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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_031000432.1 PREDICTED: Strongylocentrotus purpuratus centrosomal protein of 152 kDa (LOC583262), transcript variant X3, mRNA CATGTACATATATGCAAACTTAACTACACCATTCATAATTGCTTTGAAATCCATTTTGATACAAAGGCTG GAATTCTCGATTTCTTATCAACCACTTCTCAGAAGCTCTTTCACCTTGTAAGCCGCTATTGATAGTATTA AGTCCATTACGTAGTCAATGCTTACCGGCATTTCTAAATCAATAAGTGATATGAAGTTAACAATAAGTAT AGGAGCGATTGCGGTGTTTGCTCTGCTTGAGTTAACAAGAAAGAAATTTGAAACACCATTGAAGTGCTGA TCATGATGAGAGGGAGGGGCCTGGAGCCGTGAGGGGATTAACTCGTAAGATTGAGCAGGCCATAGAATAG GTATCGGTAAGTCAATTTCAGGTCACATGACAAATCTCATCCAATGACATGCCTCATTGATTATGCTTAC ATCGATACATGAGAAGTAGAAAGGCCCAAGTTCATCAAACAGCTTTTGGTTTATTAACACAAACACACCA AAAAGAAATGCATTTGTTTTTTCTTTTGTGCATGGTTTCATTTGGTTCATTTGGAAAGATAATACGGAGT AGATTTTTATCTCTCTTTCATTCATTAGGAAGAATGGTCTGCCAGCAACAAACTGCTGGGCCTTACTTAA GGCCAAAATACCGGACTTAGGCCCTTCTTCCTCTCATTCATTCATATTACCCCCTTCACTTGTCTCCTGG AGTTGTGGCTTCTGGATAATTATAGGCTCAGTGTTGTCCTAATCTCTTAGATGAACCTAGAGTCTCTATC AGTATCAGTGGGGTAATATGTCACTGGCTGATCTGCACGCCCTGGCAACTTTCTACCATTTTTTGTAAAT CACTTGTTGGAATACAAATATTGGAATACAATTATTATTATATAATAATAATAATAATAATATTTTAAAG TCCATTCCAAATTTTCATTGAAGGGATCAAATCAACTTTGTTCTTGTGGATTTTAAGTTCTGGATTATTT TGTTGGTGACTGTTTATCTTCCAAGACTGTGTGATTACTAATGGTTAATTTCATATATGGAGGTATGGAA GTTGCCATTGTGATACGGATATCAATTTCTTTGGTCATCTCACGGTCAAAATCACATCTTGCAGACCATA CAACAACAAAACAATGTTACAACTTTTGATATCTCTTTGCAATGGATATGTGATGCTGAAATGAAAAATA TTGTTTGGACTTTTTGAAGTATATAATGAGGACATTGTCAGAGGTATGGTAGGTGAAGCACCAGGAATAA AAGTCACAAGTCTGCTCAGCAGCCTCAAATCTCTGGATACAGAGATAGTTTTGCAAAATGTGGGAGACAT TAAAGGTTTGCTCTTTGAGCTCAGGGACTTGCTGTCTAAGGCTCTTCCAGATGACTTGTTAGAAGACGAT GTTCAATCAATTCCAAGTTCTAGAGAATCTTCATCGCTCTCAAGCTGTTCACCAGAATTATCTCCTAGAC AGAGTCCTACCACTGAAGATCAGCATCACTGGCTGTATAAACCTGATGCATACCACCAGGCCTCCACCCC TCACATCTGGGGTGGAGCTCCTCCTCTTAAGACTCCAGCAGGGGTTGCAGGGGGTCATGGAGTTCATCAA GTCGGCCCTGTGACCAACGGCCATGGGGTCCATCAGTTCGGCCCTGCGACCAACGGTCATGCAGATCCCG GCCATAGCAGTGAGAACCACACTCCAGATAACAGCCAAGATTGGCATTTTGAACATCACCACAACAGACT TCAGATTCCTGAACCTCACAACAAGTATGGTCAAGGACTAAGTCCCACCACTGCTGCATGGGACGCTGCA AGGCAACAGACCGCATATGGTGATAAACATCGTAGTGATCTTGATTTGAGCGAACATGAGGATAGCCAAC ATTATGGAGGAGAGGATGAGCAGGGGAATCATATAAATGGGGTGTATCCACCTGAGGATGCGGGCAGCTT GCATCATGGGATGCATGTGCCAAAAGGTCTCGACTTTGTCGGGAACGGTCATGGAGAAGGTGGGGAAGAT