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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_038206291.1 PREDICTED: Patiria miniata unconventional myosin-XVIIIa-like (LOC119732660), transcript variant X4, mRNA GTCGCCCTTGCGAACACCGCTAACACACTGCTGCCATTCATGCTATTTGGGGTTTTTAAGTGAACATTCG TACACCCCTTTGGTACAGAAAAACCCGAAAAACTACAAAATCTGAACTCGACGTGTCAATCGCACAGGGT TTCAATTGGAGGTGAAGTGACCAACTGCCAGCCATGTTTCACTTCAAGAAGAAAGACCGCGACTCTAAGA AGGAGTCCAAGAAAGAGAAGAAGCAGGAAAAGCACAGCATCAAGCAGAAGGAGCGCCACAAGGACAAGTC AATGACAGAGGAGGAGTTAAGCCGATTGGATGAAATCAAACGTGGGCTGTTCCCCGGCCGAAAGATCAGC CTCACCAGGCGCCAACCCCAGGTTGATCGGACCGACGGGTATCACGCGCCGGGGGTCGAGATCCGTAACA GCGAATCCAATTACAGTATGGAGTTTACCAGTGGAAGCGACGAGCAAAGCGCCAGCTCGGTCCGTAGTAG TATGGAGTTTCCCGTCAACCAACAAGTAGATGAGGATGGTGATAAGGCGGTAGACGTCAACGGCAAAACT GAGACAACAATTACGGTGTCAGAAACCCCGCCTCTTGTTAAAAAAGGCTCTGGATCTAAAAAGAGTATTC TAAAAGGGAAATCTAGTTATGGATTGCCAGATGTTTCTTCCGGGACGGTTTCAAGTAAACTTGACGACAC GGGTGTACTCGCGGACAACACTGCATACAATGAACTCATCGCGGAGAAGGCTCTGCAGGCTGAATCTCAA TTTGGTGAGTTTGTCTTTGAGCCGGGTGCCAGTAGCCCCGGTCCAGGGGAAAAGACGTTCGACATGGATT TACCGCTTCCGGATCTCGTCGTGCCAAAGCCGCCAAGGAAACGCGACGTCATGCTTCACCGACAGCCAAA CGGCGGTTTCGGGTTCACGCTCCGACGCTGCATCATTGAGGAGCGCAGCGGGCCGGGCGGGGGTATAACC CGACGCACCGTTCACTTTGCCGAACCCAGCTCTACGCAAAAAGACAACTCGTCTGGTTTACTGCCGGGAG ATCGCCTCGTCGAGGTCAACAACGAAAACGTGGAGTCCACGCCACGAGACGACATCATCGGTAAAATCCG TGGCTCCGCGGATTCGGTCTCGTTGAAAGTCCAACCGATTCCGGAATTGATTGAGTTGAGCCATCGCCAC GGAGTGGACGGATCGGAGATGTATCTGGAAGATCAGATCTTGAAAACGGGATCGTTGGCGCAGAGCTCAA GTATACGAATCGAAAGAGGCAGGGCCAAGTCGGACGCCCAGTTGGACTCCGAGAAGGCGTGGCTAGGAGC AGAGAGGGTGTGGCTACTACACAAGGGAGGCTTCACCGCCGCCCAGCTGCTGAACGCTGAGGGGATCGTT CCATTATCCGAGGGGCGGATCAGGGTCAAGTTGGCACACAGCGACGATGCGCTGGAAGTGGATGAAGAAG ATGTCGAGAAGGCCAACCCTCCCCAGTATGATCGAGCGGAAGACCTAGCCTCGCTCCTGCACCTGAACGA GTCCGGGGTACTACACACCCTACGACAGCGCTACGGCGCCAGTCTAATCCATACCTACGCCGGCCGCAGT CTGGTCGTCATTAATCCCATGCACCAACTCTCCGTCTATTCAGACAAGGTCATCCAGCTCTTCAAGGGAT GCAAGCAGGAGGACATGCCACCCCACATCTACGCAACGGCGCAGACCGCGTATCGTAACATGCTAGCGAC CAGGCTGGACCAATCGGTGGTCTTCATGGGGCGTAGCGGCGGGGGCAAGTCGTGGAACGCGAGACACACG