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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
???blast.query???
>XM_038221240.1 PREDICTED: Patiria miniata FYVE and coiled-coil domain-containing protein 1-like (LOC119745016), mRNA CATACTAATAATACTAATAGTAATATCAATTTTGCTGTGATCTGATATGATTCAGTGTAGTGCATAGTGT GCAGAAATGAATAACAAACTACTTCCTTGCTTGGTCTTCTTGGTGTAAACTACTCATCTCTATATCCGTG CGTGGATCCAGACGTGCAGCAGCACTAAGGAGCAACCATGGCGCAACCCAGGACTTACCCAAAGATAGTT CAGGATATCACAGGATGTATTCAAGACTTGAAGAGAGACTACACGGACAACAAGCAACCAATCACTGATG ATTCTCTGGTGTTGCACAAGTTTTGTGCTAAGCTTGAATACTTGCTCCAAATTGAAATGAAAGGTCGTAC CAGCATTCTTGGTGGGCGTCGTGATTACTGGGAATACTTCTATAAATGCCTGAGCAAAGTCAAAGGCTTG AACGACGGATTGCGATTCGTGCGAGCAATGGCAGAGGTGAAAAGTTCACTGGGACGTGGTCGTGCTTTCA TTCGTTACAGTCTGGTTCACCATAGGTTGGGTGACAGCATGCAGCAGTGTGTTTCCAATGTGAAGGTTAC AAGCGACTGGTATAGCCAAATGGGTGTACTTCTGAACACCGTCCATAGCTCCACTGTCATCAATGCCCTG TATGAACTCAATGATATCCAGTTTGACCTTTCGCCTACCGGTTACGACCTAGACACCGCCTGGCCAACGT TTGCCCGTAAGAGCTTCGGTGCATCGGGTCTGTTTCTCTGGCAACCTCCGAGTAGATCCACTAGTACCAG CAGCGTCAATTCACAGCAAAGTACAAGCGACTCATACCCTAACAGTCCCATGATCGAATCACGACCTTCG ATTCTGGAGGACCAACTCACCCGCCTCCAGAGGGAATTCGAAGAATGCGAGCAGGTGAATCGGCAGCTGC GACAACGAATCGACCAGCTGGAACAGGACAATGAAGAGCTCCACCAGATGGCCCAGGAGACGGAGGAACG CATGACAGCCTTCAGGAACAACTCAGAGAGAGAGACGGCCGAACTTCAGGATCAGATCGAGAGACTTGAA GAAGGAGTGAACTCAAAGGAGGAGGAGTTGTTTGGACTAGAAGCCAAGTGGAAAGACAAAGTCCAAGAAG CTGAGAAGACGGCATCGGATCTGTACACTCGCATCGAGGTGCTGAACAAGCAGCATGAGAGTAGAGACAG GATGCTGACGGAGTCCGAGAGAGACCTCAGAGAGAAGCTTCAAGTCTCTGAGAGCTCGGTGAGCGAGTTA AAACAGCAGTTGATTGCTCATCAAGCTGACTTGGTGACCAGGACTGCATCTGAGACGAGCGCCAAAGAGA AGGTCTTGGAACTGGAGAGCAAACTTGCCGATGCTGAAAACAGAAACCTGGAGCTGATTGGGAGGATGGA CAGTATGGTTCAAAACAAAGATAGGACAGTCTCCAGTCACTTTGAATCAGCCAGCAAGGTCCATGAGCTT CTGACGAGACTTGAAGGAGCAGAGACAGAGAAGCTGCAGCTTCAGGGTATAAGAGAGGAACTGATTCGTA AACTGGAGCTCCTTGAGATGCGGCAAACATCTGAAAAGGAATCAAATGGTGAGAGTGTTTCAGAAAAACA GTCAACACCACACCTTGAGGGATATCTTCAACAGATTGAAGAACTTGAGAGTGCAAAACAGAAACTGGAG TCCCAGAATTCAGAACTAAGTAAAAAAGTTCACAGTCTCGAGGTGGCCGTGCAGAAAAGCATGACGGAAA AAATAACCTCCGAGAAACAGATGAATGAATTGAAGAGAACATTGTCGAATTTGGAGGAAAGCGATTGGTT