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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_030992351.1 PREDICTED: Strongylocentrotus purpuratus unconventional myosin-XVIIIa-like (LOC586216), transcript variant X3, mRNA TCGCCATGTTCGTCAGTTTTGAAGTTCGAACCAAACCGAGAAAACTACAATCTACAGAAATTGTGAAGGA ATTTTTGATGCGGTAGGAATAAAGCTGAAATGCTAAAGGACTTCTTTCAAATCTGATTACACTTGGATGT ACTAAGGATTAAACCACCATGTTCAGTTTTAAGAAGAAGGATAAAGAGAAGAAGGAGAAGAAGAAGGAGT CTAAGCGAAACAAGGAAATGTCTCAGGAAGAGTTGAGTCGCCTGGAAGACATCAAGAAGGGCCTCAAGAA GTCGAGTTCTCGTCACAAGGCGGGGGCGCCCAGTCATCTTCCAGTCAAGTCCCACGCCTACACGGTCCCT GAAGAACACAGCAATGGTCAGTACAGCATGGAAATCAGTCTGGGTGTCAATGAGAGGAGCGTTGACGGTC CCTTGACCAGCCCAAGCGGGAGTGATGCAAGTGGGGCTTCCACGCCTGGTTACGAAAAGGGAAGCACGGG AGATGTCAGGATACTACCTGCTTCTGCGCCTCCCCTTGAAAATATAGCCGAAGAGACGCGGCACACCAAG GAGGCAACGTTCGAGAAAAAGCGCAAGTCTTCTAAAGGGAAAGGGATTCTGAAGCTTAGGTCGTCCAGTC ATGCGTCTACAGATGCTCCTGTCAACGAGGTGGTTGTGAAGGTCAATGATACAGTGCTCTTGGCTAAAAA TACTGCGTTTAATGAGAGGGTAGGAGATGAAGTGGATGGAGAGCTTGGGTACCAGATACCACATCCCAAA GCTGAACCAGAAGCCCCTGGTGAAAAGACATTCAATGTTGATTTACGCCTTCCGGTAGTTGCTCCGCCCA AGCCCCCTCGAGCAAGAGACGTCATTCTTAGTCGCCAACCCAACGGTGGATTTGGATTCACGCTACGCAG AACCAATATCGAAGAGCGCTCCGGACCTGATGGAGCCATAACTCGTCGACAGGTTCATTTTGCTGAACCG AGTGCAACTCAGCGAGAAAATGCAACTGGACTACTGCCGGGTGACCGCCTTGTGGAAGTTAATGGAACTA ACGTGGAGAATAGTCCTCGAGATGGCATCATTGAGTTGATCCGGAGTTCAGGTGATGCGGTGACCCTCAA AGTCCAGCCCATCCCAGAGCTGATTGAGTTGAGCATGAGGTCTGGGATGGACGGGTCTGAGGTTCATTTT GAGGAACAGCTCTTGAAAACAGGAACGTTGGCCAGGAGTGCCAGTCTAAGGCACAAGGACAAAAAGGCCA AGAGCGATGAACAGCTGGCCCAGGAGAAGGCGTGGCTGGAGGCGGAGAGGGTGTGGTTGGTCCACCGAGG GGGCTTCTCCTCAGCCAAGAGACTGGCCAGGACGCCCAATGGGGTATCAGCAGGCGAGGATAGCAACCAG CTGATGATGGGCGAAGGAAAGGTCAAGGTCAAACTGGAGCAAGGTGAAGAGGTTCTGGAGGTGGAGGAGG AAGATGTAGAGAAGGCCAACCCTCCTCAATTCGACCGAGCCGAGGATCTAGCAACCCTGCAGTTCTTGAA TGAATCAAGTGTCCTCCATACCCTGAGACAGCGCTATGGAGCCAACCTCATCCATAGCTACGCCGGGCGC AACCTGATCGTCATCAACCCTACACACCAGCTTTCTGTCTACTCGGACAAGCATGCTAAGTCAGTTATTC AGATGTTCCGAGGCTGCAAGTTGGAAGACATGCCCCCTCACATCTACGCCTCTGCCCAGACGGCCTACCG GTCAATGCAGTCCACCCGTAAGGACCAGTCCATTGTCTTCATGGGGAGGAGCGGAGGCGGTAAATCGTGG