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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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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_041600857.1 PREDICTED: Lytechinus variegatus probable ATP-dependent RNA helicase DHX37 (LOC121409061), mRNA TTCAGTTTATCGGTCCGGATTTTCACGTGTGGTAATCGAGAAAAGCTGTACGCTGTTGATCCACTACACT ACAGTCCAAAGTTTGTTTAAATGTTATATTATTGCCCATGAGCCAAAAAACAGAGTTTTAAGTCGATATG GGGAAAAGAAAACGTAACTTCAATGCTAGGGCACGTCAAATCGTTGACGATTCCGAGGTTAGGAAAGCCC ATCGGACTCCTTGCGTGGCTGTAGAAGAAGTATCAACGGATGGTCGTTCTTCCCTGCCCCCGGAACTCCC GGGTGCAAGTCACAGCTGTGTGCTGGACAGCAATGCGCTGGTTTTGCCAGGCAAGAAAACGGATACCGAT GTCGAGACGAAAAGACTGAAAGCCGAGCAAAATCAGCCGAAGCAACTCAGTAAAAAACAACGTAAGAAAC TGCAGAAAGTACTGGAGCAGAAAGAAAAGAAATGGAAGCGAGCTGAGCTCCTTGCTTCTCTGGCTGAGCA TCAAGCCTCTACAGAGGAGATGTCAATGTTTTCTTCATTTGCACACATTGGCCAGAAGTCAAATAAAAGG AAGCTGGAAAGTACTGGCAAGGTTAAAATCAACAGTATCAGTGGAAGTAACAAGAAAAAGAAATTACGAG AAGAAGATTGCAAAAGCACTGATTCATCATCATCTTCATCCTCAGAAGATGAGGAAGAGGAGGCTGAAGA ATTGGAGCTGAATGAATCAGAAGGAGAGGAACAAGAGAGGAGTGGATCAAACATTCACCATACCAACAAG AATAGTGTATCTGTTGAAAGGACTTCAGTGAAAGAACAGAATTCTGCTGTTGCTTTAAATGATAAGAATA CAAGAACTAAAGATCAAAGTGATAGTGAAAAGAAGACAATGAAAGACGAAGTCAAATCTGAACCTGCGAC ATATGTTCAAGTGAAGAGATCACCTGAAATTCAGGAGGCGAGGCTTGCATTGCCAATTCTTGCTGAGGAA CAGGTAGTAATGGAGGGTATCCATGACAACCCGGTTGTTATCATTTGTGGTGAGACTGGGAGTGGAAAGA CAACTCAAGTACCTCAGTTTCTCTATGAAGCTGGTTATGCAATGAAAGGTCTGATAGGTGTAACAGAACC ACGACGTGTAGCAGCAGTTAGTATGTCACAACGTGTTGCCAAAGAGATGAATCTACCTCACAGTGTGGTA TCCTATCAGATCCGTTATGCTGGCAATGTTTCAGATGATACAAAGATCAAATTCATGACTGATGGTGTGC TCATGAAGGAGGTCCAGAAGGATTTCTTACTCACCAAGTATTCTGTCATCATCATTGATGAAGCTCATGA AAGGAGTGTGTATACAGATATTCTGATTGGTCTTCTATCCAGGATTGTACCACTGAGACATAAAAAAGGA AACCCATTGAAGCTTGTCATTATGTCAGCTACTCTGAGAGTTGAAGACTTCACAGAGAACAGGAGACTGT TCAAGGTCACTCCACCAGTCATCAAGGTTGAATCAAGACAGTTTCCTGTGACCATTCATTTCAACAAGCG TACACCTGTTGAAGACTATGTCACTGAAGTATATCGTAAGGTTTTGAAAATTCACCGGACCTTACCACCA GGGGGCATCCTTGTCTTTGTTACTGGTCAAAATGAGGTCAACACACTTTGTCGTAAATTCAAGGCTGTTG GGAAGAGACCTGGACCCAAGCAGACAGGTACTGAAAAATCAGGAACAGGTTCAAATGAGGACCAGGACCT GAAAGAAGACCAGGAACCAGTCCAAGAAGATCTGAAGAAGGAGGAAGAAGAGAAGAAGGCTTTCAAGAAA TGGAAATTACCCAAGATCAGTTTGGACAGTTATTCAGCCCAGCCTCATGATGTGGAGAATGATGTTGATG