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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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L. variegatus
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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
???blast.query???
>XM_030986870.1 PREDICTED: Strongylocentrotus purpuratus NK-tumor recognition protein (LOC575746), transcript variant X1, mRNA TTTTCATTTGAAGTTAATCGAAAATTTATCTGGAACAAAGACTATGCCGCTGAAAGTTTGTGTGCGTGAT CTTGAACGTGAGATTAAAAATGCATTTGCTTCCTTGTCACCTAAGCTAAACGAAAACGCTTGATAGTACA AGTGGGGTCTCTTCTTTTAACTGTCGAGTGAAGATCTCTTCAACAAGACACCATGGCTGCCCCTTCTGGC AATCGACCCCGTTGCTTCTTTGATGTTAGTATAGGGGGCGGTGGAGGAGGGCGGATACTATTTGAACTCT TCTCAGACATCTGTCCAATCACCTGTGAGAATTTCAGAGCACTTTGCACCGGTGAGAGAGGTATGGGGAA GACCACCAACAAACCGCTTCACTACCAGGGTAGCACCTTCCATCGTATCGTCAAGGATTTCATGATACAG GGAGGTGACTTCAGTGCAGGGACAGGCACTGGAGGAGAATCTATCTATGGGGGAACATTTGCAGATGAGA ATTTTGAACTGAAACATGACCGCCCCTATTTGCTGTCCATGGCCAATCGAGGAAAGGACACGAACGGTTC TCAGTTCTTCTTAACAACCAAGCAAGCTCCTCATTTGGATGGTGTCCATGTTGTGTTTGGCGCAGTGTTG CAAGGTCAGGATATAGCGACTCAGATTGAGAATCAGAGGACCGATACAAAGAATAGACCACTGTCTGACA TCAGGATCACCAACTGTGGAGAACTGGTGCTTAAAGTCAAACCAAAAGTGGCAGAATCCAAGAAGAAGAG GGAAGCGGCCAGTTCAGGATCCGACGTGGCTTCATCAGATGAATCCTCAGATGGAGACAGTTCTACCACC ACCACCGACTCATCGGAGACGGACAGCGAGGAGGAACGCAGGAAGAGGAAGAAGTATCGGAGGAAGCTGA GAGAAGCCAAACGGAGGAAGAAAGAGAAGAGAAGGAAAAAGAAGGCAAAGAAGATGACGAAGGAAGGTCA AGCTGTTGTTTGGGAGACGAAGGAGATCAAGAGTGAGCTTTCTCATGTGACCATCAACCCAGAGGAGATC CCGGAGATACCTACCAATAGGTTTCTCATGCGGGGTATGCCAGACAAAGAAAAAGAAGAGGCCACTCAAC AGCTTCAGCACCAAAGGTCTGTGGATGCATTCGGACGTAAGATTAAAGGGAGAGGTCAAGTGCGATATAG AATGGGTAACCCTCCCCACTGGCGAGCAGAGAATCGTAACAAACAACAAGAGAAGGGGCAGGGGGATTCC TCAGCCGCCCGTTGGGAGATGGGTGGAGCTTTGAAAGATGCCAAAGCCAAGAAGAGACGGGAGAGGCCCA GAGAGGATGATGATGATGATCATAAAAGAAGAGATAAATACGGAAGATTTGACAGAGAACAAGACACTGA TTCTGAGATGGAAGAAGGGGAAGTAGTATCACAAGATTCTATGGAGTCTCGGAAGAAAAAACACAAGTCC AAAAAGCACAAGTCCCATAAGAGGTGCGACAGTAAGAAAAGTGGAAGATATCACAAGAAGTCCTCATCCC GACATCGCACCACAGGCGAACTTTATTCCGACACGGAAGAGGAAGAGGAGGATCGCCCTGAACGACGCTT GTATTCACGTTCTCCCGACAGTCGTTCTCGCTCGCGGTCACGCTCTCGCACGTCGGACTCTCGGGACAGG