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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_041626872.1 PREDICTED: Lytechinus variegatus rhomboid-related protein 4-like (LOC121429702), transcript variant X2, mRNA TACACGTGTAATAAGGATTCATAACAAAGATCTGTGACTTGTCAAAAATCCTGGCAGTGGAGTTGCATCA GATTTAAGAATTTTGAAGCAAAACTACACTGACGTGTGTAATGTGCTTTGTGCAAGCCTTTGTGATACAG TACCCGAGCTTCCCGAAGGTCAATTTTTAATAATTCAAGATGTTTCAACCGCGGAGAAGAGGGATGGGAC GGCAGCAAGGTCTCGGTCTCCTGCTTCTATTCCATCAGCTTTATCGGGTTGGATTCAATAGAATCCCTCC TGTTACCATGGCAACGATTGCTGCAAATGTCCTCATATTCCTCCGTGTTCTCAATCCATATATCAAGTCT GCCATTAGGTCACCATCCATCAGCAACATCTGCGTCAGCTCCGCCCACGTCTGGTACAAGGGGGATTGGC CCCGCCTCTTTCTTGCAGCGTGGTTCCACCTCGATGACTGGCATCTCTACTACAACATGGTGTCCTTCAT CTGGAAGGGTATCACCCTAGAGAGGAAGTTCGGCTCTCCGTACTTCGCGTACCTCATCGTGATGTTCTGT GTCCTGACCAACGGTCTCTTAGTGGCGCTCAACGTGGGGATAGCGGAACTTCTGGAGGATAGCTCCCACA TCGTCTCCTGTGCTGCTGGCTTCTCAGGAGTGCTCTTTGCTCTCAAAGTCCTAACAACGTACTACACACC TGTCCAAAACCAGAGGATCATGGGAATGTTCAGTGTACCTTCTCGCTGGGCATGCTGGGTTGAATTGATA TTGATCCAACTCATTGTTCCAAGGGCCTCCTTCACAGGTCATCTGGCTGGTATTCTGGTTGGCATGGCGT ATGTGAAAGGGCCCCTTAAGATTCTTATGGATGCCCTCTGGAGTCTGTTCGCATCAGTCCTCTCTGGTGA TGCAGGCCAGGGACCGCGGTACCAGCCTAGGACAGCCGCTACCGGTCTCAGGGACGAGGCTCCAACCTCA AGATCAAACCAATCCTATGCTGGGCGTGGCTATTCCACGGGATCTGGGTCAGGTGCAGCCCGGTCCAGAC CAAGCCCTACTGATTACCCCTATGACAGTAGCACGGGATCCAGCTCCGGGGGTACAGGTGCTTCACCCAC GCTGCCCAATTACCAGCCAGACGATTATACCGGTGGTTTGAGTGAAGAGGAACAGATGAGAACTGCAATG AGGCAGAGTATGAATAATGGATATCCCAGTCCACCAGAGGGAGGCAGAGCAATGCCTTCTGCCCCACCCT CAGAAGACCACACACCCCACCTCTACCCTGATCTGTCCAGAGACAATGCTGCCCCGCCCCCACCCAACCG CCAGAACGGGATGCATGCGTCTGGCATTTCGGCTGAAGAGCTCAGGAGGCGACGCCTTGACAGGCTCGAT AGATGAGATCGGGGAGCCTTTCATGAACCGTCTTGTTGGTGATTTTCCCTTACTACTGTGATAATCTGAA ATCCCTGCATCTGATTGGCTGAGAACAAACTGGCTGCTCCATGAAACACTCCACAGAGACACCTCAACAA GTTCAACAGACGAGAACAGAGGAACCTTTTATGAACCAATTGTCGTTTTCCCTGACTACTTTGATAAGCT ATTCACCAAAATCGTTGCATCTGACTCCGAACAAATTAGATGCTTAATGAAACGCTCTGCATAGACTCAT CAACAAGTTCCACAGATGAGTATAGGGGAGAGTTTCATGGAACAAATAACCAGTGATTCTCCCTGACTAC TGTTATAAGCTACTAAAATTCTTGTATCCGATTGGCTCAGAAGTCATTAGATGCTTAATGAAACACTCCG CAGAGAACAAGTTCTACAGATGAGAATAGGGGAGAGTGTCATGAAACAAATAATCAGTGATTTTCCCTGA