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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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>GAUR01077852.1 TSA: Lytechinus variegatus AMR9006.39450.3.3 transcribed RNA sequence TGGCAGTATTTTTTTGTGCAGACAATATGGCAGCGCCCACAGCATCAACACGCTGCCTGTGTTTTTCATT GAATCCCGGCTTCATTAATTTCAGTGATAGATCATTGATTTTATCGAATTTTGAGTTTCGTGAGTTATTC AGCCAACATTTTTTGAGACATTTATCTTTGTTTGAAAAAAAGTGATCCTATAAGTGAGCCTAAGCTACAA AAAATGTCGATGTCGCATGAGTTTCCGTGTGTGTGGCGAATAGAGAAAAGGATTGCGCAATCACTCGAAA ACGAAAACATCGGGGAGTTGGTGGAGGACAGTGAGTTGGAACTCTGTGAAGAATGGATAAGGGAATTTGT CCCTAATGACTTCGATCTGGATAAAGAGGAAGTAAGTAAGTTCCTGTTATCATTCGTGACTGGCAATTAC GAGCAGGTGATTACTTCAGTCATCACCGGTCAGATCCTTGCCAGAACTCCCCACCAAGATGTTACACAGC AGATTTCAAGAAATGTCACAGATTTTGTGGGGCAACCTGAACAGCCGAGGGAAAAAGTTTTCAGGCAGTT CTTAGTAGCATGTGTGGGTATCTCAAGTTTGCAGCTGTTTGTTCAAAATAATTGGACCGGACCATTGACG GGCAAACCTGTGATTAATCTTCTGTCAGAAAATCTTCATCTTCAGCAGAAGGATAAAGACATACGGGACA TAGCCAAATCTGCCCTCTGTCCTGACGATTGTTCAATATATCCTTTAGTTTGCTTGCCGGAACTACTTCT TATTGCACGATGTGTTTTTATAGAATGTAGTGATCATGTTGCCCTTTGTAAGACAGCAGATTGGTGGAGG TTACGATGCCTATGGGTACAGCAACAACTCTTAGATGAGAGATCACCTCAACTCTTCAGTCTCATATTAC CATTAATCAATTCAATCCAAGAAGATGAGATACTGATGTCTCCTGAACCAGACTTCTCTATTCCTCTCAT GTTTCATCTGGAATGTAGTTATATCTTTACCTATTACTATGAATACAAGAAGGGAACTGAATGCATTGCA AATGCCAAAAAGCTGGCTGGAATAGAAGTGGGACTGACAGGTGCCCTCGGGAAGAGAACTCGGTTCCAGG TTGATGATAAACCTCAGCTTATTCTTAAAGTGACAAGAGATGAGGAAAGAGATAGAGAATCAGCATCACA ATCATTACCTTCTTACACAGAATGGTTGCCAAAGGATTTGAATCTTGATGATGATACGGTATTGAATGCC ATCAAGTTCAAAGAAGAGACTGACGGAGATCTCCCTCCTCTAACGAGCCTAGAACAAGCAATCGTCCTTG GGGTTTGTATGGAACACAAGCGATCAAGACCAAAGGATCTACTTGTGTCTGAAGAGTTGATGTCATATGC AGTGGGTTTGCTGAGACAACCTCAGATGTGGATAATACAAACCCTGTCATTGAGACTCAGATGTTTGCTT GAGAAGGACAAAGGAAGGACTGTGGAACGTGCTATGATGCAAATGCAGGTTCTGGTGGATCAAATTCTGA GTACAACTTGTCCTGTAAGAGAGAGGTTAAAACTCTTCTATGCTGTCAACCTACCTCCTAAATGGGCATT AGAGGGTGAGCTAGCAGGATTGCTTGTTAGCATAGGCTGTGTGAGTGATGCCTTGGAGGTCTTCATTAGA CTAGAGCTATTTGAAGATGTGGTGAAATGCTACAAGATCATGAAGCAGCCTGAAAAGGCCATCCACATAA TCGAGCATGAGCTGGCTAAGAAGGAGACTGCCCTCATGTGGTGCCTCTTGGGGGACGTGACGCTGGAGAA GAAGTATTACGAGAAGGCATGGGAGGTGTCCGGTCAAAAGTCAGCAAGAGCGATGAGTTCACTGGGTACT CTCTACCTTCATGAAGAGGAATTCCCCAAGGCAATAGAGTGTTTAGAGCTGTCATTAGAAAGGAACTATC