACACTGAGAACC ACACACAGTTTGATTTGCCACTAAAAGAATTGTATGTGTCTCTGTTGCTGTCTTGATTTACAGTTGACCC TGTGTATAGATAAAATGCCAAATAGATTTATACCTGCTTCCAGCTGTATTAAGAATATTTTGCTTTCTGT AATACTTTTAAAAATAAAGTTTGTTTATTCTA
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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