TTGCAGTATCTGACACAGGTTGCCGGGACGATTAATAACATGGTGACGGTTGACAAGATCCAAGCTGTAG CGACCCTGGTCGATGCCTTTGGTAGCGCCCGGACTGTCCAGAACACCAGCGCGACTCGCTGCTCACAGAT CCTCTCCTTAGACTTTGACCACATGGGACAGATCGCTGCCGGCTCTCTCCAGATTTTAGTCCTTGAGAAA TATCGTGTCGTCCGTCGTCCAGCAAGTGAGAGGTCCTTCAACATCTTCTATAGTCTGATGGGTGGAGCGG ACGAGGCAACAGCCAAAGAATTGTTTCTGAACCATTTGGCGCCAGACAATGTCTACATAACTCCCCTTCA AAGGTCTGAAGATAAACAGCCAACGTCGACAGCTTGGAGCAAAGTCCTCCATGCCTGTAACGTCTTGGGT TTCTCCAGCGATCACTGCAAAGCATTATGGTGTGTCTTGGCGGCCATCATTCATCTGGGTGCGGCAGGGG CAACAAAAGGTTCCGGTAGCAGCAAAGCCCAATTCCGCAAACCCACAGAGGCCCAGAAAGCTGCCCATCT CCTAGGCACCACGATCGAAGAGCTCGCCAAGAACACCTTCAGCCCTCGTCTGGCCAGCGGTGCGTCCCGC AGCAGCCTCAGACCGGTGGTCAACGAACCCATGACCGAACAGGGTGCCACACCCCGCGACGCACTGGAGG GCATGATGGTGGGGCTGTACGGAGAGCTAGTCAATGCGGTGGTGTCCCTGATTAACAAGTCCCTGTCAAG TTCCTATCGAACGATGTCGTCCATCTTGGTGGTCGATGTCCCAGGATTCCAAAACCCCACGGCCTTCGGT CAGCAGGGCGGGGCCTCGTTCCACGATCTCTGCATGAACTACGCGCAGGAGCGCCTGCAGTTACTATTCC ATGACTCCATGTTCACCACCCAGCAGGACAAGTATGCACAGGAGAATATTGACTGTCATTTTGAGCAGGC GGAGTCCTCACCGGAACCCATGGTGAACCTCATTGATAAACAACAGGGATTGATGCGATCTTCCAATATG GACCTGAGGGATGTTGATCAGAAGGGGCTACTGTGGCTGCTGGATGAGGAGTCTATATTCCCAGGAGCCT CGGACGATACTTTCATGGAGAGAATCTACATCCACTACGGCCACCAAGCTAGCAAAAAGGACAGTCTTCT ACGAGGCTGCAAGGAGAAGAACCACTTCATCTTGAATCATTTCCAGAACACGACACCGATCCAGTACAAT GCCACGGGCTGGCTGAAAGTCTGTAGAGAACACCCCGTGGTCCGTATGGCGATAGTGGTCCTACAGGAAT CACAAAAGACCAACATCAGCGGCTTGTTTGTGAGTCTAGCCGGTTCCCTCCCCAGTACGATGGTTGGCTC CGTTGCTGGCATAGAGGGCAGCTCATCACTACGGAGAGCGTCCAGCATCCGCCGGGCGTGGTCCAGCGGC ACGGCAGCCATCAAACGGAAATCCGTCTGCCTGCAAGTCAAATTCCAAGTGGATGGTATCATGGAATCTC TACGCCGTACCCGTTTGCATTTTGTCCACTGCCTCTTACCCCAAGTCAACGCCGGCCTGTGCGAGCTCAA GAACCTAGGGGCAAAGTCTCCGACCTCCCCCACGCCAACCTCTGACGGGCTGATCGATGTTCCCTACTTG AGGAATCAAATCAGAGGATTGGAGATCTTGGAGTTGGCCAAGCTACACAAATACGGTTTTCCAGAGAGTA TGTTGTTCAACGAGTTCCGTCGCAGATTTGAGTTATTGGCCCCGGCCAATGCAAAGGTCTCTGAACCTGT ATTGGACGAGAGAAAGGCCATTGAGGAACTCGTGAAGCACTGTGATCTAGATTCTTCTATGTACAGACTG GGACTAAGTCAGATTTTCTTCAAACCCGGTGCCCTGGTCAAGGTAGAGGACCAACGGGATGAGAGATTGT