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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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L. variegatus
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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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>JT104996.1 TSA: Strongylocentrotus purpuratus WHL22.216462.0 mRNA sequence CAGGTGGCGCCACCGAGTCCTACCTTCTATCTGGCTCTGCGGTACGTGTACCTGATCGGGATCACCCTCT CACTCGTTCTCCTTCTCATCACCCTCTTCATCTTCTGCTACTTCAAGGCGTTGCAGTGCACGCGGATCGC AATCCACAAAAACCTCGTAGTATCCTTCATCTTCAGATACATCTTTATGATAATACAACTACAGCCTCTT CTGACCATGGACTACAGCACTGAAATCAGGTTAAGCTCGTCCAATCTTCAAGAGAACAGCCAAAACAACT TCGTACTCCATAAAGTTCCAGGGTTTTGTCGCTTCATCTTGGTACTCCTGGAGTATTTCATCATGGCCAA CATGTACTGGATGTTTGTAGAAGGTCTCTACCTGACCAGCCGGATTGCTGTCGCAGTCTTCAGCACCGAG TCCAACTTCAAAGTATACCTGGCCATTGGTTGGGTTTCTCCGTTGCTGTTTGTCATCCCATGGGCTATTG TAATGAGTTATGACAGTATTTCACCCTGCTGGCTGGATCATCTTGATAACCCATACATATGGACCCTCAG AGCACCTCTTATAATCGCAATATTGATCAACACTCTATTCCTCATAAACATCATCCGGATTCTCATCACC AAGTTACAAGCCAGTAACACCATGGAGACAAATCAAATGAGAAAAGCGACGAAAGCTGTGGCCGTCCTGT TCCCATTGCTCGGTCTGACCAATCTCATCTTCTTTTGGAATGTGAAAAGTGAGAACGAGGCCGTAGAGAA AGCTTTCATTGCCACCAATGCTGTTCTACAGTCAACGCAGGGTGTTTTCGTGGCGGTGATCTACTGTTTC CTGAATACAGAGGTTCGGAAGTTGGTCAAACGCAGGGTTCTCGCTAGCCTTGACGAGTACGGTAAACGAA CTCCTCGTCGAAGCCACCAGTACCACACCACCAACGGCTCGTGCGGAGTGCCAACGACTTCCGAGGTCGT CATGGCGGTATCGTACCGTCGAAGTACGCAGGATCAATCAACGATAGCTGACCCGGATCAATATACCGAA ATGAAACCGTTTACTTCCGAGTGCGGCGAGAGTTGAGCATCCCGAATAGGGCCATGCCTTTGGAAAACTG ATAAAAAAGTTTGTGCGATTGAACAATCCCGATGTTTTAAGGATCAAGTGCTGCTCCCGAAAGGTATCCC GTGCCAAATAGTTGTTTATAAGGCGGTGCACCAGTGCAACGGAACGCTATAAAGAAAGTATGTAATTGTG ATAAAACATTGGCTGCATTGAGTGAGGTTATCTGTACAAATGCTGGATTAACAGAACCGCGTGTGTCGTA CAACGATAAAGTATATTATGAGTACCTTGAGCCGCGCTGGACGCCATTTTTTTTTAATGACAGCTGAACG ATTGATGACCATTACGGATTGATTATTCGTAACTCAATTATCATGATTGTTATTCAACTTGTTTAATGTT GATTGTGATGTATATTGCCAATGATGCCACTTTACATGTCTTAGTAGTTTTCTTCTCAAATTGTTTATGT GATTACCATGTTTGTGATATATTGGTATTAATAATGGTTAAATATTCGTAGATTGTGATTTGATATGAAA TGACATGGATTGGCACCTTATTTAAAAACCCTAGCTATAATTCATTTTGAAGATAGAAAAAGTGATCTAA AACAGAAGGAGCAATATGGAAACACACATTTGAGGATTTTTTTTTAAAGGGTTACCATTAAAGTGGCTTG TTTGTATTAGGTCCACGGTTCGTCATTCGTTTAAAAAGTATTAATCTAGGATACAAATTACAGTACTCGT AAACTCTGTCTCCCTTTAATATGGTCTTGGAAAGTGAATTTAAATGACAGCGGATATTTAGTCTAGTGAG