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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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>JT098437.1 TSA: Strongylocentrotus purpuratus WHL22.640388.2 mRNA sequence TTAGAATGGAGTTTTTCATGAGATGCTGTCAATGATTGAGCAAGTGATATTGCCGTCCATCAGCATGATG CCATGCAATGCCTGTCTCTCTGAAGAGGTCTGGTCGCTCATGAAGATGCTGCCTTATCACAGGAGATACT GCTTGTATGCACGATGGATTAACCACTGCTATGGGATCCATCCTCCGCTGATCCGGGTCAAGGCGAACAC CACTGACCGGGCCAAGTACATCATGAAGAGACTGACCAAGGAGAACGTCAAGCCGTCTGGGAGGCAGCTA GGCAAACTCAGCCACTCCAATCCTGGGGTGCTCTTCTCTTATGTTTTGTCTCAGATTCAGATGTATGATA ACCTGATTGGACCTGTGGTCGATTCTCTCAAGTACCTCACATCCCTGTCCTTCGACATCCTAGCATATTG TGTGATAGAAGCTCTGGCTAACCCAGAGAAGGAACGCATGAAGCACGACGAAACCAGTCTTTCACTTTGG ATGCAAAGTCTGGCAGCATTCTGTGGGGCAATGTTCCGTAAATATAACATTGAGCTGACAGGCTTGCTCC AGTTTGTGGCCAATCAGCTCAAAGTTGGCAAGAGTTTTGATCTGTTGATCTTGAGAGAAGTGGTGTTAAA GATGGCTGGAATTGAGGTGACCGAAGAGATGACCGCTGACCAGTTGGAAGCACTGGCTGGAGGAGAGCTT CTCAGAGCCGAGGGAGGTTACTTTACCCAAGTGCGAAACACCAAGCGATCATCACAGCGTCTCAAGGAAG CGTTGCTAGAGGATGACCTAGCTGTCACCATGTGTATGCTGATGGCTCAAGAGAAGTACAGGGTGGTCTA TAAACATGAGCAAGGAACTCACCTGAAGCTGGTGGGCATGCTCTATGATCAGTGCCAAGACACGCTTGTC CAGCTAGGAGGGTTCCTCTCCAACCTGCTGAGTATAGAGGACTACTCCAAGCACTTCCCTGACCTGGTCA ACATGGTCACCAACTATCACCTCACTCCGGAGAGTGCCTTCTTTCTCTACAGACCAATGTGTACCCATGC TATACAGTCCAAGGTAGACGACCTAAGGCGACAGGAAAAGAGCAGTAAGTTACCTGGTAACCGCACCCAA CGTTACGTTCAGGCCTCCCAGGTGGTCATGTCCCCTTTGACAGACGGCATCATCTCCTTTCATCCTCCTA AAGTCTGGGATGATATCAGCCCGCAATTCTATGCAAGCTTCTGGACGCTGTCCATGTACGACCTGCATGT TCCCAGTCCAAGCTATGAGAAGGAGATCAACAAGATCAAGGTGACCATGGCAACTGTAGATGACAACAAA GAAATGGCCTCGGCAAAAAGGAAGAAGGAGAAGGAGAGATTTGCAATCATCATCGATCGACTCAAGGATG AAGAGAGAAAGCAACAGGAGCATTGCCAGAGGATAGAAGCTCGTCTCAAGAAGGAGTGTGAGACATGGTT CACTGCACGTTCGACCAAGAATGAGACCATCACCCAGTTCCTGCAGCTCTGCGTCTTCCCACGCTGCTGC TTCTCGGCCAGCGACGCCCTCTACTGTGCAAAGTTTGTCCTCACTGTCCACAAGCTAAAGACGCCCAACT TCTCCACCCTCTTGTGCTATGATAGGGTATTTCAAGATATCACCTACACAGTAGCCAGCTGTACGGAGAA CGAAGCCATTCGCTACGGCAGGTTCCTTTGTGCAATGATGGAAACTGTGATGAAATGGCATGGGGATAAA GAAACATATGAGAAGGAATGCGGCAACTTTCCCGGTTTCGTGACAGTGCTGAGAGCTAGCGGTACAGAGT