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Echinobase
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Echinobase Accession
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Echinoderm mRNA
Echinoderm protein
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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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L. variegatus
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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
???blast.query???
>XM_041615738.1 PREDICTED: Lytechinus variegatus cytoskeleton-associated protein 5-like (LOC121421105), mRNA GACCAATCACGGTCGAGCTCTCATATCCACGGACCCACATCCGATTTGAAAACATTTCAGAGATATAACG GGACGGATTTAGACTTCTACTGCGAAATTGGACTTGTTCCTATTAAATTCACTTTGAGGAAGAATTATTA TTGCAGCTGATCACCTGACCCTACACTGACCACCTGACCATATACTGATCACCTGACCAATGAGGCATTA TGGGAGATGATCAAGAATATCTGAAGCTTCCTATTGATGAACAATGTGTTCATAAGGTTTGGAAAGCCCG TCTCCATGGCTACGAGGAGGCGGCCAAACTGTTCAAAAAGATCAGTGATGAGAAGAGTTCAGAGTTCACC AAGTACGCTGGATTGGTGAAGAAGTTTGTGACTGATAGCAATGCCGTAGCGCAGGAGAAAGGACTGGATG CCGCACTGGCCTTCTTAGATTGCGCTCATATAGCACCAAAAACTGTAGGTGAAGTCACCGCAGGTGTGGT TGCTAAATGTCTGAACTCATCGAGAACCAAGACCAGAGAGAAGGGCATGGAGATTCTTATGGTGTACATA GAGCTAGAGAAACAAGAACAAGTTATGGAGGAACTGTTGAAGGGACTCACCAACAAGCAACCCAAGATCG TCGCTGCCTGCCTGGAGGTCATGGCATCGGCCGTCAGAGAGTTCGGGTCAAAGGTCATCACGCTGAAACC TGTCGTCAAGTCGGTTCCGAAGGTCCTGGAGCACAGCGACAAGAACGTGAGAGAGAAGGCCAAGCAGCTT GCCATCGATCTCTATCGATGGATCGGTGCTGCCATGAAACCCAGCTTACAGAATATCAAACCTGTGCAGT TGAAAGAGTTGGAAGAGGAGTTTGAAAAACTACCAGGCAAGCCTGCCAAGCAGACAAGATTCCTCAAATC ACAGCAGGACCTCAAGGCCAAAGCGATGGCTCAGGATGACGCTGACGAAGATGAAGATGAGGAAGATGAA GCGGATGCAGCAGGTCCTGCAGTAGATCCCTATGATCTCCTAGAGCCTGTGGATATCCTCTCCAAGTTAC CCAAAGACTTCTATGAAAACATGGAAGCCAAGAAATGGCAGACGAGAAAGGAAGCTTTAGAGGCTCTACA ACCCTTGACAGCTAACCCCAAGATAGAACCGGGAGACTTTGCAGAACTTGTCAGGGTTCTTAAGAAGACG ATAGCCAAGGATACCAATGTGATGATCGTCGCCATCGCAGGGAAGTGCATGGCAGGCATCGCCTTGGGAA TTCGCAAGAAATTTGCTCCATATGCAGTAGCATGTATATCCTCAATTCTAGACAAGTTCAAGGAGAAGAA AATAAATGTAGTTACAGCCTTGAGAGAGGCTATAGATGCTATCTTTCCATCAACAACGTTCCAGAACATT CTTGAAGACGTCCTAGCCGCACTTGACAACAAGAATCCCTCGATAAGAACAGAGACAGCGTTGTTCCTGT GTAGAGCGTTCAGACAGTGTACTCCGGCAACGCTTCCTAAATCCATACTCAAACCACTCTGTGCATCATT