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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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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_030978553.1 PREDICTED: Strongylocentrotus purpuratus synaptogenesis protein syg-2-like (LOC105439585), mRNA ATGGACGAACGTATTCGAATGTTTCTCTTCCTCACCTTCATCGTTTCTAAGACAAATGAGATGAGCGTGT ATACTCGTATTCAGAACCCAGAAATCCTCCCAGTCGTTGCTGTTCCTAAATTGCTATCCATCATGGACGT TCGGTTTGAGGATGGATACCAGAATGGAGCATCCGTGAGCATCACATCTGGGCGAACCCACAACCTCACA TGTTCAGTCCAAGACGCAAGACCACCTGCAGAACTAGAGTGGGACGTTCCTGAAGAAGTACAAATTCGAC TGGACGATCAGTATAATGCTGTTCATGGTGAAGCTTATACCTCTAAAAGAGTCGTTTCTGTAAATCCCTC GAGAGAGGATGATGGAAAGATTTTGCGTTGTATGGCTTCGCATCGGGAGCTGGATAGTGGGCTGCAAATG TTCATCCGTCTGGATGTTCAAGTCTCGCCAACTAACCTACGGATCACCGCATCTGATCTAATGACTATCG ACGAAGCAGGAACAAGAAGTGTCATGGTCTTTGAAGACTTGACAACATCATTCAACTGCAAGAGTGTAGG GTCTCGCCCTAAGGCCGTCATATCATGGATCATTGGTTCGGACTACGACCTGGGTCGCACGACCTCTACG TCTACCACGAATGAGGCCGACCAAGGTTTACGTGATACCCAGTCTACTCTACAGTTGATTCCAAAAAGGT GGCATCACAAACAACTTCTCCGATGTGTGGCCTATGCTGGTATGAACCAACGTCAAACGGAAGTGAGGGT TATCGTCTATGATGTCAAAATGACAACTCCCGATGATCTACGAGATGGTATAGAAACCAACGTAAGCTGC AGAGCTGTTAATGGATACCCTGCTCCGCTCATCCATTGGTACATCGGATCGAGAAATGTGACACATGACT CGTCTCTTAAGGCTTCAATGAATGTAGATGATAGTTATGATGCTGAAAGCACCCTCAACCTCAATCCAAA CAGGTTTTATCACGTCCTCCCAGTCGTTGGAGAGAATATCACACTTGCCTGCATTTATACGCCACCATCC ACGTCTCGGCTACTGTCTTGGCAGGATGAGAACGGCAATATACTGGCTATCGATAAATGTCAAGGAGTTG GATGCAGCAACGAGCTAAATGTTCCAGATGTATCAAAGTACAGTTTGAGGGCAGATTCTTCCAGCGGAAA TCTAACTATTAGGGATTTAACATTGGATGACAGCGGCAGATACCAGTGCTTAGTAGGCACTTTTTCTGAT GCAGCTTCCGATGCGATTGATCTGAAAGTGGTGCTATCAGCCGAACCTAGATTGCTATCCATCACTGACG GCCGGACTGAGACTGGATACAAGAATGGAGAATCAGTGAGCATCACATCTGGGCGAACCCACAACCTAAC ATGTTCAGTCCAAGACGCTAGACCACCTGCAAAACTAGAATGGCACATTCCTGAAGAAGTGCAGGTTCAA CTGAAAGATCAGTATAACGCTGTTCATGGTGACGCTTACACCTCTCGAAGAGTTGTTTCCGTAACTCCGT CCAGGGACGATGATGGAAAGGTTTTCCGCTGTGTGGCATCGCATCGAGAGCTGGATAATGAGCTTCAAAT ATTCATCCAATTAGATGTTCAAGTACCACCAAATGACCTCCAACTTACCGCGTATGGATCCATAGCTATC AATGTAACAGAGACACGAAGTGTCAACGTATTTGAAGATTCTGCAACATCATTCACCTGCAATAGTGTAG GATCTCGTCCAAAAGCTGTTATATCATGGATCATTGGTTCGGACGACGACCTAGGAAGCACGACATCTAC