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Echinobase
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Echinobase Accession
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Echinoderm mRNA
Echinoderm protein
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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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>JT095312.1 TSA: Strongylocentrotus purpuratus WHL22.738485.1 mRNA sequence CCGCCAGAAGCCTAAACCATGGACCTACTACATGCCTAAACCATTGTGACGTAAACATTCATATCATGGA ACTCGACGACGCGCTCAAATCCTTAGGCGACTTCGGTCGATATCAGACCATTGTTTACGTGCTCATATGC CTCGTCGGACAACTCACGCAGTCCTGGCATATGCTCGCCATCGGCTTCCTGGGGGCGGTTCCCGAGCATC ATTGTCAGATTCCTCCAGTGGGGGGTCCCGCGGACGATGTCGGCGATCCTTGGAATCATTACTACCCGCT TGAGCCGGGGAAGGTGGATGGCGAAGACCCGGTGAATTCCAGCTGTTCGAGATACGTGAACTTCACCGCT GGCAATGCGACGGAGGGGTGCACAGATGGTTGGATTTATGATGAAGAGCTCTATGGTAAAACAATTGCAA CAGAGTGGAATCTGGTGTGCGATGAAAAGGGCAAAGTCGATCTCTCGATGTCAATCTTCATGGGTGGCGT CATGGTCGGATCCCTCGTCTTTGGACAGCTATCGGATCGTTACGGAAGGAAGCCGATCTGGTTCATTTCG ATCTGGGCCCAAATCGCGTTCGGTGTCGCAGTCGCCTTCTCTCCCAACTACTGGACCTTCGTCGCCCTCC GGTTCTTCGTCGGCGTCTTCGAACAGGGTATCGACCTGACGTCTTACGTGATGGTAACGGAGATGTTTAC ACCGAGTAAGCGTGGACCAGCGGGTATCCTCCTCACCGTCTTCTGGGCTTCAGGAATCATGTCACTACCG GGCCTGGCCTATCTCCTCAAGGACTGGGTCTACCTTCAACTCGCCATCTCCTTGCCAAATATATTAACTG TCTTCATCATAGCAGCAATTCCAGAATCAACCAGATGGCTATTATCCCGCGGGAAAATAGACCAAGCGGA AGCAAACCTGCAGAGGATTGCCAAGTTTAACGGCAAGGAGATGCCATCACCGATCCTGTCCCAAGCCCAA GCTCAGGCCAACACCTCGACCAACTACGATATTTGGAGCTTGTCCAGAAAAACTAAAGTCAATGCCAAGC TCAGACAAGTATCTGTAGCATCGGATCCCGACCTTTACGACCTTACGAATGGCGATACGAAGACGCTTAC CCTTGTGGAAGGGTACAGTATTGCAAGCATGGACGCGCTTTCGGAGTCGGATGCGGTCTTTGACGCGGAG AAACATTTCACACTTCTTGATTTGATCCGGACGCGGAACATGAGGAAGCTGACTATCATCATGGCATTTG TTTGGTTTGTAAATAGCGTCATCTACTACGGACTGTCGCTAAACACGGACAGTTTAGCAGGCGATCCATA TCTGAATTTCTTCATTAGTGGAGCTGTCGAGGTTCCCGCCTATTTCGTTGCAGCCGGTCTCATCAGATGT GTTGGCAGACGGCTTCCACTATGTGCCTGTCATATTATCGGAGGTATAGCCTGCATAGCAACAGTATTCA TTCCCGCCGAAACAGAGGGCGGTACAGATCTTTCACCTGTCATCGTTACCGTTGCAATGGCAGGCAAATT TTGTATATCGGCGTCATACGCCATCGTATTTCTCTACGCTTCAGAACTCTTCCCTACAGTAATCAGGAAT CTTGGACTGGGCGTGTCGTCGTTTTCTTCCAGAGTTGGTGGTATCGTTGCTCCGTTTTTGCTTGCGCTCG ATGTCTACGAGGTCTGGCTACCAATGACCATTTTTGGTACCCTCTCGATCCTGGCGGGTTTCAGCGTATC ACCCCTCCCTGAAACTCTGGGTCGCACTCAGCCCCAGACCATACAGGATGCCGAAGCTCTTCACCGCAGG ACCCGGTCCAAGCTGGCCAGTGATAAGCTACCGTTCTCAGCCCACATTAATTTGGAAGATAACGACACTA AATTATGATTTTCTTATAAAAACACCAAATGAAAGATAAACCAAGTACTTTCATTGAATTAACGTAAAAG AGAAAGGATCCTTCGGAAAACTTTATAATGACCGAGGCAACCGAATATCCAAATTGGTTTATGACACCAC TTTTGATCATTACATGCGTTATCATTGTTTCTCTTTTCATGAGGAAAGAGGGAGATAGAGAGAGAGAGAG AGAGAGAGAGAGAGAGAGAGAGAGAAAGGGAGAGAGAGAGATATAGAGAAAGAGAGAGGGATGGAAGGGG AAAGAGGATAGTTAGGATTAGGCATGTTATTTAACGTCTTGTGACTGCCTTTCCCAGACCATAATTTAAA TCTGACCTCCACTGAAACTGTGATTCATGAGTCCATGAGTCATGAGTCACTCGACTGACGCACGACTGCA