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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_041572282.1 PREDICTED: Xenopus laevis patatin like phospholipase domain containing 6 L homeolog (pnpla6.L), transcript variant X1, mRNA CTGGAGCAGCTGTAAATGGAATATTGGGGCCCTCAGGGGCCAACACCAGCCTGTCTCTCTGGCCTTTTGT TCCTTTCTTGTGTGTGCGTGTGGCACCCTCCAACCTGCACTCATGTCGTCCTGCGGAGAGATATGGGTGA GGAAAACGAAAGCTGCATGGAGCCGGCCCTGTCCATGGGAATAGACCTGCGCACCCGCGTGCTACAGTTT GTGGAGGACCGGCTGCAGACCACCATGTGGACCGGAATTCTGATCGGGGCCCTGGTCGCCGTCTCCATCA TTGGGGTGATCATTTTCATCCTGTACAAGAAGTTCACACAATCCAAGCAGCCGCATTCAGATGTGCCGCG TTATCGCTTCCGGAAGAGGGACAAAATGATGTTTTATGGGCGCAAGATCATGAGGAAGGTGACCACTCTA CCGAACACTCTCGTGGGAAACGCAGTCTCCAGGCCGAGAACCAGGAAGAAACCTAGAGTGCTGTCTCTGG CTAAAAGGATACTCCGCTTTAAGAAGGAATACCCCACCCTGCAGAAAAAGGAGCCGCCCCCTTCCCTGTT GGAAGCTGATCTTACAGAGTTTGATGTGAAAAACTCCAATTTACCTTCGGAAGTTCTGTACATGCTAAAG AATGTCAGGGTGCTGGGTCACTTTGAGAAGCCCCTGTTCTTGGAGCTGTGCAAGCACATGGTCTTCGTTC AGCTGCACGAGGGGGAGTACATCTTCCGGCCCGGCCAATTGGATAACAGCATCTACGTGGTGCAAGATGG CATGTTGGAAGTGTGCATCCTTGAGAGTGACGGCACCGACGTGGTGGTGAAGGAGGTTTTGGCCGGGGAC AGTGTGCACAGCCTGCTTAGCATCCTCGATGTCATAACTGGACACACGGCCCCATACAAAACGGTTTCAG CCAGAGCCGCCACAGCCTCCACCATCCTGCGCCTCCCGGCCAATGCCTTCCAGGACGTCTTTGCCAAATA CCCCGAGACCCTTGTGAGGGTGGTGCAGATCATCATGGTGCGACTTCAGAGAGTGACCTTCTTAGCTCTG CACAACTACCTGGGTCTGACTACAGAGCTCTTCAACTCGGAGAGCCAGGCCATTCCGCTGTTGTCTGTGG CCAGTGTGACGGGGGCAGCCGGGGGCAATAAGGGAGTGAGGAGGCAGGTGTCCAGCATGTCGGCCGAGGA GGAGCAGGGAGAGAAGAGTATAGAGCAACAGCCGGAGTCTGACCAAGGGTCCCTAGACCCCAGCAAATTC TCCTCAGTTGATGGAAGTGGCCACAAGCGGAGCCGTTCCTCCTCCAGCATTGCCGAAATCCCAGGCAGTC CCAAGGCAACTAAATCCGATATGGACATGGCTTATGAGCGAGCGCGAGTGAGCATAACCCCTGATGACAT GCCGCCGAGCCCCATCTTGAACAAGCCCATCCTGAAGAAGTCTGTGACTGTCACAGAGACGCCGTCAGCC GTGTACCACTACAAAGAAGAAGATCTTGTCATACCCGAATTTAGCGTCAACAGGCACCTGAACGCCATGT TTGAGGCAGCCAAAAAAGATCTGTCAACCATCATCAAACTTCAGGACCCCACTCTGCTGAATGGAAGGGT GACTCTGCATCAGGTCAAGGGTGGAACCATTTTATCCAGACAGGGGGATCAGGACGTCAACATTCGATTT GTGATATCGGGGCTCCTCCACGTTTACCAGCGGAAAATTGACCGGGAGGAGGAGACCTGCCTCTTCATCA CGCACCCTGGGGAGTTGGTGGGGCAGCTCGCCGTTTTAACGGGAGAACCGCTCATCTTCACCATCAAAGT