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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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>JT099230.1 TSA: Strongylocentrotus purpuratus WHL22.608861.0 mRNA sequence GGCAGATGACCATCGCCCTGGTGGAACTCAAGCCAGAGTTCCTGCGTTGTCGGCAGGATGAGGACTCTGA CTATGATCCTAATGTCTTCAGTGAAGATGATGATGATGTCCAAGATGTCGTGAAGAGTCCCCCTCTTACC AAGGCAGCAGCAGCACCCATCGCACCGATGACATCCACAAACAGGAGCTTCTCAGACACCATGGATTCCA ACAATCACAACCTAGTTAGTGAGCTGACTCAACAGAATAATGCCGAAAGTCAAACCGTTGAGGAGGGAGA GACTGATTCGATTCCACTCTTAGCAGAGACCACGAGGGAGGAGTACACACAACAGGGTGCTATTCCCAAA CAGAGACTAGTCTCACAAGGAAGACGCAAAATAGAATCGGAATGTGGGTCAACAAGCATAGGGGGTGGTC GCACGGGACCGCTCGATGTCGTGACGGATGTTCGGGTGATGAATGGCGGAGCGGAGGCGTTAGATGAAGG AATTATCTTACCGTCCGATGTACAAGGCGAGGAGGAGTTACAAACAGACTTGCCACGTTGGGCAGATACT GCCCCCAGACATTCGCGGCCTGGTCATTTATGTGACGGTCCTGGTAGCAACAGCCAGTCTCCGAAGCGAA TAGCTCGGAGGAGAGAACATCATGAATCCAATGGTCATGGGTCTGTGAAGGACACCGATGTAACGTTAGC AAACGGTGTAAGACATGTAGCAATAATGAATGGAAGCCCTCAGATAGATAAAGTGCGTAGAGCACCTATT AGTGTGGATGAATCTGATCTAGACTTGTCAGAGCCAGTCAGAGCATCCTCACCAAAGCCTTGTCAAACTC CAGTGGATGAGAAGGGAAAGGAGAAGAAACACACAGCGTCATCGCCTCAGACAAAAACAAAGAGGTCAAA GTTAAAAGGTCGGAAAGCAGAAAATGGTCAAGAAGGGGCGGCCACCGAGAAGCAAGGGTCGCCGAAACTC TCCGGCAGCGCCCAGGAAAATTCATCAGGAAAGAGTCGCAAGTCCTTACGCAAGGCATGGTCCAACTCTG ACCGCTCGCCCTCCAGGTCGCGGATGAAATCACAGGGAGAAAACTCTGACAGTGATGCAGAGAATCAAAA CGCCAACGAAGCGGGTGATTCGTCAACGGCGAGCAGTGCAAAGTCAAGGAAAGCCAAGCTGATGAAGCAG TACGCTAACTGCAAGTCAAAGGTGTTTGTCATGCATAACAAAGCCCCCTTGTGGAACGAAAACACACAGG TTTATCAACTGGACTTTGGTGGCAGAGTGACCCAAGAATCAGCCAAGAATTTCCAAGTGGAATTACTTGG GAAGCAGGTGATGCAGTTCGGAAAGATAGATGGCCAGGCCTACACCTTGGATTTCCAGAGTCCTTTCTCT GCTATCCAAGCCTTCGCAATCGCTCTAGCAAATGTGACCCAGAGACTGAAATAAGATGGCGCTCTGGCGA AAGTTTGGATTTCCAGAGCTCTTTCTCCGATATCGAAGCCTCCGAATCACCCTTGCAAATGGGACCCAGA GACTGAGGAAATGCTGTTTGAGATTAAGCCATCATTGTTGTGGAAGTTTGGATTTCAGAGCGCTTTCTCT GCTTTCCAGGCTTTTTGCAATAGCTTTTGCAATTGTCATCTGGAGATGGTAGAAATGCTTTCTAAGGTTT GGCCGCTGAGAGACTGACATTGGGAAAGGACTTCACCATCACTTCTGCAAACCCAAGACAACTCTCCTAA ACCTCTTATGGCAGCCGTGCTAAAGCCAGGGTAATAATCGGGAGCGCCAGGAGTGTCAAGTCTGACAGAC ATGAGCGCTATACAAGAACCAACTGTTATTATTATTATTATTAAGTTCAAAATGGATCTGGATGATGCTC