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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_030996507.1 PREDICTED: Strongylocentrotus purpuratus microtubule-associated serine/threonine-protein kinase 1 (LOC590093), transcript variant X6, mRNA AAAAGTTCACTTCCATTCTCTGCGATGCTGAGCAGTGAGTGAGGCAGTCTGCTGGTGTGCGACGGTGGCA GTGCAGAGGCGGTGGTGTAGAGTGTCGCTTATCCTTATTATGTTCTGCGGAGGACTGGCATGAACACACA GTGGATTGAATGGGTGACTGACTGACTGATGTCAGTCAATCGGTTTACAGACTGCATGCATGTTGAGTGG GAGTAGGTTGTATAGGATTAGGTTACATCTATCAGCTGGTAGTTGCTAGCTAGCAGTGGGTTTTCATTCT GTCTGGGAACCCTGGCCCTGCTGAGAACAGGATATTCGTTAACCTTGACTGCAGCCAGGTCTAGTGTTGC TGAGCTGAGATGACTTTGTTTTCATGTGTACTGGGAATGCATTAGAGGCTCGCTGGCTGTTATGGTATCA GTGTGGTTTACTGTCCATGGTTTTAGGTTACATTATGTTATTGCGACAAGATACGTTTGATTCAAAATTG AATTTTGAGGACAGTTTGCCAGTTCACATTACACTTTTGGAGAGTGAAGTTTGAAAGTTGTGCCAGTCTC TGTTTTGATATTTTAAAAAATACAATTGTCATTGTCATTTTTGCAACGCAGTTAAACTGGTGGCTTAAAT GCAAAATCTTCTCTAAGTTTGTCGTCTTGGGTGAAAGGCTTGCGTCATCCAAACTAATGAGTTCACCTCT GCTGCCTCCAAAACAAGATGGAACCCCACAAAGTGGGCACAGCTCCATCGTCTTGTGGTGACCTAGTGTC CATGAGGGGCATCCTTTGACAGTAATCAAAGAACACGTAGGCGTGGATCCTAGCTGGCTGTCTTCTTGTT TCTTCTATTCTTCATGTAAATGAGCAGCTGTAGGAGAAATATTCTTTTTATGTCTTTATGACGTCAGTCT GCTCTACTCTGCCAGAAGGTGGTTAGTCCATTGGGAAGGGACTCGACGCCCCTTCCATCAGCCTGCCTGC CAAGTGTCATCTCTGGAATAGGAGGAGAGGATATCTGCATACATGTGTGTGTATTGTGTGTGCATCATAT TCTGAGGATCTCTGGTATTTCATGGACGTCGACGGTGAAGCTAGCTCGCATCGTACCATGTGTTTCATAC ATTGCATCCTGCTGACTTCGAGACAGACGGACAAAACATGTCATCGCTTGTGCATCTCTTAAATCCATCT CAGTCTGGCCTGCCTCCTTAATTTGAGGGAAGGCCAGGAACACGCAATTTTATTGACTCGAAAAGAGAGA CAGTGCTTCAGGGCTTTTTTATGTTTCGACTTCAGTACAATTGAATTTTGAACAAGATGATGTCCGATTT GGAATGTGATGTCGTCATGTCTTTGGTCCAGCGGCGACCGCGGGCTCGAGCCCCATGTCATATCAACATT GTGTCTGATGGTGAGGACTGTGGCAGACTGACCCTCGACTCACTGCATAGCCCCAAACCAAAGAGCGCTG GATTCGCCACATCCTTACCCCGCGGTTTCAAACTAGCCCGCCCCCTCTCCATTGACGAGAGTCGCTATGT CAGGCGCGGTAGTCTTGGAGCAGCAATGATGGGACCGTTCCACTTGAGCGTAGGAAGTTCCACCGGCTAT CAGTCCAGTACGACCAATGCCTTGACCTTAGGAGGGGATTCTGGTAGCAATCTTACCAGGATGAGGCCGC TGCTAGGACAGTCTGCACCTTCACTGTCAGCTAGTCTGAAGGAGCTGTCACTAGTACGGAGAGGGAGCAG TTATGGACGAACCAGGAAAGGAAAAAACAGTTCCCCGGTGATGAAACGTTCAAATTCTCCTGGTTCTCAT