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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
???blast.query???
>XM_030977798.1 PREDICTED: Strongylocentrotus purpuratus protein capicua homolog (LOC100890711), transcript variant X3, mRNA CCACTGTTTATTTCATTTCAGACTCGCGACCCCAGATTGACCCGTCAAAATTTGACATGGACGAGGCAGA GGCTGCCAACATGCTGATTTCATTGGGCAACTCGCGATCGGGAACGCCGTCTTTCGCACCGATACAGCAC CACTCGGCTCCCCATTCTCCCCGATCTGCTTCCAAGACCCCTTCGCCTGCTCACTTTGGCCACCGCAGCC AGACTACTTTCATGCCCATCTCTCAGATGCAACACGGTTCTCACTCTGGCACTCCAAGCCGCTGGGGAAG CAGTACTCCAATCTCTGGCAGATCATCTGAGGTTACGTCTCCTAGACTCCAGCTTGGTCACAGCTCCGGC TCTACCCCAACTGTTCAGACGGGACTCAATTTCGCCACTCCGGTCAGTCCTCACAAGCTCCAGATTCGTA TGGAGCACGCCAAACGCGAGTATTCCAGGAGAACAGATAGCCAGGACTCTGGAGTGGAGCTCAGTGGTAG CACCCCCAAGTCACCCGTCTCGGCCCAGCTCTCTGGGTCTTCATCGGTCACGCCCAGCCAGTTGTCAGGA CAGCACATCTTATCGCCGGTCAACGTCGCCAAGCAGCAGCAGCAAAGAGCAGCACCGACACAAGTTCAGC AGCACCTGCAGCAACAGCAGCATCAGCCTCAAGGAGAGAAAAGCCACTTTGAGTTCCCTCCACCACCGTC TGAGAACAAACTGCGAGCTGCACTCTTGGCTCCACCAAATCAGACGATGTCTGGAAGCATTCATGTCCAG GCAACCCAGACAAGCCCCAGTAATGAGAAGACCAGTAAGGTAGCGCTATCAAAGGAAGGACATTCAGGAG ATGATGTGTTTGTACAGGATAGCAGGAGGAAGCACAAGAGTGGTGACCAGGGGCGGGAGGTTCCCACGCA AGGGGGGCGGATCGTACCCCAAGGGGAGCAACAGGTGGGTCAAGCCCCACTGACACCGTCGGCCTTGATA CCACTGGCATCAAAGGCCGCAAAGGACAACAACAGCAAAGGAGAAAAGAAAGATGGAAGTGGTCACGTGC CTGTCTTCTACTGGCATTCTCTGGTCCCGATCTTCAACATCAGCCATCCCTCCGCCTCCTCCTCTCCAAC ACCCAGTGAGGCCCAAGCCATACCTGTCAATCAACAAGCAGCAACCAATCAGATGCAAGGTGAAACGGTG AAGCTGTCTGGGGTGAGAACAGTGCAGGGAACAACCATCCTGGGCAAACACGATGGCCTCCTGCCAAAGA GAGAGGAAGGACCCAGTGCATTCACCTTCCCACCCACGGCTGGTAGCGTATCTCCTGGTAAGAGACGGTC ACAGTCCCTTAGCTCTCTACCCAAAGATGAGAAGGAACCTCGCAGTCCAAGGAAGAGTCGAGATAAAGAC CACGTGAGGCGTCCAATGAATGCTTTCATGATCTTCAGCAAGCGTCATCGAGCACTGGTCCACCAGAGAC ACCCTAACCAGGACAACAGGACGGTCAGTAAGATCCTAGGAGAATGGTGGTATGCACTCAAGCCCAAGGA GAAACAGAAATACCATGAACTGGCATTCCAGGTGAAGGAGGCTCACTTCAAGGCGCATCCAGACTGGAAG TGGTGCAGCCGAGAACGCAAGAAGTCCTCCAGCGGCGGGACCGGCGCTCATTCCACCAGCCCTATGGCTA GCCCTGGTCCCTTGACTAGCCCAGGCCCTCTGACCAGCCCCTGTCCCGTCACCAGCCCTCTCCAGCTTCT CTCCCCTTCCCATCACATGATGAGCCCCCTGACTAGCCCACTCCCCATGATCAGCCCCAGTCAGCTGACT AGCCCAAACTCCTTGCCTCGTGCTAGCCCGAGCTCGTTGCCTCACGCTAGCCCCAGTAGGATGATGAGTC