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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
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>XM_038199555.1 PREDICTED: Patiria miniata CWF19-like protein 2 (LOC119727604), mRNA ATGGCAGCCCCCATAGCTTTCGTTAGCCAAATAGAGCGGCGTAAAGAAAGAGAAGAAAAGCGTCAAGCGC AGGCTGTTATCCTCCAAAAGGCTAAGGAAGAGCGGGAGAGAAAAGAACGACGAAAAGAAGCCCATAAATT GAGAGGCGATGACAAGTGGATGCTGTCTTCGGTTTCTGACAGGATCGAGGCTGAGGGTGATAAGCTGAAG TCCAAGAAATGCAAGAAAATCAAGGATAAAAAGAAGACGAAAAAGAAGAAAAAGGAAAAGAAAGCAAAGC ACAAGCACAGGCAGCAGGAGAGCAACGGTGACTCTTCATCTGATGAGGATGAAGATTCTGAAGAGATGGA GTGGGTGGAGGACAACCCTTCAACATCTGCTCCAGCAGTACAAACTGTTAGCGCTTCAAATGAGCAAAAG ATGCCTCAGAGAGATGATTGGATGAGCAACCCCTTCACCATGGCAACATATTCCCGTGACGACATGAGGA GAGAGAAGGCGGCACTGCAGGAGAATGCTGAGACAGAAAAGGAGAAAGAACAAAAGCTGCTCCTTGATAA TCCTGGTCGATCCGACAGAGAACTAAACCCCTTCTGGAAGGACGGAGGGACTGGCCTCCCAGAGGAGAAG CACAGCACCCCTGCTGCTAAAGTGGGCATTGCCGATGCTGGGGTTGGTTGGTTAAAGAAACAATACCAGA GGATTGTGGAACGATCCGAGGAAGAGGGGAGATCAGTGAAGGAACTTGCATCCGAAAGATGGGGTTCACT AGAAAAGTACTATGAATTGCTGGCCAAGGCTGAAGGTGCACAGGACAGACCCGGGCATAGAGATAGAGAC AAACCCAGGCAACACAGGGACATAGATAGAGGGACAGACTACAGGAGGGAGAGGGGAGAAGGTAGACACA GAGATGCACAGAGAGGTGAAGACAGATACAGAGACAGAGATCGTGGTAGAGACAATGAAAGAGACTATGA CCAGAAAGGTGATAGATATAGGGACAGACCAGTGGAAAGAACCCAGGGGAGAAGCAGAAGCCCTGATAGG AGCAGTGACAGAGGCAGAGACAGATATGGTGATAGGGAATCTAAATCATCCTCATCTTCTACAAGACGTG ACGATGCAAAGACAAGCAGAACATTCATGAGACCAAGTGAATCTGATGACCGTCCAAGACACAAGGATTC AAAAGCTAGTAGCCTTGGAGCTTTAGGAGGTCTTAAGGGAATGTTTAAGAAACCTGGGGAGGAATCTTTG GATAACAAGGATGACTCAAGGAGGAGGGATACATATCCTAGAGGTGATAGGAGACGGGAGAATGAGACGC CAGCTTGGAAGAAGAAGGCATTTATGAGACCAAATGAAGATGTTGAGAAGAATGCTGGACCTTCTTCCTC ATCATCTTCAATGGGAGCATCGTCCAAAAAATCATCTTCAAGTACTCCAGCTTGGAAAAAACAAACCAAC ACTGAGACATCTACTGAATCACAGAATCCTGAGAAAAGAAGTTCAAGTGAGTCCTCATCTTCTTCTGGGT CTGAGAGTGACAGTAGTAGTGACTCAGAGAGTGAGCGAAGCCCCTCCCCTCCCCCAAGGATTCTCAGTGA AGCGGAGATGAACCAACTCGGAGCTAAGATTGTCAAAGCAGAGCTCATGGGAAACGAGGATCTTGCAAAG AAATTGAAGGCACAGATAGAAGAGTCTCGCCAAGCTAAAGCCAACCAAGCCATGAAAGGCCCCGCCCAGC CACGCCCATCAAGTAGTAAGGGGAAGACAGGAAGAGGATCTTCAGATGATGAGGAAGTGGTACTGACCAG AGTGGATAGAACCGGTCAGAGCTGGCCGCTACCGGAACAATCCGGTATCGGTCCAAGTAACAAGGGCAAG