CCAGCAACAAGGCTGACCAGTTGGACTATGAAAACTTTCGCCATGTCTGTCATAAGTGGCAGTACAAGCT TACCAAGGCGGTGGTTGCTTGTCTAGAGTCAAAGGAGTACACTCAAATCAGGAACACACTCATACTTCTA ACCAAGATCTTGCAATACTTCCCGCTGGTGCAGAACCTTGGTCAGGTTCTTGAGAAGAGAGTGGATAAGA TCAGAACCGAGGAGAAGGAAAAGAGGCCTGACATCTATGCCTTAGCCATGGGTTACTCTGGTCAACTCAA AGCAAGGAAACAGCACATGATCCCTGAAGACAAGTTTCATTACAAGGATAAGCCTGCCCCCGCCCCTCAG GCCACCTCTCAGTCCTCAGAGTCGACGAGTAAGAAGACCACACCCTCTAGCAGCTCAACTTCAGTCAGCA GCACCAGTAATGCTACCGTCAACGGTGTAGGCAAGGAAAACCATAGCAAAGATGCAGATAGTGAGAAGGT TCATGGAGCGAGCAGTAAGTCGTCCAACCGAGACTCGTCATCGGCAAAGTCATCATCTACATCAAAGTCC TCGGTGAAGTCATCGTCGCAAGTGCAGGGCAAGTCATCGTCATCATCCAAGTCCAGCAGTAATTCATCAT CAAAGGCTTCAGCCTCTTCATCCAATGTCGGTGCCAGCTCGTCATCAGGGACCAAAAAATCAGATTCCAA ATCTTCCAATGAAAGCAGTAAATCCAAGAGAGATAAAGAGGACCACAAGGAGGGCAGCATTAATAGGTCC AAGGACGAGAAGGTTTCCAAAGAGCACAGAGTGGTGAAGGAAGACAAGACTGTCAAGGAAGGCAAAGTTC AAAGGTCATCAGAGGGCAAGAGGTCAGGGAGCAGTGAGAAGCCCCACAGAGAAGATGGCAAAGCCTCCAG CAGCAAGGAGCACAAGAACTACAGCGGCGATCACTGGGGCGGAGCTCCGTCGTCAGAGCTAGACAGCTGG GCAGAGGAAGGGGAGAGGGTGCGTAAGGTGGAGAAGAAGTCCTCCCATCGTGACAACAAGGCCAAGGAGA AGGAGGAGCGTGGTGGAGACGGGGGTCACAGGTCGTCCAAGGAGCGATCCCAGAGAGAGGAGAGTGTTGC ATCGAACTCCAGCCAGGGATCGGTAGGGTCATCCTCCAGGAAGGAATCTCCAGCAACCAGCTCTTCAGAT AGAGTGGAACACAAGAGGAGAAAAGTGGATACAGCCTCTGTAATTGTGTCAAGCTCTAGCTCTCCTGACC TAGCAAGGGAGACATCCTCAGGCAAACACAGGAGAAGTAAGAGCAAGGAGAGTCACAGAGAGAGGGAGGT TCTTGAAGCCCCTGAAGCAGAACGAGAAAGGAGTAGAGACAAAGAAAAGAAGAGTGAGAAGAAGAGGGAT CACTCGGCCGGTGATGTCGAATCAAAGAGACATAAAGTCAGTGATTCAGGTCATGAGGGTAAAAGTGGCA AGAGGTCATCATTAGGTGATGGTGCTAGCTCAAGCAGTAGCCTGAACGGAGAGAGGATGGATGAGAGAGA GCGAGAACGTGAAATGATGAAGGAAGAGAAGGCATCAAGGAGAGAGTCTGATGTCCGGGACAAACCTGCC AAAGAAAAGAAAATCAAGAGAGAACCAATCGATGATGACAGAGATGAAGACAGACATAAATCCAGCAGCT CCAGAAAGAGGCGACCTTGACGACAAACTCGCTGCCCAGAGATGGTGGAAGGATCTTCATCTCAAGATCG TCTATATTTTCAATGGAAATTCTCTCATTTTATCTTCTTCAGAAAGCAAGTGAATGTGGATAGCAAAGCG ATGTATATTTTTGTGTGATTATCCTAGTATTTTCACTCCGTCTTGCGTCTTACTCTTTGAAAGGCTGTAA AAGTGGTCATAGAGAGCTTTTTGAGTTATGCAAGTTATCAGTAGATATAAAGTGTTAGTTGTATCCTTCT GGTTTAGTAAGCCTACTCCAAGAGAGAGAAAAGAAGAAAGGATAGAGACTTGTTTTATTGGGAGAGTAAT