CTAAGACGATAACAGAATTCCAGGCTTACTGCCGAGGATACGTTGCTAGGCAACAGTTCAAACAACTCAA GATCAAGCATCTCGCAATCACTGCCGTGCAACGCAATGTCCGCAAGTTCCTCGCCGTCCGGACCTGGCCG TGGTGGCGACTCGTTACCAAGGTGATGCCGTTGCTGGACGTTCACAGAACCGAGGAGGAACTCAAAATGA AAGATCATGAGCTGACAGAGTTGCGGATCCGAGGGGAAAAGTTGGAGAAGGAGCGAAATCTTCTGAAGCA CAACCACGACAAGATGGAGGCGAGGTTGGCAGAAATGAGTGCTGATCTCGCTGAGGAACACACGACGGCC AACCATGCCTCAGAAATGCTGGAAAGAGAAACGGCAGAAAGGCTACGACTTGAGAAGGAACTCAAAGACT TAAAGGTTGCTCATGGGAATCTTCAGCGCAAGGCGGAGAAACTCGACATGGAGGTGATGGAATCCAGAAT GATGCGCTCCTCCTACATGGACGGAGACATGGGCAGCAGCGATGAGGAAGAAGATTCAATCTACCGAACC AAGTATGAGCAGGCAAGACGCGAGATTGAGCTGACCAAGAAACGGCTGAAGCAGGAACACGAGGAGGAGA TAGAAAGCATGAAGGCTGCCAAGAAGGCTCAGGATAGACGGATGGCAGAGGCCATGGAAGAAGTCGAAGA GGAGCGAAAACAGGTCGGTGGCCTGAAGCGCAAAGTGCAGAAACTGATAGGCGAGGCGCAGGATACCAGA CTACACCTGGAGTCCCAACAGGCGAGGAACTCGGAACTGGAAAAGAAGCAGAGAAAGTTTGACACGGAGC TGCACAAAGTTCAGCAGGATCTCCACACAGACCATCTGGCTAAGGACAAATTGCAACGGGAGAAGGAAGC CTTAGAGAGCGAAAATTACGTCCTCCGACAGCAGATGGAGGATATGCGATCAGACGTCAGCATCAAAGAG AGCCGTATGGAGGAGCTCCGGTGCGAGATGAACGACCTGTCCTCTCACGGCAGCAAAGAGGTCATGGAGG TAGCCGCCATCAAGCGACAGAAGCGGGAACTGGAAGCCAAGATTGATGATCAAGAGGAAGAGCTGGACGA TCAAGCCGGGAAGATCTTACAACTCGAGCAGACCAAGCTCAGACTGGAGATGCAGCTGGAGAAGCAGAAA CAGGCGTCTCAGAAGGATCTGGAAGTTAAAGATGAAGAGGTGGAGTCGGCGAGGAGCACTTTCCAGAACA GGCTGAAACAGCTCGAGAACCAGATAGAGGAAGACTACAAGGAGCGTCAGTCGCTCATGAGGCAGAAACG AGACCTGGAACACAAGCTGGCAGACCTGCAGGAGCACCCGCGGACGGCCGACAAGGATGTGGAGAGACGG CTCAAGAAGGACCTGAAGAAGACCAAGGCTCTGCTGAACGACGCTCAGATCATGCTGGAGAGGCAGAAGG CTTCCGCACCAAGCAGCTCCAAGATCAAACAACTGAAGAACGAGCTTGAGGACTCCCAGTATGCAACCAT GGCTGCGGTGAAGGCGCGGCAAAGCATGGAGAATGAGCTGTCAGAGCTACAGAGCCAGCTGGACGATGTC AGCAGGGGTAAAGCAGAGGCGGAGGAGAAGATCTCGCAACTGAATCGTGAGATGAACGACGTCCAGACCA GGCATGAGGACCAGGAAGAAGACTTCAATGACCTCCTCAAGAAACACAAGGCATTAGTGCTACAGAGTTC CAACGACCAAGCTAAGGTCGTTGACCACGTCTCACAAATCAGCGATCTGATGCAAGCCAAACACGAATTG GATGAAAAGGTTTCGGAGCTTCAGGGCAAGATGGAATTCATGACGTCGACCACGGTGGACCGAACCCAGC TGACGAGATTGGAAGGCAAAGCCCGAGATCTGGAATCCAGGCTGGCACTGGAGAAGACCACCCGACAGAA ATTTGAGAACCAAGCGGAGAAACTCAAAGAGAACATAGACAAGATGAGCACGGAGCACGACAACCGGAGC