AGTCAAAAAACTAGCTGATACCACACCAGACTGCAGGGAAGCCTCGTCTGAAGCCTTGGGGACAGCGCTG AAGGTGGTCGGAGAGAAACCAATGAACCCCTTCCTGGCCGATCTAGAAAAAATCAAATTAGACAAGATCA AGGAATACAGTGAGAAGGTAGAGCTAGCCCACGGCGGAGGGAAGAAGAAATCCAAGGAACCCAAAGCAGA GGCAGGTCCTTCCAAGGAGGCTCCTGCTGCTAAGGCCTCCACCTCCAAGGCTCCTTCTAAGGCTCCAGCT AAGAGTGCCGGAAGCAGACCAGGAACCGCCAAATCAAAGCCAAAGACCGATTCGGGCGCAGCTAAAGGAG GTAAAGCGGTGAAAGGAGGGAAGAAAAAAGCACCAAAGAACGAGGGTCAAGATGACATGAAATCAGAACC TTTATTAACGGATGAGGAGGTAGAGGAGAAGGCTGCAGCATTGCTCTCATCGTCAATCCTAACTCAACTG GCCTCTAGTAATTGGAAAGAAAGATTAGCAGCCATGGAAGAATTCACAAAGAAAGTAGAGAATATGGAGA AAAATGTCATCAACGCTCAGGTATTTGTCCGAGTTCTTGCCAAGAAACCAGGGTTTAAAGAGGCCAATTT TCAGGTGATGAACGCTAAGATATGTCTCGTCGGCTTCCTTGCCGAGAAAGCTAGATTCTCTCGTCGGTGT GCTCAGGTCGTCATAGCTCCTCTCATTGACAAGGTCGGTGACATCAAATCAGGGTCAAAGGTCAAGGAAT CACTGACAGCGATCGCCGAAGCTTGCCAGCTTGGATATGTTGCAGAAGAGACGATAACGTATGCCTTTGA GAAGCAGAAGAACCCCAAGAACCAGGCAGAGTCTCTGAACTGGTTTGCACAAGCCATACAGGAATTTGGT TTCTCAACGGTTACACCCAAGAAGGTAATTGGGTTCATCAAGACAGCGTTAGCAGCAGTCAACCCACAGG TCAGGACGTCGGCAATCACGCTATTAGGTGTGATGTACATGTACATGGGAGCCAACCTACGTATGCTGTT TGACGGAGAAAAGGCCGCCCTCTTAGCTCAGATTGATGCTGAAATTGAGAAGGTTTCAGGTCAGAAGCCT CCTGCCCCTTTCCGCGGGATCTCCAAGAAGGACGACAAAGGCGATGACGACGGCGATGATGAAGAGGAGG ACGATGAAGATGGAGGAGGAGGTGGAGGAGGAGGAATGAACGTGGCCGATTTGATCCCGAGAACGGATAT ATCTGGTCAGATTACCGCCGAGCTCGTCGCAGAGATGGGGGATAGCAAGTGGAAGATCAGGGGCGAGGCG TTAGAGAAGGTGACTGGTATCTTGAAGGAAGCAAAATTCATCACGCCAAGCCTGGGGGATCTACCCACAG CACTGAAAGCAAGACTAGGGGATTCCAATAAAAATTTGGCGCAGACAACAGCGAACATCTTAGCAACGAT AGCAACGGCCCTGGGTCCTGCCTCAAAGCAGCATGTGAAAACTTTTGCCGCCGGACTGCTCTTACTCTGT GGGGATAGTAAGCCTTCTGTGAGGGCCGCTGCTGTAGCATCACTAACCGCATGGGAGGAACAGACTGGAT TAGCACCGTTTATTGAAGATGAGATTCTTATATCTGTATTAGCTAAAGATAAACCTGTATTGAGAGCTGA GATCTTTGGTTGGTTAGAAACGAGGATGGGGAAGTACAGATCGTTACCGTCCGACCTCTCTCAGACCGTA CCTCACCTGTTTGCTGGTTTGGAGGATAGGAATGCAGACGTCAGGAAGAATGCGACAGCCGTTCTACCTC TCTTCATGATGCATCTGTCATATGAGAAGATGGTCAAGATGACTGGAAAGCTAAAGCCATCATCTAAGGA CCAGGTTGTTGGGATCATGGAGAAACAACGCCCTAACATTCCCGCCAAGCCAGGCAAACCAGAGAAGGCC ACCAAGGCTCCCAAGAAGGAGTCCTCAAGACCTTCCACAGCGGCTCCTGCTGCAGAGGAACCCGAACCCA AGAAAGAATCCGCTCCAACCAAACGACCAAAGACCGCACCGGCTAAGCCAGTGCAAAATGACACTGGATC TACCAGTAGCCTGTCAAGCTCTGCCAGTGCGCCACCAAGTGAGGGCGCCCCATCCAAGGGCAAGCCGGGC