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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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>JT120172.1 TSA: Strongylocentrotus purpuratus WHL22.752274.0 mRNA sequence CCTGTCTAGGATTCGCAATAGTCAGAATGCAAACTGCATGTATTAAGTGTGGCAACAACTATATAGTTAC TTCTCGATTTTGCACACGAACCGCAGATTCTAATTCCGCAATGAGTTTGCCAAAATTGCCTAGTATTAAC CAACCTGCGGATTGTAGCGGAGTGCACAGGTTGTACGCGTATTACGAGCTAAAGGAGTGCGGATGAAATT CGTCTTCTGCATGCGATCGCTATCGAGGTTACGACGACGGCTCGCTTCTTTACTTCGTGTTTCGTATCAA GTTTCTACGACATCGCTGTCTCATGCATTCCGCATAAAGACGGCGTAACGCGAAGCTGGATTTGAAGTAT CGGATCACTTGCCAATGAGTAGAATTTGAGAGGGTCTATATTAAAGCGCCAGCTATCTATACAGGACTGT GTGATATGCATAAACGCCACTGTGAGTGTGAATCATTTGAATAGTCATCACCGCATTCCATAGAGGGAGA ATAGATAGAAAAACGGATCGAAGCTGCACACTCCAGCTGAGCAATTCAAATAGCTTCTGTGAGCACGCAT ATTTTGTTTCGTCAGGCGCCATTTTTTAATAAACCAGACTGACATATTTTCATAATATATCCAATTGCGA GATATATACGGCTCTGTAAGTTCATAGTCGCACATGCATACGAGACGCATTTAGAGAGATACGTGTATTT GTCGCTGTATGCCTACTGGACACGTTTTTTGTTTGATCACTCACCTATACTCGACGCGTCTAACTGGATT ATACTACTTCGCTTTTGCTGAAAGGATACTTTACTGAAGGAGAGAGAGAGAGAGAGATCTTACTAGAAAA GGATATATTACTTCTACAGCACAAAGGATAACAGAAAAGATCTACCAAGATGCAGAACGTGGATCTGCAT AGCCTGGAGTGCTCTATATGCCTCAAAACCATCAACGAACCCAAGCTTCTTACCTGCTCCCACACCTTCT GCAAGGCATGTCTGGAGAGGTTGTCCGATGCTCAGGTCAACCGTACTGTTCTACCATGCCCCATCTGCAA GAAGACATCCGCCGTCCCCAAGGGGGAAGTCGGCAACCTGCAGACTTACCAGGCCCTGAAGTCCGTGGTG GATGACATGAAGAACAAGCGTCACAACTGCACCTCCTGCGATAAGGAAAAGCCACCTGCAGCCGTTGCCT TCTGCCAGGAATGTGGCACGTACATGTGTGCCGATTGTCAGAAGGTTCACAGCCAGTGGGGTACCTTCTC CCGCCATCAGGTGGTGGGCACGGGTGAGTTCTCCTCGGGCAAGATCAGCCTGAAGAAACGGGCCACCTGT AAGAAGCATCCTACTGATGACGCCTCCTGCTTCTGTATCGAGTGCCGCAAGTACATCTGCTTTTGCGAAG TGCTGGAGCATTCCAGACAAAGCCATTCGATCCTGCAGGCCGACGAGCACGAGGGGGATCTGAGAGAGAA CATCCAAGATCTGAAATCCAGGGCTTCTATGAGGAAGAGCACCATCAACAAGTACATCGCGTTTGTGGAG GAGCAGCAGCAACGTTTGGACAGCGTCTTGAGCCAGATCAATGAGAGCATCGACGAGGCCTACGAGGACT CGGTTAAGCGACTGACGGAGAGGAAGGGATTGCTGAGGAGCGAGGTGAAACGCCGAATCGACCAGCTGGA GATCTCATTGAAGGACATGCTGGAATCCAGCCACCAGCAGATTGTCCACGTCGATGCCGCGACGGAGCTG GTCTCCCATGGCCTCAACGCCCCTCTGGAGAAGGAGTCTCTGACAGCCCACGACACACTCTGTGAGGAGC