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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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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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>XM_030982814.1 PREDICTED: Strongylocentrotus purpuratus uncharacterized LOC100891112 (LOC100891112), mRNA AAGGACGTCGGCGCTGGAACGTTTGGATATAATACCGACCAATTACCCCCTTGTGTTAGGCCAAATATTC ATCAGGTTATAATTGGAGCATGGACATGTTTCAATCAGTTTATCGAACTCGGTTTGCAAATCTCAAAAGT TATAACGATACAGCGATAAAGTCTGCGTGAACATCTTCGCGCCGTTTTGTTTATAAAAAACGAACATCAT GCGTTATAAAGTAAGCATCTAATTAACATCTTTGTGTGATCTGGACATGATGCATTCGATAGACATTATA AAATTAGCATCTCTGTGCGATCTGGTGTATTTCAATGAGCTATATCATGCAATAGCAAATTTCTAACAAA CTCCAACTACATGTAAATCGCTGAGAATTTTCGCTTGAGTTGGAAATTGAACCGTAAACGCACCGACCTT TGTTGTGTTTAACCATTCATATGCTGCATATAATACTCTGACTTGGGAATGGACAATACATCACCATTGT AAAACAAGAGACGAACACTTTGCAAAAAACTTTTGTGAACATACCGAATTTCATATTGAGATGTCATAGC TGTGAAGAACCAGTCCTAAAGAGGAATCTTTTACGTATACGTCGCGAACTCCCACCTCCAAGCTCTACCA AAGATACTTTCTTTTTTGGATAATAGTAGGATTATCCCGTTATGCATGGTCAGAACTGGAAGCGCTAACT CTTTAAATTGGACACTTAATGTCTTACTTATAGTTATAGCCACAATAGACACGGTGACCAACCGCAGATC GGAAACTTTTAAGCTTCTTCAAAGAACAACGACGGCTTAAGGGTACTTGGAATTATACAAGGAGTAACCG TTGTGTTACTTGAAGCTACATTATGACGGATTTTGATCAGAAATCTACAGAACGCTACAATTAGAACCGA GACCTTTATCAAAGTGTGCGTGTCATCATTGTGACGTGTTAAAGGCCAATGTGGTTTTTCGTTGGAATTA GAAAAAGGAAGTCCTTGTGATCTTTATGGAGATATGGAGCGAGCCAAAAATACAATAATGTACCTCTTCC TATCTTTGACATTTACTCTTCTGGTGGCACCGGCCCTCGTTGCGTCACAGGTGAATTCTACTTTGATCAC AAGCAAAGGTTGCTACTATGATAACTTCGAATACGATGTTCTTCCGGACCTCATCAAATGCGAAAGCGCC CTCCATCAGTCATGTAGTAACACATGTAGTCCCAAAAAGCCGTATTGCCAATCAAATGACATGACAATGG AGCTCTGTTTTCAAATATGCACCAATCAGAACGCGCGTTACTTCGGGCTACAGGACGGCAGCCAGTGTCT CTGTGGTGGGGCTTTCGCGCCTTATAATTCGAGAGGCGCGCCGTCGGAAAGTTCGGCCTGCAGCAAGAAC TGCACGGGTGACCCGGGACAGATGTGCGGAGGAGGCTTTGAAATACTCGTCTATGAAATCAAAGATCCTG CGTCGGACTGCTTCCATCCGGGTTACCTCAATGTCCGTGAAGACATCTACCCACCGGTCAATCAAGAAGA CTTCCTCATTAACGAGACTCTGGACTACAGCACCATTTGCCAATCACCTAGCAGCTTAACTGGTACACCG ACAATCACCTGCACAGAAAACGACTGGTCGGGGCCTCTTCCGGTGTGTACCATTCGCTGCTCGCCGCCCG ATCCGAGGCCGTACGTTGATTTTGAACAGGTGACGGCCGAGAGCTTCGACATCGGCGAAACGGTGTCGTA CACGTGCTTGGGAAATACGACAACTTCTAACACCGAGTGTGATCCCACAGGGTTGTGGTTACCCACCGTC TGTCCAGTGATGTGCGCAAAGACGGCCTTGCCACCAGGGGGCGCACTCGCAACTTCCTCAAATTATGACT ATTTTGCCGTGGGGGTGCTCGTAGATTTCGTATGCGATGGAGTGTTTTTAAGTTTTGCGTTCGAGTGTGG AAATTCTGGAAGTTGGAATATAACAAGTTTTACGTGCCCAGATACCATGACAACGGCATCATCTCCTCCG ACCACACCTAGCAACGACCTACCTACGACTATCAAAGTTGATAGGACCATGACTAGCCTAGAAACCACTG GATCTACTACGGCGGGAGTCGGCGGACCGAGTGGATCGAAAGGTTGGGTGATCGCCGTAGCTGTGATCGT GCCTCTTCTCATCATTCTCATCGTCATCGTAGTCATTATTTGTTATCGGAAGCGGAAAGAGGAGCAAAAT AGGAATGTCCCTCAAGTTGTGCTGGGATATATCAAGAAGAGGGGAACACTTGGTGGTACCCTAAGACGTA