TAATACCATATGTGATGGTTGTTATCTGTAATTCTTTACTGCTTCTTTGTCATTGAAATAACTTTTCAGT ATGTCACTACACTTGTTTACTGTTGATCAGTTCTTACATGTCTTTGTTGAATCACGTTGTCAAAACAAAA GCTGTGCTTGATTGTTTTGCTCTGTAAAGCCCCCTGCACACTGTACAATCTGACTGTGATCTGATTTGTG AAGAATTTGCTATTATATTTCACACAAGTATTCAATCTCTTACAATCTCAAGCTCGAGTTTCTGAGCTGT CAGATGAATAACAAAAATCAAGTTTTTGGGGGATTGCAAGCTTTCTTGTAGGAGGAATATCGGACTTAGC TCTGAATTGTGTTGACATACCAGTTGTGCAATTGTCTCTGTTTGGAAGCCAATTTTGCTTTTACACCGAC TAGAAATTTTTAAAGCATTCAAATATGTTTGTTAGTAGCCTTATTGTAATTTGGAATCTCAATTTGGTTT CTTTCATTTGTTTTGTAACATGTAATTACAACTTTTTCAAAAGTCAAATCGCAGTAGGATCGTACAGTGT GCAGTGAGTATAAGAGAGACATGCACAGGTTTTTTTCTCTGTATGTTTGCATTGATGCATTTGAATATTA AAAGGCACAATGTTATATTTGAAGGTATGATGAAAATGAAATATACATAGTGTTTTGGACATGGAGGTAA ACCACTTAAAATAGACGTGAAAATCAATTATTTGTTTGTCCTTCTCAAATTTGATGTTTATTTTGGCTTT TGAACCTAACATGTACACTAACAAAATGCCTTTAAGAAAACAAACACAGAAAAAGTGAAAACCTCCATTA TTGTGGTGAACAATTATTGGGTACCGGTAGGTAATTTCCCAAATATTGTCTTTTTTTCTTTTTTTTTTTT CTTTTTTTTTTTGGGGGGGGGGGGAGTTTCATAATAATTGCAACCCCTCTTTACTAAGACTTCTCGAGTC GTACCTTAAATGAACTAAAATTCCATGTTTGTTTCTTTTCATGGAGGGTTAATGTCGGCAGTATGGTAAA GTAAAGTTTTATTGGGGGGGGGGGGGGAAGGGGTATTTTTTTTCTTTCACACATGACATAAGAATCATAT TGTGAATTCTTTGTTATACTCTGTACATTTCTACATTAGATACATTGCACTAACAATGAAAGCACTTTGT CCTTGGTGGGTAGGCCACACTGAACAAGTTGAAGGAATTGTCTATTAAAGAAAGGTTAAATATCTAGTGT GATTCCACAAACTTTGTGATAATGTGATTTTCTTCTTTGTTGCAGCATAGGATTAGAAAATTGTAAGCAA TACTCATAAAACTCCACTGAGCATAGCAAAATATGCACTTTCAAAGGGTATTAAAATTTAGGATTGCGTT TCACATGATCCAACATGTAAACCATGCATTCTCCTCTCCAAGTTTCTTTGAAAGTTGATCCAACATTCAC TCAGAGACATTTGCTCTTGGGGGGGGGGGGGGGGGGTGGGGGGCTTTTCACAAAACTTGTCACAGTGACA AATGACAGTTTTTGTTAAAAGCTACTGAAATCCTTGCTACTGAAATCCTTGCTTCTGATTGGTTATCAAC AGATTTGGCACTGTTTTTTATCACTTGTCATTGAAAAAAGGCTTTGTGAAACAGGTCCCAGGGCTTTACA AGGTTATGTTAGTCTATGGTAGTCATTTTGGTTTAGGTTAGGTTTGTGTGTGTATTTTTTTTTCTTTTTT TTTTCAGACTTGTTTCAATCAGATATGATAATTTATGTCTGGGGCTCGAACTTTAGCGTCACCATCCAAA AGACGTGACTCGGTCTCGAACCGGCGTTCGCTGGGTCAGTTTGTAGGCGAGGATAGAGAGTTGATTGCAC CACCGACATTACGGCTAGATCAATTCACATGATCT
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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