TACAAGGATCAGAAAATGCAAGAAACTAACCGGCGATTGCAGCGGGAATTACGGGAACTGAAGGACGAAC AAACGGACCTACAACGCAAGGAGACAGAAGGAACCAAGAAGAAACTAGAACTGGAGGAAACAGTCGATTC TCTTGAAGAGAGCAACGAAAAACTGCAGTCGGATCTCAAGCTAGCTTTTAAGAGAATAGCGGACCTACAG CACGCATTGCAGGATAATGACGACAGTGGCAGCGACTTAGGAAGCAGTGATTCAGACAGTGATGACGAAC CCGAGTACAGCCGCCGCTACAGCCGGTACTCATCGCGCAGTTACCGTGACAGCACAAGCAGTTTGGAGTC CACGCCGCGCTTGGCGCGACGACGCGTGCTGTCGTCAGCATCTGAAGATGCCACAACAAGCCGAAAAGAC AAATACACCGTCAACCCACTCAGCTCCGACGAGGAGGAATTTGAACCACGAAGCACGTCCCGCCCCAGCA GCATGTACAGCGAGGATAGCAAAGGCAGCAAAGACTCCGGCGATCTCCTTGCCTCCTCCCCACCCCCAGG GGAAGAACGTGACGCAACCCTCACCAGTACCGGTGGGGGGACAAAGAAGAAAGGCTTTGTAGTCAATCCT GACTATTTGTGAGCAGCAGCCGCGTAAAATATTCAAAATAGCAATATTTATCTTTATTTTTCTCGTCTTA TTTTGTCAATTATTTAATGCATTTCTCGTGAAATTTGTACGTGTCTGGTTCTTGTATTTGGTGGGCATGA CTAATTGGGGTTTTGATTTTGAGAATTTGGTGTGTTGGTTGTTTTTTGTTTGTACTCAGTTTTATTGTCG TGCTTCGTGTATGTTATGTGTTTTGGGTTCAGGTGGTGCTTTATCAAAGATTTACGTAGAAAAAAAATGT GATTCTTTCGTATCGTAGTGAATTTTGCCCAGTGTCGACCATAATTGCCATAATCTAATGTACCATCATC TTGAGGAGGCATAGCGAGTGGGAAAAAACACGTACATGTCAAGAGTACGCTTCAATCATGCGACTTTTAT TGCCATTCTTTTGTAATGGCTTTAAGAAAAAATTGCAGTGGATGAGATCAGATTGTTTCGTCACGTTTCA CATGTATTGTGGGTTTTTTTCTAATCAAAATATAACTGCTCTTGTATCTACATGTACATTTTCCTCACAT TTGGAAATTAATATATGAGAGTTGTTATGTCTGGACACAAGAGTGGGGGTGTTAGCTCCGCCCCTTTCCC CATCCACTTAGAAGGAAAAACTAAACAGTTCAAGTATCTGCGCAAGATTTGTTGTGATGCTAAATTTCTA CCAGCCTGTGTACAGATGCACAAATTCTGCTGCATATTTCTTTACTGCCAAGGTCCTTAATTAAGGAACG TCGCCTCTTTGTATTGTGTCTGTTAACTATTTAATCGGCTTTGCGAGTGGACATCGCTTTATTAACGGAC AGTTGCTGAAAGAAAATTGTTATAGTACAAAAAAAAAGGAAAATGCTGACCATTATTTATGTAAATAATT GTAAATTTGTGTACAGTTTAAAGTACAAATTTTGAGTCAGGAAGTTAATCTATGCATGCATATTGATAGT TATATTGTAAGTATTGTGAATGTTTGTAAAGTTATTGCTCGA
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???blast.matrix???
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???blast.matrix.blosum80???
???blast.matrix.pam30???
???blast.matrix.pam70???
???blast.gapedalgin???
???blast.true???
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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