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Echinobase
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Echinobase Accession
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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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>JT096395.1 TSA: Strongylocentrotus purpuratus WHL22.183787.0 mRNA sequence AGTGGCCGCTGATGTAGAGAAGAAGAACTTACCGCAAAGCAAACGCATCGATCTGGAATGCAAGGAAAAT GTGGAAGACAGTGACTCAGAGACAGAATCCGAAAATGAGACAACGATCGAGAACAAAGCATTCCCTCAAC AGCGCTTTTCGCCAGTCATGAAACAGCAGCTTCCACCCTCGGACAAGCCCTACAGGCCTAAGCCAATCAA AATCAAGCCTGATTCAAACTCGCCAATCAGGACTGAGATAGGTGGGGATCAGACGGATGGTGCAGCTTCG CGACCGGTGACGTCGAAGAGTACGTTCCAGCCCACCGGTGCTGTGTTCAAGGCACACTCTCCGCGCGGGA GGACCGATGCTGTCGGGGGGAGCAAAGCGAAAGCTTTCCATGAGTATCATCCATGGAAGAAAGGAAGAGC TGACTCTGGTCAGCCGCAAAATGTGTCAAACTCAGAGCCTGCTGGACAGGAAAAGACAAATGAACCAAAG GAAATTCAGGGTACAACGCATCAGGGATTTGATGATAGAAGTGCGAAGGACCAGAGGGACACTGGAGTCT CTGGACAAGAGCCTCAGCATTCCACACCCAGAGAGGCACTGGTCAGAAACACTCATTCGGTTGGATTGCC AACCACCGTGCGCATTGCACCAAGCCCAGGGGCTGTGATCGTACCTGGTCATGTGACGATAGCTCCAAAC AGGCCATCGTCTACTCCGGCCAACTTTAACCAATCATTGCCAACATCTGTCATCGTTGCAAGAACGACGG ATATCCAAAGCAATGTCCAAGGAGGTGGAAATTTGGCGACGTTGGTGCCGTCGACGGTCCAAGCAATCAT GAGCAGAAGATCTACCTTGCAGCGGGCGTCCAGTATGGAGTTCCAGAGTGGTGTGGTGCAGATCGGGAGA CCAGGTGGACTCACAAGTGTGACTATTGCTTCACCCAGTACACCAACGACTCCTAAGCCAGGATTTGCAA ATATCAAGCCCCTCACCACCAACATGATCGCAACGAACGCTGTCAATGTCAATACGATTCAGGGGAAGAT ACTCGCAACCCCACCTCCAGCGGAAGCACCGTTGCAGGTCCCGACGACTCCAACCGTGCTGACGAACTTG GTCTTGAAGCCGAATGGGAGTGTGGTGCCAATGCAGACGTACAACATGACCCAGAATCCTGCTATGGCGC AGCTCCAGTACATCCTGCCCTCCATTCCTGCACATATCAACACGGGTTCAAAGGTCACAGGTACCACCAA TGTCCAGGTCGGGAGTCTTCAGCTTACCCCGACCCAACCTCAGTCACAGGTGACCATCAAGGCCGTACCC CAGCCAAACCAGGTCACTCTGGTGACCAATCAGGCTCCAGGGGTTGCTCCACATGCAATATCGGCTACGT CCATCAACCATGCTGCACCCAACACAGGCATGATAACGCAACAGATCTTCAACCATGGAAACATCCATAC GGTTATCCCAGTGATCACGACGCAACCGCTACCGATGAACCTAGCCCAGCAGGTCGTCACTGTGTCGCAG TCCTCCGGCTATCAGTCCTCTGGCTATCAGACCTCCGGCTATCAGACATCCGGCTTTCAGACCTCGGGCT ATCAGACCAACAACTTGACTGCACCTCAAACTCAACAGAGAGTCACAATAGGTCCCGGGGCGAGCTCACA GCCGGTCAACATCATCACCCAGCCCTGTAGCCCGGTGGTCACTGTGGCCGCAGCAGGTATGGGAAAGTGC ACTGTATCCACTCAGGCACTGACCATCGCTAATACAGCGCTTCTCACGTCACAACAGCAGCAGAGATTCG TCTTGCCACACGGTCAAAGGACTGTGACGTATGTACAGCCAGCACACGCTGCCTCACCCAGCCCTATGAT CATCCAGCAAGGAGACGCACTGAGAGGGAACGGAGGTAAGATCCAGGTACCAGCTCTGATCCAACCAGCC ATCATGCCAGTCAAGACTGCCAACACTCAGGGTTCAACTAAGATTTTACCAGCAACCAAAGCTCCTGTGC AGCCTCAGCTGCAGCTCCCCATCGTCACTCCCAAACCTGTCAAGACGGTACCTCCTCTCAACCCAGTCTT CAACCTCGCCCCTTCCCACCAGCAGACATCCCACCCATCTCAACAACCCATCACCGGTATCGTCATGACG ACCAACCCCGCCCAGCAGACATCCTCCTCCTCCTCCTCCATGTACGCCACGCCCTCGTCGTCCTCGTCGA