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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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L. variegatus
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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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>JT118924.1 TSA: Strongylocentrotus purpuratus WHL22.537618.1 mRNA sequence CTGGAATTCGGGTTAGAAATCTACGATTATGGCTCCCCACAAACATTCTCGGGCAAGTCCGAGGAAGCCC AAGCTGGAGCAACTAAAAGCAGATCATGAACTCTTCTTACAAGCATTTGAAAAACCAACTCAAATCTACC GTTTTCTGGCTGCCAGACACAAGATATCACCTGTATTCCTGAGACGTAGCTTAACGTACATGCTAAAGAA GAAGCCATCAAAGAAAAGTTTTTCAGTGGATAGTCTGTTAGAGATGAAGGAGAATAAGATGAAAGCAGGC AACAAACAAGTAGCAAGCCATAGCGGAAAATACCTGAAATTAACATTCAACCATTTAAGCTGGAAGGGAG AAACGTCTCATATGGAAGATAGCAAAGCCACTGTTGAACTGATTCTACTCAAAGTATGTCACAAAAGAAG AAAGGATATCTGTCTGCCCATTATGAAGGTATCCCTTGGTCAATGTGAGATACCTGTCAATCCCACCGCT GCCACCATTATTTCATCATCTTCCGAATCCCAAGAGCTGACGATACCAAGCAGTTACTTCAGTCACTCCA ATGGTCACACTGTCCGCTCCTACAGACTCCTGATACAGGTCTCCTATCCGACAGTCCAAGGCTTGACCAA TGGAAGCCTTTGTAATGGAGATGTAGATTCAGATTCAGATGGACAGCAAGCCAAGAGGAGGAAAGTGATG ACAAGATTAAAAGACAAAGACACGACGACTTCACCACCTCAAGCATCACAGCTCCATGAAGATGATTACA CGGCTAGTTTTAGCTCTGAATTGGTGGTGGTTGATAAACAGAACCGTTGTCAGCTCCTGGATGGGAGCTA TGAACTCACATTACAAGAGCAAGTCCAGACTAAGATCAAGTATCAAACGGCATCATGGGAAGCATTATCA GATGGAAAGCCAATAGATCCATTTGAAGTACCAGACCTGAGTCCGAGGCTGAACTTCAATCTTTCATGGA ACACGACGACAGCAGAAGGGGATTCCCCGGTAGAGAACCCTAGTAGGTCACCTGAGAGGTCAACTCGATC AGCAACCAATCCTACCTCATCACCAGACCATTCCAATCGTACCACTACCACTAATGCACCGGATGCAGCA AAGCACAGTGCCTTGATCAATGGACAAGAACCAGTACTAGATAAATCTCCAGCCAGAAGAATCCACCCAT CATCATCTAACACAGGCTCACCGTCTAGATCCCCTGCTTCCAAGCCCTTAGACCCAGACACTGTCGAGCA TGTCTTCTATCAATTCCTCTATAACAACAATACTAGACAACAAACGGAAGCTAGGGATAACCTACGCTGC CCTTGGTGCGCTCTCAATTGTCAACGACTGTACTCGCTGCTCAAACACCTTTCCACCTGTCACAGCAGAT TCAATTTCACCTATGTGCCTCATCACAAGAATGCGAGGATAGACGTAGCAATCAATGAACACTATGATGG TTCTTACTCCGGTAATCCTCAGAATCTAATCACATCACATATGGGCTATGCCTTCCAGAGGAATGGACCT TGTAGAAGAACACCTGTCACACAGGTTATAGTCATGAAACCACTGAGACAGAAGGAATCTCTACAAGAAT TTCAAGAAGGTGAAAAAGCAGACTACCTCACACAAAGACCATACATCTCAGGACATAATAGAACGTATTT CCGCACCCACTCGCTGCAACCAATCCGACCTCAGGAGATGGATGAAGATAGCGAAGATGAGATCGATCCT