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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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>JT098714.1 TSA: Strongylocentrotus purpuratus WHL22.370380.0 mRNA sequence GAAGTTCTACATCAGGAGTCAACCATGGCGAGCAAGCGTCGACTCCAGATGACACCGTCTCGCTCAGACC AGGACCCAGATTATGAGGTCATCTCCACGCCGACCGCAGCCAAGCGACAGCGAGTGCAGGAGGAAGATGC TAAGGACCAGACAGTCCGTCGAATGCAGGTCGTCATCAAGAAACAATTTAACCTTGCTCTCTTAGACAAA GAAAAGGAGATCGAAGTCGTTGATGAGAGACTCCAGAAGGCTCGCATCCAGCTTGACAAGCTGAGAGCGT GCATTGTGGCAAGGTATTTTGGGAAGGCCGGACTTTCATCCACATCAGGAGAGAAGAGTAAGCAGAAGTT GGACCTGAGCCACCCTGCCATCCAGCGGGCCCTGGGCCAGCCCTCCCAGTCCCCGAGTCCCCCTCCCACC TTGCAACTCGGGGAGGGGGACATCAGCCTATCCCGGCCCTCCAGCCGAGGGGATGGGGCACCCCCTTTTC CCCCTCCCATGGAGAGTGGCCGGTCCACCCCCATCGGAGAGCTCCTGAGTCGGAGTGAAGCTTTTCTGGA CTCAGGGAGAAGTAGTCCGCTTCTTGGTCCCAAGGGCCCTAGGAATTCAGGAGAGGATACATTTGGAGTT GGCCCACCCCTGGACAACTTGAAACCTCCAGTGAACCAGGCGGACGCAGGTGAAGGGTCACGGCTCCACG TCAAGAAGCGCATCATTGTGGGGAACGTGTCAAAGTACATACCCCCCGGCCATCGTGAGGACAGTGATCC CTCCACACACAAGTGGATGGTCTACGTCCGGGGCCCGCCGGAAGAACCCCGGATACACCACTTTGTGGAG AAGGTCTGGTTCTTTCTCCATCCCAGCTACAGGCCCAATGACCTCCTGGAAGTGAAAGAGCCCCCATTTC ATCTGACCAGGAGAGGCTGGGGAGAATTCCCCATCCGAGTCCAGCTTCACTTCAGGGACCCCCGCAATAA GAAGGTTGACATTATACACCAACTCAAGCTGGACAGGACATATACTGGATTACAGACGCTTGGTGCAGAA ACGATTGTTGATGTTGAGCTAGACCGTTACCTCTTCAATGAATCCGGCGACCCCTTGTCCCGACCTTCGA CCCCAACCGTCACCAAGGTCAACTACAAGGAGGGGCTGAAGCCTGACCTCTCTCGCGTTCCGACTCCGCT TCGTAACTCACTGGCCCTCGCCAACGACGACGCCCGAAGGCAGAGCCTAACAAGCCCCAGTCCGCTACTT CTAGAGACGCTGGGGAAAACCCCCGAATCCACGCCGGATCGTTCGCGGCCTCCTTCAAGGAGTTCCAGCC TATCCAGCCCGCTTGTCAAGTCATTGCCGGGAGATGGCAGCAACAGAGCCACGCCCATCTCCATAGACTC CAACTACGACAGACCGCGAGAGGAAAATTCTGATATAACATCCACATCAGCGTTGTCATTAGGAAAGCTC TCATCAAGGGTCAAAGCCCAGTCAGGACCTGCCCTGCTTCATACGGCAAAGCCAATACGAGCCATGCCTC CACTGGGTCCCATCTCCACCAACGTCAACAAGAGTCTTGTCCTGGAGGCAATCAAGACGACCCAAGTCAG