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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_030999968.1 PREDICTED: Strongylocentrotus purpuratus protein piccolo-like (LOC115929873), mRNA ACCGTCTCATCACCGGATTCAAGGATTAATTTCGCAACTTGCAGGAAATGATGAGGATTATTTTGATATG GGAGGAAAGTGTTAGCTGTAGATGCACTGCTTCACGGCGTAGTTAGCTGTATCATTTTTCTTGGTTTGGT TTTGTGGAGGACCGTGTAGCGAAACATGGGGAATGAGATGAGCGAGGAAGGAGAGGGGATGCCGCAACAT CCAACGCCGATACCATACCAGACTGGCAGACAGCTACATGATGGTGTGGATAGTATGATGGGTAGGAGTT TAGAAGGTGCCAGAGGGGTTGGTAGAGGAGGTAGTATTAGTCCTGGGACAGGTGGTGGCACTGGTGTTGG AAGAGGTGGTGCGGTTGGTGGTAGTGGTGGTGGCCGGAGTGGTATGCGTGGGGGAGCTGGTATCAGTGGT GGCCGAGGAAATGGTAGAGGTGGCACAGGTGGTAGTATGGAGACTCGGGGAGGACACGGAAGAGGTACAG GAAGAGGTGGAGGAAGGGGTGAAGCTGGACCAATGGGTGGGCAATCTGGGCGTCGGACCGGTCCAATTGT CAGTGGATCTGCAAGTGTTTCACCACCTCATACCAGCGCAGCAAGTCCGGCGTTTATAATTCCAGGAAGG GGTAGAGGAAGGGGAGATAAAGTATCCACTCAGGGTCCTGGCCGCGGAGGGGTTAACACAGGACCCAAAC CATCTAGTACTGCTCCTAGGACTAGTGACAGATCCAGGGTTCAGAATAAAGCAGCCCCTCCAATGAACGA CCAACCTCCTGAAGCAGATCTAAGCCATTTGACAGAGGAAGAACGAGCTCATATTCTGGCTGTTCTAAAC AGGGCTAAGGGTCTACAGGAGAGAGATGAAGAGAGAGTCAGGAATCTTGAAGACGACTTTACCAAGTACA CCAAAGACATCAAGCGTCGAGCATCGGACGCATCCAGTGTCGGGGAAGGTCTACCCAATAATCTATGTCC AGTCTGTAACAGGACTGAACTTGATGAATGTGCTATACCCGGATCTGCTCAGGAAGGGTTGGAGTGTACA GACTGCGAGAGACCAGTATGTCTGCAGTGTGGTTTTTATATGCCAGCCTTAGCATCACAGAGTCGTGAGA GACGAAAGAAACTGGAACGTGGTGCCTCTTTCTCATCGAGTGACGGTGAAAGGGTTCGTCCGCCATTGCA TCGCGGTCTTAGTGAGCAGTTATCAGCTCCAATAACTTCATTACAGAACCAACCTCTTACTGAGGTCTCG TCTTCCAATAGTAGCTTGGACCGAAGTCAACAACAGTCACCAGATTCTAGCTCACCTACCAAGTCGAATA AAGGTAATGGTATACGATCATCGTCTTCTTCATTTGAATCGGATCGATCATCGATACAAAAAGATTCCCA ATCATCACAAAGCCAAAGAAACGGAACCCGGTCCTCACCTTCATCAGCCGAATCGTCACATTCCTCCCCT AGTCGTAGTGCTCATTCTATGGTAGTCAGTCAACCAACGGATGGGTTCCAGGTACACGGGAAGAACGGAG AGCCTCACAACCCTCGCCTTCCAGATAACCCAACCAAACCTAGACCAAGAGACTCACCGTCATCGAAAGT TTCTCGACAATACGATGGAAATAAGACAGATGTTTTGCGAGATTCGCCTTCTTTGAGGAAACCAGATAGA AACAATTCACCGGGATTGCTTGAACATGATAAAGACCCGGTGATTTCTCATAAATCTCGTACCTTGGATT CGTCAAGGAAGGAAAAAACTCAGTCTCCGGACAGAACTAGCCATCAAGGGGCGTCAGGGCATGAAAGGAA