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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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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_038193477.1 PREDICTED: Patiria miniata MAP kinase-activating death domain protein-like (LOC119722973), transcript variant X9, mRNA ATCGCCGGCCAGGCAGCCGGCGGCAGCAGCAGCTTGCTGTGCATGTACGTACGTACATGTACGTACGTAT ACCTCTCGCGCGCCCCTGCATAAATCTATGACGCACGTACAAGCGCGTAGGTGTTGAGAACATGCGCAGT GCTAGTGAATGAAGCGCCTAGGGCTAACTAGCTCTCTCGATGAAAATGGCAGACATATTGAGCAAACGAG TGATGGAGGTATGTACTCGAGGACTGTTACATGTTAAGAACGAACTGCAAATTTGTTCATCTGACAGTTA TGTGTAACACACCAGGATGGTGGGACTATTCACTCGCAAATCACCAATGATGCTGCTGGAGTTTTCAGGA CAAGACTGAGTGTGACTAGGAATTTGGAATATTGATCAGTACACTGCATGCAAACATGGAAGGATTTCAA GCTGGCAAAAAATACTTTTCTCCCCGTCTACTGGATTATATATTAATTGTGGGAAGTCGCCATCCATATA GCAACAATAATGTTGCACAAACACCAGAAATGCTACGTCGTTACCCTCAAGATGACCACCCAGATTTTCC GTTACCTCAAGATGTTGTGTTCTTTTGTCAGCCAGAAGGTTGCCTCACAGTTGGACAGAAGAAATTGAGC CTCAGAGAAAACACATCCTTTGTTTTTACTTTGACTGATAAAGACAGCGGAAGAGCAAGATATGGTATTT GTGTCAACTTCTATCGGCCCTTTAAATCCTCTGATAGAAAGATGGAACATCAGAATGAAAAGGCTTTGCA TAACGACAGAGAGAATTCCAACAGAAATGGAACTCTAAGTGTGCCCTCAGATGAAGGACAAAGGAAAAGG TCACCAAGAACTCGTAGAAAACTCAAGCAGGCCAAGAAAGTTCGCAATAATTCCCTGACATCACTGTGCA TACTGAGTCATCATCCTTTCATCTCTACCTTCAGAGAGTGTCTGTTCATCCTAAAGCGGCTTATTGATTC CTGTAATGACAGAACATGCAGTCGAAAAGTAGGTGGCTCCAAAGGATCATTAAGAGATTGTGTATGGGGT GTTTTGACTGGCATATGCAGTGACATACCTCCTCTTGTCAGACATGATGTTCGTCAGATCGAAACATGGA TACTGCGTTTTCTGAGTGCTCCAGTTCCTGTTCCAGGGAAAACACGTGTAGAAATACAAGTCCTGGATAC ACAACCACCCATGGTATTTGCTTTGCCAGATCACACACGCTTCTCACTGGCAGATTTTCCACTTCACTTA CCTCTGGAATTGCTTGGAGTGGATACTTGTCTCAGGGTCCTCACTCTTATCATGCTAGAGAACAAGGTTG TGTTGCAATCACGTGATTATAATGCACTGTCTATGAGTGTGATGGCATTTGTTGCCATGATTTACCCATT GGAGTACATGTTTCCTGTTATTCCATTGCTACCGACATGTATGGGATCAGCAGAACAGTTGCTTTTGGCT CCAACACCGTTCATCATTGGTGTGCCAGCTAGTTTCTTCTTGTACAAACCCTACTTCAAACTCCCCGAAG ATGTGTGGCTTATAGATCTTGACACAAATAAAATTACATTCTGTGGAAGATATGAAGAAGTTCCAGTGCT GCCTGAACCAGAAGGATCAGTGCTCAAAAAACATTTCAAACAGGCTTTGACCAGCATGAGCCTTAGTCCT