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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_030978586.1 PREDICTED: Strongylocentrotus purpuratus uncharacterized protein K02A2.6-like (LOC115921270), mRNA ATGGCATTCGCTGGAGCGGAATTGTTAGCGCTTCGAGGAGTTCCACACTTCGATCCGACGGGTGGTGCAA GTATTGTCAGCGGCAAGTGGAAAGCTTGGCTTGAAGAGTTCGAAGCCTACGCCGATAGTCGCGGCCTGTT TCTGGACGGATGTACGCCGGCCCAGGAGGCGCAACGAAGAGCACTGTTGCTGTACACTGCGGGGCCTGTG GTAAGGGAGACTTTCAAAACACTTCCCAATAAAGGAGAGAGGAATGAGTATCAAAAAGCCACAGATGCCC TAAATGCTCATTATGTTGTCAAACCTAATGCTACGTTTCAAAGACATTTGTTCAGGAAAACAAAGCAGGA AGATGGTGAAACGGTTGCCCAATTTGTTACCAAATTACGACAGGTTGCTATTGGATGCAATTTCGTAGCT GGGGATGTAGAAAACCAAATTCTTGACCAAGTAGTTCAGTACTGCAGAGCTGATAAACTTCGCAGGAGAA TGCTGGAGAAAGGAGGTGAGCTCAAGTTAAATGATGCATTGTCCATGGCTGCTGCTCTAGAAGCTGTTGA AGGTCAATTTAACTCCATGTCATTGAGAGAGAGAGAAAGGCCTAGAGCTGGTGGACAAGTGAATCAAGTA TCGTATGAGAATGACAGAAAAAAGAATTTGGAACGCTACCGATGTGGGAACAAAGGACATTTTGGGAAGG ATGCATCATGTCCAGCCAAAGGAAAGATCTGTCGGAAATGTGGAGGCCAAAACCACTTTGCGACGATGTG CAAAAGTAAGGCCAAGAGCACAAGTGAGGCGAGAGGAAAATTCAGAGATGGGAAGTCCAGAGATGGAAAG AAGTATAAGAATAGAGTTCGCCAAGTGGAAGGTGAACCCGGACATGATAGTGATGATGACAACAGCCGTG GCCGTGATCAGAGGTACTATCAATTTGCTGTGAATGGTGATCATGAGAAAGTCCCAATAATCATTGGAGG TGTCACAGTCCCAGTGATAGTAGATTCGGGAAGTGATTGCAATGTAATAGATCAGATATTGTGGGAGAAA CTGAAGAAGGACAAAATCATCTGCAAATCTACTAAGAGTACCAAGAGGCTTTATCCGTACACATCACAGA TACCATTAACAACTGTTGGATGTTTCACAGCCACCGTAGAAGTTGGCAAGATGAAGTCGACTGCAGAGTT TGTTGTCATCAAAGAAAAGGGAGAACCTTTACTGAGCAAACATACGTCTAGAGAGCTGGGAGTGCTCCAG GTGGGAATTGTACATGTAAATGCGGTACAGAGCTATGCAGGTTTAAAGCATGAGTTTGAAGCAGTCTTCA AAGGGGTAGGGAAGTTGAAGGGCCGACAGGTGCGGTTAGCAGTGGATGAAACGGTGAAGCCAGTGGCCCA GCCTGTGCGAAGGACTCCATTTGGACTGAGAAAAAAGGTCGAGATGAAGATTGCGGAATTGATCGATCTC GACATCATTGAGCCAGTTAAACGCTCCACGCCATGGGTAAGCCCAGTTGTCATAGTTCCAAAGAGAAATG ATGAAATCAGACTGTGTATCGATATGCGTAGAGTGAACGAAGCAATCATAAGAGAACGTCACCCCATTCC CACTATTGAGGAAGTCCTACAGGAGCTGTCGATTAGCAAGGTCTTTTCGAAAATAGACCTGAAGTGGGGG TACCACCAACTGGAGTTACATCCGGAGTCTAGAGAGGTGACAACCTTTGTCACTCATTGTGGGTTGTTCC GCTATAAGAGACTGTTGTTCGGAATCAATGCTGCTCCAGAGATTTATCAATATGAGATACACAGAGTGAT