CAATCGCGACTGCACCTTCCTCTCCATCTCCAAGTGCCACTTCTATGAGATCATGAGGGAGCAGCCCAGT GTGGTACTCGGAGTGGCGCACACTGTAGTCAAGAGAATGTCCCCGTTCGTCAGGCAAATCGACTTCGCAT TGGATTGGATGGAAGTGGAGGCCGGCCGGGCTGTTTACAGGCAGGGGGACAAATCTGACTGTACCTACAT TGTACTGAACGGGCGCCTTCGCTCAGTCATCAGGAAGGATGATGGGAAAAAGCAGCTGACGGGTGAATAC GGGCGAGGAGACCTCATCGGGGTGGTAGAAGCCCTGACTCACCAGCCAAGAGCCACAACTGTGCATGCCG TGCGAGATTCTGAGCTTGCCAAGTTACCTGAGGGGGCCCTGACCTCCATCAAACGCAAGTTTCCGCAGGT GGTGACCCGGCTCATCCATTTACTCGGGGAGAAGATCCTTGGCAGCCTGCAGCAGGTGAACGGCCCTCTT ACAGGGCATGGCCTGGGTCTCCATACAACCGGCAGCAAATGGGATTCCAGCAACCCTGCCAGTAACCTCT CCACCGTCGCCATCTTGCCGGTGTCTGAAGAAGTTCCTCTGACGGCCTTCGCCCTGGAGCTGAAGCATGC ACTGGGCGCTGTGGGCCTCACCTTGCTGCTCACCAGCGACAATATCAAGCAGCGCCTGGGCTCCGCCGCT CTGGACAGTGTCCATGAGTACAGACTGTCCAGCTGGTTGGGGCAACAAGAGGACATTCACCGAATTGTTC TGTATCAGTCGGACTATTGTCTGACGCCATGGACTCAGCGCTGTATCCGACAAGCCGACTGCATCATCAT AGTGGGACTAGGCGAGCAGGAACCTACAGTCGGAGAGCTGGAGAAGATGTTGGAGAACACGGCCGTCCGG GCCCAGAAACAACTTGTCCTGCTCCATAAGGAAGATGGGCCCCCGCCGTCCCGCACGGTTGAGTGGCTGA ACATGAGGAGCTGGTGCTCTGGTCACCTACATCTAAGTTGCCCCCACCGGGTCTTCTCCAAGAGGAGCCT ACCCAAACTGATCGAGATGTACGAAAGGGTTTCCCAGAAGCCTCCGGACCGTCACTGTGATTTCTCCCGA CTCGCCCGCCTGCTGACTGGCAATGCCACCGCCTTAATCTTGGGAGGAGGAGGAGCCAGGGGCTGCTCTC AGGTTGGAATCATCAAGGCGCTCATCGAGTCCGGCATCCCCATCGACATGGTGGGGGGCACCTCTATAGG AGCTTTCATGGGGGCCCTGTACGCCGAGGAGCGCAGCTTTAACCGCATGAAGATCAGGGCACGGGAGTGG TGTATGGACATGACTTCTGTATGGAAGAAAGTTCTGGATCTGACTTATCCGACCACCTCCATGTTTTCCG GTGCAGCCTTCAACAAGAGCATCAGCAGCATCTTCAAAGACAAACAGATAGAGGATCTCTGGATCCCGTA TTTTAACATCACCACCGACATTACAGCTTCTGCCATGCGGATTCACACAGACGGCTGTCTCTGGAGATAC GTGCGTGCCAGTATGTCTCTTTCTGGGTATATGCCGCCTCTCTGTGACCCCAAGGATGGGCACCTCCTAA TGGACGGTGGATACATAAACAACCTGCCAGCGGACGTGGCACGGTCAATGGGCGCTAAAGTGGTCCTGGC AATTGACGTGGGCAGCCGAGACGAAACGGACCTCACGAACTACGGTGATGCCCTGTCTGGCTGGTGGCTA CTGTGGAAGCGCTGGAACCCACTGGCAGATAGAGTCAAGGTCCTGAACATGGCGGAGATCCAGACCCGTC TCGCCTACGTCTGCTGCGTCCGCCAGCTGGAAATGGTGAAGAACAACGACTACTGCGAGTATATCCGACC CCCCATCGACCGATACGGAACCCTGGAGTTCGGCAAGTTCGACGAGATCTGTGATGTGGGGTACCAGCAT GGCAAGACTGTGTTCAACGTCTGGGGGCGCAGCGGGGTCATTGACAAGATGCTGAAGGACCGGCAGGAGA