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Echinobase
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Echinobase Accession
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Echinoderm mRNA
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S. purpuratus
(Purple sea urchin) 5.0
L. variegatus
(Green sea urchin) 3.0
P. miniata
(Bat star) 3.0
A. planci
(Crown-of-thorns) 1.0
L. pictus
(Painted urchin) 3.0
A. rubens
(Sugar star) 1.3
A. japonica
(Feather star) 1.0
Genomes
Download Echinoderm Genomes
S. purpuratus
(Purple sea urchin) 5.0
L. variegatus
(Green sea urchin) 3.0
P. miniata
(Bat star) 3.0
A. planci
(Crown-of-thorns) 1.0
L. pictus
(Painted urchin) 3.0
A. rubens
(Sugar star) 1.3
A. japonica
(Feather star) 1.0
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BLAST Databases
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Download BLAST databases
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-- Genomes --
Strongylocentrotus purpuratus 5.0 Genome
Strongylocentrotus purpuratus 3.1 Genome
Lytechinus variegatus 3.0 Genome
Patiria miniata 3.0 Genome
Acanthaster planci 1.0 Genome
Lytechinus pictus 3.0 Genome
Lytechinus pictus 2.1 Genome
Asterias rubens 1.3 Genome
Anneissia japonica 1.0 Genome
-- mRNA --
Echinoderm mRNA
-- CDS --
Echinoderm CDS
-- Protein --
Echinoderm Protein
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>XM_041604704.1 PREDICTED: Lytechinus variegatus testis-expressed protein 264 homolog (LOC121411832), mRNA AACAATAAATGCTGAGAGAGAGAAGAGAGACGGTCTAGAAAGTTGTATGATCCCTGAAAACTGAACTGTT TAATTGTGGTTTAAAGAATAAGAAAAGAGAAAACTGATCACGCAAGGAGGAAGCCATGGATCCTCTACTT CTTGCCATTTTAGCACTTTTTGTAGCGTTGATCTTGACCATTGGTTTGCTTCTTGTGTACACGGGCATCT TCCGGGAAGTTGATGTAAACACTGGCCGACCTCCGATTGCAAATGTGCGTGTCGCATACAAATTTGCACA GGGACCATACAGTGAATGTGGACCAATGTTTTCAGAGGTCGCCAGCCTTGCTCCAGATCTGCGATGCATT GGCGTGTACTTTGATGATCCTCAAAAGGTGGAATCTCACAACCAGCGTTACATAGTTGGCTCTATTCTGA GCGAGGGGACCAATGAAGTAGAGAAAGAAGTGGAAACTCTATTTGTTGAAAAAGGTTTTAAGCTAACTGA CTTCCCAGCTGTAGACCACGCAGTTATCAGTTCATTTCCATTTATCTGGACCTTGTCAAGTTATATTGCA ACTGCTAAAGTATGGCCCAGATTAGGAGAATATATAGAGGAACGTAAGCTATGTGCCCATCCAGCCATTG AAGTCTATTCAGGAGACGAGATCCAATACATGCTACCATTGTCCAAACAGGAAGATTTTTATGTGGAAGA AGCAAGGAAGGCCAAAGAGGAGATTGCCAAGAGCCTGCAGGAAAGTGATGGAACGGACAATGAGTCTGCT CTGCCGGAAGACAGTACAATGATATCGGAAGGAAGCGATGCAAGTGATGCAAGCAGTGGCAGCGAGAGTT CCTTTGAAGAATTATCTCTGAAAGAAGGTGAAATGGAAGAAGAGCCTAACGCTGCTGCCAATGAAATGTA ATTTTCTACGATAACTACAACCAATACCTGCTTCGTGACTCGAGTGTGGTTGCAAATTTATGTTATATGG GTAAAGTAACATAGAAAATTGAATAAAGTTTTGTGAGACCCAAACTGTATGGAATCAGAATGCATTTTAC AAATTAACAAGCTATGATGCAGTGAGTACTACATTGTTATACATCAGTTAGCAATTATTGTGAAAGGGTG TGGATACAAGAATTCAATATCACTTATCAGTATCACTCTCTTCTGAACATGTGGTATCTGAAGGAAAGAA AAGCCTATTTTGTATTCATACTTTTCTTTACTTTAATCATAGTGATATCCCCATGCTTTAAAAACCAACA ACCCTTATCGGACTTCATTTAATGCTTGTTCATTGATCACGCTTCACACTCAATTTTAAGTACTAGATGC