AAGAGGACAAAGAAACAGAACATCATCACTCATGACAGGGATGGACAGAGGGAGAGGTACTTTGCAGATG ATGACCAGCAGGACCTGAGGGACATGGTCAGAAAAGAAAGAATGACATCGGGTGAAGATCAGCTTCGTCT CTTCAACAAAGTAGCCAACAAGGCCCTCAAGAAGCTTACCGACGACCACACCCTGGATGACATGTTTGTA TCGACTGCTGCTCAGAAGACATCTAATACTCAGGAGGAGGAGAGACAGAAGGCAGTGGCAATCAGCCAGC ATCGTAAGATGGCTGCCTCCATGTCTAAATGTCCATTCTGTCTGGATAGTCCCGAGATGCAGAAACACCT CATCATTGCGCTGGGAATCAAGGTGTACTTGTGTCTGCCAGCCGCCCAGTCTCTGACTGAAGGCCATTGT CTTATCGTGCCCATGCAGCATACAGTGGCTAGCACTGTGCTTGATGAAGACGTGTGGAACGAAGTGCAGA TCTATCGCAAGGGTTTGACCAAGATGTTTGAGGATCAAGACAGAGACGCCATTTTCTTGGAGACGTGCAT GAACCCACAAGGTCACAGACACATGGCGATAGAGTGTGTTCCCCTGCCTAAGGAGATTGGTGACATGGCT CCGATATACTTCAAGAAAGCCATCCAGGAATCGGAGTCAGAGTGGTCCCAGAACAAGAAACTGGTTGACA CTAGAAAGAAGGATATCCGTAAAAGCGTACCACAAGGATTCCCATATTTCAGTGTGGACTTTGGGTTGGA TGGAGGCTTTGCTCATGTTATTGAAGACGACAAAGTGTTTCCTCACTACTTTGGAAAGGAGATTATTGGT GGAATGATAGACCTTGAACCCCAGTTATGGAGGCGACCCCATCGGCAGAACTTTGACGACCAACGCCGTA AGGTGTTGCAGTTTGGAGAATGGTGGAAGCCGTTTGACTGGACACAGAGAATTGGAAAAGACTGAGGGAA TTGTTTCAGTCAAAAAAATCAGAAGCTTGTGAATGTTTTTTATCATGTGGATTTGTGTAGGATGCATTGA TTTAGGATATTTATCCAGGAATTTGTTCGACAAAAATCCAAACAGCTTTTCTTATATACATGTATTTCTC CTTTTTTCCATTTTGGTGGTGAAGACAGAGATTTTATTTTGAAAGGCAATGCTTTTTCAGTCATGTAATG CTTTATTTAAACAGAAACAAACGAAACACAGCATTTGCAAAACACAATTATTTTTGTAAAGTCTTCATCT CTGCAAAAATATAATTCTTAAGTCACAAAGTTGACAATTTTACTTCTGAAAAAAAAAAAAACTTTCTTTG ATTGTGACATCTGTGCAGAGCATCCTGTTAACATGTATTTATTTTCCAGTGTGCTTCCACTGAACGCAAC ACTTACAAAACTTTCTGTTCATCAACAAAAGAATTTCAAATATTTTAAATTAAATAAATCTTAACATCTT TCAATAAACAAACACCACGATAAACAAACACCAAAAAGTACAAATCTAAATTTTATATCATCCGATTGAA GTGTTGAATAGTTTCTGAATTGCTGATACTAGGATTAGATTTATTTTTAAATGTTTCCCTTTTTATTAAT TAAATCGTGTTATTTTGTTGAAATCAGTTATAATAAAGTACATGTAGTCTTTATAAGCATTTTAATTTTG TTGGTTTCCCCTGTTTTATACTTTTTTAAATACATGTTTATAAGGGAATACAACATCTTGGCTTTTTAGA AGCGGAAACAAACACATTTCACATTTTAAGGCAATATCGTATGCATCTGCTAAGCAGAGAACTTTTCATA ATTTTACAGAACATAAATAGGTCGGCAAATATTTACATTACAAAATGTTTTTAAGCTTGTAAACAGTTGG TTTTGGTGAAGGAAAACTTTGTAAAGTGGTGTTCTTTTCTTAGCGTCACTGCGAATGGCCCAACCTGTTC ATTACCTTGGCTCAAGCCACACATATTTCTTTATGTATAAGCACACATATTCTACTTGTTTTCTTTAAAG TACTCTT
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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