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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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>JT115565.1 TSA: Strongylocentrotus purpuratus WHL22.133565.0 mRNA sequence GGAACAGCAAAGAGAACCAACTGAAGAAAGACGCTGACAATTCATCACGTTCGTCATCTCTGAAGCGACA GTTTCGGGGGAAATTGTCCAACCGGAACTCTGCTAATTTAGAGAGTGAAGACGAGGACACGCGTGTCAAG GCGGGGGGTTCTGTCTTCTACGTACAAGGAACAGCATCCGGGCAAGCAGAAGGAGAGATGGGGCAGTCAC AAACGGGTATTCTGATTGACTTTGCTGAGAACTCATTTGCCAGCACGGACAGCAGCATCGATTCCGGTTC CTCGTTCGACACTCCGTACGTAATGGACAGGACGTTGAGTCCAGAGGTCAATTCAAAGGCACCTTCGTTG CCGAGGCTCAACGGTGGCTTACCTCTGTATGATGATGTACCCAATGAAGCAGGGGATGCAAGTACTGTAA CTGCAGAAGTGTCGAAAAAGAGTCAACCTCCGGCTCGCTCGTATTATGGTAACCAACAGATTATTGCAGA TGCAGCTGCATTGGAAGACACGCCAACAGCGAGTGCGGACTCAGCAACGTACGCATCGGTGAATAAGGTC AAGCCTCCAGGGACAAGTTCCACTAAGACTAGAGTCAGAGCCAACCCATTTGCCTCCAATAACAAACAAT CATATAATGATCAAGCTACTAATGGTGCAACTTCCAATAATCACACAGGTAGTGATATAGAGAGTGCTAA AGTGCCACATGCAACAAGACTTTATGACGATGTGCCAAATGAATCAAATTTATCCAGTGACACTTTATCC AAGAACGCCACTGCTAAAGGGGACTGGGTTAACTTCTACGATGATGTTCCCACAGAGAGTGATCTTGCAA AGTTAGAATCAAAGGCGGGACCCTTGCCATTAAGAACATACGATGAAGTCCCTGTGGATGAGCCGCTCCA ACCAAGAAGAACTGCACCTGGGAATGTCCAGAGTGTTTCCACAAGACATGCAGGACCTGCAGCAACCGCC CAGCAGCAGCCACAAAGTAGTGCGTCTCCAGGTGTTGCATCAAGAATGTACAGCGAAGTTCCTGTAGAGG ATGTAGCCCAACCGAGAACTGCACCTGCAAACTTGCATGCTTATTCTAGTGACCGTTATGCTCCTTTTTC CAGACCTGCACCAACCCTTCAACCACAGAAAAGTGTGCCTGGTGCTGCTTCAGGTGCTGCCTTGAGCTTC TCGACTCACCCAATGGTGCCTGTGAAGACACCCTTGTCATCCTCACCGAGTTTAGACTGCTTTGATCCTC TAAAACAGGCCTCTGTCAAAGTTGACCGAAATCCTGAGAAAGTGTCCGAGCAGAAAGCTTATACGGCAGC TTCTGCTCGCAAAAACCAAGCTAGCATTGTGATCCCACCTCCGAGATCAAAAAAGAGCACAGGCAGACGA ACTAATAACTTGGTGAATCAAGATAATGAGCCCTGTAGCACTGCAAAGGAAATCGCTAGGAAAGTAGACG GTAGCAGTGCAGACAAGTATGCTGCCATCCAGAGTACATCATCTGTCAATCAGGCACACTACACTGTGCA TGATAGAGCAAGGCTACTTGAGAACAAGCCACACATTGCACCGAAACCAGGGATGAAGAGTGAAACGCAA GATGACAACTTCATGACGATGTGCTTTCCCCGTAAGACACAAGGATCTGAAAATGGAGGTTCTCATTATT CGGCCACGACCTCATCTAATGACATTCCTTTTGGCTTAGGAAGGCGAGCGCACAACGCCCAGGATGGGAG CCGAAAAGTGGTACCTCCTCTTCCCCCTCGCCACGCACTTGGAGAAGACGTGCCGCCAGCTGTTGGACCT CACCAATCAAATCAACAGCCTCCAGGTGGATCGATGATACTGCCTATCATGAAAGATGGTGTTCAAGTCA GTCACACCCATTACTATCTTTTACCAGCAGCAGCAACGTCAACGGAACCTCTTAATGTATCACCAAGGTC TCTGATGAGCGCACCAGTGGCCAGGACAGAACCACTTGGCAACACAGCTCATGTGAGACCACAGCTGAGG CACCCAATGGAGATGGCAAACCCAGACTACTTCATGAAGGGAGCTGACTCTGGTGGACAGCGTGGTGCGC AGGACGGGAGCTACTTCAGTAAGAGTGGCCCAGGAGCTGGCGCCAAGAGCAAGGATCTTCTTCAAACCTT TGATCTCTCGAACTTGAAACCTATCCTACCGCAGGGTACCGCCTCCACATCCCAACCCTCGCACATGATG ATGCCATCGACGATGCCATCCTATTACAGGTCGACTTCATCAAGTTCAGCTCCGCCGACACCATCCCACC AAGCTGCAGCATCTGCGACACCATCATCCGGTGTCTGTATCCATGGCAACAAGTTAGGAGGTAACCGACC CGTCTCCGACCTTGACCTCATGGCGTCCGAAACGCCCAACTCGGCGGCGGACAAGGTGAAGCAGGTCCAG AAGGAGGTACATGGGGTGACGTCCGACGAGTGCCGGAACGCCCTGATAGGTGTGCAGTGGGACGTCACCA