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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_030976269.1 PREDICTED: Strongylocentrotus purpuratus dual oxidase 1 (duox1), transcript variant X2, mRNA TGGTATTGAATTGAGTGTTATTAACTGGGTAGAATATAGAGTGAATATTTTCTCAGCGCTACAAAGTGAT CAAACTGGTTTTAGTTTGGTCCCGCAGTGCTATTGAATCGACGCTGTATTTTGTGTGAAGATTCGTGGCG TTCATTTTCTGACGCCGACATTTTGATCTGTACTTCGCGTCTCTTCCCGACATAGTCCTAAGGCAAGGTT CAACAAAAAGTCGGTGATAGGAACGTTTGATCATGACTCCTCGTGATCTACGGGGACCCATTTGCGTGGG ATTGCTGCTGTGTATGATCGCATTATGCTCAGGGTTAACGACAGTCGCCGCTCCCGCGACAAATGCTACC ACTCCCGCAACAAATGCTACCACTCCCGCGACAAATGCTACCACTCCCGCGACAAATGCTACCACTGACA ATGCAACAGAGACAACAACTGCCACACAGCCTGATAACACTACCACAGCCCAGACTACTTCGTCTACTGA CCCTCCCGGCACTACCACCGCTCCTCCCGTAACCACCCCGGCGGATGAAGATGAGCCCATCGTAAACGAC AATGAGCTGCTTAGATCAATCGGAGCTTTTAAGGATGATAGTCATTCTGAGCCAGAGGGTTATGACGGCT GGTACAACAACCTAGCTCATCCAGACTGGGGTGGCGCAGAGTTACCTCTAACCAGGCGTCTCCCGGTGAG CTACGCAGATGGTGTATACGCCATGGCAGGAAAGGACCGACCCAATCCGATGAGCATCAGCAAAGCAACC ATGCAAGGAGAAACAGGACAACGATCTCATCTTAGGAGGACAGCTCTCATGACATTCTTCGGCCAACAGG TAGTAGAAGAGATCTTAGATGCCCAGCGAGGAGGGTGCCCCAGGGAGTATGAGAACATCAAAATTCCCGA TGGTCATGAGTATTTAAAGGAGAAAGAAGGCATCTCCATCATGCCTTTCGTCCGATCCAGATATAGTTTC AACACGGGCTACTCACCCAATGTACCACGTGAACAGCTGAACGAGATCACACCGTGGTTCGATGGCGGGT TGGTGTACGGTACGACCAAGGCCTGGGCTGACGCCCTGCGATCTTTCAAAGATGGTAGACTTGCAGACAA TGGTGAGATTGGTGGAGAACCACAGTTCCCCGAGCAGAACACCCTTGGACTACCTATGGCTAATCCACCT AACCCCATCGCAGAAGGTGCTGCAAGGCTACAACGCTCCGAGCGTTTCTTCAAGCTAGGGAACCCCCGTG GAAATGAGAATCCATTCCTGTTGACCTTCGGAGTACTGTGGTTCAGGTGGCACAACTACTGGGCAGATAA ATTCAAAGCTGAAACAGACTGGGAAGATGAAAGGATCTTCAACGAGGCCAGAAAATGGGTCATTGCTACA TATCAGAGTGTTGTCTTTTACGAGTGGCTTCCTGGATATCTTAACCTTAATGAAAATGAGACCGCAGAGG TGGAATATTCAGGTTACAAGGGATACATTCATCCGGGTATTACTCACGAGTTCCAATCGGCCGCGATGAG ATTCGGCCACACACTCGTCCCTCCTGGTGTTATGCGCAGGAATGAACAATGCGTCTTCCGGACCTCGACC ATGAAATCCTCAGGCTTCACAGAAGATCAAGCCGAGTTCGATTCATCGCTAGGGAACCACGGGGTTCGAA