GTTGAGAGAAGAAAAGGAAGAATTGCAAAGAAACATTTCACTTGTTGAACAAGAAAGGGACGAGGCAGTT AAACAAGCAGCGTTTCTTGAAGATGGAAACAGGAAACTTGTGGAGCTGGAAAATCATCTCAGAAAAAGTC AAGAACAAGTGGAGGCTTTGAAACAGGAAAATTCAAAACTGTTGGAATTGGAATCAAGGCTCAGCCAGTT GATGAAGGACCTGGAGAATCAAGAGGAACCATCGAGATTACCTGAGCCAATAACTGATCCACAAGTTTGT TCCGAAGCTTATCAAACATCCGCTTCGGATACCAGAGTATCAGCAGAATTACCTGTGGATGGATCCCTTG TTCATTCCTTTCAACGTAAAATAAATAACATTCTGGCTGACAAGGCAACAGGGTCTAGTAGTCTTCAGGT TGCTCAGAGAGAAGTCGCCGATTTGAAAATGCAAAATGACGAGTTACTCAAGCAGCTGAGAAAAGTGAAC GAAAAGCAGCAACAGGACGGTAAAGAGGTTTCTGGCCTGTGTGAGACCATCACACGTCTCCAGGGTGAAC TGGCCGATGCCGGCTTCAGATCTGAATCGCAGAACCAAGTATTAACGGGGAGAGATGGAGAGCTGAAAAG CCTTGGTGAGCAGATGAGCAGCTTACAGCACAGGGTTGCAGATCTTAAAGAGAGTGTCGTGCAAAAGTCC TTGGAACTAGAAACCCACAAGCAGAAACTTGACCGAGCGAGTAACCATGTAACGTCTTTGAAAGTGTCAC TCGAGAAGACAAGGAGTGACAAAGAAGCTCTTGAGTGCAAGCTGGGTTCCACTGAGACTTCTTTTGAAAG TCTAAAGCACGAGCACGCGGCACTGCTCAGTGACAAACAGGAATTGGAAAAATACAATCAAGAGAGCTCT GAAAACTTAGAGAGGCAAAAGCAGATCAACAAAGACCTGGAGAACATGCTGGAAGACACAAGGAGGTCGA TGGAAGAGAACGTATCACTGGAGCAAGTCTTCGAAGACCGGAAGCAAAAAATGATCAAAGAGCACGAGGA CAAGGTGGAGTTCCTGACGCACCAGTTCAACACGATCCAAGAGGAGATGGAGAAGGCTAATGCTGAGAAG TCCAAATTTGAGGAGGAGCACAAGGTGATGTCAGCAGAGTTCCAGGAAATGAAAGAGAAGCTGGAACTGA TGGAGACAGAGCGAAATGAGATCAAAAAGACAAACGACACATTGAATGCAGAGATAGCTCGAGTGAACGA AGAATCCGATCTTGCCCACACTCAAAAGGAGGAGGCGTCTCTGAAACTAGAACAGCTGAGGTCAGAGATG TTTGAAGCCCTGGAAGCAAACACGAGTAGGATGCTGCGCTTGGAGAATGCGCTACACGATGCCCAGGCGG AGCGAGATAAGGCTAAGGAACACGTCACTGTCCTGGAGACTGAGTTGACTGCAGCAGAGGAGAGTTTGTT ACAGGCTAAGCAGAAATGTGAGGAGAGCTCCCAGCAGCTGAAAAGCTTAGAGTGCGTCATGCAGCAGGAG GTGTCTGCTCTCAAGTTCCAGCTGAGCTCAGAGGCCATGGAGTACCAACAGGCCATTCAGGGTTACAAGC ATAAGGAAGAAAATCTTCAAGGATTGCAGGATCGATGCAACGAGCAAGAAGAGATAGTGGAGAGTCTGCA GACAGAACTGAACCTGGCAAGGGCACAGCTTGAACAACAACTGAAACAGTCCAAAGAAGCAGAGGAAACT GCTACCGAGAAACAGCTGGAGAACGTGGCCCTCCATGAGGCTATTGAGGAGATGTCCAAAAATATGGAAG ACCTACAAGTTCACAAGTTGAACTCTGAAGAGGAGCTAACAAAATTAAGGCTGCACAGCCAAGGCAAGAA GACGTCGCTGGAAAGCAAGATGGCTCAGTTAGAGAGTGACAACGTGGAACTCAAGAAACAGATTATCAAG CTCATCAAAGATAAAGACACGCTCTGGCAGTGGACTGACAAGCTTGATCATCAGCGCAAGGTGAAAGCAT