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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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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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>JT101049.1 TSA: Strongylocentrotus purpuratus WHL22.200017.4 mRNA sequence GGGAAGTCAGCAAAGTCATGAAGGAGTCAGAACATACATCGATGCTGATGATGACAGTGTTCAGGATGAA GATTCTGCGGCTGAAAGTGATTCTGATGAAGGCAATGAAGATAGACAGGATGAAGGTGAAGAAGACGAGG AGGATGAAGAGGACGACGAGGAGGAAGAAGAGGAAGATGAAGAGGATCACGATGACGGCTCGGAGATGGA TGCAGAAGACTATGACATCACTGAAGATCTGGACTACTTCAGGGTCGGTGATCGGGATGAGGATATGTGG GTTGGAGACCCAGATGAGGACATGCTGATTCAATTGGATCCTGTATTCTCAGGTGTTCCTGCATCAATAA GAACGTACCAACTTCCTGTGGCTATCCATGAAGATACCAGGAATGCAAATGATGTCTCAGCTCCTAACAT CCCGGTCCCTCCAAGCGTAATCTCAGCCAGCCACCCCCTCCTGGTCAGACACAGTGACCACACGAACCTG ACCCACGGTGTGAGCCAGACCAATCGTAATCAGAGGGTCGCTAGACAGAGGGTCAATCGTCATGGTACAA CACAGACTGTTCACATCTACCACTCTGGAGCAACAAGGCCACCCAATGTCCAGAATGTCCTGAGGCTGCT GGGCCTGTCATCGTCGACTGACATCGTCCAGCTGACCACCACAAGCACGGGTCAGGGAAACCAGACCAGG GTGTACGTTGCCAACTCTGGAGAGGACATCAACCAGAACCGAGAGGAGGTGTCCGATATCTTTGAGGAGG GGTACAACATGGGGTATTTCAGCGGTTCCAACTTCCTATCTGTGGTGCCTCCTGTGTACAGACGATGGGA CGAAGAGAGCAAGGTGCTAGATGGAAGAAGTGTTCATGATTGTGTGCAGGCCCTCAAACCTGAAATCATT AGTGTTCTGGAGAAGCATCGTGACGAAGAGCTGACAGAACGAAAAGAAAAGAGAAAGAAACAGGCAGAGG AAGACGCCAAGAAGAAGGTAGAGGATGAGGCCAAGAAGAAAGCTGAAGAAGAATTGAAGAAGGCTGCAGA GGAAGCTAGGAAAGCAACAGAAGCAAAGGCTGGGGTTGCAAAGTCAGAGGAGGAAAGCAAAGAGAAGGAA GAAAATATGGAGGTTGGTGAAAGCAGTGATCAGCCCAAGGAAGCAGAAACGGCTACAAATCTATCAACAA CAGCTCCTTCACAGCCACCCAGATCAGGGATAGATATGGGTCAACTTGTCGCAAGTGTTGCCGAGTCCGC CCTTGGCAGTGCCATCTCTTCTGCCCTATCGGCAGCAGCTCTAACCAACACCATTACAACATCCACTACA ACTGCTGTCACCACTACCGCTGCTTCAGACATGGCTGCCACTCCAACTGACACTGCCCTGTCAGTGGCCG CATCCTCTCTTTTAAGTAGCATGGAATCAAGATCTTCAGCACCACTTCAACCTGGACTGACACGTGTGCC ACAGCTCGTAACAGTGACGGCAAACTCACCAACCCCAACTTCAACGGTATCAGCCCAAGCCCCTCCTTGG CAGACCTCCAGGCCAACCACCTCCATCTTTGCTTCACTCATCGAATCAGACATGATGGAAGTACCCTTAC CATCTGTGCCAAATCCACAAGGTTCATCAAGTCCAATTGTTAGCAGTAGCATCACAATGTCTGCTACATC AGCTAACAGACCCGATCACACAGAGACACCTGGGAACATATCTGGGGTCAGTGGTCTACCAGAGGGTGTA