AGTAGGAGTAGGGGGAGGAGCCAGAGTAGGGGCAGGAGTAGGAGCAGAAGTAGAGGGAGAAGCAGAAGTA GGAGTAGAAGTAGAGATAGGAGCAGGGGCAGGAGGGATCATAGAGAAAGCAACAAGGAGTCGTCCCATTC TTTCTTGGCATCAAGGTTCTCTAAGACATCTCACGCCCATTCAGACAAGTCGGAGAGCCCACTCATCACC AGTGCTGTCGCCCTGGAAGATTTCAAGAAGCTGAGTAAACCTGTGGATGACACTTCATCGGAAAACGATA GCCCACCACCAACACACTGGAAGCCTGGTCAGAAACCACTCAACACACGTCCATCGTATACCAGTCTAGA TATCATGAGCCAAGCACGCAAACAAATAGAGCAGTCAGGAAGGGGTAGTAAGCTTGTGAAGAAGGCTTCG CCTCCTGCCCTGCTCCACAAGAAATCTCCTTCACCACCACCAACCGCAGCATCATCTAGAAATGCAAGAT CTGTGAAAGATGGCAGGCCTTCTGCAGGTGCTGTTGAGCGAAGGCAGAGTGGTGGTCATCCATCCTCGAA GGCTAAAGAATCATCCACCAACCCAATTCTATCTAGGAAGCACTCCCTAAGTCCTCTTCATGGAAAGAAA GATGCTAGGTCCTCAGAGTCATCTCATAGTTCATCTTCTACTTACGATTCAATTGATGAGGAAAAGATGT CTCCAGAGCGAAGAGAAGAAAAGAAGTCGTCAAATTCCTCTAGGCCGCCTCCTGTCAAGGAGGCCTTCAA GTGGAATCCACCCTCTGAAGATGATGAAGCCAGTCCTATTATGATAGAAAGTGAAGATGACAAAAATATG CCACGTTTCCGCAAAAAGAAAAAAGGGGAGGCTTTGGATGCCAGCAATAAGCAGGAGAAGACCAATGGTA AAAAGGACGGAGAGGATGAAGGGTCACTTAAGGACAGACTGGATACTCTGACATTTCAGAATGAAAGGAT AAAGCAGTTTGTCTCCACTGTCAAAGAAGATGGGAAAGAGAAAATCAATAAAGATGTGGAGCCGGAGGTT ACCAAAGAGCAAGATCAACCAAGTAGTGCTTCGGTAGAGATCCAGTCTCCCAGCTCCTCTAGTTCCAGCA GTGGCTCTGGAAGTAGTGATTCAGAAGAGGAGACGGAAGGAGACAAGAGAGATGATGTGAAGGAGAATGG TAATGTGACAAACCAGGAGGCAAAGAAGGAGGAGCAGCCTGTGAAGGAAGATGGGAAGACTGAAGAGGAG AAAGGGCAAACGGCATTTCCAAATCAACAAGTCAAGATGATGTGGAAGAGCAGAAAAAGCCACGAGAAGC CGAGTAATAAGATGCCGAGTCCTGTCCATGCAGAACACAAGAGGGCCCCATCTCCCAGCCCTAGAAGCCC ACCCACCAGCATCCAAGTCATACACGACAGCCCCAAAACCCCAGACGGCAGCCCCAACCCCCAAACCCGA CCCAGCATCCCTCATACCCCACCCAGCAATGTCCAAGCTGAGCCGAGCAAAGCCCAAACCCCAACCATCA AATCAAGTTCTCTGGCTAGCATCACTCAGACGCAACCCAACAAAAGCCACACTCCTTCCAGCGACAAACG TATTCCAAAACGAAATGGTGAGCACCGGAGGAGGTACAGTAGAAGTAGAAGCAGAAGTGGCAGATCCAGT AGCAGAAGCAGCAGGGGATCGAGATCAGGATGTTCAAGGTCACGGAGTGGGTCCAGCTCTCGCAGCAGAA GCAGGAGTCGAAGCAGGGACGATAGCAGAACCAGACGGAGGCGTTCTAGGTCCGATTCTAGAGATAGAGC ACGGCACAGGTCACCGAAACGAAGGCATCGCCACTATTCCTCTTCTTCATACTCATCATACCGTAGTAGG TCCAGGTCACGTGATCGCAGTCGCCGTTCTCGTAGTCCTCGTCGAAAATCATCCTATGGCCGTAGCAGAG ATAGGCACAGGAGACGATCTCGTAGCAGGTCTGACACAAGGTCACGTTCAAGGTCACGCTCACGCTCAAG GTCGCGTTCAAGGTCACCCTATCGCAGGCGTTCATCTAGAGGGCGACATTCCAGGTCCAGGAGCAGGGGA