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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_030998421.1 PREDICTED: Strongylocentrotus purpuratus tectonin beta-propeller repeat-containing protein 2 (LOC586665), transcript variant X3, mRNA TTGTAAGTCTATCATCATCACGAGATTGAAAGGATTTCGCAAACTTACGGATTCGAAAAACATAGAACAA AACCGGATTGTGGTTCACTTGTTTGGATTTATATAATAATATCTACGTATCTGAGGTCCATATGAAGAAT TCCAACAGTCACTAGAATTATCTGTAGTCTAGGATGGCGAGCAGGCCAGTATCTATCCTGGAGCTGGTGA CTCTGAGGGAATATGCCCCTTTGGATTCCCTCTTTCGGCTGCTTCCCAAGAAGGCTCAGAGAGTACTTGC TCTCAGTCAGGCCAACATTGATGTAGAATTGACGTGTGTTGATGCAAGCAGCGAATTCATTGTGCTAGGA TCTAACATCTCTATCGTGTATGTGTTTGACAGGCAGGAGCAGCAGCTAGCAAAGTTGAGATGTGAGGATA AGTACTGTCAGGTAACTAGTGTAAAGCTGTTGACTTGCTTGGATCATCAACTGGCTGTAGGGACTTCCAA CGGACATGTTGAGATCTTTCTACTTCCATCAAGATCACATGGACATTCAGTACAGGCCAAGAAATTTGTG ATAGAGAACTTGCACCAAACCAACCCTGTGACGTGTCTAGAATGGAGTAGTAACGGTATGAAACTCTTTT CTGGAGACAGCCAGGGTAGAGTGGTCCAGACAGCGGTAGACTTCTATGAGAATCAATGTCAAGCGTCATG TGTGGTAACAGAGGAGGAAGCTGTGGTACAGCTCAGCTATGCCCACAAGAAACTGCTTGTATCCACCACA GCACGCACTATCATCTGCACACCAGAGGATGATAACAAGATAGTACAGGTCGGACAGCAGCCCAGGAAGT CCAAAGGTAGCTATGGTGCCCACTTTGTGCCAGGCCTCTGCAAACCCAGCGATGCCACCACCTACATCTC CAGACCGGGCTGGAGACTATGGCACACCAACACCGAGGGGACTGTCCTGGAAACCATCATGTTCAAAGAC CTCATCAGCAAGGAGCATCCGTCGATCGAACTGCTTCCAGATACCCCACCTGAAATCATCCCACCACCTA CCGAACTCCAGCTTGGCCACCTGTTCCCGTTCAGCAATGGCCTGCTGGTGAGCTGGTCTCTGTCGGCCAT CGTGATCCTGCAGCCCTTTGGACCGGAGGGGGCGCTAGTCGTTGGCAGTAATTTTGGAGAGCTTGGAAAC TTGGTTTCAGTGGCTGTGACCAGGCATGAGATATTTGCTCTGAGGAAGGGATGTGATAGATGTCTGGTCC GCATTGCTACTGCTCCTGAAATGAATCTCACTAGAGAACCCTCTAAATCAGAGAAGGACTTTGGTAGAAT CCAGACAACCAAGCTGAACGTTGTTGATAACCCTTTCCAGATGATCTTGGTTCCTAGTGCACAAGTGTCA TCTGACAGAATGACTTCTACTAAACTGAAGAACAAATTCAGCTCCATGCGGGGCTTTCTCAGCAAAGCAG CAGATGACTTGGCTGATAAAGCTGCTGAAACAAAGAATAAAATGGAGAAGAATCTTAAGGGTTCCTTGAA GTTGAATCTTCCAATCCCAGAACAGTCTGAGGACAATGTGAGCATTAAGAGTGATAGATCATCCATCAAT GAAGGTGACCAGCAGAGCTCCGATCCAGGGACCCCTGAAGCAATGCTTTCAGATAAATTGTTTGTGTCTG