ATCGCGACCCGGAAAAGGATCTTACAGACAACCCGGAAGCAGATTCCGAAAATGTCAAAAAGGGTGGTAC ACTGACTCACTCACTGAGCTCCATGAAGCAACAGTTCGTCAAGCGCGTCACATTAAACCGAAACAGACCC GAACTGCCCCCGAAGAAGAACCCGAAGAATTCTAGCTCCCGATCAGCCACGAGCAACGCCGAAGTTGGAT ACGTGAGTCCGAGGGCAGCCCGAACAGCGAGCGAGGTTGAGATGAGGCACCCGAACCCACCGATGAAAAG AGCTTCGGTTGTTTCTGTGGTATCCTCGGTCGACAACGGGCTCAATGAGGTTTTCAAGAGTGAATTAAGA ACGAGTAGGAGCAGCGAGATGCTTGACTCGCTCATGATGGAATTCGATGGCCGGGTCAATCACGGGTACG ACGTTGAAGAATCTTCGGCCAGATCGTCACCTTCTTTAGCGTCGAAGAACTCGCCGAAAACAGAACATGT GGTCATTCACACTGCGCGTCCATCTTCTCCGAAAGTCGATAAGCCGATGGAAAATGGTTTGGCGCATAAT ACAGACGGTAATGGAGAGACAGAATCCCTAGAAACGGCATCTGCATCGCAGCCGCAACTAACCGATGTGA AGCTTTCGAATGGTGAGGAAAACGTTATTGAACTTCATCCAGATTCACCGCCTTCTGATCGTGAGGGCGG CCCGAAAGTAAATGGAGATTCAGAAGCGACTGTGAACGGCACTCACCTCGAGGAGGAGTCACCATACGAC AGTTTAGGTGAACCCAAACCAGCACCGGCTGAGATTTCAAATGTGAACGGTTCCGCGGGAGAAGGTGATT CACATCATTATGAAAGCACGATTGAGCGAAATCGACCAGCCCCGTTGACATTGAAAACTAACGGCGGGTC CGACTACGCAACATTGCCCGGACCTGAGTCGCCGCAGTACGCAACGCTGGCCGATGTGCAATCCCCAAAC GGAGGGGTAGGAGCTATGGGTAGCCCTGCGACCCCAACCAAACATGATTATGTCAATGTCGGACGTGGAA ACTCCGTCTCGGCGACGCGCATCTCGGAATTCCACCATCCACGGCCCCCATCCCTCCCGCCAGACTCGCC ATGAGTCGTACACCCTCCCTGGATGCTATTCGTTGATGCTATGAACTTTATGAACGCTGTAAACGTCAAT TACATGAACTTTCCAGTTCAAGAGTATAATGGTGCTTTTTATTCAGTAACTACAGAAAATTGTTTTCTCT TAGCTAAAGAAACAGTAAGATAGACCATCTGAACAGAAACTTTAAATTAAAAACGTTGCCCACGGGTATA TTATACAAAAGATGTAGGGGCTACCTATTAAGATCCAGGAGACAATCGGGAACAAGGGTGCATCCATTTA TCTTAAATACCCAAATGCCCAAGCTTATGAGCAGAGACACCAAACAGAGGAACAAAGATGTTCCAGAATT GTCGAGTAATACCTCGGTCACACTTTACCAAACCGACTCCAAACGTATTCTATTAAGAATGTAATGTTTT TTAATTTTGTTTATGTACAATAGAAATACTCTGGTTTTATTTACCCCGAGTAGCCACATGGGTGTTAATG CTGCTCTTCCTGCTGGCCTTGCAATTATTATTACTTTGATGGATAGGGGCACATTATTAGGCGTTACCAA AAAAAAAAGAGGTTGTATTGCCTATGCGACCGAACCCAAAATCTTGAAATCTACGGTCGGCTTTTTAAAA ACTTTTTTTTTTGTTACCGTGTTTTAGAACAAAAATGTTTGATGAGTAAATAAAATATGTTTTAAAGCAT TCAAAACAGAGGAATATCAGCCCAAAGAGGGAGAGAAAAAGAAATACTAAAGGTTGGATCGCCTTTAATT ATTGAGTAACAAGAATTCAATCAGTATCCTTTCCCTAAGCTCCTAAAGCGAGCAATATGAATTTGTACTG CTGCAAGGATGTGTTATTTGTTTAAAGTTTGTGATATCCTTTTTGTTATTTCTCTTTAGATACATCTCTT TCCTTTTCTCTCTCTCTCTCTCTCTCTCTTTCAGTCTCTCTCTCTCTCTTTCATTCTCTCTCTCTCTGTG TCTCTAACTATGTCGCACCTTACCCCCTTCTCTATGTCTCTCAATCTCTCTCTCTCTCTCTCTCTGTCTG TCTCTCTCTCTCTCTTTTACTCACTAACTCTTTACCCTTTAGCTTACAATAATTGTTAAAATGAAATATT TTCTATATTCTAACACATTTTTTAAATTGCACATTAATGGTGAAAACCGTGGAAAGGAATAAACATTTTT AAGTAAAGAATTACTCAATTCATTTTTAAAGAAAATCTTGACAGTAAGATTTATTATTAATTTGTGTACT CTTTATTCGTTTGCTCAATGATTTGGTAATATACATGTATCTCTAAATCTATTTATATCAGGGTTATATT TTTGTTTGTATGTGCTCGATATTTATTCTCATTTACTTCATTTTCTTGTAAAACGTAAGCAAAATTGTTG CCAAATATTGTTCCGCTCCGTTAAATGTATTCCTGGAACAATAAAATTAGCTTTATGTCTACATAATATT CA
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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