CCTGCAAAACCAAAACGTCCGATATAAACACCTGCCCCAACGCCTCTTTCACTGACCTGGCAGAAATCGT ATCCCGCATTGAGCCCGTGAAGACGGCGGTCGTGGATGATGAGTCAGATTATCAGACAGAATATGAAGAC GAAGAGATCCCCGACTCCCAGAAAGAGGATTATCTCAACTTCCTGAGCACCCAGAACAATGGCGATGTCT CCGATAGCGATGAAGAGGGGGAAATGGAGGTGAGGCAGCGCCCTGCAGTGAAATGGCGCCAGGACAGAAC CCAGGAGAAGAGCTGAACCAGCCATGTCAGGAGACCAAGAGATGGTTCTCCGCCTGTCCCGTGCATTAGA ATCTCCTGCATCCAAGGTTCTTCTGCTTTGTGTGGTTCTAGATATAGATCATCTGGTTTGTGGCCAGGCC ACATAAAGACGCAATAAAGCCTGTAGCACGCAAGGGCGCGTGACGGACACGAGAATATTTGTTCTGTTCC CAGGGAGCCAAAAATCTATTTGAGCCTTAAAAGCATAATTTGCATTTCATCGCTTAGAGTAACAGGCTAT AGCTATATACAGGAGATACTTGGTCCAGCACTGGATCATATACCATTATCATAAAGTAGTTTCTATCACT GGGTCATACTATTATCATAGAGTAACATCCAGCACCAGCACTGGGTCCTACCATTGTTACAGCGTACCAT CCATCAGTGGATTATCCCATTATTATAGTATAGCATCCAATGCTGGATCATACCATTATTATAAAGTAGC ATATAGCACTGCATCATACCATTATGATAGAATAGCATCCAGCACTGGGTCATACCATCCATCAGTGGAT CATCCCATTATTATAGCAAGGCATCCAGCACTGGATCATATCATTGTTATAGAGAACATCCATCAATGGA TCATCCCGTTATTATATATTATTATAGAGTAGCAACTAGCACTGGATCATACCAATGTTATAAAATGGAT CCAGCACTGGATCATACTATTATTATTATTACTGGGCCATACCATTAATATAGAGTAGCAAATCAGGTTA TGAACGCTGCAGTATAACGATAATTATTATCCAGTAATTAATGTTCTCCCTACTCCCTGCACCTTGCACT GTAGAATGGTGGGCCACAGTCATTGAGAACAGCACGTTATCCTTCCCAATGGGCTCCTTACTCCCAGCTA CCTTACCACTTAAAGTGCCAGTACAAGAAACTCCCGAGAAGCTGCTCTCCTGTTCCCCTTCCCGGTCACC ACTTGATTGCCAAAGTAACATTGAATAGGTTTTTGTATTTAAGTTTTTATTGAAAATTCATTTCCAGGTG GAAAAAGATTTTTGTTGTTTTGTGACATGGAAGTCCGTGGTCCAAGCCGAACTCCCAGCAGCCTGGCATG GGGGGGGGGTGTCTGTGTGACTATTCACTGGTGGTATTCTGTACATATGAATAACAGTAGCCAAGTGTCC CACAGGGAGGAGAACGGACCAGACTTAGAGTTTTAATCCAGCAAGGTTGCCCATCGCACAGAGAGAAGCC GCCATATTGAATGTGGCAACAACACCCAACAACAAAGTTGTAAACAGTGATATTTAAACTTCAACTCCCC TGTAGTTGGTATAAAGCTGAAGGATCCCAGGTTGACAATCATCCCCCTCCCATAAGCCTCTGTGCCATCA TCAGTTAACTCCACCCAGTCAGCACCAACCAATTGGGTTAGGGATTTCTCTCTCATTGCAGCCAGGGTTT CTGTTACTCTGGGTTTCACTGTAATATTCTGTTTCTTGCTGCCTATCGCTAATGCCCACAGTACTATACC CCGACCTTACTGCATTGCTGGCTGTAGAGTGCCAAAGGGGCAGCTGACTGTGTGGGGCATCTTGCCTTGA GATAACAGGGTGCATTTAGTGGCGACTGCACATGTACTAACCGGTTTTCTACAATAAAAGGTGTTTGACA CCAA
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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