TCATAAATGCTAGCAACATGAGTGGGGAGAGATCCCCAACCTCTCCAACTGCACCGCCGTTCAGAAGCCC AGCCACTTCCTTCAGCAAGCATGCTGATCGCAGTAGATCAAACTCCAACGTGAAAGGAGTGAATGGACAA GCAAGCAGTGTCAATCAGACGAAAGCAGATGGACCTAATACGGAAGGAGTGACTGCGACAGAGGAGGAGA GTACAGCCATAGCTGGAGACAACCCTAAGGAAACCTTCAGCAGTGCCATTGAAGTGACGGCTCTGAAAGG CAGAAAGAACAGTGCTGCAGATAGGGCAGTATCCATTGTAATCACTGAGGACCCAGGTGAGGATCAGTCA GCAAAGGTCATGGAGAACCTGAGCAAAAGACTGTCGTACGCATCAAAGAGTAATCCAGACAATTTTGAGA ACATTGGCAGTGGTTATTCATCTAGCATTGTTTTCCAGACAAAGCCCAAATCAAAAACGAGGAAGAAGAA GAAAACAGTCAAAGGCAATAAAGGTGTTGCTACTATTGGTGAGGTTGGCCAACAGTCCCCTTTCAGTAAA GGTCTTGACAGAGATCAACCACCCAGTCCTAGTCCTAGTCCTGCTATGACACCCAAGTTAGGATCTATTC AAGAAGGAGAGGCTCTAGAAACAGGAGCATCCATGAGACCAGGGGTTGATCCAGAGGCAGTTGCAGAAAG GTTAAGAGCATTTCCTGGTTCCTCCATGAGGAACGGCATTGAGGAAGATTCTAACAAGATAGGTGATAGA GGATCCAACTCTGCTCATCCTGAAGAGAGATTGCTTGGTGCAATGAAAGATGGTACATTAGGGGAACCAT CGCCAGCACCGACTTCTCCCAAGCTTAGCATCTATACACCTCCTCGATCGCTGAGATCCGATGCTGATGA ACTCATGAAAGCAAATATTGCTGAGAACTCTATCAGTGAAACATTAGAATTAAACACACCTCAGAACCCA TACAGAATCGATCCTGCAAGTAACAACCCTTCAGACTCTGGATATCCAGTGAATGGTCTTAGATTGGCAG GTACTGGATTGAGCATCAGCCTACCAAGGTCTTTGAACTCTAATGATATGCTACCAAAGAAGGAAGGTGA TGAACTGTCCCCAATAGTCAGTCCCAGGTCGCCGAGGTCACCGAGGTCACCAAGACGGACGTCTGCTGAG GAAGAAGAAGGAAGACAGGCTAGAAGGTTGGGTATTATCATGGAGGACTTTAACTATAATGATGTTCCTG AGGAAGATAAACAACCAAGCCCAACCACCTCTCCACGTCCACTTTCTCCAGCAGCAGCCAAAGAAAATAC AGATGATGTAGCTCCATTGCCATTCTTGCCACCAAGAAAGAAGCACATGCTCTTCAATAATGTTATCAGA CAGTCTGCAGCAGGTTCAAGACCTACATCTGAGTTTGAGGATATCTACTCTGAGTACAGACAGACAGTGA TCATGATGAGAGAGTCTATTTATATTGAAGATCCTCCCAAGCCTGTTCATAAAGAGGATCAAAAGGAAAC CGCCAATAGCGACAACTCAGAGACAGAGAGCCAAGAATCTGATGAAGGAGAGGAAGGAGAAACATCGCTA CCTGATAGCATACAGCAGAAGCTTGCTGGCAGCTGGATGCAATGCTCCACACCAAACTACATTTACCAGC TTGTAGCATCTGAACGTCACATCTGGTATGTGGACAACCGTGACAAGGCCCACCACAGTCTTACCTCGGC CATCGCCTGTAAATGGAGCAAGCTGAAAGATGCACCCTGCCGCTTGTTGGCGGTGTCCCCATCTGGCAGC ATAGTATGGCGTGTGAATCCCAAGACTAGTCATGCTTGCTCCAGTACAGCCATCACCCAACGCAGTCATG