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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_011684571.2 PREDICTED: Strongylocentrotus purpuratus serine/threonine-protein phosphatase 6 regulatory ankyrin repeat subunit B-like (LOC586561), mRNA ATGGGGGTCAGTCGTCCGATCCACAAAGACAGTAAGGAGGGAAATGAACAAGATGGCAGTGTTGATGATT CGCAGAGTGCACTAAGCAGTGCTGTGCAGAATGGAAAACTTGACCTGATCCAAAAATTGATCGGTAGAGG AGCCGATGTGAATAACAGCGGAAATGACGATTTGACCCCATTAAATCTAGCTGCACAGAAAGGTCATCAT GACGGTTGGACTGCATTACATCTGGTTTCACAGATTGGTCATTTTGAAGTCGTCAAAGAATTGATCAGTC AAGATGCTGAGGTGAATAAAGTTGAACACGATGGTTGGACTGCGTTACATCTAGCTTCACAGAATGGTCA TCCTGATGTCACCAGATATCTCATCAGTCAAGGAGCTGAGGTGAATAAAGTTCAAAATGACGGTTGGACT GCATTACATCTTGCTTCACAGAATGGCCATCCCGATGTCACCAAATATCTGATCAGTCAAGGTGCTGAGG TGAATAAAGTTGAAAAGGACGGTTGGATCCCTTTACATTTGGCAGCACAGAATGGTCATCCTGATGTCAC CAAATATCTCATCGGTCAAGGAGCTGAAGTTAATAAAGGTAACATTGCTGGTCGGACTGCATTACATCAA GCTTCACAGAATGGTCATCTCGATGTCGTCAGAGAATTAATCAGTCAAGGAGCTGGGGTGAATAAAGGTG ATAATATTGGTAGGACCCCATTACATGTAGCTGCTCAGAATGGTCATCCTGATGTCACCAAATATCTCAT CGGTCAAGGAGCTGAAGTCAATAAAGGCAAAATTGATGGTCGGACTGCATTACATTTAGCTGCTTTAAAC GGACATCTTGATATCGTCAAAGAATTAATCAGTCAAGATGCTGAGGTGAATAAAGTTCAAAATGACGGTT GTACTGCATTACATCTAGCTTCACAGAATGGTCATCCTGACGTCACCAAATATCTCAGCAGTCAAGGTGC TGAGGTGAATAAAGTCGAAAATGACGGTTGGACTGCATTACATCTGGCTTCAGAGATTGGTCATTTTGAA GTCGTCAAAGAATTGATCAGTCAAGATGCTGAGGTGAATAAAGTTCAAAATGACGGTTGGACTGCATTAC ATCTAGCTGCACAGAATGATCATCTTGCCGTCACCAAATATCTCATTAGACAAGGAGCTGAGATTAATAA AGGTGATAATATTGGTAAGACCCCATTACATCTAGCTGCTCAGAATGGTCATCCTGATGTCACCAAATAT CTCATCGGTCAAGGAGCTGAAGTCAATAAAGGCAAAATTGATGGTCGGACTGCATTACATTTAGCTGCTT TAAACGGACATCTTGATATCGTCAAAGAATTAATCAGTCAAAATGCTGAGGTGAATAAAGTTAAAGGACG GTTGGATCCTTTACATTTGGCAGCACACAATGGTCATCCTGACGTCACCAAATATCTCATTAGTCAAGGA GCCGAGGTGAATAACAGCGGAAAGGAAGGTTTAACTCCTTTACATATAGCTGCAAAGAATGGTCATCTTG ATGTCACCAGGTACCTGATCAGGCTAGGAGCTGATGTTGATAAGGTTAGTGACAACGGATGGTCAGCCTT ATACCTTGCCGCAGCTGCTGGTTACGTACGTGTTTCAAGTGCTTTGCTTAGTCAGCAAGCTGAGCTGGCA AAAGCAAATATAATTTATTGGACGGAGATTCATTCCGCTGCAGAGAGAGGCGATCTTGATGCCATGAAAG ATCAAGTCAGTCAAGGAGCCGAGCTGGATGAAGCTGGTTCTTTTGGTTGGACAGCCTTACATATTGCAGC AAGTAATGGCCATCTTGATATGACAAAATATTTGCTAAGTCAAGGAGCTGATGTGAATTCTAGCAATGCC