CTGGAAGGCTCAGGAGTCCCCTGCATGGGGAGATCCACAAGGAGAAGAGGAGGCTCTTTGAGTCTGATAG TGCGGACTCTGGTCCAAGTCCGGCCTGGGAACCTGTCAAATCCGATTCAGACAGGACCTCCGCCCTCGTC ACCATCCCCGAGCAGGAGAAGATGCCGCCCTCTACCATCAAACAGAGTCCAGTGCCCATGGAGCGTTGTC AGTCGGCGGCCATGTTGCAGCTCCCTCCTAAGAAGCGCTCTCTGAGTCTGAGTCACATGACAATGGGAAG CCCGACCAACATCCATTCTCCAAGGCCGACGCTGCCCACGCCCAAGCAGACGACGCCCAATCCCGACAGT ACTCCCGGCACTGCCTCGCCCCCTAAGGCCAAGGCAGGGGACGAGCCTTCTAGCATCAAGCCTCTAGCAC CCCTCACCCCTCTCAAGCAGCGCCCCAGGCCAAGGCTGGAATCGGAGGAGACTCTGAGCGATGAGGAGAG GATGGTGATCGATGAGGAGGGTGACGATGATGTCATTGTGGCCGCTGATGTAGAGAAGAAGAATTTACCA CAAAGCAAACGCATCGATCTGGAATGCAAGGAAAATGTGGAAGACAGTGATTCTGAGACAGAATCTGAAA ATGAGACAACGATTGAGAACAAAGCATTCCCTCAACAGCGCTTTTCGCCAGTCATGAAACAGCAGCTTCC ACCCTCGGACAAGCCCTACAGGCCTAAGCCAATCAAAATCAAGCCTGATTCAAACTCGCCAATCAGGACT GAGATAGGTGGGGATCAGACAGATGGTGCAGCTTCGCGACCGGTGACGTCGAAGAGTACGTTCCAGCCCA CCGGTGCTGTGTTCAAGGCACACTCTCCGCGCGGGAGGACCGATGCTGTCGGGGGGAGCAAAGCGAAAGC TTTCCATGAGTATCATCCATGGAAGAAAGGAAGAGCTGACTCTGGTCAGCCGCAAAATGTGTCAAACTCA GAGCCTGCTGGACAGGAAAAGACAAATGAACCAAAGGAAATTCAGGGTACAACGCATCAGGGATTTGATG ATAGAAGTGCGAAGGACCAGAGGGACACTGGAGTCTCTGGACAAGAGCCTCAGCATTCCACACCCAGAGA GGCACTGGTCAGAAACACTCATTCGGTTGGATTGCCAACCACCGTGCGCATTGCACCAAGCCCAGGGGCT GTGATCGTACCTGGTCATGTGACGATAGCTCCAAACAGGCCATCGTCTACTCCGGCCAACTTTAACCAAT CATTGCCAACATCTGTCATCGTTGCAAGAACGACGGATATCCAAAGCAATGTCCAAGGAGGTGGAAATTT GGCGACGTTGGTGCCGTCGACGGTCCAAGCAATCATGAGCAGAAGATCTACCTTGCAGCGGGCGTCCAGT ATGGAGTTCCAGAGTGGTGTGGTGCAGATCGGGAGACCAGGTGGACTCACAAGTGTGACTATTGCTTCAC CCAGTACACCAACGACTCCTAAGCCAGGATTTGCAAATATCAAGCCCCTCACCACCAACATGATCGCAAC GAACGCTGTCAATGTCAATACGATTCAGGGGAAGATACTCGCAACCCCACCTCCAGCGGAAGCACCGTTG CAGGTCCCGACGACTCCAACCGTGCTGACGAACTTGGTCTTGAAGCCGAATGGGAGTGTGGTGCCGATGC AGACGTACAACATGACCCAGAATCCTGCTATGGCGCAGCTCCAGTACATCCTGCCCTCCATTCCTGCACA TATCAACACGGGTTCAAAGGTCACAGGTACCACCAATGTCCAGGTCGGGAGTCTTCAGCTTACCCCGACC CAACCTCAGTCACAGGTGACCATCAAGGCCGTACCCCAGCCAAACCAGGTCACTCTGGTGACCAATCAGG CTCCAGGGGTTGCTCCACATGCAATATCGGCTACGTCCATCAACCATGCTGCACCCAACACAGGCATGAT AACGCAACAGATCTTCAACCATGGAAACATCCATACGGTTATCCCAGTGATCACGACGCAACCGCTACCG ATGAACCTAGCCCAGCAGGTCGTCACTGTGTCGCAGTCCTCCGGCTATCAGTCCTCTGGCTATCAGACCT