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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_038218059.1 PREDICTED: Patiria miniata follistatin-A-like (LOC119742042), mRNA CCCACGAGCGAGTGATTGGCCAGGACCGAGTTGCTCATACCGCCACCATGGCGAGATGTCGTCCTAGATG TGAGCATATAAGCCCCGGTCAACCTCCTGTTTGATAATACCTCTCATTCAGCGCACAGACTACACGTGCA TCTAACCTACCTCCGTCATCATGGGTACGATAAGGTGGCTGGTTGCCTTAGCGACTTGGATCTTACTGGT TTGCGAGCCGTCATGTGTACACGGTGTTAGTTGTTGGGCCGAACACGACAGCACCAGCGCGACGTGCGGC TTGCTGGTCGCCGAGAACGTGACGGTGGAGGAATGCTGCAGGAATATCGGCGAGAGTGTGTCCTGGTCCA CGGTAGATGACATATCCCCGGAGGCGATGCTTAGATATCAGACAATTTTCGGTGGAGTCCCGGAATGCCA CCTTTGTGAAATTGTTAGTTGTTGGGCCAAACGCGAAGAAGGCAGTGCGACGTGTGGCCTGCTGGTCGCT GAGCACGTGACGAAGGAAGAATGCTGCAAAAATAACGGAGAGAGTATCTCCTGGTCTACAATAGTCGACA TATCCCCGGGAGAGATGTTCAGATACGAGACCATCTACGGTGGAGTCCCGGACTGCCACCTTTGTGAAAA AACGTGCGACCAGACGATATGCCCAGACGGCCGGAAGTGCGTCATGAAGAGCGGTCGGCCTCGCTGCGTA TGCAAGCCCGACTGCACACACAACAGCACTTCGCGTAGGGGCTCCGTGTGCGCCACCAACGGCAGGCAGT ACAAGAGCATGTGCGCACTGCTCAAGATGAAATGCCGCCAGGAGGATCATCACTATGAGTTGGACGTGGC GTACTACGGGCCATGCCAGAACTCATGCGACAGCGTCCAATGTATCGGCAACAAGTGTTGCGTGGAGGAC CAGCACGGCCGGCCGCACTGCGTGTCCTACAGCGCTATCAGCTGCCCCGGACCATTCCGAGATGAGTTCG TGTGCGGTGCTGATGGCGTGACCTACGAGACGCTATGCCAGCTACGCAGGACCTCGTGCTCTAGAGGCAA CATCATCCCAGTGGCATATGAGGGTAAATGTGAAGGTTTAGCCTCCTGCAACGACACGAGGTGCGTCAAG AACAAGCAGTGTTTCTGGGACAAGCCGGCCAACACCTCCCGGTGCATCCTGTGCAACTACACCTGCAGTG GCTGGGCCGACGAGGTGGCCGTGTGCGCCTCGGACGGCCTGACCTACCAGAGCTGGTGTGCGATGCAGGA ACACATATGCCAGACGGGGATATACGTGGAGCTCGTCAGCTGGGGAACCTGTGACCCAGATGGCAACAAT GGCATCGAACCTGGGTCCGGGGACTACCGAGGCTACGACCTGATATACTTCACCCCGAGCAGTAGGCAGG TTCTGTCCGAGCTCCGCTCCAACATGTACCGCAGCCATGAGCGCGACAGCGGTAATGCCACTACGACCGA AGTGGTGCCGACCACCACGCAGTACGGGACTGGCGGTGCAGACGCCCCCGCCCAGCCTGTCACAGGGGTT GCTAGTTTCCTACAAGGGTTGATCAACAAAGGTGTGCCGAATCCAAGTGGCGAAGAAGATGATCAAAACT AGACACTGTCTCTTGCTGTGTCTGTGGGTTCTAGAACTTCGCAGGGACAAACATAAAGTCTGACGATATA GGCTTTAGCATCAAGACTATTGACTTCAGTCTCCGCAGGGCTGATGGCCAGTGGATCAAGACAAGTATAG ATACTCGCTTATGAAAAATCCCATCTCCACCAGTTTCCTACCTCTATATTATAAAATCATTGCCCGCGCC AGAACCTAGCTAGCTCCTAAAATTGGAAATCGCTGCACTTTCCTATTGGCCACTTCATAAATTTACGCAC GAGTATTTGATTAAATAGCATCTTAATCTCAACAAAAGAAAATCTGCAGACCAGATCTGGAAAGGGTTCC