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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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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_038213932.1 PREDICTED: Patiria miniata ankyrin repeat and SAM domain-containing protein 6-like (LOC119739099), mRNA ATGGCGCGATCACCGAGTCATCTGGCAGTAGCGCTCAGCATCCATCCAGGACATTCGCTTGTCAATCCAC TGGTAGCAGTGCCCGCCGAAAGCACGCCAGGGCGGCGGGCAGTACGGTGCACTGCATCCAAAAACTACGG AAACTTTCAGCAGTGTATGACGTCATCCATTGGTCTGCTTGAGATACTAAAATGTGACCAAGGTGATGTG AATGTCCTTTGGTTTGAGGAGACGCATCGGTTAAAAGGCCTCATCCTGTATGAGGCGATGGTGGATTCAT TAGACCGACAGCGGCAGTTGTTTGCAGCCTGTGAGCATGGAGATTTAGCCTCGGTGCAGGCCCTTCTAGA CCAAGATGCCAGCGGATGCGTGGATGCCGACGGGGGCGAAGGCTTCACCCCTTTACAGATGGCCGCAGGG AACGGCCACGAAGACATCGTCCGGCTACTGCTCATGCGGGGCGCTTCGCTGGACAGGCAAAACCTGTACG GATGGACAGCCCTCATGCAGGCTGCCAGTCACGGCCACGCGAGCATTGTTGCGCTCCTGCTGCAAAACAA AGCAGATCCCAACGTCAGGAACAAGTTTGGCGCCACCGCGCTGACCGCTGCGGCGCACTACGGTCACCTA TCCTCTGTGAAGGTCTTACTCGGTTGCGGATTCATTGATTTGAACGAGAAGGAGGGGGCTAACGTAGGCC AGGCTTTCACCCCGCTCATGGTGGCAGCCCTGAGTGGGCGGGACCCGGTTTTAAAAATGCTCCTGGACAA GGGGGCGGATCAGTTCCAGGTGCACCGACAAACGGGATGGACGCCGTTGATGATGGGAGCATTGTGCGGC CACACCAGCATTGCTGAGATACTGATCGAGACTCGGGGATGCGATCCCGACGTGACCAATACCTTGGACA AAACTGCCCTGGAGATTGCAATACTAGGGAATCATCGAGATGTACAGAATTATCTGGATCGCAGGACATC CAACAGACCAAGAATTTCAACAGAAAATAGCAAGCCAAAGATAATCGAAGCCACAGAAGCAGGCGACATA AAACTCGTCCAGCTCATTCTGGACGGGGATCCAAAACAGTGCAATAAGTTGTCACCAGAGGGCGCTGCAC CTCTGATGGTAGCCGCCATGATCGGCCGAGGGGACATTGCCGAGCTGCTGGTACAGCGCGGTGCCGATGT CAACATGCAGGACGCCAAGAGTGGATGGACGGCCCTCATGCAGGCCACATTTCATAGGAGGAAGGAGTTG GTGAAGTACCTGATAGATGCAGGGGCTGACGTCAACATACAGGCTAAGGATGGCTGCAAGGCACTAGACC TGGCGTTGGTCATAGTCATGAATGAGAATGAAAAATCCGACAATGAACTCATATCCCTTCTGGCTGCCAT CACCATGCCGACCAAGAACAACAAAGCGGTCAAAGGTCACAGTGTGGGGTCGTCGACCTGGTCTACTAAG ACCAGCATGAGTCAACTAAGTGAAGACTCGCAAAGGAATGGTCTAAAGGCATGGTGGTCACGCATGTCCA ACCGCTTTCGTAATCTGAAGCTCTCTCGCACCTTGAGGGCGGGCTTGTCGTCCACGCCCCTGACGCCCTT TGAGGATGAGAACCACCTCTCGCCCAGTGCGACACTGAAGGTATCCCAGGATGCAGTCGTCAAGACGGCC CCGGAGGATGATGGGAGGAATCGGAGGAAGAGCAGCCGAGAGGGGGGTTCGGAGCTGAACCGATCCCGCA ACAGTGTTGGGCGTGATAGTGGTCTTGATGTCAGCATGCAGTCTACACAATCCATGTCCATCATGTCACC ATCCAGCCAGCAGCCTAGTGACAAGCTTCTCCCTGTAGTCCCTCCGTTCTTGCCGCCTCCCAGCTTTGAG TTGCACACTGCTGATAGGTCCAGACGATCCCACCACACCCCCAAAGCCTCACTGACGAAGCTTGCTAATG GCCAGGGTGTAGGAGCCACCAGACCCAGAGGCCGGCCACCCACCAAGCTCATGTTCTCTCGCCGGTCAGC GAGCACCAGTGGGATCAGTCCGTCCAATTCAGCCCATCTGAGTGCCACGGCCAGCCCCGACTCCTCCGCT GAGGCCGGTACGTTGAGCAAGGCATTGGTGAACGCGAGGAGAACCAGTCTCAACTTAAGGGAGGTGGCTG GTACGTCCAAACTGAGTTCAGTTGCCGAGCCGTTGTTTACCCCAGTGTCATCCCACTCGATCAGACATTC ATCTTCCAACCGAGAACCGTCCATCCAACAACCATCTACCAGCACACAGCATGCAAGGTTGCCCCCACTG