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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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>XM_030991555.1 PREDICTED: Strongylocentrotus purpuratus probable ATP-dependent RNA helicase DHX37 (LOC755586), mRNA TTCTTATTAAATAGAAAGTTGTTTAATATGTATTTGTAATAATTCATGAACAAAAATCGAGCACAAGACT AATATGGGGAAAAGGAAACGCTTTTTCAACGCTAGGGCACGTCAAGTTGTCGATGATTCAGAGGTCAGGA AAGCACATCAAACTCCATGCGTGGCCGTAGACATCGCGGCGGAGGGCCATCAGCTGTCTGCCCCGGAACT TCGGGGTACAAGTCATGGCAGTGAGTTGGACAGCAATGCGCTCATGCTGCCGGGCAAGAAGGCGAATATA GAGACGAAAAAATGGAAGGGAGAGCAAAGTCAGCCTAGGCAACTCAGCAAGAAACAACGGAAAAAACTAC AGAAAGTACTGGAGCAGAAAGAAAAGAAAGGGAAGCGAGCTGGGATTCTTGCTTCTTTGGCTGAGCATCA AGCCTCTACTGAAGAGATGGCAAGGTTTACTTCATTTGCACATATTGGCCAGAAGATCAATAAAAGGAAA CTAGATAACACTGGACCAGTGAAAATCAACAGTATCAGTGGCAGTAACAAGAAAAGGAAAATGGGAAAGC AGGATGATGGCAGTGATGGTGATGAAGATGATGCATCATCGTCATCTGAGGAGGAGGAGGAGGAAGTGGA GGAGGAGGAGGGAGACAAAGGAGAAGAAATGCAGGAACAAGGAAGTGATTTAGATGATGGAGAATCGAGC CTTCATGAAGACAAGAACAGTGCATCTGTTTATAGGACTATTGATAAAGAGCAACATTCTGCTAGTGCTT CAGATGATAACAAAGCAAGAACTAAAAGTGAAAGTGATAACGTAGTGAAAGACAATGTCAAAAGCGAGCC AGCTATGTATGTTCAAGTGAAGAGATCACCAGAGATTCAGGAGGCAAGGCTTAGATTGCCAATTCTTGCT GAGGAGCAGATGGTGATGGAGGGTATCCATGATAACCCAGTAGTTATCATCTGTGGTGAGACAGGGAGTG GAAAGACAACTCAAGTTCCTCAGTTCTTATATGAAGCGGGTTATGCGATGAAAGGTTTGATAGGTGTAAC TGAACCGAGGCGTGTAGCAGCAGTCAGTATGTCACAACGTGTTGCCAAGGAGATGAACTTACCAACCAGT GTGGTTTCGTACCAGATCCGTTATGCTGGCAGTGTTTCAGATGAGACTAAGATCAAGTTCATGACGGATG GTGTGTTAATGAAGGAGGTACAGAAGGATTTCTTACTCACCAAGTACTCAGTCATCATTATTGACGAGGC TCATGAGAGGAGTGTCTATACAGACATTCTGATTGGTCTACTCTCTAGGATTGTACCACTCAGACACAAG AAAGGAAACCCTCTGAGGCTTGTTATCATGTCGGCTACCCTGAGAGTTGAAGACTTCACAGAGAACAAGA GACTTTTCAAGGTCACCCCTCCGGTCATTAAGGTTGAATCTCGACAGTTTCCAGTGACTATTCATTTCAA CAAGCGCACACCTGTAGAAGACTACATCACTGAAGTACATCGAAAGGTCTTAAAAATTCACCGGACGTTG CCACCAGGGGGCATCCTTGTCTTTGTTACCGGTCAGCATGAGGTCAACACACTTTGCCGTAAATTCAAGG CTGTGGGGAAGAGAGCAGGTCCGAAGAGAGAGCCCGATACATCAGGTACAGGTCCTAATAAAGACCAGGA CCCAGATGAAGACCAGGAACCAGTTCACGAAGATCTCAAGAAGGCGGAAGAAGAGAAGAAGGCTTTCAAG AAATGGAAACTACCCAAGATCAGTTTGGACAGTTACTCAGCCCAGCCCCGTGATGTGGAGAATGATGTCG ATGATGAAGTGGATGGTGATGTCGACAGTGACGACCAGTCAGAGGAAGAACTTGAAGATGAAGTTAAAGA TGAAGAGGAGAAGGTCCTGGACTCAGAGGCTGCCGAGGACCAGGTCCCGATGCACGTCCTTCCCATGTAC TCCTTGCTGGCCCCTCACAGACAGGCCCAGGTCTTCCAACCACCCCCAGAGGGCAGCAGAATGGTCGTTG TGGCAACCAACGTGGCAGAGACCTCCCTCACTATCCCAGGCATCAAATATGTCGTAGACACTGGCAGGGT CAAAAGGCGTTTCTATGACAAGGTCACAGGTGTGTCCTCCTTCAAGGTTGACTGGACATCTAAGGCCTCG GGCAATCAGAGAGCAGGGCGAGCTGGTAGGACGGAACCTGGACACTGCTACAGGTTGTTTTCATCCGCTG TCTTTGGGAATGACTTTGAGACCTTTGACCCCCCTGAGATCACCAGGCGACCTGTTGAAGACCTCATCCT GCAGATGAAAGATATGGGCATAGACAAGGTCGTGAACTTTCCTTTCCCAACATGTCCAGATGAAGAGAGT