CCTGTAACTCCTTCTGGAACCCACAGCACTCTGTCCGAGAGCATGACATCGAAGAATTCCTTCTCGGAAT GGCCTCCCAAGTCACCGAGAGAGAAGATAACATCATTACTGAGGATCTACAAAGGCGTGTATTTGGACCG TTGGAGTTTTCTCGTCGTGATCTGATGGCGCTTAACATCCAGCGTGGTCGTGACCATGGGTTACCTGATT ACAACACAGCTCGTGTCTCACTCGGAATGGACCGAAGAGAAACCTTCGAATCAATCAATAACGCATCAGC CCATGCAGATGGTGTTGAAACATTCATCAAATCGGATGTTTTGGATAATCTGGCCAGAGTGTATGAGAAT GACATTGATAAGGTAGACATCTGGGCTGGAGGTCTATTGGAGACCACTAGCAATGGACCAGGAGAACTCT TCAGGTTCATCATTCTTGATCAGTTTGTGAGGTCAAGAGATGCTGATCGGTTCTGGTTCGAAAATAACGT CTCTGGCCAATTCACTAATGATCAGATTGATTTCATCAAGAAAGTTAAATTGTGGGATATCATTGTAGCC TGTACTAACATCAACGGATCCAGTCTACAGAAAGACCCATTTCATTACACGCCAGATGATCCTTGCTATG ACCAGCATCCATTCGAGGGGGAGAACCGAACCATCAGTGAAAATGACATGGAAAACTGTACCAAGCTCCA AACCTTTGACTACTTCGAAGGTAGTGAGGTGTCATACGCTCTGTCCTTCCTCGCCCTCGGTATCTGGGTT GTAGGTGTTGTGGCTGTTCTGCTCATCTTGGCTCACATCAGGCAGCATAGTATCCAGGAAGCTCGCAAGC TACAACACAGGAAAACTAGGTCACGTGATCCAAGTAGCCTCAAGACCTATGCAGCTGCTGAATGGTGCGG TAAGAAAGAAGGATCGAGACAAGTCCAAGTCAAACTTGGACCAGGAAAGAAGATCCGAATCACGAATGAG CGTGGTAACAAAATCTTAAGAACTGTTGACCTCACCCACTACACCAAGGTCGGTTTACTGGTATCCCCTG ACGGTAAGCGTCGTCACCTGGTCGTCAAGTTCGATCGCGAATACGACATCGTGTTGAAGTTCTCTGACCC CGATAGCCGTCTGGAGTTCATCAGCGACTTCGAATCCTTCCTTGGCAGTGAAGAGGTCGGTGTTGGACGT GAGAGGCAAGAGATCGGAGAGAAGGAACTTCTCAAGGTTGCCGTCACCAAGGAACATCGCACCAAACTTC TTGAGAAATTCTTCCTGATGGCCTTCTCCCAGGCCTTCAAGCTTGACTTTGACCCTGAGAACCTGGAGAG CCTGAACAACAAGGAGACCAAGGACATCCTGGAATGTGAGCTCACAAAGACAGAATTCGCCGATGTTCTT ACCATGAAACCCGACTCCCTCTTTGTCGAACAGATGTTCGAGCTCGTCGACCAGGACAACAGCGGATCAA TTTCATTCAGAGAGTTCCTTGATGTCATTGTCGTCTTTGCAAAGGGACAACCTGAAGACAAACTGAAACT GATGTTCAACATGTATGACATCGACAGGTCTGGTCATCTATCCCGTGAAGAGTTCAGGCAGATGTTGAAA TCTATGATGGAGATGGTGAGTGCTAGCGTTGAGGAGACTGATCTTGACAAGCTGATCCACGATATGTTCC AGAATGCTGGCCTTGGAGACAAAGAAGCACTTTCCCTGGACGACTTCATCGCAGTCATGGCTGAACATAA GGATGAGCTAAACAATGCTAAACTCGACATCGCTGGGAACATTCCGCAGATAGCAGGTCAGAAGGATGCT