TTGGCTACCGATGGATCGATGCCTCCAAGGATGTGTCCCATGTTTGTCTTGATGAGAACATGGCATGGAT CATCAAGAACAATGGACAGCTGTGTGTTCATAAAGGCCTCAGTCGAGACAAACCTTACACCAAGGACACC TTCATTGACAGCAATGTTCATGCAGTGCAGATTGCAGCCAACAATGGTGCTGTGTGGGCCAGGACATCAA CAGACAAGGTGGTGTACAGAGCAGGAATTACCCTTAAGAAACCTAGTGGTCAGAACTGGATGGAACTGCC AGATGATGAGAACTTGCGGATGGTGTGTATCGCTCTGGACTCCAGGAACACAGGCTGGGCCATCGATGAT GGTGGTATGGTGTGGTTCAGGACAGGAGTCACAGCAGAGAAACCCATGGGAGATGACCAGAAATGGTGGC AGGTGTGTATGAGTGAGTATCTGATGGAGGATCCCAATGTGCTGCGTATGATGGTCAACATGGCAGGGTC AGCAACCAAGGTGGACAGAGTGGTCAATTGGCTCAAGAAACAGTGCTACAAGGCTACAGCCATCGCTGCT AACTCATCAAGCGTGTGGGTGTGCAGCTCCTATCACTATAAGACTACACTGCATGTGTCCAGGGGCAACC TTCTTGGGTCTCGTTGGGAGCTGTCCAACCCTGTTGGTCTAGCAGCATCAGCTACCTGGAAGTGTGTCTG TGCTTCACCATCGTACGGTCCTAGTGGTATGATTTGGGCCCTGCAGACCAGCGGAGAGATCTTCTGCTTC TCTCCAGAGAACCGTAAACCCAACATGGTACAGTCACCTGATCATGTGGCCTTTGAGTACATTGGAGCTA CGTCTGACTCCGTCTGGGCTCTCTCAAGCAACTGGGATGTCTATGTCAGGATGAACATCTCTGAACGCTG TCCGGGAGGTACACTGTGGAAGAAACTGAATCTAAATCAGTTTGGTACCCGTCGCATCGTTCACTTCACC CTGGGCAGTGAGACGGTGTGGGCGGTGGATTCTGTAGGTGACATTCACTTCCGGTATGGCGTCCATCTCC CCAAGCATGATGCCCTCCCTCTGGCCTGGGTCCCGGTGGATGGGAAACCGGTCGGCTATGGCGTCTACTT CACCAATGTCTTCTGTGGTCCTTCCAACAACATAGTATGGGCCATTGACAATAAGAAGAATGTCTACGCC AGGCAGGGGGTGTGCAAGAGTAATCCTATTGGACTCGGATGGGAGCCAGTGGAAGGTACCCAGGCTACTC AGCTGTGTATGAGTTCTGACACTGTGTGGGCACTTTGTCCTAATGGGGAGCTGGCTTGTCGCTTTGGCAT CTCTGCTGATAATGCTACAGGGGACTATTGGAAGAAGATATCAGGCAACTTCAAATATGTGACAGTTTCT CAGAATGATGAACTATGGACAGTCAACAGTGATGGACGTCTCTTCCATCGACTCACCAAGATGTTCATCC GCAGCTCATCCACCAAAGCTGCATCCATAGAAAGCACTCTACCAGGGGAAGATGATTGGGAGCTACTCTA GACATCTTAGACACTCTACCAGGGGAAGATGATTGGGAACTACTCTAGACATCTCAGACACTCTACCAGG GGAAGATGATTGGGAACTACTCTAGACATCTCAGACACTCTACCAGGGGAAGATGATTGGGAGCTACTCT AGACATCTCAGACACTCTACCAGGGGAAGATGATTGGGAACTACTCTAGACATCTCAGACACTCTACCAG GGGAAGATGATTGGGAGCTACTCTAGACATCTTAGACTCTCTACCAGGGGAAGATGATTGGG
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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