CTATTGTGATAATTTACTGAAATTCTTGCCTCCGATAGGCTTAGAAGTCATTAAATGCTTAATGAAACAC TCCGCAGAGACACTTAACAAGTTCTACAGATAAGAACCGGAGAGCATTTCATAAAACAGATACCGGTAAT CAGTGATTTTTCCATGACTACTGTGAGAGGCTACTGAATTCCTTGCTACATGTATCTGATTGGCTCAGTA GAGATTAGATTCTTCATTGAACACTCCACAGGGATGCCTTGACAAGTTCTACAGATGAGAATCGGGGGAG CATTTCATAAACAAATAATCAGTGATTTTTACTGACCACTGTTATAAGCTACTGAGATCCTTGCATCTCA TTTGCTCAGAACAAGCTGGCGCCTTCATGAAACGCTTCCAAGAAATGCCCCGATAAAATCAAATGATTTT GATGCTGGAATCCATTTGTCATTTTGTGTAGTCAACATTCAATTGCTACGCTTTGTGTTACGTGCACTGG ATCCTGTAGCACGAGTATTTGCAATGAATCGCAGATTATCAGTCATTGATCCTGATTGGTTGTTATAGCA GAGAATTTTCAAATCCCTGTATGTGAAAAGTTGAACAATATGTGCATGCAACTGCAACTTCCATTGGCCA GTGTATTGTTTGGTGATGGACAGCAACTCTTGTCTTTACAAAGCCTCGATCATTTTTAATATGATTATTT ATATCTTGGAGCTGACTTTTATAAGGACCATTTTCTGTTACTTGTATTTTGGGCACATCGTGGTATAGTG GTTTGGACTCTCATCTTTTGTTCAGAGGGTTGTGGGTTTGAATCCCAGCCATGGCATGTTTTTACTCACA TTGTGCTGCACTCAACCCAGGTATTATGATTGGGGTACCTGGCATGATTAATTCCTTGATTGCACTGTGC ACTGGAAGGCAGCTCGTGCTAAAGCTGGGGAAATAAAATTGTGCAAATAGATTATTTCTAGATAGATGCC ACAATATATATAAAAGTCTAGTTAGTTATTTAGGAAACACTAAGTACCACTTGTATATATTTAAGATATG AATATCACAGCTATCTTATGAATGTGTGACTTGAGATGGCTTATATGAGCAGCGGCCAGTAGAATCAATT GTATTTCTGCTTTTCTCTTTAAAACTTATGTATTGCAGATTGGACCCTATATAATGGTTTGCATATTACT ATAAAAAAAATATTCAAAATACAAAAAAAAACAACTCAAAACATTCTTTGCATTTTTTATAATTCAATTG GATTTATTTTCGTTTAAAACGAATAACAATACATATAAGATGATACATGTGAAATTGACAAATGAAAACA AGAGAATGGGCCAACTCGGCAGCATCAATCATGGTGCTGCTGGTCTACCAAGGGGTCCTCATTTGCAGCT ACATTACACATGTACGTGCATATCATTTATTGTTACACATTGCCATCTTCATCATCGATCCAAAGTTTGA CATGGAGATCCGGCTTTTCTTCCCTGCAAATGGGGTGGCCGGATTCAGCTCACACTCGTCCTTACCACCT CCCTTCACTTTGCCTGATTCAGTTTATCCTCTATCCTCAACCCAACCCTTCAACTCCCCTTCTCCATGTC ACAATCATTTCTTTTTTAATCAAATTATATGACTAGAATGTATTTTTCTAACACATTCACACATGGGTAC CAATAATGCCTAAAGTGTTTCCATTTAAAAATGTTCATTCATTGCCTTTCTCAAGGATGTATTGTTTTTA GCGATTGAATCTAAATCTGTATATTACACCGACTAACTCTGCTTTTATTTTTTTAATATCTTTTTTAATT CTGTGGCGGAGTATTTATACTGATTACATCATTTTGATATTTCATTTTCATTTTGACATTTCAATAGTGT CCTTACTCAGGTTTTATGTTACTTGAATTTATGTTAACAAAATCATCATTGGCTCACGTACACATACTTC TGTTGCAACTGAGACCTTCTTAACTTTCTCAGTATTTTATGATGATT
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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