GGACCCCCTGGTCGTGGGGCTGCCACCGTCATCAGGAGAGGCAACCTTAACTCCCGTGCCCGACAGACTA TTATCCGAGCTTACAAGGACCGTGACCAGGCAAGTACCAAGGCTAACGGAGCAGCTAAGGGTGCTGGTGG TAGTGGTGGAGGGGTGAGGAAGCGTGCCCAGTCTAAGAGTGTCCGCGTTGAGACAGTCCAACAAGAAGAG GCTAAGACTCAGAGCAGCAAGGCTTACAACACAGTTGTCCGCTTCTTCGAGAACAACCGACTTCAAATCT TCTACGTTGTTCTCTACTTGCTTGTTCTAGCTGGAGTCTTCATCGAGAGGGCTTATTACTACTCTGTCGA GCGTGAGTTTGCTGGTCTTCGTCGTATTGCTGGTTTTGGTGTGTCTGTGACTCGTGGAGCTGCCTCGGCC ATGATGTTCACCTACTCGTCCCTCCTCGTCACCATGTGCAGGAACACCATCACCAAACTAAGGGAGACGT TCCTTCATCGTTACGTCCCCTTCGACTCGGCTCTAAATATGCACAAGTTAATCGCCATGCTCGCTCTTTT CTTCTCAATCATGCACACCATCGGCCATTCCATCAACTTCTACCACATCTCAACCCAGACTGCTGATGAT CTGACTTGCTACTTCCGTGATTTCTTCCACCGTTCCCATGAGCTTCCAAAGTTCCACTACTGGGCCTGGG GTACTATCACAGGTTTCACTGGTATCCTCTTGGTAATGGTATGCACCGTCATTTACACCTTTGCCTTCCA GTATGCCCGTCGCCGTGTCTTCAACCTGTTCTGGTTCACCCATAACATGTGGATCATCTACTTCATCCTG ATGTTCCTGCACGGCTCTGGTCGTCTTGTTCAACCTCCGTTCACACATTACTTCGCCCTGGGCCCCATCG TCCTCTTCACCTTGGACAAGCTGGTCAGTATCAGCAGGAAGAAGGCAGAGATCGCTGTCACCCGCGCTGA ACTCCTACCATCAGATGTGACCATGCTTGAGTTCAAGCGCCCTCAGGGCTTCGAGTACAAGTCTGGACAG TGGGTCCGTATCGCCTGCAAGACCCTGTCATCCAGTGAATACCATCCCTTCACCCTGACATCAGCTCCTC ATGAAGAGAACCTATCCCTTCACATCAGGGCTATAGGACCATGGACCATGAATCTCAGGGCTACCTATGA TCCTAACGTCGTGCGCGAACATCCTCTACCTAAGTTGTTCCTTGATGGTCCATACGGAGAGGGTCATCAG GACTGGTACCAGTATGAGGTGGCTGTGCTGGTAGGAGGGGGCATTGGTGTTACCCCATTTGCCTCCATCC TCAAGGACATCGTGAACAAATCGACCATCGGTGCCCGCGTTACGTGCAAGAAGGTCTACTTCATCTGGGT GACCCGTACCCAGAAGCATTACGAATGGCTCACCGACATCATTCGAGATGTAGAGGACAATGACACAAAT GATCTCGTCAGCGTTCATATCTTCGTCACTCAGTTCTTCCAGAAGTTCGACCTCCGAACTACTATGCTGT ACATCTGCGAGCGTCATTTCCAGAAGATCTCCAACCGATCTCTGTTCACTGGTCTCAAGTCCATCACTCA TTTCGGACGTCCTCAGTTCACTTCTTTCCTTCAGTCACTAGAGGATGAACATCCTGGTGTGGGAAAGATT GGAGTGTTTAGCTGTGGTCCACCAGGTATGACTGGTGGAGTGGAGCAGGCATGTGTAGACCTTAACAAGT TCGATGGAGCAGCCTTCATCCATCACTACGAGAACTTCTAA
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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