TTTCCAGGATCCTGGATCGGGAGAACCCAGACTACAAGCAACCATCCATCGCTGCTAAGCGAGGAGAGAA AATCCTCTTCGAGAGAAACAAGGTCAATAATGAGCTTGATCTTGGTCGAGTCCAGGTGGCTGATTGGGCG TCGAAGCATGTGGAATTCCCAGTGAGGAACAGCATCTCTGCGATGGCTTCCATGCCCGATGGTACTATGG CTCTGGCCAGCAATCAAGGAGGTGTCGACATCTTCGATTTCGAGGGACGTGTCGTCAGGTCTGTCCTGAA GAATGCCAAGGTCCGCGAACTCGAGTTCTTCAAGAATGGTTCCTTCATTACCCGCGACAAGACTAACACC ATCGTCGTCTATAGCAAGTCCTGCGAGGTTATTTCACACGCCCGCTTCGAGACCCTGAGGTACGACGAGG CTGGAATGGGTGACCTAGCCTTAGACAGCGATGAAAATGTCTATGTTGGTTACAGGAAAGCAAAGGCCAT CCAGGTTTTCAGTTCCTCCGGTGGCAGAGCTTTCCGGGAGATTCCTTGCGATGGCTACGAGCCCAGTCAG GTGCTCGCCCTCAAGACCAAGAAGTTGCTCTTGGTACAGAGCCACTCCAACTCAGTACGGCTGATCGATT CTCTGGGAGTCATGAAGCACGATGTGACCCTCTACGACAACCTCTACGGTTACCCTGCCATTTGCGGGGA TGATTCTATCATCATCGCTTGGGTCAAGCACGATGAGGGGTTGGTGAGCATCGACCAGTACAACAACGAG TTGAAGCATGTCCAGACGCTCATCGCAGACTACAAGATTGAGAAGCCCGAAAAGCGCCACTGGTACCATC TGCAGCAGTACACCAATGGCGCAATGGCCTTCTGCACACCAGACCGGATGTACATCTTCAGACAGGCTCT GACAGCTGCAGATGTGTAGATCGGCTGAGTATCATTCCTCTTTGTAAACTCCCTACTGTAATATCTCTAT AGCCATAGGCGTAGCTAGGGGAGGCAGCGGTGTTGCCCCCTCCTAATCGAAAAGCGAAGGGGAGAGGGGA AAAGGAAGAAAGTGGTGAAGCAAAGGCAACGTTTATAGAAGATAATTCAACCCCGTCCCACACCCTTTCC TCACTTGATTATCCTTTTATCTAGCATTTCAAACAGGTTTGTCAGACCCGAGCCCCCTTCCAGCAATGCC TATCAAATAGTTTAACTCGAGTTACGCCATTGGCCTATCTCTGAGATTCAAGTTTTGCCTAATCGGTATT TTATGATGTGATATGCCAAATTAAATCAATTTAAACAACACTCAATGCAGTCATAATATATTTTAATCGC ATTAGAAATAGCCAGATAAATTGAGGGGAGTTCTTAGTCTGTAAAACTTGATGGATGAAAGAGTGCATCA CTTCTGTCGCTCTGAAAGTTCTGTACCATTCCCGTTTGTGCATGTATATAATTTGCAAATACTAGTTACC CGAGGTGGAATTACCTACAAACGAAATTGGTCCATTTATCATTTTTGTGTCGTTAATTTGTTATATTTGT ATATGCACGATGTAAGTCATCAAATTCAAGTGCCTTAACTTAAAGGCAGTTTCATCAATGCACCTACAGT TTCCAAATTTATGGCTAAACGCTATTGTGTATATCGTTATGTTTATGGACAACTAACATTTTGATAGTGT AGCAAAAGAGAAGGACATTGTTACGAGATTAGTGCAAATAAGTACTGATCGTTATTTTGTAAAAGCTAAC ATTTTTTGTTTAAATGTTAATGTATGCAGTTTGTTGTGAAATCCCGTATACTTCACTTGTTCGTACTCTA TAGTTTTTAATTGTTTATTTTGGGGATTTGTTTGTATATAATTTCCGTTAAAAATATGTTTTAACGTCCC TGATCAGAATTCTCGTTCATTTTGTTTTGATAGTTTGGTTTTATGATCCATATACATGTATATGCTTTTT ATGAAGGCAAATGTATATTTGAAATGTTACGCTGATGTGTTAGCATCGATTTAAAACTACATAATTTATG