AACGTCCGCCATATCCTGCAGTACTTGACCATTGTATCTGGCACAAACAACAACATTGTCACAGTTGACA AGATCACTGGAGTCACCACCCTCCTGGATGCCTTTGGAGGGGCCAGGACCATACAGAACACCAGCGCTAC CCGATGTGCTAGCATCTACTCTCTAGACTTTGATCACCTTGGACAGATAGCTTCCAGCTCATTGCAGATC CTGATGCTGGAGAAGTATCGTATCGTAAGGAAACCTCAGGAAGAGAGAGCCTTCAATATCTTCTACTACC TCATGGCCGGCGCAGACTCGTCACTCAATCAAGACCTGTCACTGCATAAGATGTCAAAGGAGAATCCATA CATTCGACCTCTACTGAAGAGTGAAGAGGTCGACCACGCGAAGTTGATGTGGCAAAAGGTCGTCAATTCT TGTCAGCTGCTCAACTTCACAGCTGATGAATGCAAGGGACTGTGGTGTGTCTTAGCTGCTATCATACACC TAGGGGCAGCCGGAGCAACAAAGGGATCTGGAAGTGCCAAAGCCCAGTTCCTCCACCCATCAGAAGCACA GAGAGCCGCCACCCTCCTGGGCGTGTCCCTGGAGGACCTCGCCCGGAACACCTTTAACCCCAAGGCCACC GGTACCCCGACCAGGTCCAACCTGAGAGCCATCCCATCCGATGGAGGGTCCGATGGAAGCGGGTCAGGGG GCGCTACGGAAGCCCTGGAAGGGATGATCTCGGGGCTGTACTCCGAGCTGGTCAATGCTGTAGTATCACT CGTGAACAGGGGTCTATCATCGACATACCGCACCAAGTCCTCCATCCTGGTCGTTGACCTCCCTGGTCTT CAGATACCTGATGGGTGTGGTCGTAAGACCGGAGCTAGCTTCCAAGATCTCTGTAATAACTACGCCCAAG AGAGGCTTCAGCTTCTCTTCCATGATACGTCAGTCACTCAGCAGAAAGATAAATATGCTCAGGAGAATAT AGAGGTTGATCTTGGCAGGGAGAGCGAGGCAGAGTCTTCACCTGGTATTATGGTCAACCTTATTGATAGG CAACAAGGATTGATCCGTACTTCGAATCCAGACCTGAGGAACACAGATCAGAAAGGAATCCTCTGGCTCC TGGACGAGGAATCCATCTTCCCAGGAGCCTCTGACGACTCCTTCCTGGAGCGCCTGTACCTTCACTACCA TGAAGAGGCTAACAGATCTGATGGTGCCATCAAGCAGAGTACCAATAAGAAATCCTTCATCTTGAATCAC ATCCAAGGCACTGTACCCATCACCTACAACGCCACCAACTGGCTTCGACAGTCCAGGGAGCATCCAGCCA TTCGCAGTGCATCGGTCGTACTCCAAGAATCACAGAAACCAAACATCAGTCATCTGTTCATCAGCCTGTC GGGCTCCTTACCAAGCTCCATGGTTGGGTCCGTCGCTGGCATAGAGGGCAGCTCATCGCTACGCAGAGCG TCCAGCATACGCAGGGCTTGGACCAGCGGGACGGCAGCCATCAAGAGGAAGTCCCTCTGTCTCCAGGCCA AGTACCAAGTGGATGGCATCATTGAGAGCATCCGCCGCACTCGTCTTCACTTCGTCCACTGTCTCCTTCC CCATGCTGATGCTGGTCTGTGTGAAGCTAGGATCATAGCAGGCAAACCCCCAAACTCCCCCTCTAACAAC GACCTGCTCAATGTACCCTTACTACGATCTCAGGTCAGGGGGTCAAAGGTCATGGCTGCTATCAGAATCT TCAGGTTTGGTTTTCCAGAGAGCATGTTGTACCAAGAGTTCAGGTATCGGTTTGAGATCCTGGCCCCTAC AGAAGCCAAGATGCCTGAGCCTGTCATGGATGAAAAGAAGGCTGTAGGACTCCTTCTAACTCATCTAGAC CTGGACCAATCTTCATTCAGACTAGGACTAAGTCAGGTAAGAACTTGAATAAAAATTCCTGTGATTCTGT TTTA
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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