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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_776143.5 PREDICTED: Strongylocentrotus purpuratus serine/arginine repetitive matrix protein 1 (LOC575766), mRNA TCCGGTCGCCCATATATCGATCCGCATAGTTTACGATCTCTATAGCAACGGTGGTATTTTCGTTGCGTCT CTTTTTGGAATTTATCAATTTTCTCGTTATATTTCATACTAAAAGACTGATCTTATTTGAGAGTGTTTGC TTAGGAATACATTAATGCTCTTTAAAGTGTTTGTTCTTGGTCTTTGACTGTGTGGGAACTGCAAACTGAT GATCAACGACCAGCAGCAGTGCAGCTAGCACGATCCGGTCGACAGTCGACGCTAGCTGACGATTCCGCTG GCCTGGCGGACTAGTCACGGTACACTGCATGACCTTGCATGACCACCCGCTTGGCATAAAGCTGAGCAGC TGAGCAGAGTTAGATCTGCTACACGGTGATGGCCAGTTCTGGATCAGTCAGGTATCCAGGTGGATATCCA GACAGCATGCGTAGGACAGCTCCTGCTGCTCATTCTCGCATACCTGTGGCGCAGGCTCAGAGAGCTGATG CCAACCGTCATGTGAGTGCTCCACATCGTTCAAGGCTCCTTGCCATGCAGGATGCCTACCAGAAGAAGCT GATCAAAGAAAAGGAAGAGAAAATGTCAGCCATGTACAACAGGCAGCAAGATCAGGCTCTTCAGAAAGTG ACCCGTCATGGAAGTAAAGCTGGTACAGATGGAGGGCAGGGTATTGTGAGGGATTTCTTCAGGGAGCGTA AACAAATGGAACAATCAAAACATTCGGCTGAAATCATGCCTAGAGATACACATTTTCAAAAGAAACTTCT AGAGAGGAAAAGTGATCTCTCAAGCACATATGATGCAAGCTATATTCAAAATAGACAAGCTCAGAAAATT TCTGATCTTCAGGAGCAAAAGCGGCATGAAGAAAGGAAACAGCAGGAAATGCTCAATTATAAGCAACAGA ATCAAATGCAACAGCAACCGAAACCTGGCAAAGGTATGATGAGATCAAACCCCCTTGCACCCATTAAACG TGATTCTGTAAAGACGAAGGCACATGGCCCTCCATCACCCAGCTATGACCTCTACGAAACATCGAGCAAT CTAGCATATGATGATGAAGAAGATTATCCAATGAAACCACTATCCAAGCCTCAGAAGGTCTCTCATCGTT CAAAGCAAAGAATCGATCATGAAACTCCTCCACCAAACAAGCTGAACACCACGCATGATCTGACACCACA GCCAGCTAAACAATTGAATCGCAAGAAGATTGCTCCTCCTATCTCAAAGAATAAACCCCCAATGAGAGCA AAGAAAGACAAGAAAAATGATTTTCAGAAATGGCAGGAAGAACAGGACTTGGAGAGGCAGGAACGCTTAA ACAGATATGGTGAGAAAAACAAAACTGAGAATCTCTCTCAACCAAACAATGAGTATACTGTGGACTATGA CAGGGAGCTGGCAAATGAAATGGATTCTGCCAAGACCAGGAGACAGAATGAGTATGATGATATGATGGCT AAGGAACATGAGCTGGAAGCAATGATTGCCAAACACAAGCAAGATCTTGCCAAAATGTCAATGGATAATG ATAGTGATGACGAAATGGACTCCTTCCCAGTTCAAAAGAACAGGCAACCTGTGAAAAAGCAGTCAAAACC ACAGTCTAAACCCTCTCCTCGCTACAAGGATACAGATTCATTTCATTACCATGATGATGATGATGATTAT GAGAGCAGAGCAGGCGAGTTTAAATCTAGACAGAGACAAGAGTCCAAACCAAAACCAAAGCCCAAACGCA AAGCACCACCACGGGACCCAGACCCTGAACCATTCGCTCCACCACCTGCACCCGTTCGTCATGATACCAC TCTATATGATCAAGCTATTGATGATGAAGGAGAAGCTATGGATCTGGATCTAGTTGCTTGCCCAATATGT