ATGTGGCTAGAGGGAATGCAGTTCAGACAGAGAAGTCTGAATTATACGAACACGTAACAATGCAATATGA TGAAGATCTAATGAGCACAATAAGGCCTTGATATGCTGTAAAAGTCATTGGACTACCATTACTCAATGCC ATACAAAAACAGCATTTTTCTCAATATATTTTTTAACATTAATTCAAGACAGACAAGAAAGTAATGTTTG ATAGAGTACCGAAGCAATGACGTCAGTTGCCATGGTGTTATGGCAGCCTGGTTCTAAACAAATGAATCCG CCAAATGAAAGCATGTGTCTCTCATAGGAGAAAATGGCTGCTATTGGAATTTGATCGCTTGCAACCTATT TTTCAGACGAGCCAGTCGTACAGATGTGTAAAGACAATCGTCAACTGCGACTCTGTTTAGAACCAGCCCA CCATGGCAACTGATGCACCCTTCGGTACTCTATATTTGTTGACTCATCATTATCCATTTGGTTGTGTTTG CTTTACAAAAAATATATGCACATTGATTTGCATGTTTGTATTAATGTTATCCCAAAATGATTTCCAGATG CTCAAAATTTCTTGCACACAAAATATTTGGTATATTGTGGACCCTACATTTTTCATTGATACAAACCTTT CTAAAGTGAGTCCAAACTAATCAAATTGACCTATTCAGAATACCCCATTCATTAAGTTGAATAGTGATGT TGCCATAAATTACTACCACTGTAAGAATTCAATACAGTGAATCAATATCAACCAGTTAAAAAGAAAAAGC ACACTTCCTATACATGACAGTTTATGGATTATTTTCATCAAAGGCAATATTTTCCCATAATTTGCCCACC CTGTATTGCATTATGATGTTCCATTTTAGCATTAAAATGTATTTGGGTTTTTATTCTATAGAACAGGGCT TAAAGGAAAGTTAAGGCAGTGCTCACTTTAGGGGGCTTCCAAATCAATTAAATTTAAGGGCATCAATGGT AAGATGTACTTGTGTATAGGACACATGCATTGGATAAATGAAGGGTACCAAAGCTGAATGTAGGCAAAAA GGACATGCATTTTGGCCTTAGGTTTGTATTATTTGGAAGGGCATCATGACCTTATATTGATTTAAGCCCT GCTACATTGTGATGAAAATATATGTTTGTGCTTTGTAGAGAGAGGCCCGCATTCTGAATTCTGGTCTAAA GTTGTGGTTTAACTATGGATAGCAATTGTGGCACGAACCCACAACAGTAAATGTTCAGTTTATCAACTTA CTCGGCACTTGAATCATTCATAACTATCTAAAAATTCTAACTTAGGTAGATTTCTTAATCATTACAGTAT GAGAAAAATGAAATAGCAAACATAAGAAATACAATATCAACTAAATTTTAACATGTTTTGCTTCCCATAA GTTTAGCACAAAGTTAGACCAAGGTCAAAGTTAAACTGGATTTCAGAATACAGGCCATAATGTTATATGA ACTGAAAAGTCCGATATTACAATATGTACTTACCTTTCACGCTGTTTCATCCAGTTGTTTTGTATTAGTT TCAGAACAGTGTATGACATTTTTATTTGTTGATTCATTTATTGTTTACATCTACCTCCATACATTTTGCA TTGGCCTTTGTGGATGGGGGCATTTTCTACCATTTTTGGTGAACTACAGAATGGTTAATTATGCTGCACA CTTGTTTTTATTAAAGCACTGTACCTGTACAGCAAATTCATAATTATTTTCCAATTATTTAATTGGATCA AGAATTTAGTTGTCAATTGCCTCACAACATAAGTTGCCATGTTCATATATTCTATCAAAAATTGTTTTGT ATGATTCATAAGTTTGTTTGGTAAATATTGCATAAAAATTTTAGTATAAAGTGCAGTAAGATGTGAGAAG TTGATTATCTAAACTTTTTTTTTTCTAAATCTTTTTACAAGTATATTTACGTCTTTGAGAAGACCAAAAA CAAGATGTTGAAAAGTAAAAGAATTATGTAGTTCTAATACTTACAATTCAAACCAAATTGAAATAGTATG AAATATTTTATTTTGAAGGTAAAGAAGGCTGAACAAGCAGATTGTGAAAACTTTGAAAGAAAAAAAAATG GTGTTTGCAAGATTTGTGAACAAGAAAGCTGAAACCTGTTTAGTGTTGATTGGAAACAATGTCTAAATTT CCTATGTTTTCTCTTGGCAGAGCATCTTTTTTTTTCAAACTGTATTTGATGAATTACAGACAATTACCAA AGTTGGATGAACATGATACACTCTTTGAATGGATGTTTGAAAGATTATGTGCTTCCAAATTCCTACTTCA ACAAAATCACTTTCTGTGTATTTCAATAGACTTCCCAACGTGTTCAGGTTGCATAACAATGACAAAGTTC AATATATCTTGTGTGCTTGCTAACCGCTGTTCGATTGTTTTGATTTATTATTTTGAGGGGAGGAGGGGGG GATCATTTGTAAGTCACTACTGTTTAAAGATGCTTGAATAACACTTGGTCATTGCTTTGATAGACCTGCT TCATACGTATTCATATCAATGCTTATAAACTATGTTTGTTTAGACCACTTGAAAGCTTTGAGAGGCCTGT CAGACATAGCAACATGTACACTATGGCCCGTATTATGAAGTCAGGTTTAACTTAGACCACGGTCAAACTC TGCTAAAATTATGGGGAGCCAAAAATTC
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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