CAATGCTCAAAACCCTCGCATAAGGGACAGGTCTCCAGTAGTGGAAGGGTCAAAACAGAATTCCCCGCAA CAACCTCGTAGTCTGGACATTTCTCCAGTATTTAGAGACGTTCCAAGGAAATTCGGGTCTGTGAAACAAC CTGAACACGATCTAGTGCACGAATCAATACATTCACAGACAGCTTCGAATGTTGTTTCTAGAAGAACTGA TATTCTCACGCGTGATGAAAATGTAGGATTTGTACCCGTCGCAACAGTGAGTGAGAACCCGAGTAGGACT AGACTTAGACAAAATTCACCTGATTCAAAACCAAGACTTCGACAAAATTCACCTGATTCAAAACCCAGGC CTAGTCGAATTGATGTTGCCATGAGTAAGGAAGAAGTTAAAGTGAGGGGACGTGATAGTGAAAAACAATC TCCTCCAGTCACGCAAAGCGTTGCCCCTTCTAGTGATAAACCCAAGGAAAAGCCTTATATTTCATCTCAT GATGAGAGAGAGGGTAGTATAGATGATAGTGAAATGATGCGTCAACTATTAGCCATGGCTGGTAGTAATG CCTCATGTGAAACAAAGGAGAAAACCAAAGAAAAGGAAGGTGCAATTGACAAATTAGACAAAACGCAGAT TGGATCGAGAGATAGTGAACGAACTCACGTTGGGGAAGACCTGTCTGGCAAGAATCCCAGGCCTATTTTC ACTTTGACCGCTGACAGAGGTAGTCCTATATCAACGTTCGTTCTATCGTCATCAAAAGAGAGTCTAGCCT CTAACGCGGATAAGGATGAATGTCAATCTTCTATGCAGACTCATTTACCAAGCACTGTTTCTAATGTGAC GGTAAAACCTGACGTCTCCATGTATAACCCACATCATATAGACGCAGACACCATGGCTGAGGAAGAAACG CGACTTGCAGAGGAAAAATCAATGGGAGAAGCAGTTTCTAAAATGTTGAGATTAAAGCGAGGAAAGTCTG AGGAGTTACCCCCTAGACAGGGTTCCCTTGACGACAGTCACTATAAGCTCATTAAAAGACAGGAAACTGT GCCATCGGAGTACGAAAGTCTCAGTGATAGTGAAATTAGGGATGATCAAAGTAGAAGAGGTAGGAAAACA CTCCTTGGGGATAGACCAAAGCAGAATTCGGAAGACTTGTCAGATCTACCAGGACTTACAGATCTAGGGG CAATAGGAGGTGGTGATGATGATTCAATATGGCCTCCAAATACAGATGGAGCTGAGTCAAAATACATCTC AGTTGAAGATCTCACAAAAGTTGGATTGGGAGGGAGAATGGCTGCAGTCGGACAAAAACACTCGAGTAAT GGCATACGACGAAAGCGTCAAAAGCCTGCCGGAGATACGCCACTGTCACCAATATTCGATGTAGAAGGAG GAAGTCCACCGACTGAACTGGCTACTGATCTGTTGTCTTCTGAATGCACTTCTCTTGCAGATGATTCGGA GGATGACATCAATCGTGACTACTATGAGGACCAAGATTACATGACAGAAGATCGGTCGTACTCCAGTTTT GACAGCGGCGATGACTACACTGACTACATGGAAGACGTCATCATGGAGGACATCAGTATGGAACATGAAG TAGTGGAACATCTTTCGCCTTACCGAATAAAAGAAGAGGGTTTAGCAACCGTAATGGAAGAGCAAGAGGA AATAGATGAATATTATTTGGATGAAGAGGATGAAGACGAGGAGGAGGAAGCTGAAGAATCAGAAGAAGAA ACCATACCAGAACAAGATCGTATGAACATGCTATCTACTATCCAGGAACAGACCTCAGAAGAAACCCAGG AGAGCCCTGATTATATGTCACCGTGTGAAGATAGGTTTAGTACAGGTCGAAGCTCTGAACAAAGATCGCG TAAGGATCAACCATCATGGGATGCATCTGCATCAGCATCCGCATCAGATTTATCAGATTTGTCAACTGAT CAGACTTTTGAATCTTTGTCTTCCGTTTTAACACGTGAACACATCGCACCAGTAGCAGCCACTGTAGAAA