AGGAAATAGATGATGATGATAATGTTGATAGTGATGGCGAATCAGAGGAAGAAGTTGATGATGAAGTTGA AGAGGATGAGGAAAAGGCATTGAAGCCAGAAGCTGCCGAGGACCAGGTCCCGATGTATGTCCTTCCCATG TACTCCCTCCTGGCCCCTCATCGACAGGCACAAGTTTTCAGATCACCTCCAGAGGGCAGCAGACTGGTTG TGGTAGCTACTAACGTGGCTGAAACCTCTCTCACCATCCCTGGCATCAAATACGTGGTGGACACTGGCAG GGTAAAGAGGCGTTTCTATGACAAGGTCACTGGTGTATCATCATTCAAGGTCACCTGGACGTCTAAAGCA TCAGCCAATCAGAGAGCAGGAAGAGCTGGTAGGACTGAACCAGGTCACTGCTATAGGTTGTTTTCCTCTG CTGTCTTTGGTAATGATTTTGAGACCTTTGACCCAGCTGAGATCACCAGGCGTCCTGTTGATGACCTCAT CTTACAAATGAAAGATATGGGTATAGACAAGGTGGTGAACTTTCCTTTCCCAACTTGTCCAGAGGAAGAG AGTCTGAAGGCTGCAGAAAGGTTATTAATCTCCCTTGGTGCATTGGAACAACCTCCCAAACCAAAGACAT TCAGAGATATGAAGAAAGAGTTCTTCAGCACAAGGATCACAGATGTTGGTCGAGCCATGGCATGTTTACC CGTAGCCCCATGTTATGCTAAGATGATCTCAATGGGTCAGCAAGAAGGATGTCTGCCCTATGTCATAGCT TTAGTATCAGCACTCACAGTCAGAGAAATCTTTGAGGAAAGCTCTGTACAAGGAAACACAGATGAAGAGA AAGAAGCACACAAGAAGTTGCAAGCAAGAGTGTTGCATAACAAGAAAATTTGGGCTGGAAAGGGTGAGAA ATCCCTTCTAGGAGACTTGATGGTGTTGTTAGGTGCTGTAGGTGCCTCTGAATACGCTGGATGTACACCT GCATTCTGTGCATCACATGGCCTAAGATACAAGGCAATGGTTGAGATCAGAAAACTCAGAAGACTTCTCA CAAATGCAGTTAATGCTGTTGATAGTGAATGTGGAGTCTTTATGGATCCTAAGATGGCCCCGCCCACTTC CACTCAGGTGAAGATGCTTCGTCAGATTGTTCTAGCTGGCCTTGGACACCATGTAGCCAAACGAATGTCA GCTGATCAGGAGGGCTTTCAACGAGGAGGTTATCAGAGCGTTGGCATAGAGGGCGCTGCCTTCATCCATC CCAATTCTGCTCTATTCAAGCAACTGCCGGATTATGTCGTCTATCAGGAAATCATTGAGACCACCAAGCC TTACATGAGAGGTGTTACAGCCGTTGAAGGAGAGTGGTTACCTGTTCTCTTCCCTAATCTCTGTACCTTC TCCAAGCCTCTTGAAGAACCCACTCCTTCATACCATTCTCCATCTGGGACAGTCAAGTGTCACATGACCT GTACGTTCGGGAGGAATGCATGGCCTCTTCCAGCCCAAGAATTGGACTTCCCAAAGAGTCTGGACAAAGT CAAATGGTTTGGAAAATTCCTTCTTGAGGGAAAGGTTATACCTGGACTGAAGAAGTTTACCCCATCTCTT CTTTCTACACCAAGTACTATGATCAAATCATGGGCAAAACTACAGCCAAGAACAGAGGTGTTATTGAAAG CTCTGGCAGGGAAAGAAGTTGATAATAAATCATCTCTAATTGATGAATGGAGGAAAGACAAACAATATTT GCTACTTGCCTACCAAGAATGGATATCTAAAGATCTTCATGCAGACTTGGTGATGTCATGGCCTCCGATA AAACTTGATGAAGATGAATGATACTATCTCTGTAATACACTCGCTCCCTTTATGTCACTTTGGCAATGGT TTCCATTGTACGAGTACCACATCATGGCATTTCTCAATAGATGAGCAGGACAGTTTCCTTTCAACTCACA TGATGTCACTGTATTCTACCACTTTCTGCAAAGACCATTTATGCCTCCAGGCATCCTTTGTGAAAAGATT GCATTACAAACCTTCCAATTCCAGTGCAAAATATTGGCTGTCTTGGAAAATGAAACCTTTCCCATTTTTG TCTCACCTGTGAAGCAGAGTGAGACTATAGGCGCCGCTTTTCCGACGGCG
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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