CCACCAATCAAAGACTTTGAGCAATCCAGAGGAGAAGTTGAAGCCATAAGCAGACGTAGAGAGACTTTCT CAGATGAAACGGGTTTCAATCCATTCATTTATGGCAATGATGTGGACTCTGTTGATGTGGCAACACGTGT TGCGATGGTCAAGTTTTTCAACTCTCCCAATGTGATGGCACACCACAACGAGCATACTCGCACACTCAGG TTACATCCAAGACCTGTGGTTGCCTTTCAAGTCCACAGCTTTCTTCAGTCACGAAGTGTTCTGACCACGT TTTGTGAACGACTTGCTTCAACCCAGGCTGTAGAGTTCTTTGGTGAATACTGCTTGAACCCAACAAACGT GACATTTTTACGAATTCACACTGGAGTGTATGACCCTCAACTCATCGGTGACAAGGCCAAATGGTTTCTG GAGCAGTTGCAGCCAATCAACTTCAAGGTACAGTTTGACAACTGCACTTTGGGGATTCCAGTTAACAGTG GTACTGAGGCTTGGTCTGATTCATCTAATCCTACTGATGAAAGTGGTGAGGAGTCAGATGGAGGTAGCAG TAGTAGCTCATCATACTCCTCACTAAATGATTTTGTCACTGACATGATGAATAGTGACATCCAGGGAGAT GTGTTAGCAGATGATGAAGAGACCTCGGGCTTGAGGAGCCAGGTAGATGAAACCAGCATTTACCATCCTC CTGATACATTGCAAATTCCTGCTGACATGTCACAGAGTGACTCTGCTTACTCATTTCCAGAAACTGATTC ATCTAGTAGTCAGGATACGACATCTCCTGAGAGTAAGACAGGGCAAGATATGGAAGCAGACAGTGATGCT GATGCAGATAGTATTCAGTATGACTCGGACACATCTGCACAAGTGACTCGATTGAACCTCAAACACAAAC CAGCCGCAGCTGGTACAGTATCATCAAGCAATGCACCAGACAGTCCATCATTGGATGCTGATGTAAGAAG ACGAGGAAGTGGCAAAGATGAGCGCTCATCACCCACATTCCTAGAGAAGGTCAATGCACTCTTTCGATCT GATTCATCAGATTCTTCCACCCCACCGACACCCACTAGGAAGAAGCCATCTTTGTTGAAGAATATCATGG ATCTGGCTTTGGAAACGACCTCGAGCAAGGAACCAGTTGGGTCACCAACATCTATTGCAAGCACAGACGC ACATGAATATAGTCCCAGTGTGCGATCAGATCCTGGGCCATATCGAGGTAGTAGTGCTGCTCATGCTAAC ACTATGGGCTTACCGCTTAGAAAGAAGAAACCAACATCACCGTTTCCTAGAGATACGCGTCGTTCATTAG TGGAACGTTCTTCATTAATCAAACACAGCTCTACCAAGAAACCAGACAAAGATCGGAAAAGATTGTCCAT CTCAGAAGACAGACCTAACAGCAAGAATGATCGATCAATGAAGACATTAATTGATGACCAACTTTTTATC AAAGAGATCACCAGAGGGGTGCTTGAAGGCAACAATGTAGGTTGGCTCAACTGGTCTCGCCTCAAGAAGT TAATGCAGAGTGAGAATATGAGAGCGCAGGTTATAAGTCAGCTATCCCCACAAGAGAATACAACAGTACT AGATGATTACATCGAAGACACGCAAGTGAGCAAAGCAGTGTATAAGGGGATTGTATCTGTCTTGAAGGCT GTGATTGCCGGACTGGAATACTCTTTCTATACCCAGCCAATAGGAGGATTTGCCAGTGCATATGCCCTCC TTGAGATTGCTCACACACACTACTTTGGAAAGGAACCTGATAAAGGCAAGAAAGCTCATTTGCATGGTGA TGGGATTAGAAGTGAGAGTGCTTATGCCATTGAGGGTTCAGTGGTTGTCACACCAGATGAACAGCATGGT GGCAGCATGGCTGCCATTCCTGAAACACATAGTCTCAATGAGGATAATTTTATTGCTGCTATAGAGAGTT GGGAGAAAAGAGGTTCTGTAGTGAGTAGCAGCAGTACAAGCACAGAAGAAGGCGCAATCAGAGTGAATTC