GATCCATCGTTCCTTGCTGCTCTACCAGAGAACATCAGGCAAGAAGTCCTCCAGGAACACCTGGGGATAC GCAATGCCCCTCATCAGGCTGCCACACAAGCAGCATCTACCCCTCCATCAGCTCCAGGTGAACCTGCAAT TTCACTTAGTCAGGTGAACCCGGAGTTCTTAGCCGCTCTGCCACCACATATACAAGAAGAGGTACTTGCA CAAGAACGAGCTGAACAGCAACGTCACACCCTGGCTGCCCAGAGTAGCACATCCGCTCCTGTTGTACCCG CTGAACCAGTGGACCCTGCAGCCTTCATCCAGAACCTGCCCCCTGGACTCCGTCAGACAGTCCTTGCCGA CATGGATGATAGTGTGCTTGCAGTTCTTCCTGCTGACATCGCTGCTGAAGCCCAGGCTCTCCGACTGGAC CGCGTCCTGAGACATCGTCAGCTCATGCAGGATCGACTGCTGAGGGAGACTGGTATGCTGAGTGCTATCC TCCGCTATTCAGGTTTGCAAGGTCGATTGGGGCATGGAATGAACTACTATCGTTTGTCTGTACCCCGTCA AACAGGCCAGTCATGGGGTTGGGGAGGTAGTGGTTCCAATCGAGGCGGCAGTCACTCCAGACAGCAAGGA GTGTTTAGTTCCATCACTCAGAACCAGGGCAGACAGCTGGTGGACCTTGAGGCTCTGACCTGCCTTCTGG TACTCCTATTTGTCAATGAACCCAAGCTTAATCTGGTACGTCTGCTACGAGTGCTTCGTAACCTGAGCTT CCATCAGCCTACAAGGCAGTGGATCCTTCAGGCTTTACTCAGCATCATGGAGCGCACCAAGGCCTGTAAG ACACAAGGTGATGGCAAGGCAGCAAGTGCAGAAGCAGATATGATGCCCCTGCAGAAGATGGACTCTGGTT CAGGAAAGGCTTATCAGCAGCCTTCCTGGCTCTCAATCAGCATGGACGCTGCCTTAGGATGCCGTGCTAG TGTCTTCAAGGTGCAAAGGTCCAGCAAAAAGAGCTCTGACAAGCAAGGTTCTCTAGTTTGCATACACCCG CAAGTAGCACCAATGGTGTGCAGACATGTCATGGATGCTCTCCTTGCTCTAGCGAAGGAGTTTCCATACC AATTTATTCCCATAGCGAGCAAGAAAGACTCTCTCAAAGACTTCTCAGGGATTCCTGGTTTATCAAATAT GAGTAGTAGTGCCTCTAGCAACAATGAACGTAAGTCAACGCTCACTTCCAGTCAAGAAATGGGTGAGGAA GCAAAGACAAGTGCAAGTCAGGGTGATTCCAAAGCTAGTAACAAAATAGAATTGGACTTCTGGGACCTTC TGGTACGACTGGACAACACCAGTCAGGGCAGGAAAGGCAAAGTGACATCCCGGCCTTCAACGGTTCCTGC AGCAAAGGAAGGCCAGGACCCAGATACTAGTAATTCAGCTCTTTCCAAACTGATGGCTATGCTGTCACAC CCTGTGGTGAAGCGTAGTACAGCTCTCACTGACAAGCTCCTACATCTGCTGTCCATGGTAACCAGCTCCT TACCAGATGGAGACAAGGATAAGATCAGCAGTCTGCAGTCTGGTGTCATACGGAGACCCAACTCATACCT GTCAGATGCGGTCAGAAGCTCATCAAACCGATCCTCGTCTATCTTGGCTGTAGCAGCGCCCTCTTGTGGT GACCAGTCAAGCAGAGGACAAGCCGCCAGTGAGGACACCAGTAGTTCTGCCATCACTCCTCCTGTAGGTA GTCCCATGGATACTGCCTCACAAGAGCTTCCAAGTACACAGAGTGTCAATGAGGAAGAGTCATCAAGCAG TAAGACAGAACCTCCAGTCCCTGAGAAAACACTGGTAGATGAAAACCTCCTCCAGTTAGCAGTTGAGGTT TTGACAGCACATACTTGTTCTGAAGATGGTCTAGAGGATGCTACCACAATGTTGATGCAGTTATCTAGGG GTCACTCTACCACTAGGGAAGCTGTCCTGAGACTCTTACTCAGAGGAGCACAAGAACTTGGCCAGACGCT CTGCAGAGACATTTTGAAGCTCCATCGTGAGGTCCAAGAATACCGAGCAAGACAGCTCCAGACAGACACG