GGCGATGGTATGTATCTACCTGGGAGTCCTTTGGAGAGTCCTCGAGTGCCGATCCACCCTCATGCCCACT TTGCCTTTAATTCTGTACGTCAGGCTGACGGTAGAAGATGGTCTCTGGCATCCCTGCCGTCATCAGGGTA CGGTACGAACACACCCAGTTCAGCTGTATCGTCGTCCTGTTCAAGTCAGGAGCGTCTTCATCAGCTACCC TACCAGCCCACCCCTGAGGATCTGCAGCTTCTCTCGCAGCATTTCAGTAGCAGTGAGAGTAACGTAGGAG GGGACCAGGAAGATGGCAGGAGATCACCTTCATGTAGACCTCGATCTAGGAGTCTTAGTGGTGCAAGCAG TCCGTTGGTGGGTAGTACGGATCATGAGATGCTACACATGAACAGCCTCTACAAGGAGAGATTCCCCAAG GCAAAACAACAGATGGAAACCAAGCTCACTGACTTTATTAACAAGTATTCAATGGATATGAGCCAGGAAG GGCACGATGCAATCTATGCTTTCCTTGTCCATCAGACGGTAGAACTAGCCCGGGACTGCTTAGAGAAATC ACAAGAAGACCAAGTCTCCCATATCTACTTCACTGAGGTGTCCCACAAGGTCCAAATGCTAGCAGAAGAT GCTGAGAACCGATCTCAAGTCTCTGCCAAGTCATTTACGAGGGTAGTCAGAGACCTACTGATGATACTAG CCAGGCCAGCTAGACTTCTTGAATGCCTGGAATTCGACCCTGAGGAGTTTTTCCAGCTGTTGGAATCTTT CGAGGACCAGGCCAAAGTTGGATCCACTATTTCAGAAGACTTACCAAAGTACATCATCCACCAGCTAGGA CTTACCAAAGATCCCTTGGCATATTTTGATCACTTTCCAGACGTGGGCGACCTGTGTGGGGATTCCCCCT CACCGCCACGCCAGGATTCAGGAGAGGATGAAAAGAGTAATGTTGATGGTAGAGACTGCTTTAAGGAACC AAGAGAAGAAGATTTTGAGAACATCAAAATCATCAGCAATGGAGCATATGGTGCTGTATACTTGGTGCGA CATAAGGCATCTCTACAGAGGTTTGCCATGAAGAAGATATGTAAGCAGAACATTGCCCTTCGGAACCAGC GGGAGCAGGTCTTTGCTGAACGTGACATCCTCACGTTTGCGGAGAACCCTTTTGTTGTTGCTCTCTACTG CAGCTTTGAAACAAAGAAATATTTGTGCATGGTGATGGAGTATGTAGAAGGAGGAGACGTAGCTACTTTG ATCAAACATATAGGACCACTTCCTCTAGAAACAGCAAGATTATATTTTGCTGAAGCAGTACTAGCCATAG AGTATCTACACAGTTATGGAATCGTACACAGGGACATCAAACCAGATAACATGTTAATTACATCGACAGG ACACATCAAGCTGACTGACTTTGGTCTGTCCAAGATTGGTATCATGAGCTTAACAACAAACCTGTATGAA GGCAACATCGACCGGGACACCAAACAGTTCCAGGACCAGCAGGTATGCGGCACACCCCAGTACATCGCTC CGGAGGTGATCCTCAGGCAGGGGTACGGCAAACCGGTAGACTGGTGGTCTATGGGCGTGGTCCTCTATGA GATCCTGGTAGGATGCCCCCCTTTCTTTGGTGAGACTCCGGAAGAACTCTTCGCACAGACGATCAATGTT ATGATTGAATGGCCCGACGGTGATGATGCCCTATCGGACGAGGCCATGGAACTGATCAACGGTTTCCTAC AGCAGGACCCTCTCTTCAGACTGGGTACAGGGGGCAGTGAAGACGTCAAGGGACATAGATTCTTTCAAGG GGTTGACTGGAATGGTCTGCTGAGGCAGAAGGCTGACTTCATTCCACAGCTGGAAGGAGAAGACGATACA AGCTATTTTGATGCGCGCTCAGAGAGATACAACCATGAGCTGGACTCAGACGACGATGAGGACATTCCTG AAATTGGCAACTTCTCCACCTTCTCCCCGCGGTTCAGTCGATCGTGCAGCAGCGTATCACAGTCATCCGA TGACACAGAGAGAAGAGAGAGGTCTCATAGTGCTTCGCTACCCCTAGGGGATCTATCCCATCATTCCTTG