TGCGTCAGTGACGGTGGTGGTCTTTGACGGGCCTTATTAGCGTTACAACGTACACAAAAAATAAAAGAAT GCAAATTGAACAATGTAAACATCATATTGATTCACAGGGCCCGATTGGCGCAGGGAGTGACGGAATGAAA ATGACGCAACATGTACCACGGGCATTACAAGAACGTTTCATACCCTGAAACGGAAGAGAAATTCAAGTTC AGGTTCGTCTACGATACTTCTGCAACGTTGCAGGATCGAGTGAAGATAATGAATAAATTATTCAAAAGAT GTATAAATGTTAATAAAAAAACGTCATTGTAGTATGCCTCTAGAAGGAATATACAATCTATTTTAACCCA GTTCCTAAAAAATGCATTCCAATGCTGGTTGAATGTACTATGTAGTTTTTCTCACTTTTCATAATTATAT GACATTAGGTGTCCCCCGAGAGATCGAGAGACATAAACTTGTGCACTGAATGAACACGACCACCTCCGGT AATAATAATGGTTCAACTTTACTGCATGACCTAAATTTTTCAATTTACTTGACTACGGCTACTCTACAAC AATTATTAATTTTGAAATGATCACCTAATTAATTAATGCGCGCACACCGCTGGGAAGTCTTTACATTATG AAATAAATCAAGTTTACGTCGACAATGTGTTCCCGCATTCTAGTGCTTGCTTTGGAAAACAGGACAAAAG ATGAAAATGGTGTGACATCTCTGACGTAAAAATCATGAATGATCGACATGATTTATGGGGATTGAAAAGA GGACATGATTACATTTAATCACAAATTGTTTTGCAATCCCCAGATCACCATGTCAACGAATACATAGATT ATATATATATATATATATATATATATCAGGCAATTATTTACTCTTAAATCCATTTCAGTGGGCAGTATGA TCGATTGTACACATGCATCGACGAAAATGATAATGGTACTGATAATTAATATTGGATATCTTTATAACGC ACATATCCACCATGCAAGGTGCTCAAGGCACTTCAATATTACCCCGGCTCTGTTTGGCTACCGATATCGG TGCTCGCAGCATTTAAAGACTTCCTGCTTTATAATTTAACACCTTGGTGGAGAGTGGCAAATGTAGATAA ATGTCTTGCCAAAGGACACTTAGTGCCATGGCGGGACTCGAACCGCAAACCATGTCATCCACAATCAGAT GACGTACCCATTATACCACTACACTTAAGATTTTGTTAACGGTAACAAGTTTAAGAAAAATAATTCGCTG TCTATATACGCGAAAGAAAAATTGAACATGAAGATAAATAATCTCGCCGTGTATCATTCTACCTGTATAG GGTTTAAATTTGTGATGTGTTGCTTGATTGTGTTGCGAATTACGTTCTGGGCCCCGTTTCATAACACTCT TGTTTTCAATAAAAATTTACAATATCTTAAAGGCACACTGTCCTACTTGTCTCTACTTGCTCCCTCTATA TAGAAAACTTCCCAAATCGGTGCCTGTTGGTCCCCCATGATCCTCTTTTTCTTATGTTAAATGAGAGCTG AGTTAATGAGATAGCCACCTCTCACAGTGACCTCGATGGCTCACTGGGTGGTCTAATCCCTTCTTGCTGA AGTAGTAACGCCTCCCTTTAAATACAGCGTATTTTACCGACATTGCTACCACTTAGGGGAAGGCAAACAA ACAGAAATTTTCCGGTTCCTGCATTATCACGCTAAAAGTCATCTGTTTGTGATGCATAGTGGGACATGAC TGTCGACACATCGGGACATTGTGAGCAGTAGATGGCAGTTTAAGATAACGAATTCCGTGCATTTTTGGTT ACAAAATAGAGTTTTAGCGCTCTGTAATGATAATCTTCCTCAAAAAAGCACTCAAACGACATCTCTTTTA GCGGGAGAGTAACTGTAACGACATAAATATTGTCATACAAACTATAATGTAATAGTTACAATAAAAGTTA TCCGAAAAGGTGAAGATTATCACTTTTGACGTTAATTAGGTGTTAAAAATAATCCATCATACTTTTTAAT CTGACCTCGTACGCATTTTATAAACCATGGACTCTTTGAGGGTAGATTTAGTATTTATGAACTTCTTTAT CAAACATCAATTTCTATAATCCTTGCCATGTTGGACGTTTGTCCCGAAAGATAATATGTTATTGAAAATG TAGAGAGCGTATCTTTCAAAATAATCATGTAGGCATTATTTTTCTTTGTTATCATTAAACGATATTTTTA AAGAACTTTTTATCTTCTTTGTCTTGTTTTCCATGTAAACTGTATCAAGAGTTCTTTGATGGTTGCCATT TATTTGTTATTAATTTACTTATTTATTCATTTGATTGTTTGTTTAATTCATATATCTATTTATTCATTTA TTTATTTAGTCCATTTTTATTTGAAGTACATGATAGTTGAATAGAAAAGCAGCTTTGAATGACATCAATA TATTAACTGCAGAAACTAACTACAATTATGTTATGTTACGAACCTCATACATATTCATGTATGTTAATTT GCGCATGAGCAGAATATTACTAGTATACTCGCTGGTGAAGAGGTGATTTTGAGTAAAGCCTATCTGCACT AGTTTGGCCAGGAGGGATTAGACCTCTCTGCTTGGTCACCGGCAGGTGGTTATCTCGTCAAATCAGCTCT TAATTAACATAGGAAAAAGGGCAATATGGGGATCAA
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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