TCCCCTGAAGATCCAGACGATAGCAATACCAACTCGGCCTCTGGAACCTCCTCGTCTGTCTCAGCCCTTC AGGGCTACATCGCAGATCGCTACAGCCCCAGCACGAGTATTGTTATCAATGCCCCTACCACTGGCGCCAA GAGAACTGGCTTTGAGCTTCGGTTGCAGTCCATGGGACTCTTTACGGGCAAGACTTCAAACCAGAACTTC CTGCTGAGGATGCTCAAGGTCATCATCCAGCTGCGAGAGGTTGCCAAGAAGGCTAAGCGGGTGGCTGATA TTCAGAGAGTGGGTGGTCCTAACATTGCTGCTGCTGTAGCTGCCCTGGAAACCAATGCTACAGAGCTGAT GCAGATGATGAGTAGACGTAGCACAGTCCCAGCCAGTAGTAGACAGACTGACAGACAGAACAGCCAGACA TCTCAAGGGGCATCTGGTGCAGAGACCAGCTCAGCTGCTAGCACGCCGTCAGGCACAGCCAACACCACAC CAGTCACAGAACAGCCCCCACCCGTCGCCTCATCCACAGTCACTGACACTGGAGAGGTGGTGAATCCTGG ACGCACTCCCTCCGCACCTGCAGAAACACCCATGGAGGTGGACTCTGTGGTTCAACTGCCAGAAGGGGTG GGAGCACGACAACTGGAGCGACAAGCATCATCCAGCACCACGTCCAGTCAGAAACAAGAGGATGATGATG ATGGTCCTCAGCTGAGTGACCTCCTAGGCCTGGAGGAGCTGTGGGACACCCTGAGCACATGTCTTACAGA GCTCTCCCTCACACCAGACACCCATGCAGTGCTTGTCCTACAACCTGCTGTAGAGGCCTTTTTCCTCGTC CATGCCTCTGACAAGGATGCCGGCAAGGCATCCGCCGCCGCTGCACCCGAATCCTCTCAACCCTCTGCCT CCTCATCCTCACAGGCCCTTCATAGAGAAGGGCTCACCAGTAGTGCCTCCGACATGGGTCCCATCTCACC CATGCCAAATACTGCAGGGTTCTTCGCCAGGGAGAGCTCAGTCACGTCCATTGTTACTCCTAACATGCCG TGTGATATACAGAAGTTCTTAACATTTGCAGAGAAACATCGCAACGTGCTCAACCAGATCCTTCGCCAAT CTACCATCCATCTCTCAGAGGGGCCTTTCTCCGTGCTCGTCAACCACGTACGCATCCTCGACTTTGACGT CAAGAGACGTTACTTCCGTCAGGAGATGGAGCGAGGTGACGAAGGCATGCGGCGTGAAGACATGGCTATC CATGTGAGAAGGGAGCATGTGTTTGAGGACTCGTATCGTGAACTGCATCGTCGTACCCCGGAGCAGTGGA AGAACCGCTTCTATGTGGTCTTTGAGGGAGAAGAAGGCCAGGATGCTGGAGGTCTGCTCAGGGAGTGGTA TCTCATTATCTCAAAGGAGATCTTCAACCAGATGTATGCCCTGTTCCGTACCTCACCTGGAGACAGAGTA ACCTACATCCCCAACCCATCGTCCCACTGCAACTCCAACCATCTCAGCTACTTCAAGTTTGTGGGCCGCA TCATGGCTAAAGCCATCTATGACAACAAGCTTCTGGAGTGCTACTTCTCTCGCTCCTTCTACAAGCATAT CCTTGGGAAGCCAGTCAAATACACTGACATGGAGAGTGAAGACTATGCTTTCTACCAAGGACTTGTATTT CTGTTGGAGCATGATGTCTCTGAACTTGGTTATGATCTCACCTTCAGTACTGAGATTGAAGAGTTTGGAG TGACAGAAGCGAGAGACCTGAAACCAAACGGCAGCAATCTGATTGTGACCGAGGACAACAAACAGGAGTA CGTACACCTTGTATGTCAGATGAAGATGACGTCAGCCATCCGCAAGCAGATCGATAGCTTCCTAGAAGGC TTCTATGACATTATCCCTAAGAAGCTGATTGGTATCTTCAATGAGCAGGAGCTTGAGCTGCTGATTGCTG GGCTGCCTACCATTGATGTGGATGACCTCAAAG
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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