AGAGAAAGGGTACGGGATCAAGGATGGTGAGAGGAGATCTGAACAGAAAATAGTTGTACAGATACACAGA GGACTGGGACCTGGAACAAGCTCTGTCAAAGTGTTAGCATAGAATGAACATCATTTCAGTGAAGCACAAA TCATGAAATTAATTCAGAACATTTGTAGTGCCCATGCTTAGTTTATTTAAATGTACACTTACAGTAGAAA TAATACATTCAGTGCTAAAGGACAAACATCATCGTAACCTATATCAAACTTGCCTTTTCATCCCTCTGAA AAATTACCCATATTAAAATTCATGAAAGCTTCTGTATTAAATCTCACGCAACTATACAAGATTAAGGAGG GATTTAGGTAGCTCATTGATATACAATAGCATGAAAAGACATGTCCAGAAAGCAAAAAGGCCAATGGATT ATGAAAATTTGTAATTTGAAATATATATATATGACATTTTTGTTAATATTGAGTGTAAACAAGGTTGGAT AGATATTTCTTGATCCTGTGAGCTATAAATATGGTTCTGTCAAAATGCCATGAAACTATAATTTAGTAAA CAAGTATTCATTTTGCATTCTGGTCGCGTCTCTCCGTGACACTATATTTTGGTAAGCTACCTTAGTGATG CAAGGTGTAAGTATTCCTTGCTGTCTCTCGCTCCCCCTGTTTATTTTATTCAGCAATTCTTTGATGGGTG CCCAATGGATCACAGTGGGACAAATTTAGAGTAAAATTGCGGTGTCTGAAAGTCTGTGATGTGGATCTCA ACATAGCTTGGTGATATCAATATCATTACCAGACTATTCATGGTTGCACAATTGTTTTTGATGCATTGTT TATACAGCATCTCGGTGTCTTAAACACACAAAAAAACGTAAGTCCCCCCCCCCCCCCCCTGAGCAACACA TCTTAATTTCTGAACCGCAAAAGTTTTGATCAAATCTACTTAGAAGTGACTGTCTGTGTGTGTTTCTCAT TTAACTTATATCTGAAAATCAGAGTTATCCATGAGGTCATGCTAGAATGAGCTTTCTCTTAAGACACAAT AATCACATTACAACATTCACAAGACTTTCATTTCATCAGTGTACTGATTTGAGAGATGGTCAATTTTCTG ACTGTCTGCTGTTTGTGCATGCATTGGAACAGTTAATGATGATCACAAAGTTGCCATTTTCATTGCACAC ATGTATGATGTGTTAATCTATTACTGGCCACTTAACGCTATTTCTTTGTACTGCAGAAAACCCTTTCAAT GAATTGTCTTGAAAAGTTGGTGAGATAAAAGTGAAATAAGCATGAATGAAGTCTGCTTTACTTTGAAGCG GTGAGTCTGCTGCATTTAGCAGGGATCAGCAAAATAACGGAACCTTTCCAAATTTATATCAGCAAAAAGC TCTTAATACCGGACACTAATTTGTCAATGAACTTTAATTGAACACTGAGATAAAAGTAATTTTTGTTTTA TATGAATTACGATTCCAAACGATCGACAAAATCATTATTGTCTACACTGATATACGGCCATTTACGGGTG TTCGGTATTAAGAGGTTTCTGGTATTAGGTTAATGGGGTTAGTGACCATATGTGCTATGTTAAGGATGTC ACAGTGCACTATGGGCCATTGCTATTTGTATGCTGTATGGTATGAATTGTGCTTAAATTAAAAAAAAAAT CTGACGCTCAGTGGTTTGAAGTAGATATACGTTTATGCATGTACTTCTTCTTATCAAGTCCAATACCAAT TAATATTCATCACAAAAAGTGAAAAAAACATTTCATGATTACCTGTATTTCTCATGTTTTTTTCTTTGTT TTTCTTCAAATACAGTGTATCTTAAGGAAGCATTCTTTTTGCAATACATAAAAAATTAAGCTTCACCAGT TACATATATTTGCATCCAGTATATACATGCCTATTTTGTTTAAAGTACTTCAAAATTAATATTTGAAAAG TTAATTGTGAAACCAGCTATTAAACACACTGAAGTTCCATATCAAAGCAAACATGTAGATTTTAGTTTAC ATTTACTTGAGATTGATTACAATCTGTCACATTATGATTTTGATTTTGAATTTGGAAGTAATCCATTTTT