CCGGCTATCAGACATCCGGCTTTCAGACCTCGGGCTATCAGACCAACAACTTGACTGCACCTCAAACTCA ACAGAGAGTCACAATAGGTCCCGGGGCGAGCTCACAGCCGGTCAACATCATCACCCAGCCCTGTAGCCCA GTGGTCACTGTGGCCGCAGCAGGTATGGGCAAGTGCACTGTATCCACTCAGGCACTGACCATCGCTAATA CAGCGCTTCTCACGTCACAACAGCAGCAGAGATTCGTCTTGCCACACGGTCAAAGGACTGTGACGTATGT ACAGCCAGCACACGCTGCCTCACCCAGCCCTATGATCATCCAGCAAGGAGACGCACTGAGAGGGAACGGA GGTAAGATCCAGGTACCAGCTCTGATCCAACCAGCCATCATGCCAGTCAAGACTGCCAACACTCAGGGTT CAACTAAGATTTTACCAGCAACCAAAGCTCCTGTGCAGCCTCAGCTGCAGCTCCCCATCGTCACTCCCAA ACCTGTCAAGACGGTACCTCCTCTCAACCCAGTCTTCAACCTCGCCCCTTCCCACCAGCAGACATCCCAC CCATCTCAACAACCCATCACCGGTATCGTCATGACGACCAACCCCGCCCAGCAGACATCCTCCTCCTCCT CCTCCATGTACGCCACGCCCTCGTCGTCCTCGTCGATGACGATGTTTGCGGCCCCGCAGCCAGGCATGAT CCCGTCGGGGATGACGCTGTCGACCACGAGCACCACCACGAGGCAGGTGATGATGCAGGGTACGACTATG GTCGGGCAGCCCATCCCGATCACAGTGTCCATCAAGCAGGGCGATGCAGCGCCCTCTAGAGGAACCATCA GCGGGATGTTACATCATTCCAACACCGCACCCATCTCAACAATAGGTCAGCCACAGCTTCAGATTGATAA CTCGAGCATCCAGCCCGGCCCCAAGAAGATAAAAGCCACTCTGGCTACCATCCCCGTCGTTACCACCCTA CCTCCCCACAGCCCTTCAGGGATCGCCCGTACGACCATGGGCGCTACCATGCAGATAGGCCCCTCCAACG GCACCGTCTTCACCTCGGGGGGCATCCCCTCAGCGAGCGTGGGCTACGCCAGCTACGCAAGCTACAAAGC CATGCCCAAGCTTGCACCCATCCAGAGTGCATCATCCAGTGAGAAAGGGGCAGGGAAGAGGAGTGTGATC AGCGGTGGTGGGAAAGAGGGTAGTTCAGACAAGAGTGCAGTTCCGGGGAAGGTTGACGGGCAGAGTGCGA ACAGGCAGGGTGCCGATGAGAGTCGTGCTCATGTGGCGCAGCCGGCTCAAAGCTCGAAGTATATGACAAG AAATCGTCAGGAGGACTCGAGAAAAGACTCCCAAGCAGATACAAACAAAAAGAGTCTGAACAGGGAGGTG AAAGCAAATAGGAGAGAAGGTGAAAGGCCTCAAACCCATTCACATGTGAATGATAAACCTGCAATGAGAG GAGATGATGATGTCGAGAAGCCGGGTACAGACAGATCGGAAACGGACCAATCGGAGACTATCAGTACTAA CCAAGAAACTAGTGGACAGGATGCAGGTCATGAGGAGGATGGAGGTCATGAGGGGTCAAAGGGCAAGCTG CAAAGGTCATGCAAGGGTCGACTGTACAAAAAACACATGGAGGAGAATGGCAAGGGAGGCAAACCTCCAA GGAGAGAAACTAGGTCCAGCAAATCAGCGGAGAGTCCAGTCCAGGATGAAGAGACCATCTCTCAGTTGCC TAGCAACAAGGATGCAGACCATCTGTCATCGTCATCATCACCAGCACCAGCAACAGCAGGAGGGGGAGAG AGTCCAGAGGAAGGACGGAAGGAGGAGGAGAGAAAGAGGGAGGAACCAGCCGAGTCGATGGAGAGGAAGG ATGAGGGATCACAAGAGGGCACTCACAGACAATCATCACCAGCAGAGATGTCATCCAATGAACCGGCTTC CGCCCCCGCCCCTCGGCCAGCTCACAACAACCCGCCAGATCTCCACACCCCTACCAAAGAAAACGGACTG TCCAACAAGCCTGCCACAGGCGATACTTCTGCTGCATCCGCGTCCACCTCAGTTGCCATGGATATGCATG