TAGACTGTAAATTTAGTTGTTTAAACAAATAATTAAAAATTAGCAAACAGCATAATATTTATGTGAATAT ATTTTTAAAATTTGAATCTTCCCTGTATAGTATAAAATATATTCGTTATGTGACTTATCTCGTTTATTAA ATATTGAAATATTTTTTTGGGTAAAGTCTAAGAGATACAATATACAGATGTAATCAAATGTATTATCTTA ATTATGTCTTTCCCTTTAACGCTGAGGTGAAGGTTTGTGAGCCTTGTTAAGTCAGTGGAATTATAATACT AGGTGTCATTTGCCTGACGGATGACTGCGTCTTTGACACGCCGTACGAGGATGTCATCGTACACAAATGA TTGTAACATTTTCAATGCACACAATGCGTTGACTTAATTAATGGCGCATGGTCTAATTGTCTTCTCGGAG TTGATTAGCGCAGGGAATATCGCAGTCGAAATGACGCCCCGCGCGCAACGTCATAATTGTAATAATGGCG GTATATATCTTTGTGCCAAACAATGTACAATTCACATTTTTGTATTAAAAAAGTGCTGCATTTTTTCCCA AGTGAGTTATAGACGGTATCGTACACATATTTGTTGAGAGTAAAATGGACACATTTTATTTTGTATTATA TGTCGATCATGACGTCGTTAATTAGGTCATAACGCCATTATATTGTAGCTCGCACGGACCAAATATCTCA GGAACCAATAAACAGCACGAGAAGGTATTTACTCTCTTTCTTTCCAAGATTTGGGTGATATAATGGTTCG TCTTTCTTTTTTACCCCGAAAAATACCTCCCTTTGTATTCATCCAATATTCTCACACATATCCTGGACTT TTGGTTAAAATTACTACCTTAAAATGTCACGTATTTTGTAGCATAGCGAAATTACGTTCACTTCATCTTG AGGAATGATTCCCTTGCTGGGCTCTCCAATCTGTTTGTGTCACTGTATACGAAAGAAAGAGTAAATGTAG TACGGTTCAATTGCACGCGGACGTGTAATGAGTGTCATTTTACATGTTTTCAAACAACAACTATACTATA CGGGTTGTAAGGTTACTTTATTCGTCAAGAAAATGCCTTCTTTATTTGGCATGTCAATAACAATTCATTC AGTTGTGTTCACGCTTCTGTACGTCCATTATGTGTGTGCATTGGGGGAGGGGGGGGGGGCACAGGGAATT CTATAGCCACTAAAACTTAATACGTGCAGATTGATAAGAGTACGAAGTTCAGTTTTCAAAGTGAATCGGA TAAAAGGGTCCTTTTAAACTTAGAAAGGAATAGGCGACGCTAAACTTGAATAGTGCAACCCAGTTCTTTA TCATTTCCTTTTAAACATCAATCACAGTTGGCGAAAGCATAGAAAAATAGAAACTTGTTTTTTTCCGTTG CGAGCAATCCTGGTGGAAATCCTTTGAAATGTTCAATATTCAAATGATTCACGGGTCATTTTCATGACAT TAGGCACCTCAACTGAAAATGGCTAGAGGCTGAAGATTAAGAAAAATATCTCGAAAGCCGCACACGAAAT ATTGTAATCTGCAGCTCATTTGTGAAAACCAGTGCGTCTGACAAATTAAGCTCGCGCGTTAGAATCACAT TGTACGTCAACTCTAGGCCTCCATCTATATAGTGGCATATGTACTGTAAATCAACTTTAACTGTATTTTG ATATCTTTAGTTCTTTCATTATGGATAATATCTTTAGACAGCACGTCTAAGATGGTACATTCCGTATATA AAATATGTTTGTATGTTTTGAAATCAAATGCTTATTTTACATTTTTCTTTAACTGTATCTGTATTCAAAG TAGGCTATGCGTATTCTGATTACAACTATGTAATGTTTATTGGTTAATAAAATGGTGACGAGTTCTTTCG GACATGACTTTTCGAAG
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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