TTTGGTAGGTGTGCCTTGCATAATGCTGCAACAAAAGGGAAGTTGGATGTCATGGAATATCTGATCAGTG AAGGGGCCGATATGAATAAAGGAAATGACTTTGGAGTGACTGCCCTACATTTTGCATCAGAGTCTGGCCA TTTAGATATCGTCGAATTCCTAATCGGTCATGGAGTTGAGGCAGAAAATTGCGACGCAGATGGAATTACT GCTCTCCATTATGCTTTATTTGCCGGTGAGATCGACATTACGAAGTATCTGCTCAGTCAAGGCTCTGAAC TGAATAAGAGAAGTGTTCGTGACTCTGTCATCGTACAATTTGATGGACAGTATGGTCACTATGATGTTGG GCGATTTGTGAAGAGTAGCCTACGTCATGCAGTTAGCAGACTCGTTGATTCTCTCACTGTCTTTAGAGGT GCCCTAGAAAGTGATCTTGGTAGAAGCAAATATCAAGATGGCGAAGAGGATAAGACAGTTCAAGGTGGAA TGGTTTTTGTGTATATGCCACTAAGATCGTCTGATCTTGACATTCAAAATCTTCTTGAAAGTCAAGGAGG CAGAACAGTTGGTCGTACATCATTACAATATGCTATAGAAGGTGGCTTTCTTGCAGGTGTTCGGTATCTG ATCAGTCATGGAGCTGATGTGAACGAAAGCAACAATGTTGGCTGGACTGCTCTTCACTTTGCTGCGCAAA AGGGTCATCTTGATATTGTAGATTATCTACTTGGACAAGGAGCTGAAGTAGCTAAAGGGGATGTTGATGG TATCTCCCCTTTGCATGTTGCTGCATTTATTGGCCACTGTGACGTTACCGAGCATTTGCTTAGGCGAGGA GCAGAGGTCAACGGAGCCACCAAGGAGAAAGGTTATACAGCCCTTCATGTCGGAGTGCAGAATGGTCATC TCGATATCACGAAAGGCTTGCTCAACCACGGAGCCGAAATTGATGCGACAGACAATGGCGGTTGGACTCC CTTGCACATTGCTGCTCAGAATGGTCACATCGATGTCATGAAGTGTCTACTTCAGCAACTTGCAGATGTA AGCAAGGTTACCAAGAAGGGATCATCTGCATTGCATTTGTCTGCTGCAAATGGACATACCGATGTCACAA GATATCTATCGGAGCACGGAGCTGACGTAAATCTGTGTAAACCTGGGAAGACTGCGTTGCAACTCGCTGC GAAACAAGACCAAGTGCATGGGACAAGTCCAGATACGCGGTGTGCTGAAGGACAGAAACATCCTTCTTCC CCGAAAGGACATGCATACACTCAGGGTTTAACAGAAGATGAGAAGAAGGTTATTGGGCAACTTGGTGAGA AAGGCTACACAGCAGTGTATTTAGCAACGCAAAATGGCTACACCTCCATCATCGAGACATTAGTTTCTCA TGGCGCCGATCTCAACATCCAGTCCATCGACGGACAGACCTGTCTTCACGAAGCCATCAGACTTTCTGGT CGGGAGGACAGCAAAGTTGAAGCAACACCAGCACTCCAAAGGATCTCAGAAGACTTCTATCAGAACGAAT TGTCTCCCATGAAGGCCCTGGTGTTCTATCTCTTGGACCACGGAGCAAAACCGGACATCAAGGATAACCA TGGCAACCTACCAGTTCACTATGCCAAGGATGAAATCATCCGCCAGATGATATTCTCAAGACCTAGTGAA GAACCCAGGAAGCAGGAATTTGACGACCTTCCCAACTAAGACAATACCTAAGCGGATTCATAAGTATGAT GACATCGACAGTCTAGGCGGAGAATTGGGCTTTCAACCTCCGGAAATCCAACGTTACATACAAATAAACG ACAAATACCACGATGTTACATGCAGGGGAACACTTGTTATGCTCCGAGATTGGAGGAACAGGACTAAAAG GTCCGAAGAACGGGAACAATTGAAGAAAGCCCTGATTGCGATTAGACACCAACGTCTGGTAGACGACCTC CTGAACGACGATATGGCAAAGTTAGTATGAACTAGGAAAATAGACAAATAAATAGTTAAAATGTGGATAT ATGTAAGCTTTAAAGGCAGGCTTTACTACTTCAGCTAGAAGGGA
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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