AATAATATCTTTTCTTGTAAGGGGGTAGTAGAGGCAAGTGCCTCTCCGGAGCATTTTGCTACGAGTAATG TATTTGTTGAATCCCATTCAAATCCTAAAGATAATTCGCTCATCCTACCCCCACCTCACCCCCCCCCCCC TCCATCTCTCTAAACAGGGGGGTGAGGGCACATTATTTGGCATCTAATCTGGACGTAGGTATTTGAGAAC ATTGAGGCATTTTAATCGTTAAATATATATATTTATATGTCAATGTCGTAACCATCAATTTGTCATTATC TGTACATAAATCTATTGTATAAAAACGAAAGTATATGTTCAAAATATGTAAATACATGTGTATCATACTG GTTTTATTCTTTATTGTGTTTTCTAAAATATGTGCCAAGTAAATGTATATTTAAACGTAATGACGAGACT GTTTTCGTATTTAACATGAACAGAAGTTTCAAATTAACATTTTTTGATTGTCAAGAACATTTTCTTTTTA TGAAATTTAAAATGATTAATATATCTAGATAATGTTAAAAATGTGTTAATATTCTCATTTCTATTTTATG AAAATTGAGTATGTTTCTGTTAACTGATATGGTTTAAGCTTTGGCTACATAACTCTATCTTTTAACTTAC AGGACGGATTTCGTTTGCTTTCTACGCCTCTGTGCACGGTTGCTTGTTTGTCATACGTGCAATTTTGCAC AAAACGATATGCACCAATAATGACGGAAGGACTGCTTTGCGCAACAAAATGGCGTTGACATTTAGTAATT TCCGTTCTTGATTACTCCACCAAAATCTTTTTAACACCAAGATAAAGTTATCTTGCACTAGAAACATTCA AATAACCTTGCAGTCTGTTGTAGGATATCCTATGATAAATACAATGTGGCACAGGGATATTATTTGTGTT GCATGCAGAGAGCGAAAATGAAACTAATCGTTTACAATATGTTGCATCATTTGTTTTCATAGTGCACAAG TATTAAATCTATTATGATTTTACTTTTGTACTCGTCTTGTGAAATACTATTACCTATCCCTTAAATGTAA ATTGCTGAACAATCTGTTCACATTTGAGATATAATAATGAAATTCAAAAGGGAATATCTTGTGTGAGATT GATGTAAATTTGCAATCGCGAAGTAGTATACTTCAAATCGTGTATAGGTGCTATACATGAATGTCCATCT ATGTACTACATAATTTATAATGATGCATACCCTAGATCTTAGGACTTTGGGGATTTGCTATTCATATACA TTACAAGTCCATACTTTAACCGATTTGAATTTAAAGGGGAAGTCCACCCTGATATTAATTAGGTTTTAAT AGAGGCAGAATAATTAAAGAAACAGGTCAGTGTAATTTTCATAATTTTCTTATTTTTCATCAGATTTTGC TCAAAATTTCACCGACCAGTTGCTCTCTTTTTTCTATCAAAATCTACTTAATATCAGGTGAACTTCCCCC TTTAATAATCTCCACCGACCAGACCAACGCAACGCGATCTCCCCCTACTTGATGCCAGCCGAAGATGGCG GGATTCCCCAATGTCTAGGCTCGGCGTACCTGTCCAACGAATCAGGGTATTTGATTGGGAGAGTTTGGCC AACCCGGTTCGAAGTGGGCACAATATGGCAAATACTGCTGTGTTGGGCAAACACTACACATATTAGAATA CACGCCTTGTTGTGACCAAGTGAAATAAGGTTGGCCAAGCTCTGTGTAAGACGGCTCTGGAACGGATTTG TGTATCACGCTATATTCGGCTTGCAGCAGGTAGAGGATGTGAGAGATCGCGATCGCGGTAGATGATAAAA CTGCCCAGATTTGGGACTAATACCTCACTGCCGGATGGAAAGGTTTTCTTACCATCTTCATCTGTTTCCC TCCACGAGCTCAGCCAGTTTTCCATCCATATTCTTTTCTTTATTGTCTGAACAGTGTGATTGTACATCGA CTAGATTTCTATGAATGATTGATTTATTGAAGATACGAATGTATTTACTGTATTTTAATAAAACCTTATG AAGAATTTAACTTTTTCAAAAAGTATTGTCCATTTCTCTCCCCACATACGTTGGGTGATGTATCAATCAT TACCTTTCGCTATTAAAGCTGTCAATTTAGCATAATGGTAAAAGTGAGC
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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