CCCGTCACTCCACCAAATGCCAATCCAGCTAGTGCGAGCTCGGCCTCCTCTACCATATCCGGCCCACTGA CCCAGTCCAAGCCCCGCCCAGTCAGTGGGATGTCCCGCAGCACCTCCCCCACCCTGACCCCTTCCCCGTC CCCCACCCCTAAAGTGACAGGCAGGGTGGTGCATGCCGGACCGCACCCTGGCGACATCATCAAGGTAGGA GACAGGAGCTCCTCTCCTACGCAGAAGAAGACAAGTTCAAGCAGCGGAATCAGTGAGGACGATGAGTTGT CCGCTCTGTTTAGAAAGCTGTCTTTGGAGAAATATGCACCAATATTTGAAGAACAAGAGGTTGACATGGA AGCCTTCCTCACCCTCAATGAGTCAGACCTCAAGGAGATGGGCATAGCCACGACAGAGCCTCTGCAGCAG ATACTGGGTGCCATCACGGAGCTGAACGACACAAAGTATGTCAGGAAATATCCCCTGCCTGACAGGTCAG TAGAGGTAGGATATAACATGGGCTCAATGACTTCTAGGAAGGACTTCAGCTACTGACAGCAACTATGTCA GGAAATATCCCCTGCCTGACAGGTCAGTAGAGGTAGGATATAACATGGGTTCAATGACTTCCAGGAAGGA CTTCAGCTACTGACAGCAAGTACGTCAGGAAATATCCCCTGCCTGACAGGTCAGTAGTGGTAGGATATAA CATGGGTTCAATGACTTCCAGGAAGGACTTCAGCTACTGACAGCAAGTACGTCAGGAAATATCCCCTGCC TGACAGGTCAGTAGAGGTAGGATATAACATGGGTTCAATGACTTCCAGGAAGGACTTCAGCTACTGACAG CAAGTATGTCAGGAAATATCCCCTGCCTGACGGGTCAGTAGCGGTAGGATATAACATGGGCTCAATGACT TCCAGGAAGGACTTCAGCTACTGACAGCAAGTACGTCAGGAAATATCCCCTGCCTGACAGGTCAGTAGCG GTAGGATATAACATGGGTTCAATGACTTCCAGGAAGGACTTCAGCTACTGACAGCAAGTACGTCAGAAAA TATCCCCTGCCTGACAGGTCATTAGCGGTAGGATACAACATGGGTTCAATGACTTCCAGGAAGGACTTCA GCTACTGAGTGGATAAGCTCGTCGGTGGAGTTCAACGTTAAAACGCCACTAACCGTAAGCCAAAAAATCG TTGCTAACTGCATCGGAAAAGTCTGCAAGAGGTAACAAGGCATTTTGATTTGTGCTCATGCTTACATCTT GTAACTATGGATTTGTTACATGTAACAAAGAACACCGGCTGAGGTACCTGCAGCTAATAGGATTTATTGA GTGGATGCTGGGACTCGGGCTTTGCTAGAATCTTTCGTATTTTTCTTTTTTTAACACTGCCTGTTTTCAA ACAGTTTCTAGGGCTTGTGAGTGATTGTTTGCAAAAACAAACAAGTTGGAAGTACAGGAAATTCATCCAT TATGAAATTTCTTAAGGAATTACAGAAGAAAAAATAGACAAGATGCAAGAACATTTTGTGAAATATGAGG CGTTGAACAGAAAATTATAAACTCAGTGCAGAGGTGGCCCTCATTAATTTTATGTAAAGAGTACTCTGTG CCATTTGTACACCAACCAGTGTGTGGGCACATTTGATATCTTGACCTTCACATACTACTGCGATTTGTGA GACATAGGGATAAACAGTTGATGAATAAGGGGATAATGTACATGTAGGTTCACAATACATGTATTTACTA TGATACAAATTGTATCGTTATCTTTGTAATGTGATACATATATTTTAAACAGCGGCATTGTTACATACCT AGTGAAAAGGCATAAAATGCTAACACGGAGTCCATATTATTAGTTTAAAGTGTTTTTCAGTTTCTTCACA ATTTTTTTTGTTATGCTTACTGCATATAACACAAAACAAGTGCTGCAACACTTACTTTTATTTTGTATGT ATGAATATGTATACATGTACATATATATTTCTGTTTCAAACAACCAGTGAATCATTTTGTATTACTGAAG TTTAGATTTATATACTTAGTACCAGTTTCCAAAGCTGTATTTTTAGTACATTGTAGTTAGTATAGGATTT TGTATTTATTTTTTTGTACTGTAAATTATTCGTAAGTACTCGTCTTCAGCATTCTAAATCAACTATTTAT TTGTTTCCTAATATCTTTTCTACCTCGGATAAGAAAACAACATTTGTTTTCATGTTTTATATGCAAAAAC CGCATTCTTGGAGTGGGATGTGCATACAAGGTAATATTAATAAGCGTAAATGAAAATTTAACAATTTTTA GCAATCTCAACCGTTCAAGATTGCAAAAAACTTCTAAAATAACAAATAAAATATTTAAATTTTTCAAGCG ACCAACAAATAACTATAACAAGGGACAAGTATAATCTAAACAAAATTGAACAAATGAACAATACAAATAA CCAGTCATGTTGGCTTTGAAGGTAATGTCAGTTGCTTTTGCATCAATTTCAGAAATGGATAGATTTGGGG GTTAGTATTTTATAGCAAATATTGGTTACACTGAGCTGCTTAAAGTTTTGTGGTCATAGATGCTGAAG
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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