AAGACATGGTAGCACAGTCTCCATACCGTCCTCAGCTAGACATTGACCTTACGCCAAACGCCAAGCGCGA CAACTCTGGCGTTTTAGATTCACCAAGAACACCAACAATGGATTCCAAAGCTTATGAACGACCCAGAATT ACAAGTCCTAGTAAAATATTTAATGTATCCTCCCCTCGCACTAGTCCTATTTCACCAAACCCTTTCTCGC CTCCCCTAACTCCCAAATCATGGGCTGCAAAGCGCACATTTCCAGAAACCATGTTTCCAATGGAGCACTC CACACAAGTAGAATCAGAGGTGGAAACGCATGCTCCGAACGATGATCGAAGAAAATGTCGCTCGGTTCTG ACTCAAATGGGATCTAGTTTCGAGGAATTTGCTAGCATTACGTGGCCTGAAACACTCACTGAAGACCCCT CTTCATCCCGTAGTAAATCCTTTAAAAGTCCTTTATTCGTTGAAACAGGTAGCACAATTAGTCCTGAGGA TAGCACAAGCACATCAGAGAACACAGTTATAGCATGTGATAATTTGAAATCTAAGTCAGCTCAGACGCAA ACTATGGTTGAACGTCGAACGCAAACGACACCACCTCCACTCGGCGAGCAAAGCAAGTCTCGTTCAAAAT CATTCTCCGACGCAGCTGTGGGGCCTGGTAACGAAAGCCCAGAATCCAACTCTTCTTCCCCTTCTAAGTC TGTCCATACAACTAGCATTGGCGTAGGTACCAGCCCTGAGATGTCACCCACCTCCTCCACTCATTCTACA GACACTGATTTCAGCTTCAGAAGACCGTTTGCGTTTGAGGAAATCAAGCACACCATGGCATCCAATGCAT CATCCAGCGGATCTTCCAGTCCAGAACCTAGTGGAGCAGCTAGGAGAAACCCGAGAGCATCAAGGAAAGA TACAGGATCACAAAGTACTACTCAGGACACGATTGCTGCCATGAAACACAGCGGACAGTTTTCGGGAAAG GACTATCTAAAGGCATCTTCAAGTGATGCTGAAAGCTGTGATAGTGAGAGTAGCACACCAGCCAAAGTTC GTCGGCGTCTCCCTACAGTTCCGCTGAATGTCCAGCCAGTCACTGTCTCTATCAAACCTGACCTCAGTAC AACCATTGATGAGATTCTACGAGATCCTGAAAGAAGTATCGAGGTCAAGAAAGTTAAAGAACTACTGGCT AGAAAGGCGGCAGAACTAGAGAAGGAGAGACGCGAAGCTCTTCTAAAATTGAGAAAACTTTCTTCAGATT CAAAAAGGCTTGAGGAAGGAAAGGAGAGGCTCTCTCGCAGGTATAACAAACACCACAAGGTTCGTGTAGC TGGGGTGAATGAAGGTAGCCTTTCCGATTCAGACGTCACCATTACAAGTGAAGACAAGGAAACAGAAGAA TTGGCTGCTTTACTTCACCCACTATACGGCATGTATAACCCATTCCCGACGGGTAAACTCTCCATCAGTT CAGATCGTATTCACGAGATAGAAACAAGTGATCTGCCATCTTCAATCATGGTGTCTCCTGGAGATCAAAT AAGATTATCGAAATCTGAAGAGGACATTTTAAGAGAAATTGAAAAGCAGATCTCAGAAGCCACCGGTACG GACTATAAAGCATACAATACTTCTCAGATAGAAAATGAGGTTCGATCGAGGTACAGCGACAACAAAGATG ACAACCGATTTAAGAAGGATAACAAACGTAGAACTCCTTTGCAAGAAAAATTTACGACCTCAGAAATTCC TGATTATGGTTTAAAAACTGTTCGTCATAAGATGAAAGAGGAGCTGAAGCAGGTGACGGCCCATCGTAGA GCGCAATTAGATAATTCCCCACCATCTCCATCCCAGCCACCCTCTGAAATCCAAACAAGTGTTGTCAGCC CAGAGAGGCAAGAAGGCGAGCAGAGGGAAGGAACCAACGGAAGAAGATGTGGACTCGGAGTTTGA
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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