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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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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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>GAWB01061181.1 TSA: Patiria miniata AMR9002.39071.1.4 transcribed RNA sequence CTCATCTTCCTTCCCCCCCCCCAAAAAAAAAAACCCACTAGAACATAGGAAACAAAACAACATTTAAGGA AAACAAACTTGCTTCCAATATAAATATGATGCAAGGGTTCTGGCCTTTGATACCACAAATGTTCGGAAGC AGGGATTAGCAAGCATACCACAAACCATTCAGGCCAAAGTCAACTCACAAGCTATGCAACTATACTGCGA CAAAGGCATTGCTTTATTATTGTCCATCACCTGGTATTTGTGACTGGACTTGTGAAAAACTTGTGAATTT TTTTTTTACGACCAGACTTGTGATTCCATTACAAGCACATCAATAACAGCACTACTAATCACTGATGAGG TTGGCCCGTTCCATTAGGAGGCAGGGGATGCTGTACTGGGAGGGGACTGATTGCTCGCCGACTGGTTACT CAGGCCTTCGCTGCCCATACTCTCCGGCCGACTCTCGGCAAGGCTGCCCGCACCGTCTTGACTGTTGGAA TCTTGCAGTGGGCTCTGGGTGAGGGTGCTATCACTGCCGACAGACGTGGGCGGCAAGGTGCCGGTCACAG CGGCAACGATAGCTGGGTTCTGAGCAGCCGCTGACTGGGTGGGGACAGGCGGGACTGGTTGGCTGGGCGC TTCACTGGTATCCATGCTTTCTTCGGCCGGTGCCTCGTCCGTCTGCGGTTGCTCTCCCTCTTTGGCTGGT TCCGGATCCTCGCCGACTCTCGCTTGCTCCTCCTGGGTGCTTGCTGCCTCACCCCCAGGGGCCGGCTCCT CTACGGGGTCCGCCGTGGGGTCTGGCACTGCCGCCTGCTCGGGGAGGGGCACGGCGGGCGGAGTTGTGGA GACGGGTGGGGGAGGGGTGCCCGAGGGAAGCTGTGGGGAACCAGTGAGTTGCGGTATACTTGGCGTTGCG TTTGTCGGTCCCGGTCCACCCGTGGCTGCTTGCTGCATGGCTGCCATGGCTTGGGCGTGTTGTCGTGCTC TCATCTCAGCGGCGCGGAGCTGCTCCTGATGGAACTGCTGCCTGTCAGCCAAGAGTTGCTGCCGCTGGTA CTCCAGCGCTTCTCTCTCCCTGTCCATGATCGTCTCCAGCTCTTCGAAGTGTCGCAGCTTGATCTCCAGT TTCTTCATCTGCGTCTCCACCAGCAGAGCCACCAGGCTCTTGATCTTACGCTCCTCAACGGCTGCCAGGT GCTTAGCTTTGACTGCAGCCGCCGCTAGCGCAGCAGCAGCAGCCGACGCTATGTTCCCCTCAGACAACTC CTCCTCGTGTTTCTTGACGGCCTCCGGTTTCTCCTTGGGTGTCTTGTCTTCCTCCTTGTCTCCTTCCTCT CCTTCCGTCTTCTCTGCCGTCTCGACATCCTGAGTGTCCTCTTTGGGGGCGGAGTCATCCTCCCCTTTTT GCTCGCCGGTCTCCTGGGAATCCTCCTTGCTCGGTTCCTTTGGTTCCTGTTTAATGCTGTCTGCTTTCAC TTCTCCCGTCTCCATCTTCTCTGCTTCCTCCTCCCCTTGCTTCTCCGACTCCTCCCCCTCAGGGGTCTTC TGGGGAGCCGTGGCCTCCGTTTCCATGGCTTCACTGCCATCTTTGTCCTTCTCCTCGGCAGCTGGTGACT CCTCTTTCACCTTAATTTCCTTATCAGTGGTCTCCTTGCTCGCCCCTGCAGCCCCCTCGCCACTGCCCGC CTCCGCTCCCGCATCCGTCTTGCCTCCTTCGCCCCCTTCCTCCATCTTCTCGGGCTCCGCAATGGTTCCG GCGATCCCGCTAGCATCCAGGAGGTGGTTGTCGGTGCTCATACCAACCCGGGCCGAGTCCTCGATGCGTT TGACGTGAGTGTGGACCAAGGCGGTGGGCACCTCCTCTTTCATCTTGCTGAACTCCGCGATAGCAGCCTT