TGACGATGTTTGCGGCCCCGCAGCCAGGCATGATCCCGTCGGGGATGACGCTGTCGACCACGAGCACCAC CACGAGGCAGGTGATGATGCAGGGTACGACTATGGTCGGGCAGCCCATCCCGATCACAGTGTCCATCAAG CAGGGCGATGCAGCGCCCTCTAGAGGAACCATCAGCGGGATGTTACATCATTCCAACACCGCACCCATCT CAACAATAGGTCAGCCACAGCTTCAGATTGATAACTCGAGCATCCAGCCCGGCCCCAAGAAGATAAAAGC CACTCTGGCTACCATCCCCGTCGTTACCACCCTACCTCCCCACAGCCCTTCAGGGATCGCCCGTACGACC ATGGGCGCTACCATGCAGATAGGCCCCTCCAACGGCACCGTCTTCACCTCGGGGGGCATCCCCTCAGCGA GCGTGGGCTACGCCAGCTACGCAAGCTACAAAGCCATGCCCAAGCTTGCACCCATCCAGAGTGCATCATC CAGTGAGAAAGGGGCAGGGAAGAGGAGTGTGATCAGCGGTGGTGGGAAAGAGGGTAGTTCAGACAAGAGT GCAGTTCCGGGGAAGGTTGACGGGCAGAGTGCGAACAGGCAGGGTGCCGATGAGAGTCGTGCTCATGTGG CGCAGCCGGCTCAAAGCTCGAAGTATATGACAAGAAATCGTCAGGAGGACTCGAGAAAAGACTCCCAAGC AGATACAAACAAAAAGAGTCTGAACAGGGAGGTGAAAGCAAATAGGAGAGAAGGTGAAAGGCCTCAAACC CATTCACATGTGAATGATAAACCTGCAATGAGAGGAGATGATGATGTCGAGAAGCCGGGTACAGACAGAT CGGAAACGGACCAATCGGAGACTATCAGTACTAACCAAGAAACTAGTGGACAGGATGCAGGTCATGAGGA GGATGGAGGTCATGAGGGGTCAAAGGGCAAGCTGCAAAGGTCATGCAAGGGTCGACTGTACAAAAAACAC ATGGAGGAGAATGGCAAGGGAGGCAAACCTCCAAGGAGAGAAACTAGGTCCAGCAAATCAGCGGAGAGTC CAGTCCAGGATGAAGAGACCATCTCTCAGTTGCCTAGCAACAAGGATGCAGACCATCTGTCATCGTCATC ATCACCAGCACCAGCAACAGCAGGAGGGGGAGAGAGTCCAGAGGAAGGACGGAAGGAGGAGGAGAGAAAG AGGGAGGAACCAGCCGAGTCGATGGAGAGGAAGGATGAGGGATCACAAGAGGGCACTCACAGACAATCAT CACCAGCAGAGATGTCATCCAATGAACCGGCTTCCGCCCCCGCCCCTCGGCCAGCTCACAACAACCCGCC AGATCTCCACACCCCTACCAAAGAAAACGGACTGTCCAACAAGCCTGCCACAGGCGATACTTCTGCTGCA TCCGCGTCCACCTCAGTTGCCATGGATATGCATGCATTATCAGGGGGAGAGGCTGCAGGAGTCAAAGACG CAAGGAACCTGTCACACATACTGAAGAGGAAAATAGACGATGGCATGGAAAAGGTCCTTGAGGAGGTGAA CTTTGAAGCTCAGTTCAGGCAGCTTCCGGAGTATCATCCTGAGGACCATACCAACGAGAGGAACGTCATG CCCCTCACCGCAGAGGCCATCGTGAGCAGCTATAGGAGGAAGAGAAAGGGCTCCACAAGTAAGAGCGAGT GTGATTCAGACAACGACCCGACCTCGCCCTGCAAGCTCAAGTCACCCCACCGTAGAAGCTCCAGTAGCTC CGAACCCAGTACGCCGGGCAAGAGAGTGATCGGAGATGACTCTGTCTTTAAGTTCAGTGACAAGTCCCCC ATGGAGTCTTATAGTGGCCATATGCGAGATGATATAGACGAGTTTGAAGGAGAGCTGGAACGCTCTGCCT CCTCCTCCTCCTCTTCCCTCTCCACACTGCGAAGGATCTTGGATCAGAGACGGATCCTCGTCACCGAACT CTTCAAGAACAATGGCTATTTCCCCTCGGCTCCGTCGACTGCTGCATTCCAGTCCAAACACCAGGACATG TTCCCTTCAAAGAACTGTCTGCAGCTGAAGATCCGTGAGGTCCGTCAGAAAATCATGCAGCAGTCCTGGG ATGAAGAAGGGCCGGACGGAGAAGCTGCCGTACCAGGTACTCCGTCCACACCAAAGTCTCCAGCGCCCGG TAAACTTCACCTGACGTCTGTGAAGAGTGTTCGCCTAGGCGGTCCCAACCCCTCCAGCAAGATGGCTCTA TCATCTACCCCTCTCAGCAGCTCCAACTCTGCCCTCACCGCCAAGTTCACCCTAACTCCAGCCCCGCCCC CATCCCCCATGGCACGAGGGGGTTCCCCCAACCCTCAGGGCTCCCCTACCATGAGCAAGTTCCATTACTC GCCCCACATGAGCCAGCAACCCAAGCCCATGTCACCGTTGGTCAAAATGTCTGCTCCTCAACAGGCCCAA CCAGGC
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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