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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_038218972.1 PREDICTED: Patiria miniata double zinc ribbon and ankyrin repeat-containing protein 1-like (LOC119742786), transcript variant X3, mRNA AACACTGCCTCCCCTATAAAAAAAAATTAATTGTTCCAACGGTATTTCACCTTTGACCGCAAGCCAATGA CAACAAATTCTAGCTAATAGTGGATCCCGCTCGCTTTCCAAACGTAAATGTTATAAATAAATCTCTCTAA TTTCAAGGAAATTCGATCGAGGTCATTCACTGTCATGATAGAGTGATTGCACAGGATGGCAGCAGGCGCA GTCACAGCCCCCTCTATCATCCCATTGAGAGTACCGGTGGCGGGAAAATCCCAAACGGAGATTGACACCA ACACCTACATTGAGCTCAAGACAGATTTTCCAGATACTCAGATCTATTTCACTATCGATGGCTCAAAGCC AGATCCCTTTCAGCAGATAGGGGTGAGGAAGACCCAGCAATACAAGAAACCCTTCCTGCTTCAGGAAGGC AAGAAAACAGTCAGGGCAATCGCAATAACCAAAACCAGAGAGAGTAATGTCGTCAGCAAGACTTTCACTG TGGAGTGGGTACCAGGCCAGGAGAAATATGACACAGATGATGAGAGCTTTCAAAATCGAGTCACTCGCAA GCAGACACCTGGCCTACAGCTGACAGCCAGCAAGACAACGGCAGCAATCATGAAGAAAGTGTTGGAGGAA TCTCAGAAACCAGTCCAGGGGTCCAACTATCGCAAGCCTACCACAGGCACCCGCTTCATGGAGGCCAGAA TGGGCAACAAGTCACGGCCAGCCAGCACATCAGTCAAAGACAAAGCCAAGCAGAATGGCCAGAAACCTGC AAGCCCAATGCCCGAGGATAAGATGAGAACTCCACCTAAGAACCTGACACAGGCAAACCGACTGCAACGA GAAACAGACTTCCTCAAGTGTATATTCTGTGCTGCAGACAGACCAGCGGATCCATTTGCTAGATTCTGCA TAGCATGTGGTAATCCAGTGCCTCCGCTGCCTAATGCCAGACTACCTCCACCAGAACCAGCCCAGCTCGG CATGTGTGTTGGATGCAATGCAATGGTGCCTCTGAATGTGACTAGTTGTCTGATATGTGAGATGCCTATT GCACCACAGCTAGTACCTCAGGCCTCTGTCAAGCTCAAGGATAAGCTCGTGTGCAATGAGTGCGGGACAG GCAACCCAGCCAACATGGAGTATTGTGTCACATGTGAATGCCGACTGACTGGTAATAATAGACACCTGAA GGCAACTTACAGTGGGACATCTGCCCCTCCCATGCCCATGAGAGGAGGGAGGCTTCTCTGCTGTAACAAG TGTGGACGAGTCAATAACAGCGATGCTCGCTTCTGTGATTGGTGTGGGGCCAAGCCAGCACCAACAACAC ACCTTCTGACTTGCTCTCGATGCCAGAGCAGTAACCAGGCTTATGCTACCTTCTGTCATTCCTGTGGCTG CTCCATTGAGCCCCCACCAAGAGAAGACCCTCGAAATAACGGCATAACGGTCGGCGGGAAGAGCACGTCC CAGGTTGTGGATAAGCAAGCCAAGTCAGCCTGGGTTCCTATGTCCATGCCTCGGCCAGAGCCTGAGAAGC TGGCTGTGGGCACGCAGACGACCGGCCTATTCTTCCCGTCCAACAAGAAGCTAGAGCAACAAGGCAAAGG TCAAGGCGATCAGAGGAATCTCTCTGAATCCACGGGGGAGAAGAAACCAGTACTGACGGCTATCAGCCCA GGAAAAGGTTATTGGCGGCAACAGATGGATCACATTTGTGGGCATTTGAAAGCGTATGCACAGAACAACC AAGACTTCAGGAACCTGATTTCAGAGCCACGGATGGGCAAGCTTCAAGGAGCCACTGTGCATGAGGATGG