TCCTCTGGTGGAAGATAATCGTAATGACAGTGCCTATGAATTAATTGACATGTCTGAAGTGAGTGTGGGT GGAAGCACAGGTGCCGGGGTGCATGGAGCTGTTGGTATAGCGGCAGGAGTTGCTGTAACAGGTGCAATAG GGTCCAAGGTGGACGTTGAGTATCCAGGAGAGCACAGTGACAACAAAACACTCCATTCAGAAGACGAACA TGCACCATGCATCAAAGACATGGTCAACAACAACAATAGCAGCAGCATAGATGAAGGAATCACATTCCAA GCGAAGAAAGATGACACCGATGTCATTCCAGACAACAGTAAAAGCATGGAACCAAGAGAGATCATTGAAC GCAGAGAAAAGTTCTCAGAGAAAATCTCCAGCTTAGATTCTGAGTTATCTGAAGCAAGTACATTAGTGAG CTACAACAGCACAGACACACTAGGGAATGAGAGTGACAGTAGTTCCACCTGTGGTGATGGTCGTGTACGT CGTACTCGCATTACACATCAGTCAATACGATCCGTCATGTCAGACAGCGAAGTGGAACTAAATGGGCTAT CTTCATTTAGTGGAAGACACCGTTCTCCAACCACTTGGAGTTCCAAAAGCTGTGTAAGTGCTGGCTTCCG ATATCATGGTGGCAACATGATTGCAACAGACACAGATGCTTCAGAGTTGCTGCTACGACACTATGTGTTT GAGGCATTGATTGCAGCCAAGGATAGGTCGCCCTTATGGGACCAGGTTCAATTTTGGGAGGATTCCTTTC TGGATTCTGTAGCAGCTGAGAGGGATGCAGTTGGCATGGATCAAGGACCTGCTGAAATGATTCACAGATA TGACTCCCTTACTCCAAGTGAAAAGAAGAGACTTGAAGAAGATGAAGACAAACTCCTTGCGGATATGTTG TCCAATGCCATAGCGTTCATGATTATGATGAAATTACCCAAGCCAGAAGTAAAACGTAAAGTTCGTCGTT TATTGGGACGGTCTCACATCGGTTTAGTCTATAGCCAAGAGGTGAATGACCTACTGGATCAAATCAACAA TCTGCATGGCAATGACATTGATCTGAAGCCATCAGGCAGTAAACGTATGCGGAAACATTCATTTGTGGTT CATGCTGGGACTGACACTAAAGGAGATGTGCTTTTCATGGAGGTATGTGATGACTGCGTAATCATACGTA GTGGAAGTGGTGCTGTTTGTGATCGCTGCTGGTATGAGAGACTCATCAACATGACTTACTGCCCTAAAAC AAAAGTCTTGTGTCTCTCACGAAGACTTACTAGCACAACTCGTCTGGACAAGTATTACACTAAAAAGTGT CGTGAGTTGTACTTTTGCATCAAGGAAAGCATGGAAAAAGCTGCTACTCGTCAAAAAAACGGCATCTCTG GAGGTAAGTCATCAAAGAGGACATGTGATCTCTTGATTGTTTTGTACTTATCAAATCAAAAACCTTTAAA AAAATAAAATTTGTTTCAATCAAAGGATTCAAAACTGCCAAAAATACGCACAAAATTCTATGCAGTTGAT ACCGACCCAGCAGCATGATATTCGCCACTTCCGCCAATCCCTCGTGCCACACCGAATATTTGGTGTCTTT GTCTTCAAAACAAATGTGGTTATTTACCCGGCGATACCCTGTTATTTAACCGGCAGTTTTCGTTGTCTCA CAGCAGTGTTGCTGTACTGAATGAGTGAGACTTTACACAGGGTGAGTGTCGCACGAGTCGCAAGCCAGTC ACCCTTTACCTACGCTACCAGTTACCGTCCAGTCAGCGTGATATTTCGCTATTCGCAAATCCCTCACGCT GCACTGAATGCTCAATTCTTTTGCCTTCAACATAAATGCCACTATACATGTATAACCAGCGATTTGC
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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