GGGAGAAGGTTTGCAGCTGACAGACTTTCAAAGCATAAATTAATATGTAAGAATACATCTCGGAAGAAAA GGAAGGTTTTTGACAGTACCAAGCATCGGACTGAGGGCACAGAACAAGCTCAATATGTCAGGAGAGGCCA GCATCTCAAAAATGATCCACCGGTGAAGCCGTCAAACTGGAAACGTAAGCATCAAGAGTTTGTACGATCG ATACGAGATGCTCGTGAGACACAGGCATACGTTGCTAAGGGGGGCAAGCTATCTGATCTCCCTCCACCTC CCCCGTCAGAGAACCCAGACTATAAACAGTGCCCCTACTGTAATCGGAAGTTCAATCCAGCCACAGCTGA AAGGCATATTCCTCACTGCAAGAATACCAAGAATAGACCCAAGCCACCTCCCCGCAAGAAATGATATGAC ACTGGGCAAGAGTAAAAGTAAGCTTTTTAGATACATTCATGGGTCCATCATTCATGATGAAAAGCAAGCC AACCCTTCTCTGTGTCAATCATTCGCTAGCATTTCTAATCCTAGAGTCGGCCTATTACATGTATTGATAT ATCTCTTGATTTTCTTTTATATCATTTGATTGTTTTTGTATCATTTTTCTTACTTTTCATCATCTGCTGT TTGAGAATATGATGGTTTCAGCTTTTCAAAATGAGGAAAAAAATCAGATTGTAATCATGCTTGGGTTGAA TCAGAACTCATGCAAGTCTTCCCTTGCATCTTGTAGAGCCACTGTAGATGTGCATACATGTAATCACCTT ACACCCCCCCCCCTCCCCCATTGCCAGCTCTGTGTATTTGATTATTGCCTACATGTTCATGTGTACCTGT CAAAAGATTAGGGCAAGCACGCACTACCTTTGCAAGATTGGGTTACGCATGACATAATCAATCATATTGG ATAAACAAACAAAGAGAGAGACTGTACATTAATCTAATTGGCAGCAATCAAGAAATGGCTGTCAATTAGT GATAGTGTGCTTTCGGTTGAGCCTGCTGAGAGTGCAGATATGAAGCACACCTTAATGCCTACTAAATGTA CATGTCGGCAGTTCCTTACAACAAGATTTGTTCGCAAATACAATTTATAGAATTGCACAATTTTCCAAGA GTATGTCTTGAAATGAAATATAATTTTATGACTATAAATTAAGGGAGCTGTTCCTCTCTGAAACCCTGTA CTTGTAATAATAATATTCCTGTGATTCATATCATATTTATTACACTTTTTATATTTAATTTATATTCCAA AAATCTTAATTTAATATAAGAAATGGAAGGTTTCTTTGAAATTCATCATTTATGCTTTATGCAGAATGAT TTGATATGAAGAAATATTGACATTTTGAAAAATACATGTAGATGTTTCTTCTTGTGTCATATCCAGGTAG GAATAGCTTTAAATTGATTTTAATTGAGACATTCCAATCCTAAAACTATCTTTTGTGCTTTTGATATTGC TTTGGATTACTTCACTACAGTACATGCCAAGTGGTAGTTGTTTTCTTATTGTCTTATTGTAATGCTTTTT TTTTCCACCAAAGAATATTATTTCTGTGTTATAAGATACAGAAATGTGAGGCATGTTACACTTAACATCA TCATTAAAAAACGCTGCAGTTTTGCTGAGTCATATCAGAATAAGCCTTTATAGCTCTCCATTTTGGAAGA AGTTATACTTCTACTTTTAGCCAATTAAGTGTGACAACACAAAACACAAAAGGCCTCATTAAAAGAAGAA GTTAAGAGGATACAGTTAAGTGAAAGGGGAGTACTGCAAATGGAAAATGTATTACATGTAAATATGTTAA TATACATTGTAATATGACAAAAGCAAGGATGGATTCATTCCAGGCTGATTGCACTATTGTTCATGCAATG ATTGGATTGTGTGAGCTCATCATTAACCAACCAATCAGTTGCTATGCTACTCTGATTAGTCTTGATTGAT GATGCCATGCAAACATCCCCCACACAGTGCTTTCCTTCCTCCATTAAACCCTCTTATCATTATTACCAAC CAGTCACCCCAAGCACACTCCCTGGTTGTCATATCAACCAGTGTAAACAATCAGTGCTATGATACACCTG