GATTGGATCAAAGAGAGAACAAGAATGATGATTGATGAGTTCACTGATGTAAATGAAGGAGAAAAGGAAC TCATGAAATTATGGAATAACCACTGCATGAAACACAATTTCATCGCCGACTCCCAGATCCCTTGGGCATG CTCCATGTTCCTTGAGGTCCACGGTGAGGACATCCTGAGAGAGAACCTGACGAGTAACTTCCTCCTTCAC CTTATCAACCTGTATGACTTCAGTCTCCTCCACCCTCAGCTCATCCCTCGCTTCATGCATCAGCTCCTGA AGTCCGGCCAACAGCGTGATGTCACAAAGGATGAGGTCAGTCAGGAGGAGGAGAGGATGAGTAACCAAGG TGATGAGATGATGACGGAGGATGGAGATATAGGACCGCCCATTCTCTACCCTCAGGAGGAGCTCGCTGTA GACAGGGATGAGGTTACCATGGCGATCAATGGAGGAGGAGGAGAAGGGGAGATGAGTACAGATGGGACGA TAGAAGAAAGTCCTTCATCGAACAGAAGCCTTGATGAGAAACCCGAGCTTGAAATGGCAACGGCAGAGAT ACCATGCGACTCAAGTCCAAAGCTTGAAAAAACGATTGATGAAGAAGACACAATGATATAAAGACATGCC TTCAGAACTGAATGTTCAGGTGTTCATGTTTTGTATTTCTGGATTCAATCAAGCACCTTGATCTTACAGG GTTGTATCAACCAGAATTATCAGTTAACACACAACATTACATGGTGCTATGTACTACACAAGTTGCATCA ACCAGGCTGTTTGGATATTACACACGAGCACTGATTGTGCTTTGTACTGCATTGGATGTAATCTCTTTCA GGGGTCTATCCTAAATACATGTATAAATCTACAACATGACAATGGTGATATGTAATGAGCAAGGCAATTC ACTCTCCATTTTTATCATGTCATCTTTCCACTAATTATGCAATTTTTGTAGAAGGATCATAGTTTGAAAT GTGAGGTTTATACAAGCAAAGAGGCAAGTAGATTTTGTTTGTTTTTGTGTTACTTTCTGGTAGGAAATGA GTCAAATTATCTCCATGAGCAAGAAATTTCCTTAGAAATATTTTCACTTATTGTGAAAGGCAAGCGAATG TACATTGAATTTCTCTCCTAAATTGCCATGGTTGTAATGTGAATAACCAAGCACAATGTTAAATTGAATT AAAAATGTCAGTTCATTTTGAGAAGAGGATTCAGGCTGTTTTGTAATACAGGTATGATTCTCTGTCCTCT TTGACATTAAGCACTAAACATTGGGATACTTACAGCTCTTGTGGCATGAGGAGGGGATTCCCCCGAGCAA GACTTTAATTACAGCAGTTGTTAATATGCAGTGATATTGTCTATGGGCTTCACGCACAGTGCACTTAAGG TCATGAAATGGGGCCCTTTTTTCATGTGATCAATGGACAATAAGAAAATACATTGAGATGTATTAAAGCT CATCTGTACTAGTTTACAGGAGGGATTAGACCTCCCTGCAAGGTCACTGGACAGGTGGTCATCTCATCAA CTCGGCTCTCAATTAACATAAGAAAAAGAGGATCATGGGGGACCAATGGTCACCAGTTAGGCATTGTTTT CTATATAGAGGGAGCAAGTAGCTACAAGTAGAACAGTGTGGATTTAACATTCTCCCATACATGTTGTCAC ATTTCTCCAACCAATAAGGGACAGAAAAGGACAGGTTTCTACAAGTATTGATAAAAGTCATTCAGACAAA GTTACTTGTGCATTATTCGGTCGTTCTGTCATACTTGTAAGCATGTTTTTGAAAAAATGAAAATGTACCT GGGTTACTTCACTTGATCAACAGGTGATATTCTGCTGCTGGTAGTGCAGTAAAACCCAGTCTTAGATCAC ATTTAACATAAGGCAAACTTAGACCTCAGACTATCTTCCTTTGTTAAATCAGATTTTGGTCAATAGCCTA AACCAGAGCTCGATACTAATAAGTGCCCGGAACACATTGGCACCTAACATCTTAGTCTGGACCCGCAAGA ACTTAGTGATTAACACAGGGCCCATGCACACAGACTATGAAAAGTTCAATCTGGGCCCCGTTTCATAAAA CTTGTCATCAATAACAAATGCTAAATTTCTAAGACAAATTTGCTCTCGACCAATAAAATGCCACGATTTC AGTAGTTTACAACAGATATTGCAACTTTTTATTGATAACAAGTTTTTATAAAACGGGGCCTTGGACCCCT