GGCAGCAGCGCTAGCCACCCTGGGATCCACGGCCGACGCCAGGAAGGCCACAGTGCTCATGAGAGGGTTG CCGGACTGACTGAAAGGAATGGGCTGATAGCTGAGTGGTCCTAGTGCATTCGGTCCATCTTCCAGATAGG TATCTTCGATGGGCAATCTGAGGAAGTGCAAGATGCATTCATCTTGGGTGCGAGAGCCTACGTGCTCGGA GACTTTGTTCCAGTCGTCGCGGTACATCTCTAGGGCTTCTAGGAGGAGCAGGGTTTCCTGATCCGTCCAA TCCTTGGTAATGCTGGCCGAGGCTGACTTGCTCTTGGAAGGCTGTGGTTTCTTGGACGCATACAGGTCCG TCCGCAGGCCAAAGTTCTGCAGGTCGTTGCTGGGCTTGTCTTTGTTCCCTCCCTTGTCAGCCAGGTTGGC AACTTGCTGAGAGGCCGACTGTTGTGATTTGGCAGGCTGCATGGGCTGCAATCCGGAGGGCGTGTCCGCC AGCACATGGAAGTGGGAGGTGGGCGGAGGGCCCATCGGAGCGGCACGGTTCTCAGCGTCCACCTGGTAGT TGATGAGACCCCACTGCTCCAAGAAAGCATGCACTCTCATGATGGCACAAACATCTCCAGCCAGGTTTCT GCGGCAAGCTGTGAAGGTGAGATACTCGGTGGGGTTCAGACGATACGTGTCTATCATGAAGTTACGATAC GCCATGAACACCTCGGCCGTCTTGGACTTGTTCTTAGCGTTGAAGAATTCGGGCAAGGCCCTCCTCTCGA TGGCGTGCATGCTGTTGTAGTCAAACCAAGCCGAGTAGCTGGGCACGATGATGTGATGCGTCTGCTCCGT CACTTGCTCCTCCTGTGTCTCGGGAGCTTTGTTCTCTTTCTCCTCGAGCTCGGCGCCGGTTACCAGAGCC CCTGATTCCCCGTTCACCTTGTCCTGCGATTCGTTCTGCGAATCGTCCAGTTCCTGTAGCGAGCCTCCCT TGATTGGTTGAAGTTCCGTATCCCGACCACTGCGACTTGACACTATTTTGGGCAGTTGGACCTCTTCCAC AGCTGGTATAGTGGACGGGTTGTCCATGTCCTTGGTCAAGTCTTCGGGCTCCTCGTCACGGGGAATTCTC TTCTTCATGATTGGCGCTGGGCTCCGACCGGGTTTCTTTTTCCTCTTGTCTGAGGTCGGCGAGGGAGACC TCTTTCTCTTTTTCCCGGCTCCTCCTCTCTTCTCTCTCCTGTCGGCTTCTGGACTGTGGGCATGCTCATC TACCATGGGTTTGGTCGGGTACACCTTCCTTCTCAAGTTCCCAGACGCAACATTGACAACTTCTTTGGCA TCACCGTCTTCGTATATTTCATAGTCTTCAACGTTCATCCACTCGTTGAACTCCTCAAGATCCAGAATCC ACTTGGCATTCAACTCCCAGGGGCCATCATAGGTGGTGCCCGGCTCAGGGTCCCCAGGGACCTCCGCCGC AGGTACCCAGGTGTCGTAGCTGTCTGGATAGTAGCACCAATGGACAAGCATGGACTTCTCCCGGCGTACG ATGGGGCGAATGTACTCCTCCCCTTCATTCAAGGAGGGTGGAGCTCCGTAGACAATGTGTGTTGCCAACT CAATATCATCCGTGACTGTGCCCTGATGTCTCTTGATGATGTCCTTCAGCTTGTTCATCATCTTGGGCTC CACCTCGTCCTGGATGTAGACCACGGGCAAGGAGAGGCAGCGCGTCTGCAGCAGGTTCTTCTCGATGCTC ATGAACATCTCCACGTTGCGGTCCATGCGGGACGGCGACTGGAAGTCAAACCGCCGCCATCCTTGGTCGC TCTTGAACTTGTAGACGGCCATAAGAATATTGCATAGTCCACCCCCGGACTTGAAGTCCATAAAACAACG CAATGGCAGTCTGGTGAGGGCAGGGTTGCTGACGTGTCTACCGAACGCATCTTCCTGGAACTGCAGCAGC TGTGCCAGCAGCGAGGCCAAGCCCTTGTTGGTGGGTGGCTCTGCTTGAATCCACTTCTTGCAGTTTCTCT GCAGCCATGATTTCACGTTATCGAGTTGCGAAATCGTATCAGCAGACTCGAAAAACTTAAAATCTGCCCC TCCATCCTTTTTTCTGACAGCCATCTTTGTACACAT
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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