CATTATCAGGGGGAGAGGCTGCAGGAGTCAAAGACGCAAGGAACCTGTCACACATACTGAAGAGGAAAAT AGACGATGGCATGGAAAAATTCCCTATTTATAAATCCAGGGTCCTTGAGGAGGTGAACTTTGAAGCTCAG TTCAGGCAGCTTCCGGAGTATCATCCTGAGGACCATACCAACGAGAGGAACGTCATGCCCCTCACCGCAG AGGCCATCGTGAGCAGCTATAGGAGGAAGAGAAAGGGCTCCACAAGTAAGAGCGAGTGTGATTCAGACAA CGACCCGACCTCGCCCTGCAAGCTCAAGTCACCCCACCGTAGAAGCTCCAGTAGCTCCGAACCCAGTACG CCGGGCAAGAGAGTGATCGGAGATGACTCTGTCTTTAAGTTCAGTGACAAGTCCCCCATGGAGTCTTATA GTGGCCATATGCGAGATGATATAGACGAGTTTGAAGGAGAGCTGGAACGCTCTGCCTCCTCCTCCTCCTC TTCCCTCTCCACACTGCGAAGGATCTTGGATCAGAGACGGATCCTCGTCACCGAACTCTTCAAGAACAAT GGCTATTTCCCCTCGGCTCCGTCGACTGCTGCATTCCAGTCCAAACACCAGGACATGTTCCCTTCAAAGA ACTGTCTGCAGCTGAAGATCCGTGAGGTCCGTCAGAAAATCATGCAGCAGTCCTGGGATGAAGAAGGGCC GGACGGAGAAGCTGCCGTACCAGGTACTCCGTCCACACCAAAGTCTCCAGCGCCCGGTAAACTTCACCTG ACGTCTGTGAAGAGTGTTCGCCTAGGCGGTCCCAACCCCTCCAGCAAGATGGCTCTATCATCTACCCCTC TCAGCAGCTCCAACTCTGCCCTCACCGCCAAGTTCACCCTAACTCCAGCCCCGCCCCCATCCCCCATGGC ACGAGGGGGTTCCCCCAACCCTCAGGGCTCCCCTACCATGAGCAAGTTCCATTACTCGCCCCACATGAGC CAGCAACCCAAGCCCATGTCACCGTTGGTCAAACTCTCTGCTCCTCAACAGGCCCAACCAGGCTCCCCGG CCCTCCACACCATCTCGGTTCCCTCGCCTGCTCTGCAGCACGGCCAGACCATCTTCGTCTATCCGGCCAG CCCCGGTGTGAACCAGTTCCAGCATGCTCAAGCTGCCCAGGGCAGACCACCTACCACTATTATGCAAGGA ATGGCACCCCCCGGGGCAGCCAGTGGAGGGGTGACACACATAGCCCTGCATGGGCAACCTCATATCAATC TTCAAGGCAATGGAAGTGGTAACCAGACTCCCAAATGAAAATGAGAGTACAACCCCCTTTGTAAAGTTTT AAAAAAAAGGCTCCACCCCTTGAGGAGCCCAACTTATTTTACTTTTCATAAATATCCTTGGAATGCTAGG CAGGCAAAAGCTCTTAACTATTTGCTTTGATGATGTCGCTGAAGGGGTCGCACACCTAGCCCATAAATGG GTCATATGCTAAGAATTTACCTGTTTATTTGCACATGAGGCAAGGAGGGGGAATCTACTTTCCTTGACAC TTTGCTTTGGTCTTCAGTGCAGCAAGCTTTAAACATGAAGTGTGAGCATAGCATGCTGTTTACCAAAGTG ACTTTCACCTCCAAAGTATGGATTTGATGAACTTGAGAAGTGAATGAGCCCCAATCACTGTATGAGTAGA GAAAGTTAAGCATCTTGGGGAACTATCCAGTCACAAGTAATGAGGATCATCTGATCTAGAACAGCTTTGC TTAGTGGCAGAAAAAAAA
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???blast.matrix.pam30???
???blast.matrix.pam70???
???blast.gapedalgin???
???blast.true???
???blast.false???
Automatically set to False for sequences longer than 4500 bytes
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BLAST time is limited to 30 seconds