TTGAAGGCTGCAGAAAGGTTGCTGATCGCCCTAGGTGCATTAGAACAACCTCCCAAGCCAAAGAGATTCA GAGATATGAAGAAAGAATTCTTCAGTACAAGGATCACAGATGTTGGTCGAGCTATGGCGTGTTTGCCTGT AGCCCCCTGCTATGCTAAGATGATCTCACTCGGTCAGCAGGAGGGATGTCTGCCCTATGTCATAGCTCTA GTATCAGCCCTCACAGTCAGGGAAATCTTTGAGGAGAGCTCAATGCAAGGACACACAGATGCAGAGAGAG AAGCACACAAGAAGCTTCAAGCAAGAGTGGCACACAACAAAAAGATCTGGGCTGGAAAGGGTGACAATGC TCTTCTAGGAGACCTGATGGTGTTGTTGGGTGCGGTGGGTGCATCAGAGTATGTTGGCTGCACCCCTGGC TTCTGTGCTTCACATGGTCTAAGATACAAGGCTATGGTCGAGATCAGAAAACTGAGGAGACTTCTTACCA ACGCAGTGAATTCTGTTGATTCCGACTGTGGAGTCTTCATGGATCCTAAGATGTCCCCACCCACTTCCAC TCAGGTGAAGATGCTTCGTCAGATTGTCTTAGCAGGCCTTGGACACCATGTAGCAAAACGTATGTCAGCT GATCAGGAGGGCTTCGAGCGAGGAGGTTATCAGAGTGTGGGCATAGAGGGAGCTGTTTTCATCCACCCCA ACTCTGCTCTTTTCAAGCAGCTGCCGGACTATGTCGTTTACCAGGAGATCATTGAGACCACCAAGCCTTA CATGAGAGGTGTTACTGCTGTTGAAAGAGAGTGGTTACCAGTTCTCTTTCCTAACCTCTGTACTTTCTCC AAGCCTCTTGAAGAACCTTCCCCTTCATACCATTCTTCATCGGGTACAGTCAAATGTCACATGACCTGTA CATTCGGGAGGAATGCATGGCCTCTTCCAGCCCAGGAGTTGGACTACCCGAAGAGTCTCGACAAAGTCAA ATGGTTTGGCAGATTTCTTCTAGAGGGAAAGGTGATACCTGGACTGAAGAAGTTTACCCCATCTCTTCTA TCCACGCCCAGTACTATGATCAAAACATGGGCAAAACTTCAACCAAGAACAGAGGTCATACTGAAAGCCC TGGCAGGGAAAGGAGTATATAACAAATCATCACTCATTGAAGTATGGAGAAAAGACAGACAATACTTGCT ACTTGCCTACCAAGAATGGTTACCCAAAGATCTGCATGCGGACCTGATGATGTCATGGCCTCCGATCAAG CTAGATGAGTGATGCCATTCCCCATACAGACTTGATATCATCATGGCAACAAGTATATGAATGGATGAGT GATCCATGAATAATTGTGGAGCGCCAGGAGTGTCAAGTCTTACAGATATGAGCGCTATGCAAGAACCCAC TATTATTATTATTATATAGACCTGATGTTGTCATGGTAGTCAGACTAGATGAGCGAGACCATTCTCCATA CAGGCATGTTCTCATTGTCATGGCAACCAGTTATTCTCCAGGTGGACCATCAGTCCCCACCAAACCCTCC TTGTGGAAATACTGCATCATGAACCTTCCAAACCATGATTACATTGGTTATTTCTTTCAAAATTCTGGCT CTAATGAAGATATAGCCAGGATTCCTTACTCCCAATTTTTATACAAAGGATTTTGCATGGTGCTATGTAC AATTGGATTTATCAGGGTTTGCCTGCAATGATAAACCTAAGCACAGTCTAATAAACAGGTGGGATTGGTA TCATTGATTTGAATTGATCGCAACTTGATATAGATTACAACTGTAACAGGGATAAGAGTTGTAAGTTTGT AATTTAGTCAAGGACTTGCGATCAATCTCATCTCTTTAGGCACTGGCCTAAATTTGTGGTTGTCCTTGTA AGGCAACATATTAATTGCCCAAATTCAAGATATGGTTCCCCAAAATTGAACACCAAAATAATGATTTTGG TTAGTGCATGTTAAAACTTAAATTATCAAGGTCCTGAAATACTCAGACCACAATAGTGGGTTCTTTGATT ACCATGCTTTATATCCTGGTCTGAGGAATAGGAAAGAAAATATTCTCAAAAATTCTCAAATCTTACATCT TTCTAGAAACTTTGTGAAATTTTTTCTCTTGTTATTAGTGAAATGATTTCATCATAACAAGTTTCAAGTT AATGACTCTGGATGGGTGAAAGACTGGTGTAAACACCAGTGAAAGTCACAATATAAATTGTATGATGATC AAAACAATATCACTTTAATCCAGATTAAATCATTTCCAAAATTCCACCCTGGAAATATATTGGCAGTTGT CCAAGCATATGATGAAGTAGACTTGGATGTTATTTAAAAGTTTTTGACATCTCAAGTGCAATTATCCACT TGAATATCATGTCATGAGATTTGTAAATCATTATATATCTTTATGAAGATACAACCTAGTGATGTTTGTT TTTTAATAAATGAATATGTAACAACAAA
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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