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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_030977682.1 PREDICTED: Strongylocentrotus purpuratus short transient receptor potential channel 3 (LOC586844), transcript variant X4, mRNA GTTTGATGTAACTCGTAATTTTAGTCTTTGGACTTTTTGACGAGATTGAATAAAACCTAATTTGAATTGA ATTGAATGAGAATCACCGCGAAATCATTCAATTTGGATCATGTTTGTTCGTCATGATTACTATGCCATTG TGGTTTTTAATAAACTGAACTGAACCGAAGCAACGGGCTGGTAGGTGCAGGGCGAATTCAGTGTTTGGCA CTGGTGTGACTCACATCGCCATTGTTTGGAACAGCACGAATTTGTTTGGAACCAGCAACCTTGGCGACTA TGAAGTCACCCTTCGGTACTTCATAAAGGTTAACCTCTCCAAGTGTATTAATCAGTGATGTATGTCTATT GTTCTATTATCTGTCACTGAATTCTGTCGAAAACTCAAAGGTACTATGTTATACTCATCGTTAAACGAAT TATACTGGCTTCCGGTTGCTGACATTACTGAGAGCTTACTATACCAGAAACCAGTTTTAAATATTATTTG TCAACCACACTTCATCTATAGTTGTGTTGGTAATTGCCTATGCCGTCACCGTGACCATATGGTAGGAATA CTCCCCCGGGAGTGGAGATAATGCACATTGTGCGTGAAGGTATTCCGTGTTAAATATTATGATGGGAGTC CCACAAGGTTCGATTCTGACGACACAACTCTAACAGTCAGCGGGAGTAATGTCACAGAAGTAGAACAAAA GCTTACCAAAGGACCAGTAGAGCAGGCCCAATATCAGGCAGCATATAGGCTAGTCCACGACTAGCCCGAC TAGCCCGACAGCCAAGATGGGGGACGACGACTCCGACGTGAGTTTGACGCCGCAGGAACAGTTCTTCCTC GCCGCGTCGAAGGGCGACGTAGCTGTCATCAAAGCCCTGCTCGATGGCCGCCCCGAGAACGGTGTGGATA TGGACGCCAAGGATGAGAGTGGTCTGAGTGCATTGAATCTGGCAATAACCGAGGGATATCTAGGGGTGAT GTACCCTCTACTAGAGGGTAACGCCCATATTGGTGACGCCATGTTAAGAGCCGTCGACGCTGACTTCCAC GAGGCTGTACGAACCCTGCTCCAATTTGCTGAAGAAAGGGACGAGAGTGGTCGAATGGCGATCATCAACT GCAGATGCGAATCGAGCGACATTCATCCGGACATCACCCCTATGATCAGGGCGGCACAGCTCAACAGCTT TGCCATAGTGAAGATGCTTCTGGAGGCAGACCTGTTGATCCCTGAGCTGAACACGGATGCCTTCCAGGAT GAGGCTGCAGATGATCTTCAACGGTCCGTAGGGACCCTTGAGATCTATGGTGGACTGGCCAGCGAGGCCT ATGTATGTCTAGCAAGCACCGACCCAATCGACCGGGCTTTCACACTGTGTGGGATTATGAAACGGATAGC TATCCTGGAGGTGGAGTTTAAAGTGCGATATCTCGAGCTAGCGGATAAAATGGAGAGGTTGGCCGCCGAA CTTGTATCATACGCACGCGATTCCGAGGAGATCAATACAGTGCTCACGTTCCAGGAGACTAACGCACTGA ATGGGGGCGCCCAGAATCAGCGCCATGTTGGAAACATTCCCAAAGTGACACAAGCTATCCAGTATGAACA ACGACAGTTCGTCGCGCACCCGAACACCCAACAAGCAGTTTCGGCCCAGTTCTATCGCCACCTCGCCCAT CTCCGTGACGAGCCGCCCTTGGTCAACTTCCTCGCTTTCATCGGTCTCGTCGTGGCTTTCCCGTTTTTTT CAATCCTCTACAAGCTCGGCGTCTCCACACATATTCGGCATCTTGTTCGAACTCCGTATGTCAAGTTCGT GATGCAGGCCGGGGCAGACTTTAGCATGCTTGTCATCTTGTTAAATATAGACACATCATCACACCTGCAT