AGCTGGGATAGAAGGAGCTGCGAACATATCAGATGACATCATTGTGCATGCATCGACCCAGAAAGAGCAT GACAAGAGGTTGAAGCAGGTGCTTGGCAGACTGCGGGACGCAGGACTTACTGCAAATGCAGAAAAGTGTA AGTTTGGTGTCTCTGAGTTGGACTTCATGGGGCACAGACTGACTAGCAAGGGACTCAACCCAGGATTGGC CAAGGTGAAAGCAATTGCAGAGGCCCGTGAACCCCAGACTGCAACTGAGATGAGAAGTTTCTTGGGGCTA GTCAACTACTGCGCAAAGTTCATTCCGAACTTTGCTACATTGGCAGATCCACTGAGAAAGCTGACCAGAA AGGACACGCCATTTCAATTTGGTCATGAACAACAACAAGCGTTTAAGGCGCTGAAGGAAAGCTTAATGAG TGCAGAGACCCTGGGCTACTATGATCTAAATGCACCGACAAAGGTCATAGCGGATGCCAGTCCAGTTGGC TTAGGAGCAGTGCTGGTGCAGGTGCATGCTGATGGCCCGAGGATAGTAGCATATGCCAGCCGCTCGTTAA GTAACGTTGAAAGGAGATACTCTCAGACGGAGAAAGAAGCCCTTGGACTTGTGTGGGCTTGTGAAAGATT CCATGCGTACCTGTATGGAATAGAGTTTGATCTAGTGACTGATCACAAACCGCTTGAAGTCATTTATTCA CCGAGATCTAAGCCATGTGCGAGAATAGAGCGGTGGGTTCTGAGGCTTCAACAGTACAAGTACAGGGTAG TCCACATCGCAGGAAAGTCCAACATAGCAGATCCATTGTCAAGATTGCTGAAGGATGATCAACCGAGAGA AACTTCTGTGTTGGAAACAGAAGCAGAGAGCTTTGTGCGTTTTGTGGCAGTCCAGTCAACGCCAGGTGCG GTGACAACGAAGGAAGTCGAAAGAGAATCTGAACATGATCCTGAACTCGAAGTTATCAGAGAGTGTATTC ACAGTGGACAATGGGATGATTGTCCATACAAAGCATACATTCCCATCAAGGATGAACTCTGTATAATTGG TCAGTGTGTGCTGAGAGGTAGCAGATTGGTGATTCCACAGGCACAGAGGCCAAAGATGGTGTCATTAGCT CACGAAGGACACCTGGGCATTGTTGGCACCAAACAGAATTTGAGAACCAAGGTATGGTGGCCAGGATGTG AGAAAGATGCAGAGAAATTCGTCAAGACTTGTCATGGTTGCCAAATCACAAGCAGGGGTAATCCACCAGA ACCAATTCGAAGTACTATGTTGCCAACAGGACCTTGGGTGGATGTAGCTGTTGATTTCCTAGGACCACTT CCGACAGGAGAATCTATACTTGTGGTAGTTGATTATTATAGCAGATACTACGAGTATGCAATCATGAAAT CAACCACTGCAGAGAAGACAGTCAAAGCCCTGGCTGAAATCTTTGGCAGACATGGGTTACCTGTGACGTT ATACTCAGACAATGGACCCCAGTTCATCTCGGAAGTTTTCGCAGAGTACATGAACATTACAGGAATTCAC CACCATCGGGTGACTCCTAAATGGCCCCAAGCCAACGGCGAGGTCGAAAGACAGAACCAGAGTATAGTGA AAAGGCTTAGAATTGCACAGGCAGAAGGCAAGGATTGGAAAGAGGCCTTGCTGACTTACGTCGCAGTCTA CCGGGCTAGTACTCATTCGACAACGGGAAAAAGCCCGGCAGAAGTGTTGTTCGGGAGAAAGATCCGAACT AAACTACCACAAATCCAGGACATTAGTGAGGATCAGGAACTCAGAGACAGGGACCTCCAAATGAAAAGTG GTGCAAAACACTATGCAGATCTGGAGAGGGGAGCCGTACATTCTGACATAGTGCCAGGAGATAAGGTGAT AGTAAGACGTGATGAAAGGAGGAAACTAGACACGCCATACTTTAGCCAGCCATAA
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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