TCCTACTGGCACTGATTCCGTTGTCTTCACACCTTCCTCCTTGATATCAGGCAAGGGAGCGAACAATCAG GTCGGGAAGGACGCGCAAGTTTCTCCTACGCATACAGGGGCTATCAATGTCGGGGATGTTGCCATATCAT CACCGGGAAGTAAACTGATACGGATCCAGGATGGCCAGATTGTCCAGGAGGTACAACCCTCAAGGACGGT GTCTCCTCCACAGGGAAAGATGGAGAACAGGACAGTGGTGACTCTGAATCAGACAGTCCTGGGAGCCAAA ACCAACGGGAAAGTCACCACGCAAGCTGCCAAACAGGCAGTCTCTGGAACCCCCACAGTGTCCCTCCAAA GAATTCCAGTCCCAAGCTTTGCAGGACGCTCCCAGACCCTGGTCAGCTCGTCCAACCCGTCAATGCAGAG CACGGTCAGCATATCGCAGCTGGCAAAACAACCTGTCGGGGCGTCGCAATTGGTTCGGAAGGGTTCGACT GGTGTCACGTTGGTCCAGCAGTCTCCTTCTGTCAGGGGTCCGCAACAACCGCAGCAGCAGCAGCCAGGCG TCGTGCCAGTCATGTCCAATCCTCCGGCCGGGACGCAGTATTACATAACGGCCAAGTCAACGGACAAGAA CCTCCAGGGAAAGGTGATCTTGATCCCTCAGCAGGTCTTCGCTGGCCAATCAGGGAAAGGAGGCCGAGGA TCCAACCCAGGACAGGCATCTAAGCAAGGTTCAGGCTCCTTTCTATCACCCAGCAATGTTCTCATACTTC CCCAAGGCTCCATAGTTCCGCCCCTTCCTCCAGGCAGCATCGTTCAAATCCAGCCCGTCCCCAATCCCTC CTCCCGCCCCTCCTCCGCCCCGCAGACTAACACTGCTGGCCAGCCGATGACACGGATCGCCGTCACCCAG AAATCGGGCGCATCGACGATCATTTCTCCCAAACCTGCCACACAGCGAGTGGCCTCTGGAGGAGGTGTCA TCCAGATACAGCGGTCAGCTGGCCAGACGTTGGCCAAGCTTGTTCCTGCAGCTCTTGGGGGAGCCTCCAC AAGCCAACAGGCTCTGACGTCTTCCAGCATCTCACTCATCCCCGAAATGAAGGGCCAGCTTGCCAGAACC CCTGCTGGTGGCGTTGTCCTGGTGCAACGCACACCTTCCGCTTCAAAGAGCACCAATGTCCAAACGATCT CAGGTATTCAGAACGTGGTGTCAGGTCAGGTGGCGCCCGTCTCACAGAAGGTTGCTCTCAATCCGATTCC GATGACTGCTTTGTCGCAACAGAAGGCTTCTTTGCCTATCAAGGGTGGTGCGTCAGTGCTTCTGTCGCAA GCTTCAAAAGCAGTGTCTTCAAAGACAGTTGTACTCCAATCGCAGTCAGCGTCATTGCTGACAAACTCTA ATAAAACAATACAAGTCCGAACAGGACAGCCCACTGTCAAAACAATTACCAAATTCGTACCTCCTCTTGA TGATGTCAAAGACCACTTCTCAAAAGTTACAGACAAAAACAATGCAAGCAGCACGGCAAGTGTGGTGGAG GTTGCAGAGAATGTGTTAGTGAAGGATGAGGCTACAGGTGGTGCCTCGATTTTGAATACCAACACCAGTT CAGATGGTAATAGACTGTCAAATATTTCCTTGGATTCTGTTCGTGTCAAAAGAGCAGATCTTATTGATGC TGCCAAAGTGATTGGTAAAGACAGAACTGCAGGAGCTACCTCAAGTAAATCTGTGTTGTCACCCGAGGGG GAAGTGCAAAATCTTGAATCTATGCAAGTTAGTGTCTCTGAAATATGCAGCGATGTTGAAGTTGCGGAAG