TCCAAAAAAGTTAGTGTGGAGACCTACCTAAACCAAGGGTTGGGTTTAAATGATAGTAGCTGCAGAATAT TCATTATCAGGTGCATCATTTCTGTATGCTACTCCATAATATATCACGATATACAGTCTCTCTCATGGGT CTGAGAAATCAGATTCATCCTCTCTCAATGCTGCTCTTTAAGATGACATCATTTCATCTTATTTACTATC CAGGGAGAAATTATCACATCCTCACTTTTACATGACGACCAAATCTTAGTCATCACAAAAATGCAAACGG TTTATGCTGCATTTTGAAGACTTTGTTTAAGAATTGGTCTGTGTTTTGATATCAATTAGATTACTTGAAT GTCAAGCTGATCTACCTCCTTTATGTGTACTGTTATGTCATCGTCTTTTCATCATCTCAATATATTCAGT TAGTGCCGTTGTCTACACCCATTTTCTCTGTGAATATACCAATACATACAATTTGTTGATGAAACAGTAA ACCTATCATTTCTGGTTGTAGCATGTGCATCATTCAACCAGAATGTGTCATTGAAAAATTCATCTGTAAA GTTATTACTCAAATTTTTGGAGTGAGTGATAAAATGCTCCTGGTAAAACATTAAAAAGGCTATATATTTT GTAATTAAAATATGAAATTTCCTGAATAAATTTGCAGAATACAAAATAAACAATAATTTTGTTGCTAGAT CTACTTTGATTCAAGCATCCTGGTAAAGATAGAATGTTGTAAAATTTGTGTTTATAAGATAAAGCTGTGA TGCATCAATTGTATAACTTTAAGACTCGATCTTCTGTTGACTGTTGACCAAGTTTTTCCTGATGACATGA AAATATGAGACCTGTCAAGTAGAACATAGTCACTTTCCTCACTGAGGAGGCACGTTGGCTCAGTGTTAGA GCAGTGGTTTGGAACCAAGTCAGAGCGCTAGCGCCCTTTGGTAAGGCATTAATTCGCATTACCAAGGCCC TCGGAGAGGAGTTAAAGCTGTCTGTCCCTTGGTTGTTTACTTACATGCATACAAATGCTTCATTAGCAGT GGGGTAAAAAAAAAAAATTAAAACAGACGACATCAAAACTGTGCCTATTCCTTATGTCCTAATGCATGTA CCGGTATGTATTTTATACATGTATTATACCCAGTACTGAGCAATTCAATACATAGATCTTATTATCAGCC TCTCATGTTTTACATGGTTTGCTGCAATAATGGTCATACCTCATACAAGGTCTTTGTTCAGCATGAGCAA GCTTCTGGTAAGTTGGAACATTCGTTTGTATTACATTCTAAATGAGATTCAGAGGGTCTGAATATGCAGA CTATGCTGAGACTATGTGAGATATACAAGTAATAGATCTTGCAAATAAGAAAAAGTCTGGGTAATTTGGA TATTCTTCCTCTAACTTTATGAAACAAAACACTCCAGAAAAAAAATATCAAAGAGATGATTGTTCTCTGA ACATCAAACAATCATCTTTTTGTACAAGACTTTGTGTGTCTTGAAATCTGGATACGTACACATGTTTGCA ATGTGTGTTGTGTTCATGTATGATGAGCCATGGATTGGACTAGTCTCATTCTTCAGACTGTGTCTATGTT AGAAGCAAGGTGTGTAAATAAAATGATGTATGTACAGTCTTATGATGGTTTGTAGTAACGATGTATGAAA AAGTTTATTGTAAACAAGATGTTTGTTCACGTGAATGATACTAAATCTGAAGGTCCGACGTTGGTATGTT GTCATACAACATTCCTTAAGTCCTGATGGTATGGCATCTAATTTGTCTTTTTCTATTGCCTTTTTCAATT CTGTAAATTTGCTGTAAATTCTGGCATTGACACTATGCACTGGATTCAGATTAAAATGTGGAAAAACTGT TTTGTCAAATAATAACTGTTTATATTAGTGAATGATTCAGAATTATACACAAGCTCCACGAGTGTGAAAA GATACATGTGCATGTCTTCGTCTAAATCAATAAAATATTTGTTAATATTATAAAATTATTCATTAATAAG CCTGTTCCATTTGTAAATCCCATGCATGCAGG
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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