TATACCGTGTAAAGGGTTCCTACGTGTTTCCGCGCTCCACTGTACCGAGATAGTCCAACAGGGCGTCGTG TACAGTATACGAGCATAAGCAGAAACAGAAGAAGCAGAAGAAACCGTACCCTGAGCCCATCGACATAGGC TAACTGTATGATCCCGCAAGTATTGTTCGGTGATCAATCCAGATCGGCCCTAAATTTCCATTCAAAAGCT TCCGTCAGCCAAGAAAAAAAATTCATTCGTTTTACAGACGTTAGCAAAAGTATTGTCTGAGGACAAGCGT CAGGCCCATTATTAGTGTCTTTTGCTCAATGCGGAAAAAAACAAGATTGATTAATAAGTTAATATGAGTC TGCCTAAAACCTTTTCAACCTCCATCTCAAATACTAATTTGCGTGCCCAGAGATCGCACTAAAGACCGCA AGAGCTCATGGATCTCATAAGGCGCATGCACACTGGGTTGTGATCAAATGCAGAATGCGATACTCACAGA ACGCCCAATTTGACTTGATTTTCATGAGTAACCCAATCGCAGGCTAAGCTCGCTTGCGCATTCCCTATTT AAATGACGTGATATCTTGTGGCAAAGTTAGGGCGCCCTCTGCGTCAATGTAGATAATGTCTCAACTATTG CATAACTATATCAGTATTTATAAGCAATGAGTTATGAGGATTTATTTAGATTTTTGAATGTAAGATTGAC GACTCTGCAGAGTACAATTTAATATATTGGTAAGCAGAAGACATAGTTTTTACTCGGTACCTAGGCTAGC AATTCTGGCTAGAAAGCGTCAGAGATATATTAGACTTTTAGCAGCTGTAAAGACATAAGCGTACGTGCTT AATGTGCCGCCCTTGTAATATATGTTTTCCCGGCTATTTTAAAATGTGTATCATTCAAGTTCACCAATTC TAATATTCAAATTCGTCCAGTAAAACGTACTAGTGCACTTCCAATGTTAATTTTTCCTTTATCATATAAT GTCAATTTTAGTTGAAGCAAATTCAAACCATGAGCACATTATTCGTCAAGGAGTATTCATTTTCGTCTCG TCTACGCCGAACCGTGTTATTATTCAGAAAGCGAATTCGTCCAGATTAAGTTACTTAACAGAAGTAGTGA TTGATATAGACGAGGTCGACTCTGAATGCTGCCATTCGGCAACAGCTGAAATGACTCAATTCAATCTGTA ATTACGAATATTCTTAACAAAGAAGGCCTACTCTGGTTGACTAAACTTTGGAATGATAAATGACTGAATT GATTTCGCCCAAAGCATCTGAAAATCCTTGGGACAACTTGGAATATAAGAATCGGTGAATTGGAATGGAA ACAGTCTTGAAATGGCCCGGAGAAACATGCGATCGAGTGAAAGATCAGACAAAAAACAGCGTTTGACAAA CCAAACGATATGAAGAAAAGATGTATCGAGATCCGGTCACAATAGTCATAAGTTTTCCCGGATATTTTGA AACATTTATCATTCGTACTCACCGATTATTATTCAAATTAATCCATCAGCATGATTTAGTGCACTTCCAA TGTTTAATTTCGTCTTTTGTCTGACAATTTCAAATTCAAGTCAAGCAAATTCAAACAACGAGCACACGCT TTCGTCCCGAGTACTCGATTTCGTCTCGTCTACACCAAACCTTGTTATTCAGAAATTAAATTCGTCTTAT TGATTTATTTAATTAAGACGATCTCTGAATGCTGCCATTCAACAAATGCCTAGACGAATTTGATCGGTAA TGACGAATATTCTCGACCCGGTGACTAAAGAGGATGACCAAACTTTAAAATTGAATGGTAACTGACTACA TTGGTTTTGTTCAAAGCGTGTGGAAATTTTCTAGGACGAAATTGAATGTTAGAGTTGGTGAGTTTGAATG AACAAAGTGTTTCAAAATGGCCGGGGAAACCCATTATATAAACTGCTCTCTTTGTGTCGGTTAACTGTTG TTTGTATAGTACTTTTAATCATTCTACAATGTGTACAATGCTTATTGAATGAAA
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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