TCAAACTTTTATCTGCAGGACCATCACTCTTCAGGTGATGAAGAGGAAGAGCCATTCACAGGGGAACGGC GTTACAGTCAACAGTACGAGCCACCCAAGTCTGCCAAAGCAAAGCCATTGACGAACGGCCAAGCCACGGG ATGGCAGGACCTTGATCACTTTCCACCGCGGCTCGAGGATGGGCGTGTCATGCGGCATGCATCCAGCGAG CCGAACGTTGGAATCGTGCACTATCAGAGAAGGAGAGAGCATGATGGTGATGAGGCAAGAAATGATACCA GAAGGATAATGTCTGATCAGATGATGAACGGTGATGATCACTATCAGCATAGTGTGGATCCTTATCAGAC AGAGTTCACTCATGCAGGAAGCAGAGGACAAGATGTAGCTCAACTAGAGATACTCTACCAGGCGAGGGGG CGTGAGATAAACAACCTGACCTCTCAGCTAGAGGCCTTGCGTGAGGAAAGCGCTAGGGAGAAACGCATCC TTAATCATCAACTTGCTATGGCACAAGATGAGAGAGATGGCTTGGGTACAACCTACGGTGAAACTCAGAA GCTGATGAATCAAATGAACAATGAGAACCATACTCTGAGAGGCCAGCTACAATCAGTCCAACAACAGGTC CAGTCACTCACAGAGGTTAACCAACAGCTTCATTCAGAGTTAGACACTGCCAAAGCTAACATAGAAAGCC TTAATCACCAGCTGTTTGAAGTCCAACGTTCACAGCCACTACACAGAGCAAGGGAACAGCATGATTCTCT GCTAGTGGGACTACAGCAGAAGTTCTCACAAGAAACAGCGAATTTGAGGGAGAAAGTAGATGCAGCTAGC AAGTTGGCTTCTGAAAGGGGTACACTCGTTGATCAGTTGGAAGCAAGACTAAATACATCTCTTAAAGGAG CTGATCAAGCAAGAATGGAACATGCAGAGACAGTGAATAGACTAACAGCTTCTTTGCAAGACAGTCAGAA CAGATGCCAAGAGCTTATATTACAAGGTTCATTGCCAGCAGTGCAGGAGCTTCAAGTCAGACTTAATGAT GCCAGCAAATCTAAAGTGATGGCAGAGAATATGTGCCAAACATTACAGGAGGAGTTGGCAGATCTGAAAG ACCAGGTAATGCTTTATGAAGGTGCTGTTGACCTTGGGGTCATATCAGGGTCAGGGGTTAAGCACCATTC TCCACCCACCCCTAGTGATGAAGACATAGTGAGAAACCTTGCCAAGGAAGACTGGAAAACTCCACAACCA GCAGGATCCCAGAGAAACCTGAAGGAGCCCATGTCCCCTGAGGAGACCCTGGTGAAGCTGAAGGCTGAGC TAAGCCGATCTCTACAGAGCATCCGATCTAAGAGGGAGCATGTCACCAAGCTCCAGGTGGAGCTCAGGGA GGCAAAGATGGAGGGACAGAAATGGAGAGGGAGAGTGGAGGGGGCTGAAGCTAGAGTTGGTCAAGTGGAG GCTGAACTTCAAATACTCAAGAAGACCTTATCAGAAAACTCAACCAAAGAAACAGACGCTCATAAAGAAT ACTTAGAGAGGTTGAAATCAGAACTGGAGGCTAAAACAGCAGCATACCAGGAGCAGGTAGAAAAATTGGC AGTGCTCAAGGCAGAGATGGCTCAGATGGTAGCTGATAGTGATCAGGACAAGAAAGAAGCTGTGGACAGG TGTCAAATGACATGTTTGCAGCTTCATGAGGATGCTTCACGTAACATGAGAGAAGAGCTTGTCAATGAGC TTCAGACTGAGAAAGAGACTCGTGTAGAAGCTCATCAGTATCAGCTACAAGAAGTCAGGAATGAGATGGC TGAGCTGGAGAATGAACTCCATAAGACCAAGGCCCTCTATGTGGAGCTCTGTGATGAGAAGAAAAGCCTG GAAGAGAACATGGAGAAGCAGATCAGTGCTCTCAAAGAAGAGTCTCTACAACAGACAAAAGCAGAGATGG AGAGAGAGAAGACAAGTGCCTTTGATGAACTTAAGTCTTCCATGGAGGCAAGCCACAGAGCAGAGATTGT CCTTCTCTTGGAGAAAAAGAAAAAGGAGAATGAGGAAGATCTGGAGAAGATTAAATTAGATCAGGATGAA GCTGATCACCTCAGCAGCATGGCTTCTGAGTTGAAAGATATACAGCAGAGGTATAAGGAGCTGTCAGCAT CATTGACTAGTCAAGTGAACAGTGAAGTAGAGAAGGCCAAGGAGCATTGGATGAGACAAGAAAACTCGCG CAGAAAGTCCTTTGATAGGGTTGCTGCGTCTACCATAGAGCAAATGAAGGCCAATCATGCTGTAGAGCTG