CCTGCCAGGAACTCTCCGCAGCTCCTGACGGTGGATGTTGACAGGGCTAGTAGCCTCCCAGACAGGACTG CCAATGCCAAGGCCGCTGAGCATTCTGACGCCTCCTCCACCTCCCCCTGCACCCCGCCCCACGACTCCTC CCCTCGGTCCCGCCGTCGGACCGGCATCGCCCACAAGCCACCCCTCCGGGAGGTCCTCCCTCGCTTCTCC ATCTCGTTTGACGAGGACAGCCCATTGGCATCGTCGCTGGAGTCTCAGGGTTCTCTGGGGTCGTCAGGGT TCCTAGGTGCAGGAGATGGGAAGCACATCAGCTCCTCCTCTGAGAGACAGAGTAGAACGGTTGTCAAGTC AGCATCGTCTAGTATGCTGTCTCTTATCATACCATCAGATGAGCTTCATGTGCCATCGCCCATCAACTCC CCAGGAGGAGAATCAAGCAGCTCCAGAGACGATTCTCCGTCTAGGGATCCATCCATGAGTAGCATGAAGT CACCCATCGTCATCAAGAAACCACCGCGAAGGAAGACCATGGGATTCCACATGCAGGCTATCAAGGTCTA CCTAGGAGAGTCCAACATATACACACTGCATCATCTAGTTAGGCATGTTGAGGAAGGAAGTCCTGCGTAC GAAGCTGGCTTGCGACCCGGAGACCTCGTCACTCACATCAACAACGCTCCAGTAGAAGGCTTGATCCATC GTGAGATAGTAGAACTTATCATGAGTGACACACAGGTTGTGATCCATGCCGTACCCATGGTCAAGACAAC CATTCAGACATGTGGACGAAGGAATACAACGTCCAGTAAGATGGCCAGGAGAAAGAAGCCCAAGCGTAAA AGGGACTCCGTAGAGCGAAGGCGGCGCAGTGCAGTATTCAGAAGGTCGAGTTTGAAACGGGCATCGACAG ATGGAAGCAGGGCTAGCTTAGCAGCATTAGGCAGGCAGGGAGGGACGGATACATCTCCTCGGTCGCCGAC ATCGCGGTCACCACGTTCCCCTCCCATGTTTCACATACCTAGTGAACATTCAAGCAGCACACCGTTGACA TCGTCACCCAACAGTTCTCCATCATCGAGCTGCCCTAACTCACCCGCTGGACACTACACATCATCCAGAC CCAGCACACTGCAAGGTCTGGCTCATAAACTACCCTTCTCATTCAGACCTGGAGGGAACCGTAGGAAGTC AGTCGGTCACATCCCACTGTCCCCTCTAGCCAGGACCCCCAACCAGTCACCAGCCCCTAAATCCCCTGTT CGTAGCCCCAGCCCTCTGGCTGTGGTGACCAGTCTTGGGCATTCTCCTGGAAGCTCCAACACCACCCAGT CCTACCCCGCCCACATGCTGAGCAGCCCCACCCTGGCTGCCCCTATGAAGGTCAAGACCAAGAAGTACAT GCGCTCTAGGAACCTTGAGACTCCGCCGTCACCGCTCCTCAGAAGGGCTCTCTCACCAGACCATGAAAAG ACCATGGACATGTTTGATGTTCAGCTCAGACCTCGAGCGGACTCAGCTTGTGATGCTCTCTCAAGGGAAG AGAGAAGTCTCAAGAGATTAGGCATCTTCGGCAAAGAGAGGGTCGCTGAGAGAAAATCTACAGGGTCCAC TTGAGATCAATCTTGATCATGTGTGTAGAAATGCAAAGTATTCAGTCTGCTATATATGTATATTTGACAG TTTTTGGATATGATGGTCTTTGGTTTCACAGTGTCTGAACGGAAGACTCTCAAGCACATGCCATGCTGTG TTATGTGAGACAGCTTTAAGATACAACCATGGATGGTTTCGTCTTGGTAATCAAGACCAGATTTATTTTG CTGAAACAAATTGATAAACATAAGAGCATTGCAATTTACCAAAAGTTGATTAGAAAGTACTTTGAGTCAT CATTAATTCTTTATTCTTTGCTATTGTGCCTGTATGTTTTGCCAAAGATGCTGAAATAAGAAATAGATAA TGATGCTGACATAGCTGGAGTGATAGCATTCATCAACAACCTCACTAGCTCTTTTTTGGTCCACTTTAGT CCATACTGTAGACTGCCATTTCAGCATATGGTACGCACACACTGTATGTGTGCCAAAAGTTGACTGTGGT