CTCCAGTAAGTAGCTATATATAATCTTGAAAGAGGAGGATTATGAAAGACTTCTTGTGTCATGCTTGTCT CCAAGGGATTTATGCCTACGCTGGTAGCTCATGATCTTTTCCAATATTATTTTGTATATATTCTGAAAGG TCCTGTACTTGACCTAAATTTGTTTTAGTTTGGATAAGTGTCTGCATCTTTTTATATATTTATGATTTAG TCATTTGTTTTTTCAACATTTATATCTTGCTAATGGTTTTTTTTTTGGTGATCTTTTTTATACATTTTTC TTTGTTTCAACATACAAATGTATGTATCTCTAATATATTCATTATTTCGAACAATATTGAATTGCTTAAA AGAATAAGCAAATATCTGGTATCAGTGATGTGGTAATGTTATTGTATACATTGTTCATAGATTTATGTGC AACATTGTGTCCCCCATGTGGTATATCTTGAGGATCTAGAAGGGAGTATCTTACTGGACCAATACCTCCC TGTGATTATTTTAAGCAAATCATATACTTTGTTGTTTATTAGTACAGAATAGATATTTATTACAAAACAT GTGCTTTTACTGGTGTACAAATAACAATTTACATTTTCATTGTGATAGAAAAAATAGGGCATGTATATTT CAACCAGTTCAAACTTGCTTCTAGATTATAAGATGTTGTTGCTCTTTATAAATCGAAATTATTTTCTCTC TTGCTTTAATCCCACACCATCGGATATCCATTTGCACTTGCTGTCTTTTGTCAAATGAATACATGAATAT ACAGTGCATTTGTAACTTGAGTTGCTTTTGTATTGTTAACTCTCAATGAGGCACTGCAGTATCAAATTCT TTACAAGTGAAACTTTAGTAAGTGGAGAAGACTCAATGTCTACAAACAAGTATGTTAGCCAGGAGAATGA AAATGCATGCAGGAATGGTAATTTGTGTCTACCTTGACAGAATATGAAGGGCTTATAAATCATTCTCTTT TCTATTTTTTTAAAGAGGAATTAGAATTATGTTGAATACAATTAGAATTTAACGCAAGTGTGCTTTCATA TGTAGATTATGTAACTAGTCTAGCTCACTTGTTATCATATATCACTATATATTTCCAAATAGAATGTACA TGTCTTCCTGCATATGACATCATGTAATTAGTTTGTTAGTGTGCATTTTTTGATGTTAGTCAATAGAAAA GATTTCATATTTTATTAGTACAGTCTTACATATTCTATGGCATATTAGGTCTATCGTTATCCAATTATTT TTCATATATTTTCAATGCAGTGCTATCTGTGAGGTAAAGTATTTTTTGTATATTTCCATTCCCAGAATAT GATATATTGTATACTAAACAAATGTCATAGCCAGTTTGTATAATTCCTGTGATTCAGAGTAGGTGGGGGT TTTTCTACTTGATTTTTCTTTAGACTTTACATATTGATGGAGGCGAATCAATTTCTGTTCCGATCAAATT GTAAAATCTACTCTTCGCACAGAGAAATGATTTGAAGGTGGAAACACATAATAGCTGTTTTCATGAACAA TGCCAAATTTATTACAAGGTTTTCAGGTTTAATAATATATTGAAACAAACTCTGTATTTAAGTTCAATGC ACTGTATTGTGGAATGCTGTGTATGTTTCTGAAATATGCTGTATCATGTGATATATTTTTATACAGTCTT GCCAATAGAGTGATGTGATGTGTGAGTTATATTGAATATATTGCAGGCCATTTATCAGACCCTGA
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???blast.matrix.pam30???
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???blast.gapedalgin???
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???blast.false???
Automatically set to False for sequences longer than 4500 bytes
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BLAST time is limited to 30 seconds