ATCTACCACGAATGAGGCCGACCAAAGTCTACGTGACACGAAGTCCATTCTACAGTTGATTCCAAGGAGG AGGCATCACAATAAACTCCTTCGATGTGTGGCCCATGCTGGTATAAATCAAAGTCACACAGAAGTGAGGG TTATAGTGTTTGGACCACCGGATTCTCCCTACCTAAGTGGAATGGGATGGTTGCAGGATGGAGTGTCATC AAACATGACTTGCACATCCAACAATGGCTACCCAGCACCAACCTTCCAGTGGTACCTTGGATCGAAGAAC GTTACCAAAGATTCTAATACAGAGTCTTCGAGGAATATAGATCATCGACTGGATGCCATGAGCGTTTTAA ATTTCACACCCACCGTAGACGAAGATGATTCTCCTGCCATTGTGGACTACTCTGTTCGTCGGGTTTACAT TGGTCACCACAATGTTGATGCCATGCTTACATGTATTTCAGAAAGCAGACCCCTAGCCTCAATAACCTGG TTCTTGAATGGCAAGGAACTCATCAATGGCACCCGCCATCACATTCACCACAGTCATCCACAAGAAGATA CCTTAAGTTGGTTCATTATCACTAGTGTAAGATCGAGCAGCTACCTGAGCAACACCAGTGTTACGGTATC AGCTGAACAGCCGTACGACATCACATGTGAAGCATACGGAGCAAGACCTCCATCGTTACTGGAATGGCGT ATACCAGATGATGTAACCGTTGTTCGTCAAGATCAATCTGATGTCGTACGAGGCAAAAGCTATGTCTCTC AGAACACTGTTACAATCACACCATCTAGGAATGATCAAGGAAAGAATCTCGGCTGCGTAGCGTCACATCC AAAACTACAAAATGATCTTCAACGCTCAGTTCAACTGAATGTTCAGGCCACACCTAGCTTCCTATCCATC ACCGATGATAAGTCTGAGGATGGATACAAGAATGGATCATCCGTGAGCATCATATCTGGGCGAACCCACA ACCTAACATGTTCAGTCCGAGACGCTAAACCACCTGCAAAACTGAAGTGGCTGATTCCTGAAGAAGTGCA GGCTCGCCTGGAAGATCAGTATAACGCTGTATATGGTGACGCTTACACCTCTCGGAGAGTTGTTTCTGTA ACACCGTGCAGGGACGATGATGGAAAGATTTTTCGGTGTCTGGCCTCGCATCGGGAGCTTTATAATGAAC TTCAAATGTTCATCCACTTAGATGTTCAAGTACCGCCAAGTGACCTCCGGCTTACCGCCTACGTGTCCAT AGCCACCAGTCCAACAGAGACAAAAAGTGTCATAGTCTTTGAACACTCGGCAACATCATTCACCTGCAAG AGTGTAGGATCTCGCCCTTCAGCTGTTATATCATGGATTATTGGTTCGGACGACGACCTAGGAAGCATGA CATATACATCCACCAACAATCTGGCCGACCCAGGTTTACGTGACACAACATCTAATCTACAGTTAATTCC AAAGAGGAGGCATCACAATCAATTTCTCAGATGTGTGGCCGATACTGGTATGAACCAACTTCAAACAGAA GTGCGGGTTATCGTCCATGATTATCCTGTCATTGTGGACTACTCTGTTCGTCGGGTTTCCAGTGGTCAAA AGAGCGTTGATGCCATTCTCACATGCACATCAGATAGCAGACCCCTGGCCTCAATAACCTGGTTTTCTAA TGGCGCGGAGATCAACAACAGCAACCGCCATCAGATTCACCACAGTCTTCTTCAAGAAGATACCTTGAGG TCGAGTAATTTGGATATTTCTAATATTTCGGCAGAAGACGATGGCAACTATACGTGTTCGGCTGAGACAA GGCTTGGGAACGACAGCGCAACTATAACCTTGTCATATTCTGGATGTCAAAGGCTGGAGCATATCCGAGC AACGAGGGATGAAACGCCTATAGAAGTTGACGAGTGCCAGGAATCCACGGAGCTGGCGATGAGAAGAAGG ACGACCGAATTCGCGGACCTCCTTCACGAGGAGCCTTAA
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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