AAAGGGGCGGCGACAGCGTCGAAGGGAAAGGCAGGAAAAGCTGCTCCATCTTCTAAGAAGAAGAAAGACG AAGACGAGGATACGGGACCGGCTGTTATTCAGAACAATGGCAAAGACAGGAGATTAAAAGATGAATCAGA TCTCAAGGTTCTGAAATGGAATTTCACGACCCCTCGTGGCGAGTACGTTGATCAGCTGAAGGATCAGATC CAGCCGTGTGTTAGCAAGACTCTCTTTGGACTCCTCTTCCACAGTGATTTCAAGAAACATATAACAGCTG TGGGCATCCTTACACAGTTTGTAGAGAGCAATCAGAATGCAATCAAATCCAACCTTGATGTCTTACTGAA ATGGGTATCCCTGCGGTTCTTTGATACCAACACTAGTGTTTTAGTGAAGGTGTTGGAGTTTCTTCGTTCA GCGTTTACCATGCTGTCATCAATGGATTACAGCCTTCTGGATCAAGAAGCGAATAGTTTCATCCCTTATC TCATTCTCAAAATTGGGGATCCCAAGGAGAACGTACGTAAGGATGTGAAAGCCGTCATCAAGCTACTTAC GAAGCTTTACCCAGCCAGTAAAATGTTTGGATTCCTTATGGATGGCCTCAAGTCCAAGAACGCAAGACAA AGAACAGAATGTTTGGATGAGCTAGGCATCTTGATAGAGCTCTATGGTCTCAACGTCTGTCAGCCGTCCC CTCCCAAAGCACTCAAAGAGGTGGCTAGTCAGATTGCTGATAGAGATAACAATGTACGCTCGGCGGCCCT CAACACCCTCGTACAGGTCTACAGCATTGTTGGAGAAGACGTCTATAAATACATTGGGAATTTGAATGAG AAAGAGATGAGTTTACTTGAAGAGAGGATCAAGAGGTCGGGCAAGAAGCCGGCCCCGCCCAAGACCGCAC CCGCCCCAGCTCAGAAGAATGCCGAGGAGAAGACCGCCCAGCGACCCGACGCCAAGAAATCAAACCTCCC GCCGGGCTGGAGAGACGCTTACAGGAATCCAGGAAAGACCCAGAGACCGGCAACAGCGCCCCCTAAGCCA GCAGGGAACCAATCCTCAATCCCGAAGGTCTTCTCACTAGATCTTGACAAGCTAGGTCTGAATGATGACG AAACGGATCTTAAAACGTTAGAACTAGAGGATACAGAAGTCAACGACCTTGAGAAACCGGTTGTTTTGCC AAAGAGAAAAGTACAGATGTCAGCCATGCCGACAATGATGCAACTCAACTTCATGATATCACAAATAGCC AGCAACGACATCGCTATCAGCATACAGGCTTTAGCGCAATTGGATGAGATCTTGAAGGAACAGGAGAAGA CCAAAGCTGTAGTAGAACACGTCGATCAGCTGCTCGTAGCGACGTCACTTCAGCTGCGTATGGCATTCAG TAAACACATGGGAGATGAGATCAATTCTAAAGATGTGATCAGAATGTACAGGTGCCTGGCAGCTCTCCTT GTATCGGTATTCCAGAACAGTAACCTTAGCCAGCGAGCCTCCAAGGATGTCCTGTGTGATCTTATCAACG GCCTCATCACCGTCCTCATCGACGACCGCCTCATGTCCTTCGACGACGGACCCCAGGTGGTGCGATCTTT CAACATCGTCATGGCAAAAGTGGTGGAAAATGCAAACCACAATGCGGCAATCGGAGCTCTGATAAAGCTC CTCCAGGAATGTGTAGCCCGTGAAAGCGGTTCAACCAAGTTTGCTTCACTCATTATGAAGTGTTTATGGA GACTAGTCCGCACCATGCCCAACATAATCAACGAGCTCAACATCGACCGTATTCTGTTGGATCTTCATCA GTTCCTCAAAGCGTTCCCATCGTCCGTCTGGCGCGATCAGCCTAGCGATACGCCACTCCGTACCGTCAAG ACCATCTTACACTCGCTGGCTAAGATACTTGGCCAGAAGGTTCTGAACCACCTAACGCTGATTCCCGATA CCAAAGATTCCGAAGTGGAATCTTATCTCAAGAAGGTTCTTCGGAGCAGCTCTAGCAGCGTCAGCAGTTC ATCAAGCAACGATCATATCAACGGGTCCGCTCCTGATATTGTCAGAATGCATTCCGATAAAAATGTGAAG CAATCACCCCGTAGAGCTGCCCCTGCGAGGACAAATGACCTTCTTGCGCACATCTTCCAGAAGATTGGAT