TCTCCAATGACGCCCTAGTTCAATCGGATGGGAATGGTGTTACTCCAAGTACAATAGTAATCAAGGAGGA ACCAAACATTGATGTTGAAATTGAAGAAGCCATGGAAGTAGAAGTGGGTTCAGACCAAGCCACAGGCAAC ATGAACGGCCACTGTGACAAAACCAAAAGTAGCTTTGCGAAGCAGCAGAATCCACGGGTCATCACCAGAA CTAACATCGTCAGTGAGGAAGTCAAAAAGACCAACAGAGCTGTCGTTTGTGACATTGCCCAGAGAAACAA ACTATCCGCGACCGCTCCGAAAACAAACGTCTCCGGCAAGTGCATGATCAAGGTGGTTAACACCAGAATG CAGAAGCCTTCGTGCCTTGCCTTTGACACATCAAAGGTTGGGGGGAGCAAAGTGCATGTGATTCGTATCA AGCAGGAGCCCGGGACAGATCCAGTCCTGGCTGCTCTTGCAACGGCACCTATCTTGACTCTAGGCAAGGG TGCGGTGGTCGTCCGGAAGGAGGAGGAGGAGGAGGAGGACGGGGACGACGTCGAGGGGTGGGAGAGCAAG GACTTGAGGATTTGGAAGAGGCTTCTTGGGGAACACTTTGAAGAACAGACCAACCTTTACGGGGTGACGT CCATCGAGCAGCTGGTCAAGTACGTGGCAGAACAAGCACCGCTCATAGATCCGACAAGAGTTCAAAACGA GCTGCCATTCTGCGCCACCTCCCTGGAGCACTACCACTCCTGGACACTGGCCAAGCGCCGCTCGATGGAG TGGCAGAGGGTGGTGTTTATGAGGGACAAGCTGACACGCCTCAAGGCCCGGGTCCAGTGCCTGCGCAAGG TGCCCATGTGGAGCAAGAAGAGGATCGTCATCTGGTGCCGTCGTCATGGCTTCACCCCTCCTGAACCAGG ATTGAAGAGCTCAACCCAGAGGTCAAGATGCAGGTTCTGTGGCGAGGTCAACTGTCAAAGAAGTGAGAAG ACGGACGAAAGGAGTGCAGGAACTACAGGGTGTCTGAGAAACCATCTCAGTAAAACAGGTGTGCTAAAGA ACACGACCTTCAGCGTCCCGGAGGAGCTGGGTGAACGCTTGAAGAGCTGCCAGTCCCTCAGGCGAGGCAT GAGCGAGGACGATGATATGGAGATCGACATCATCAGCTTGGGCGACCCCTCCAAGAGGTTGAAGGTGAAG ACGGAGGGTGCGGAGGAGAAACAGCAGCTGAAGTGCTTCATGCCACCCAGCGAGGGCGCGCTTTGTGTCA GAGAGGCTGCAGAGAAGATTGGTGTTCACTTTAGACCGATACAAGTCGGGGAAGATACTTATTCTCCGGT CATCCAAGAAATGATATATACTGCAACCAGACAATTCCTCAGTGATCTCCTCAGAGCGTCTCTATCTAAG AGCTTTGGAAATAGGGAAGATCACAGGCTTCCTGAGGAGATTCTACCCCTTCACGTTCATCAGGCCGTAT CTAGCATGCCGTCATGTGACTTCCTCACAAACAGTCACCTTGGAGTGATCGCAAGCAGCTCAGATAGTAA GAAAGAGTCCTAGAGATGGATCGACAGAAGAACTGATGAAATGAAATACCAATGAATTGCTGATAGTAAG ACAAAATCCTGGTATGGATTGAGAGACTTACTGAGGGAGAATGGGTATATGGTACAAGTATGGATTTTGA TAGTAAGAAAGAGTCTTAGAGATGGATAGACAGAAGAACTGAAATGAAAATACCAATGAATTGCTGATAG TAAGACAAAATCCTGGTACAAATTGAG
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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