CAGAGAGATGGATTGAAGATAGCGAGGCCACATATTGCATGCAGTGTCGTGTGGAGTTTTCTCTGATGGT CCGACGTCACCACTGTCGCTTGTGCGGTCGTATCTTCTGCGGCAAGTGTGCCAACTGCTACGTGTCTGCT GCACACAGCCGTAAGAAGTCGCGCGTCTGCGAGCAGTGCTTTGTCATCCACCAGCACGCCAACGAGGCCG AGCAAGCGTCCAGTCCGAGCACGCTCAAACTGGACAGCGACGACGATGATGACGAAACAGAACGCGAGAA CTTCGCCAGAGGTGGCAGGGCTGTCATCAGTGGCTCCGACAGCCAGCTCAGCGAAGATACGCTATCCACG CCCACCACGGAGGCGGCGCCGTCTTCGTTCGAGGGCGCTGCATCGGCAGACACGTCCCCGGAGCATCAGG GTGCAGCAGCAGCAGTGAAAGACGATGACTCCGCTTCGGTTGGGAAAGCGTCGCCAAGTGCTGGTCAAAA GTTGAAGCAAGCAGCCGGCCGTAGGAAAGGGGACGGCATCCAAATTGCTGGAAGCGAATCCAGCTACTAC TCAGAAACCGACCAGCCTGAGAATCCAGTGATTGTCTTGGACAGCCCACTGCCGCCGCGTCGTCGCACCC ACCAGTCCGGTAGCGACGGGGATGAACCGGACTTTGACCTGATCAGCGAGGAAGAGATCGTGGCCGCGAG GAACGAACCGGCACCCTCGGAGAGCCCCAGTAATGGGGCGACGAGAGGTCAACGCGGGCTCGCTGAGAAA AGTACATTCACTAGCCCCACCCTGCATATGAGTGATTTGGAGGCGGGCAATAAGGCCGACGATGACATCA TCATCAAGGCCGGACACAGTTATGCAGTGCCAATACACCTTGACGCACCGGGGATCATCTTATGCTGGGA ATTTGCATCAGCTCCAAAGACGGTGTCTTTCAGTGTGACCTACCAACCAGCCGACCCCCCATCGCCCACA GACGGGACCCAGGGTCAGCCAAGCCAGGTGGATGAGCTCATACCGCTCTGTAAATGCAACTCACACAGAC ACGCCGTGCAGGGGGAACTGATGGCTCGCAAAGCTGGCATCTACACACTGCTGTTTGATAATAGTTTCTC CAGATTCACTCAGAAGTCTGTGAAGTACAGCCTGCAGGTCAAGCGGCCCGAGGCGGCCTACTAGTCAAGT CCAGTTAGCCGGCTGAGAGCCACATAATACGCCAGGCACCCCCCCGACGAGCCATTTTCCAAGAACTGCC AGAGTCTGTAGGTGACATGGCCATTGTGGTCTACAGACTCCGGGCTCAAGAACCCCCTCAATGCTGGAGG GAGAGCCAGTTAAGGCCGGTTCCCGAATGCAAATGCGAACGTCATGAAACATTCCCTGCGAAATTTTGCA CAAGTTGCAAGTTCACACGACAAAATGGCATTTGCCTTTGCTTTCGCATGGAGTATGAACTGGTCACGCA GATGTGGATGCGAAGCGAATTTGACGTCAGAGAACATTTTCAACTTTTGCGAATACTTGACGTGACATCA CATATGCTTCGCATTTGCTTTTACGCTGAATAACAAACCGGTCTTTAGGCAATGCACTGCGAACGTACGC TTGACACTTATTTATGCAAAAAAATTGTATTCATACAGAAGAGTTGAGATTTTTTCACAGTATTGGACAA AATTGTAGAAACCAAAAAGGTTTTAATAATGGCAATGCTCAACTAGTGTTCATATGACCCAAGTCACATA TAGCTGTGCAGGGAAGAAAATAATTTTTCTCGTGAAACAGAATACAGAACCAGAAATTAAGTTATATATT GTAATATAAGTGGTTACAGTTTCTGTGGATAGATCATGTTTAAAATATGAAAAAGGAAGTTTATGAATGC ATGGTTACTTCGGCAGAGAGTGG
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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