AGGCGGTCCGAGATCTCAAGACAGAACAACTCTTCCAGCTCGGTAGTGCTTCCAAAGAACATTGTGAGAA CTTGTTGAAATCGCTCGAGTGGAACCTAGAACTGGCCAGCTCCATTCTGCTGGAGCAGTCTGCAAGGTGA TCAGAGACTCCTTGATGCCATGAACAACTACTAACTAAATTATAATGAAAACTACTGTATGAAACTAACA AAATCAATATTTTTTACCACTCTTAATGAAATTGAACATCAGTAATCAATATATACTTATATCTTTTTAA AAATGGGGCATCGAGAAGTAGAACGTTCTTGTAAAGAGTGTTCAATCCAAAGAAATGCCCTTCTGTTGAT CATGCTGATGGTAAAAAATTTATTCTTGATAATATAAGATTTAAGCAAGCAAGTAATGTTAATATGTCTT TCAGGAGGATAAATAATGTGATTCTTCCCTTTAATAGTTGATAAATGTTATCATTGTGAATAATACCAAT ATGATATTTAGTAGGAGGATGAAAGCGATCAGTTTTTTCTTTTGGGTTACAGGGTTGGGGGAGGCAGAGG GTTTATTTATTTGCAAACTTTTGATTGAATAGAGAACTTTGCTTCACTTTCCAATACTGATGGTGAGCAA AAATTCTGATCATGAAGTTCAAGGAATGATTTAAAATCTTCAGTTTTAGAGAATATGTTGTTATGAAGAT ATTCTGACCAGTTAAGTATTGCAGCATATGCAAGGCCAGATTTTATTTTGGATAGTTTCAAAGGAGTGAA TAAAATCTTTATAAGGAATGTCACTCTTTTCTCATTATAGATAGTTTGTTTTTAAATGAAGAAACAAAAC AGTTCGAGTGGTCAGTATTTGAAACGCAGCCTCACACCCTATCTCTTGATTCATGTTTTTGCATGATTTT ATTCTACCCACATGTGCTATATGTATGTTTTATTTGTTTTACAAGGTATTGGACCAATAGCATCATAGTC TCGATTGAAGCTATGAATTCTTTGATCGATGATATTAACCGTTTTCTTTTCCTCATGAATTGAATATGGC TTTTAAACATGACTACGCAAATGGCATAGTAAGAAAAAAGTGCTGATGCTTGTAAAGATATGTACAGTAA AAGCTATATGTATATAACACTATATAGATATATTATGTTTGTGGAGCATTATTTTTTATACCAGATCATT TTAGATGTACAAATCATTCAAGAACTATATAGTCATTTATCAATGTGACATTTCTTCTCTGTCATTTCAT TCCACTGTTTTACCAGTAGTTAAATATCTTTCTGAATGTGTTCAGAAAGTTTGGTGGTGGGACAGGCATG TGTTTTCAATATATTAATAGGGCAGTTTAAGTCGTTTTTAAGTTAATAATCGCAAGTTTTCTCCTAACCC TTTGAGCACTAAGTCTTATGCAATGTATCTCATATTTATATGTATTATGAGACAGTTGTTTAGTTGGGAC TTGACACTAACAGGTGTCTGAACACATGTATGCCAAAATTCTAGGTCTCCCTCCGCCCCAACCCCCCCCC CCTCAAAAAAAAAAAGAAGTCATAATCTCTATATGGATAAATGCTCCTAAACGAAATTCATTTAATTTTT ATCTTGAATAATGATAATAATGATAATCTTGAAAATATATGAATGTCTGGTTACTGAAAAGGATCTTTTC ATTCTAAAGCATAAAGCATCCCCAACAATTATTTTGCAGAACCAGGTATAAACTTAATCTGTTTCTAATC TACTCTGTTATGAAAGTTATATCTCTTCCCATACAGATTCGTTTTTATAAGAATATCCTCATAATATATC ATCAACTGCACTTGACATTATCCAGAATTCTAGTTTTCAAAATAAATGATTTTTAATCAGAATTAGGCAG ATATCCAAACGAGCTGAACTTGTTAGTTATAAAATATTTCATCACTATTTATTTGGAAAATGTATGTGAT CTATGTATTCTGTATAGATTATCAATATGACTGGTATTACTGTACATATGTACATGTTTATGCAAATACA TATCTCAAAACATATTTACCATCGAGCAACTGTAATACAAAGTAGAGCAAATAATATGAAACAGTGCTGG AATCATTTCCCTTAAATGTAGCCTGTGAAACTGTTGTTGTAAAGTTCATATATGCAAGTATTTATATATG TTGTACTCATGGTCATATTTTATTGTTATGCAATTATCTCTTTCACATTATCTGCATGTGCAAAATCATT CAAATGAGCAATGAACACTGTTTCCAATGCATATTTCTGTCTTCATATTTTGGAATTCATTATTTAGAAT TCATCATTTGCTAGAAGGGTAGGCAAATGTGTATGTCCCAAATTCCTAATCTGTTGCCAAAGATGGGAGA ATACGTAAATGATGCAATAATTGTTACTAGAGAAGTAATTTTAGAGGAATTCCATGAGATTGTCAGTCAC TTTCAACATGTTTTTGCTTCCGGTATAGCTTTTTGACAGACCTTCTAACAGTGGAATAGTGCATGTTCAT GTACCTTTTATTAAAGCACAACTTTTGACTGGCACATATGCACAAAATATTAAATGGAATTCCTAACAGA CTACCTTATGTTTTGAGATTATAGAGTACTGAAGCTGTGACATCATAAAAATAAAATTTTGGAATTTCTC AATTTTTTCTTCATTTTCCAAAAGAGCATCAAAAATAGTGTCCAAATGTCG
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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