AGAAGGTCTAGAGAGAGTAGCAGACGTCATTCTGACGGACGCCATAGGAGTCGTTCCCGTAGCCCGCGTC AGAGTTACAGCAGGAGTCGTAGTCGTAGCAGGCGTAGACACAAGTCTCGCTCACTATCACGCTCTTTTGA CGACCAGGTTTATGGCAGGCGTCGCAGATCACGTAGCAGATCAGTTAGTAGTCGCTAGTGGGGGGAAGGC TGGCTTAGGCTGGGGGTAGATGTACTTTAATTAAATATGAAATATGAAAGTTTTTATTTTCGTTTTTTTT TCTTCAATTACTATTAAATATTTCAGAAAAGTGTTTGTCTGGCCTATGTTCATGTTTTTCAGCTTCTTTT ATTGATTTTAAAATGGTGGAGAAAAGGGTAGCAGAACTTTGTTCCATTTAGCTACATTGTATTTGGTGGT GGTAAGATGACTAATGTAATGTGAATGGTTGTTGTATTCTGTTGATGTTTTGCCTCAATAAGAAACTGAA AAACAAGGCAGTTGGTTATTTTGAATGAAAGTGAACTACATGAAAAGTGCTATACTTTTGATGCTTCCCG TTCAAGAATTTTAAGATTATTTTAAAACTGGACTTTAAGCGAGTTGATGTGTTGAGATGCACATTACAGT GATAAGAACCTTTATAATCTTTCAAAAAGTTTACTCTAATTATTTGTATAAAGACTCATTTGCTTTAGAA ATCTTTCAGTGAAGAAGACTGTGAACCTAGTACTTGTATGAGAAAAACAGAATTATTAATGTCTGATTCG ATGGTTAATAACTACCAACTTAAAGTACTATCATGCTGAAAATGTGTTTCCAGTTAAAGTAATGGACACT AAATGTAATTTAGATGAAGACTAGCATAAAAGATGACTACAGATATTTTCTTCATTTATGCAGCAGAAAC TTTGCTTACACAGTGCATCACCACATTGTTTGCAAGTGATTTAATTGGATCGAAGGCTAAGAGGCAAAAT ACATGTCTTTTTTTTGGGGGGGGGGGATTTCAGTCTGATACTTGCCAAGTTGGCTATGCTTTGCCCCATT TCTATTTTAATACCAGCATTACAGAAATGAAATGTTAGTAATATGTTTGTATGACCTTCGTCAAAGCTTA TAACCCTTCAGATAGTTCAGACTAAATGCAGTGTAATGGTTTTTGTTAATTTGTTTTCACATGAACCCAC TATTGTGTTGCCCTTGAAAAGTTATCAAATTGATGGATTATGTAACATATTCAGTTCGTTTGTAAAATTG CAGCTTGCACTATGTAAAAAAGCTTATGTATGTACATGTATGACGTACAATTTAAGGCAAAGATTTGTGT GCATTTCGTTTTAATTCCAGATCCTGTTGGTTGCTTTCTTTCATTGTTTAAGTAATTATGATTCAGGTGC AAAGAAGTATGGCATTTCTTGCAAAGTGTTATAATTGTATATGTTTGTAGTTCTGTTTGGTATGGGTCAT GAAGCTTTATAACGAGTTGTATATATTGGGAATCGCCTTGATTAGTTATATGGTACATTTTGGGAAAGTT ACTGGCTATGGTTGTAAATCTTTGAGCAAAATTGTAATGTAATTGGCAAGATGAGGTTTATTTGAGTAAT TTGTGTTTTGTGTTTGATATGTCCTACTGTAACTGAAGTGTAGCATTGGTAATTCTACAGTGGTTAGACA AAGTATGATATTTAGAAAAAACATTGTTTGTACAATCTGGACAAGTTTTCCAGTTAAAGTCACATTTGCC AAATTAGGTGAAAGTTTCCTGTAAGTTCCAAGATGTATATGTCCAATTTAATTGGAATGTAGAAGGATAT TCATGTTTACATTGTCAGTAGAGTAGTTCAGTTCAATTCAGTTTAATTGCACCTGAAGCAAAGATAAATC TCATCGGGTTTCTGTAGTGTAGAAACAATGAACTTAATTAGACCCAATATTTTTTTACGATTCATGTTAT AAATTGTTTGTCTTGGGAAGCCCTTGTTTGGTGAATAAAATTAGTTTCAACGTCA
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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