AACATCATCATGACACGCAACCAGTACATTGTGCATTTCATACTCCTGCTCTTCGTGGTTGGATTGAGCT GGAAGGAGATGTACTTGGCTTACCTATGTGGGATCAGGAAGATTATGTCATCCTTCGAGCATATCAGGGA CACCCTCATCTCCATCCTGCTCATGGTCTACTTCGTTTTGACCTTCCTCAGCATGTTCCAGGATTCGGGG ACATGCCCTGCCGCACCGACCATAGACCCGAACGCCGTGAACGTCCTTGAAAACTCCACTACCAACATCG GTGGCATCACGCGTCTCAGACTCGAAGAGATAGAACTCAATGGCCCCTCCCGGGACGTCGCCATTGACAT CATCATCGAAATACTTGCCGACCTCCGCTGTGTATCATCACCTGCCCTGCAGATGGATGAAGCAGAAGTA ACCACAGGACCGCCATCAACGTCAGATTGCGAGAAAACGAATTCGATCCTGTCCCGAAAATGGAACGATC CGTCTCTTATCGGCAACGGTATCTTCGGCATCGTCACGGTTCTAGCCTTCACCAAGTTGATGTCATTCCT GATCGCAAACGATTTCGTCGGCCCGCTGGTCATCTCAGTCGGCGACATGGTGAAGAGGACGTCGAGCTTC TTCATCTTTGTAATCGCTGTCATCATCTCGTTCTCTTCGGCGATGACGTTCAACTATAACATCTACAGCC AGGGAGACATAGAGAGATGTGAGACGAATGATGCACATGGAGACTGCGGCAGGTCTTACGAGTATAGGAA CCTGGGACGCAGCATGATGTCCCTCTACTGGTCACTCTTCGGTCTGATTGACCGGGATTCCTTGAACATC AAAGCAACGCCCGACGTCATCAGGGGTGCAGGAGAACTCCTTTACGGTGCCTTCTATATCTTCGCTGTGT TGGTCCTCCTCAATGCTCTCATTGCCGTTATGAGTAACGTCTTTAACAAAGTAGAGGAAAACGCCGATGT GGAGTGGAAATTCGCCCGAACCACGCTTTGGATGAGTTTCCTTAACGACACCGTTACCGTCCCGCCGCCG TTCAATTTGTTGCCTGATTGCAGCCAACTTAAGCAACGTCTAAAGTTATGGTGGCAGATGTGTCGTCGAC GTCGAAACATTCAGACAGAAGTGCTTCGTGATTCCTTAAAATTGAATGATATGCAGAAAAGGAAAAGAAC TTACAAGCGAGTGGATTTGTCCAATTATCAGCGCATTATGCGGAGGCTCGTTGAACGTTTCGTTGCCGAG CGGACTGCCCAGGAAGCTAATGCACAGGGAGGTATCACCGTGGCCGATATCAGGAACCTACGAAACGACG TCGTGGGATTGAGATATGAAACATTTAAGCAGTTGTGTCAGATGAATGAAGAACTGGACAGGTCGAAGCA ACAGAGTTCAGCGATCAGCGGGCAGTCAAATCAGGCCAGTGTGGTGTTCACACGAACAGACAAGATAAAG GACGAGGTTCACGAATACAGCTCGGGTCTGGCTGAGGTCCAATCCGAACTCTCGCAGAAGCTCAAGATCC TCCCCGCGCTCGAGGAGCTCATGCGGGAACTGGCCGAGATGCACAAGGCGAGCGGCGTGCCCGAGCAGTG GGGCAAGCGGGTCCAGGACATGGTGGGTTACTACGAGGAGGTGAAGGACATCGTGGCCGCGAGCAAGGAT CGACAGGTCAGGACGAGCTCCTTCAACCTGCGACCCGGAGTCAACGTGACCTCGGAAGATGAGGACGGGC AAAAGTCGAAAGTCTCGTCTTCAGGCAGTAATTACTCCAAGGTAAATTTTCGATTCTAACCGAATTCTTC AAGTGTACCAATAACCTGAAAGAAAGAAAGAAAATGTATAGCTAGAATGTATGAAATCAACCTTATAAAA TCCTTAAAGTACATTGTTGAAGGTTGATGAAAAAAAAAATTGAAATTTGTGTATGAAATGTTACTTATTA TATTCCTTCTACTGTACTGACCCTCTAACGGGCAAAATAT
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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