GCTGAATGGCAGGCTAAGTTCACTGATGAAGAGCTGCAGGTCAAAGAGAGGATCGCAGCAGCTGTGAAGG AGGCCAAGGAGAGCTGGAAGAAATGGGAGGAGAAAAGGAGGAGAGAGTCTCTAGAAAAGAAGAGCAATGA AGGTAAGGTACAGGAAACAAGAGTGGAGAAGGAGCTCCTGGTGTTACAGCAGCAGCTCCAGAAGATCCAG GAGGCCCTTAGTGTCTCCCAGAGAGATGGTAAGCAGGTCAGAGCCAAGTATACCCAGCTCAAAGGGAGAC ACGACCAGGAGGTGATGGGTCTGAAGCAGGAGCTCAGGTCATGCCAGACCAAGCTCCAGCAGGCTGAGAG GACTGTCCAGCAGGAGCTAGAGCAACTGCAGACTGAGATGCGTGAGGCCAACTCTGTTACCATGGAATCG ATGCAGGAGCGTGTGTCAGCCATTCAGCAGAAACATTCCTTAGTCTTAGAGAAGATGAAATCAGGATGGG AGGAGGAGAGGCAGAAATGGAAGAGAGAAAAGATGCAGACACAGAAAGATGTCAATAGCATTTCTGTTCA GACAAGTTCAAATGATGAGTCTGCAATCATTGAAGAGCTGAAGATGCATTATATGAAGTCAGTAGAAAAT GTCAGAGCCTCTGCCATGAGCTACGTCACTGACATGCAGAAACGGTGTCAAGAGACCCTTAGGACGGCAG TATTTGAAGAGAGACAAAGAGTGGCTGCTAAGATGCGCAAGTTCTACACCAAGCAGGTCCATTCCTTGAG AGATGTTCCCAGAGAAAACAAAAGAACAGAAACGTCTAACCATTCACCTGACCAGCCACCAGCCGATCAA ACAAGATCCTTACCCATGAGCAGGTGCAGAGTATCTTCTTTGTCTACTCCACAGACTTTAACCAGTGACC TTAGACCACAGTCACAAGCTAATTACATCCCTTCAAGTAGAGTAAGCAGAAGAGTGCATTCAGATGAAAC CCCAAGATCCACGTTTCGTAATTCCAGCAGTGTCCATCCGGTTGCTGAGATGAGAAAGGCACAACACCCA CAGAACTCTCAAGTGCCTCGTGATGAACATCGAGATACAAGGTTGCAGGAACAGAGAGGTTTTGCAAGGG GAGACCAGGTTGGCAAAGAGACTATGACAGGAAACCATGTTGTTCAGCAAGGTGAAGTTGCGTCGATGGG GGATAAGAAGAAGACAGCCCACGGTTTTCATCACTTCACTGAGGATGACATTGGTCCAAATTCTGTAGCT CTTTTGAAAGATGGAGATACAAACTTTTCAAGAACAGAATCAACCAGCATTGCAGGAAGAAACTCTAAAA GTCCACCTGTAAAGAAACAGCTGCAGCAACACAGTAACATAACTGCTAGGAGACGCAGTGACGGTAAAAA GGACCACAGTCTTACACAGGAAATGCCATTAAAAGTACCTGCAAGGAAAACTGAGCTCCCATCCAATGGA CCACCTCAAGTTCTTCCATCTAACAGGACCACTTCTCAAGGTACAACGATGTTACGCTATGCTTTAGTTG AGCAGGACACACATCATTTCACAAAGTCCTGGGTCAATACCCACAGCGAACCACCTCCACAAGGAATAAT GCTGCCTACTGACGCCAATCTCTCCTTTGAATCAGAGTATGCAGAACTACCTCAGTCGCTCCATGAAAGC AGAGTGCCATCTTCTTTGCCAAACCATCCCTTCCTTGAGGAAAGCTTTTCCAAGAATGTGCCTTTGCCCA GGAGATTAGTGGAGCTCCAGCACGGGTTGTCACAGTCCCATCCTGTCAGGGACTCGAGCAGACAGGATGT GTATCATGTCCAAGCATCTACAGGGGGACAGCTCAGACAGGGGTCCACGATAACAACGTCCAAAGTTGTT ACCAAGGACATCCATACAGTAAATGAGGACAGTGGTATCAATAGCCCTTTCTTTGTGCAACCCTGAATCT AGTCCATTGTTACTCCCCATGCAAAAATATCTGTATACAATTGTCTTTTTAACAGGTGTAGGATAGGCTT ATCCTTGTTTTAAAGTCTGGATATGAGAAATCGATTACATGTATGTGGATTACATTGTTCATTGTACACT ATTCTAATACCTAGTTTGATTGTTTCTCATCGTTTTAAGGCCAAACTACCAGATTCACAGCATAGTAATC TTTTTGATAACCCAGAAAGTGA
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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