GTTTTGTTTGTATAAATCATTGCTTGCATTTTGATAATGAGATTTCTTGGACTGTAAGTTTGGGAGAGTC AGCATTTTGATCATGTGTTGTTCATGGGAAATGTATACACTGTAGATATGCTATCATGCTGGTGAAACGC TTGGGTACCTTAGCGATATGTAATTAAAAGTTTTGTTTTGATATAAAAGTTTAGCTTACATTAAGCCTTG TCAAGATGGTACATGCATTTACCAGCTCCATATCCTAACGATTTAGTTCTACCTCTGTGTGATGGATGAA ATTAGGATTTTCAACAATTATACAGTTTGCGTTCTGGACGCGTCTTTTCATGCGACTATATTTGGCTACC GGTAAGCCGACTTAGTATTTTGTTTAATTGGTTTAAAACTTGTATATGCTTGCTCTTGTGTTTTGCCTAC CACTGCAATTCAACAGAAAGATGTGATTGCGTTTCGGTGACACACGCTATGGCGACAATTGCTCCGCGCT CTTTTTCATATACCGGTACTAGCCAAATTCCTAACATCAACCCTGTACCATGCACTATACATTTAATTAC ATTATATTACATTTCATTACATGTACATGTAATCTTAATGCCCAAAGCCCTGTCCAGGGACTCACAAGTT ACACAAACTATTTCAAGCTACTGACACTATGAACATGACGAAGAAAGAAAGAGGACAAAATATACAGTTC CTCAGGTAGACAAAGGAACATCCCTTCACTGCTATTTTGTAAAATGAGTAAAACAGGTGAATATGCATGT GACACCTGTTCTACACATTTTTACATGATAGCAGTGAAGGTATGTTCCTTTGTCTACCATAGCAATTGTT GAGGGTAGAATCTTTGTCCGTCATGTTCTTAGTGATGAAATCACTGCCTTTGATTGGCCATTGTTATTGG TAGTATGGTTTTTTCCAAAAGAGGGTTCAGATATGAAGCGGTAAACCATTGCATTGTTTTTTGTTGCTGT TTTTTAATTTTATTTTTCATTTTTTAAAAGAAACGTTACAGTAAAATTCTTCACATTTCTGTATCCTTTG GCAAGGCATTGGTCTACATTTGCCACACTCAACCGAGGTGATGTAAATGGGTACCTGGCAGGAATTAATT CCTTGAAATGCTAGAGCGCCGCAATGGTAGCACAGCTAAAGCCGGGGTAATAATCTCCAAGTTTGGAAGC GCTTAGTGATTGTAAAAAGCGCTATATAAAAACAGAGTATTATTATCACACAGAGCTCACTGAATAAATG TATGTGTAGGATCTTTGTTGCACACATTACATGTTTTGAAAATAATACCATAGTTTACCACAGCCTATCT GAACAAGACTGAAAGGGAGTCACTCGTCAGTTTCCATGTGCAGAAGGCCATAATTCGCTGACTCCAGACT TGGTGGAAATACCATTAATGGGAGTACAAATCTGCACACAGCAAACCCGTTGGCCAGTCAAGAATCTCCC CTAATCTCTCGGAAAATACTCGAGAGTGACTCGGTGAGGGAAAAGCAAAGCATTACATAAGGTCTAATGG TCATAAAACTGAAGGATAACCCTGGTGATTGACAACGCCTGTTCTTGGGTAAACATCCGAACGATGTCGA ATTCCCCGTGAGAGCTGACTACTGAGTGTCTTTAACCCTAAACCAAATGAAAAAATCCATTGCAATCCTC AACCTACATGTATATATACACTGTATCTTCATTATAGATATAAAAGCCCACTGGGGCTGGCCAGAGCATG TGTTGCTGTAGTTGACCATGTTCACTTTTAAAGGAAACTTCACCCCAAGAAATAACTTTACTTTTTCTGA GAGATTTACTATATCCTTGCCCATTAATCTACAAGATTCCCCTCCAAAGTGTGTTAGATAGGCATAGAGC AAGAATAATGTACAGTTTCTCAGCACTACATGGGCACCGCCATTTTCTTCATAACGTGACGTACTTTGTG AAGTCGTTTATCAAGTAAATGTATTTAAATTTATGGATGCTTCCTTCCCAGGTG
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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