TGCAGTATAGTACCTGGTTCAGTCTTGGCTATTGTGCGTTCCAGAGTGAGAAGTATGAGATAGCCATTAA AGCTTACCGTCGATGTGTACAGCTTGAAACAGATGATTATCAGTGTTGGAATAATCTAGCAACAGCCTTC ATCAAGCTCAATGACAAGCCTAAAGCCTTCAGAACCTTACAAGAAGCTCTGAAATGCAACTATGAAAACT GGAAAATATGGGACAACTTTCTAGGAGTGAGCATTGATATTGGTGAGTTTGCAGAGAGCATCAGAGCTTT TGGACGTCTCCTTGACCTAAAGGAGAAGTATGTTGATGAAGCGGTTCTTGGGGTCATGGTGAGAGCAGTG CTTGAAGACATGAAGGATCGTCATGGTGAACCAGCTGGCTTACTGAAACCCAAAATCTTAGAGCTATTTG GTAGGATCACATCACAGGTGACTGCTAATCCTATAGTATGGAGTCTGTATGGGAAACTACTAGGGGGATG CCAGACAGAAAACGTTGTAGAGAATGACAAAGCTCTTCAGTGCTTACAGAGGGCTCACCGACTAATCACA CAGGATGAACAGTGGCACAAAGAGGGTGACAAGGTCAAAGAGGTCATAGGTCAAACACAAGAACTTGCAG AAGCTTATGAGCACTGTAGTAAGCAAAAGACAAGTAATCCACAGGCCATCCAGTTACTCTCATCAGCTAA GCTTATGATCAAATCAATCATCTCAAAGATCAAGAAAGAGCATTATGATGAAACGATTCCACCACCATCA TGGGCCGAGCTAAGTCAACCTGTTGAGGGATTAGAGTCCAAACTACAAGAACTGCTCGATAGAATATCAG AATTGAAATCAGGCTGAACGATACCTGTCCTATCAAATTCATTTTGAGTTATAAGATTTCTTGGTTGATT TTAGAAAATCTTTCTAAATAATGAAGCAATGGAATGCACCATCATTCCATTCAGCATTCCATAGTTGTCT CCAAGTCTTACTTATGTACATTGTCAGAGTGAATTACACATATTTGATTATTCCCATTCGTAACACAAAA ACAATATGTCCCCAATGGATAATTGTCCGTTCACTCACACATCTGTTTTCTTTAATAGGCTCAGGTTAAT ATTTAAAGCATTTGTAATGGATTAGGAAGTTTGTTGTGGTTGGCACTTTCCTATTGCCGGTATGAAACTT CCCTTTGACTCTTGTGAGTTTGATTTGGTTGGAAATTGGAATAATATCTGGGTTTTTTATATTTTCTTAG TGAGTTATTTATCTGAAACATATTTTTAAAAGTCATAATATTGTAAGAGGTGATCATTTGAGTCACAATA TTCCAGTGTTATATCACACAGCCCTTTATATATTCCTACAAGTAAGATCTGCTTGTGGAATCATCTTTTA GGAGTAATCCTGTGAGGCATCTTTTCTGATTCAATTATCACATTGTTTTGTCTATGCTAAAACAGCTTTA TGAAACATGTTGTCTTGCTCTCTTCAAAGAGATTTTTACCATTAATAAAACAAAATTACTATCATAGAAA TGTGATATTGGAGGCCTGTCTTTTTTCCCCAAGAATGCAAAATTATGGAATTTCAACTATCTGTTGCCTG ATTATGAATATTCACATTTGCTATTTTATACCATTCCTAATTTTGTCAATAATGCTCAGTTTTGCTTGGA TGCTCTGTCAATGAATAAACAAGAGGAAAGTTTGTTTGGGAACAAATCAAACTTGACAAAAATTTATTTT AATACTATACTAGTCTATTGTACATGCACATCTCTACAGTAATGTCATCAATATGCCTTTTCTTGGAACA AGGTCATTAGCCATATCACTCATAAGTAGGCCTACTTATAATCATTATTGGCATATCTACATGTACAAGG CTATTCATGTCTTATGACAGCCTGAAATATTTTGGCCCATATTCTGAACTCTGATTTAAATGAAATACTG GTTTAAAGTTGTGGTTCAACGATGGAGAGCCAATTGGAGCACAAAATCCCTAACAGTACACATTCAACTT ATTAACTCATATGTCACCCAAATTGTTCATAAATGTCTGGGAATGATAACTCAAGTATTTTCTTCCTTAT GATAGCAAAAGGAAACAAAATTGTAAACATAAGAAATA
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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