CCAATGAAAACACAAGAGAGGGCTTGGCCGAGCTGTATGACTTCAAGCTGAAATACCCCGAGGTCGACAT TGATCCGTTCCTCAAGAAGACGTCACAATATTTCCAAACCTACATCACTCATGGTCTTCAGAACATCGCC AAAGAGAGAGGAGATAAGAACTTCCATACCACCAATGTCATGGTCAAAGATAGCCAACAAGAAAATAAAT CGGAGCAAATCATGACGTCAAATCCACGATCTGTTGGCGACGGCACGGATGGTGAGGCGATCAACGATCC GTTGGGACGTATCAAGATCTTACGCGCCCGCTGTGGCTTGGAGAACGCTCAAGAAGGGGTGATCGATAAC GTCCCTAAGACTGCTCCCCAAGCGAAGCAGGAGATTCCTGCTCCTCAGATGGAATCATCTAATAAAGAAC CTCTGCGAGCAGGAAGTGGGCATCATTTTGTACCAGAGAGGATCTCGTTAGGAAGCAGTTCGTCCAACCT TCCTGCTACCGCTCCTCAGCTCGCTCCTCTGCCGGACGTCGACGATATCAAGAAAAGATTGGAAAAGATC AAGAATTCCTGCAAGTAAACTCTTCTCGAAACAGCTTCTAAACCTTGTACACCGAATACATTCAAGGACT AGACGCAATGGACAATACATACACATGATATTGATGATGGTGATGATTATTTGGTTGATGGACGGCTTCT CAATGTTTACTCTAAGACAGAAGCTATTGTCAGCATCAGATGCTAATATATTTGAGAGGATTACATGTAA GAATTTCTGCAAGGCAGGCGTTCCCATGATCAGCTTATTAATCTTGCAACTTAGAGATTCAAGGACTTGT TTCTATGAACGGCTACAGAACCAATTTCATTTTAATAGAATCAATGAGACATACCCTGGAGCAGCATCTG ATCCTTGTACTTTGGCAGTTTAAGTAAAACTCACCTACATGTAGGAACAGCTTCATAGCCTTGTAGACTT GAGAGAGGTACAAGGACCTGCAGCTTGGGACATCTTCTTAACTAATTTTGCTTTGATAGAATCATATAAT CTATCAGCGACATGTGATCCTTGTGGATTTCAGAGTCAATCGTTTCCTGCAACGAAATTGTTTCCTTGTA CAGCTTCTAAACCTTGTTGACTTAAGCGATTCAAGAACCTACAGCTATGGACGACCTCTAAACCAATTTG ACCTTGATAGAATCAGTTATTCATATTTATCACCAGCATTAAATCCTTGTAGATTTCAGAGTCAAAGAAT TACTGCGAGGAAATCATTTCTATGAACAGATACTAAACCTTGCAGATGGGAGATAATTCAGAATTTAGAC ACATGAACAATTCCAAACTTTCAAAGCTGTAATAGAATCACTATAAGTGTTATATCAGATTCATATACCT TTATAATTGAGGTAAATATACAATAGACAATTATATTCTTTCTTTCATAATAATGATAATAATATCTCCT TGAAATCTATATGTGTATTGTTACTAAAACTGGAGAAGAACTGTTACTAAACACAAACAGAAATACAGTA ACTGCCTGTAAGCCAGGCAAAAGATGCCCCTTTTTGATCGAAAAATGTATTTCAAGTCTTTCTCTTTTTT TTTAAACCCCGAGCTTCCTTTCAATTTTTTTCTTTGTTTTTGTTTGTTTTGGGGAATGTAGCATCTAGTT TATGCCTTCAAAAAGGTTATTGAAAATTCTTCATTGTGCTTTAGATCTTGTGGTCCCACCTACAGATAAT GGTGTCTGTGTTGCATTTGAATATCAGGGGGCAGTTTCACAAACACTGTAGTTGGACTTAAAAAGAAGAC AGTTTTATTCAAACCTAGAAACGAGCTAAAAAGATTAACTTGACCTTAGTCCAATCTGACATTTTGTGAA ACTCCCAAGAACAAATTAGAA
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???blast.matrix???
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???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
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BLAST time is limited to 30 seconds