AATTTGAATAGTCGACCAAAGCAAGGAAGGGTTACAGTCTGTGGAATTAACATGACAGTAAACAGATAGT CGGTCTAAATAGAGATACAAGATGCACCATGTACATGAATGCATAGACAAGTTGGATACATACATGTTAG GATTATAATATGAGGATAAAATGGTTGCAAAATGAAGTAGTGATTTTGACATAGAAATTTGAACGAATCA TTTACAATAAGAACAAATGCCACATACGCATCAAAGACAAAAGACACACAAAGGAGGGAGCATTGGCATT TTAAATTCCTGCTACCTGTATTATTTCTTTATGAAGGACTTTAAATTTTAAAGTAACAGCATTATAGTAT ACTTGGAGTGTAATTTTGGGTTGAAAAGTTGTAAGTTGAACAATTTTCATCATTAGATTTCATTTTGGCA AGATGTGAGGATTTTAGAAGTCTTGTGATGAAAAATGTGAGATGTCAAACCGCAATGCACTACACTTTTT GTCAGCATTAATTTAATTCTAATTCAACATTTAATTATTTTTTTTTTTTTCATTAATGTTCTCTATTGCC TTTGATGAAGAAAAAATCAGTTTAAAACAACATTTGTGCTATTGACAGTATTATTGATTTAACAAATTTT ATTTTTCATTTGAATGATATACAAAGAAAAAGTCTGGCCTTGCATGTTGATGAATTATCAAAACAGAGTG GTGCATTTAAAGCTAACATTTCCTGATTAGTTACAATTAGAATTATTAATACCTGCAAAGTCTTGCACAA TTTACAAGTAGTAAAGTGAAGACGATACTGTCATTTGCAAGAAAAATACCTTGATGTTGCATATTAGTAA CATGATTTTATGATCATGAGTAACAAGGTACATGTAAATGGAATTATCGGACAAAGCAGGTGTGCAGGTA TTATGATTTCTAGTTTGTTGAATAAATTTGAGAGTTAATTTATCTTATTTCATGTCCAATGAAATGATTT TGCAATGCTCATAATTTCCTTCCACTAAGGACTGGAATAACTAATTTCATTCAAATGCTAAACTGCCTTG TGAAG
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???blast.options???
???blast.eval???
???blast.eval.01???
???blast.eval.10???
???blast.eval.1???
???blast.eval.001???
???blast.eval.minus5???
???blast.eval.minus25???
???blast.eval.minus50???
???blast.eval.minus100???
???blast.numalign???
???blast.numalign.25???
???blast.numalign.1???
???blast.numalign.5???
???blast.numalign.50???
???blast.numalign.100???
???blast.wordsize???
???blast.wordsize.default???
???blast.wordsize.2???
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???blast.wordsize.5???
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???blast.wordsize.13???
???blast.wordsize.14???
???blast.wordsize.15???
???blast.wordsize.default.message???
???blast.matrix???
???blast.matrix.blosum62???
???blast.matrix.blosum45???
???blast.matrix.blosum80???
???blast.matrix.pam30???
???blast.matrix.pam70???
???blast.gapedalgin???
???blast.true???
???blast.false???
Automatically set to False for sequences longer than 4500 bytes
???blast.filtering???
???blast.on???
???blast.off???
BLAST time is limited to 30 seconds