GTATGAGCTGAGCATCACAGCATGTTTCATCCTACGAGGCAATAAAGACGAATTCACTGGTAAACCGCTG GGAATAACAAAGAAGAGCCTTTTGAGTGACACAATTGATGTAACCAATGAAGTGTCTAACAAGATGGGCA ACGCACCAGGAACACCAACCAGCAAACAAGAGAAGCCATCCACACCCAAGAAAAAGTTGAAAAAGAAACC AGCGGATGACAAATTGTCTGCCATAGACCGGGACCTAATCAGGGAGTTAGGAGCCAAGGGAGATGGGGAT GATGAGGAGGTCCAGCGTCTGCTTGATGAGGGAGCTGATGCCACCTGTGAGACCGGCGAAGGTATCCCAG TACTAACCCTAGCTGTCATGAATAAACACTGGGACTGCCTGGAAACATTGGTCAATAATGGAGCGGAAAT CAACAGAAAAGCAGGACCCAAGGGTAACACTGCCCTCCATGAAGCAGTTCTTCTCGGTAATGAGGGCAAA CAGGGTGTGGAAGAACTTCTGGCACTCGGGGCCAGCTCCAAGGTGAAGAACGCCCGGGATGAAACAGCCT ACGACCTGGCCATCAAGGGAGGAGAAGAGGCCATTATCTCTCACTTTGCCTCCACGGCCGGCCAGGGAAT GCTGGACAAACTCATGAAGCAGAGCTCACGACCCCCGGCGGAAAGATTCTGAGACTATCTTTGCTCGGAT GAGGGTGCTGTAATGATGTTATTTTGGGGGTATAACCAGACATGTATCCAACTTGCTGAGCATGAAAGTT CGTTTCCAGTCCCATTATTGAATCAAGTAAATGGAAAGGAGCCTTTTTGGGACTTAAATTGTAGAGCTCG TATCAGGAGCTTGCGACACCATCACGGTGTCTTTATCACAGCTGGCGTTGTTGAGGCCCTCGTGGTCTGG TATATAGAATATCATGTGATGGCTGTGACGGAGGACACTTATATCAGTGAAACAGCTCACACTCTGCAGG ACCGTTACAGAGAACATACCAGTAGGTCAGCTCCCCTGAGGCTGTAGGAATCCGCAGGCACTGCCCCCAT ATGAATAGAGATGGAGGGTACGAATGTGACTTTTCTAGTTTTTGTACCCAGAAAATGGTAGCATTATAGC ACCCTCCTTCACTCAAAAATATGGCTGCTTGTGTGAAGTGAAGGCGAACAAAAGACCAGATGTTGTAGAA TTTTGCATTCTGGATATTCAACTGCTATCCAGGATACTGACAGAGTACCCTGAAAGCATCAGTCAAAGCA CCTTGTTAATTCAGTATTCTTGAAGTTTTGAAGTACTTGGTAATAATTTTTAATGTAACGTTTCGTGATT TACTAAATTCAGATTTATGGTGTTAAATTAGTCGTCTGCAAATGAAACCTTCTGAAGGTCCGTCCTCAAT GTATACAAAGTAAACTAACATTGTGTCAAACAAAAACATTTGACTATGTACCTATCTGATTGACTGACTG ACTAGGGCTGCATCCAAATCAGCTGTCTAGAGCTAGGTCTAGGTCTGCGCCCATTAAAAATACGCGGGGA CGCGCTGCCAATAGACGTAGCCCTAGCTCTGGAAGCCCATTTCGGACACGGCCTCACTGTCTCTTTGACT TGGACTGGTTGTAGACTGGTGAAGAGAGCGAGGCAGTGCTTTTATCCAGTAAAGCCAATGACTGGGCTCT AGTGACTAGACTTACTAGGCTTGTCTTGTCTTGTTAGAGTTTAGATTAGATCAGTGTACAAGTCCTTTAT AGCATTGCAATTGGCTGTAGGGTTTTAAAACTGCGAGTATTGTTGTAATTGGGGAATACCTTGTAAAACA GATTTTACATTGTCTTTCAAAGAAAACCTTTTCATGTACATTGTACTGTGTATATAATTTGTGTGAATAA AAGTTCATCTACTTAAAATAA
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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