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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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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
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>XM_041600681.1 PREDICTED: Lytechinus variegatus oxysterol-binding protein 1-like (LOC121408945), transcript variant X2, mRNA CAGTACCTGAATGTTTCATTGATATGTGGAGTTTTGAAATGCAAATTATACATACATGTAGGCCTACTTA CGGTACCTGACTGAGGAGAGGGAACTGGGAAAATAACAGCTTCTTGTGGATTATTGTTTTGTAACATTCT ATTGAGTAGATCTGGATAGGTTATGCTGCAGATATTTCAAAACATTCTGGAATGTAACTTTCTGCTTGAT TTGGCTGTCAAGTCATCATGCTAGTTGTTGGAATAGTTTTCTGATCTGTCAAAGCTCACCGAGGACCAAG CGAATGAGATCTCTGTGGAATGTGGCATTGCGACGTCGTCATCGCTGCGGCTCATTGGAGTAGTCAGCTG CTTGGCTAATCATGTAATGAGCTCTACCTTTCTCTCCCTCTGTCTGTCTCTCTCTCTTTCTGTACTAAAC TTGCACTCTGCCATACCACCACAAGTACTTGTTTACAACGAGAGGGATTAACCGATCTTGTTAACTGCTG GCAATGTTCATGTTCATGCACGCGACCAACTTAACGACGAGGAGCTCGTTTTCGCCGGCTCTATCAGCTC TCGCATGGGAAACTGGCTGATGTGTGCCTCGTGTAGCACCATGGCTGGGGACAGATTATGGCCAGATGAT GATGAGAAGATACATCCCCAAGAGACAGACCACAACGAGGTACAAACAACACTCCGCCAACTCACCAGCA AGCTAGAGGACCTGAACACCTGCAACGATCTCATTGTCAAACACGGCGCAGCACTACAGAGGTCACTGTC TGAGTTAGAGACCACAGACGATCCGGCGCAGGCCTCATCCCGTTTGAAGGGGATCAATGAGAGGGCGACA CTATTCCGGATAACATCCAACGCCATGATCAATGCATGTGCTGATTTTCTTGAGCTTGCCCAGACCCATG GTCGCAAGTGGCAGAAAGCCATTCACTATGAACACACACAGAGGATTCGTCTAGAGGAGACCATCGAAAC TCTTGCCAAACAACACAACTCATTAGAGCTTGCTTGCCGTGAAGCCAGCCAGGATAAGACCAAAGTTAAC TCTGACGAAAGCAAGGATGATCATAGCGATGATGACGAGAATGAATTCTTTGATGCCATAGAGCAGTTTC AGTTCACAACCTCTGTTCAGCTGCCAAGAGACAATTCTAATATACATCATAGGAGAACACCCAGCGAGGG GAGTGTGGCAAGCACTGAAGCCAGCAGTGGAGAAGAGATGCAGCCGGGGGTTGAGGCAGTCGTCCAGATT AACAAGTTGGATGAGGGAAACAATCTACCACACCGGTTGAAGACACAGCCCAAAGTAGGACCAATGGTGA AACAGAGGCGTAAGAAGATCCCTGAGAAACCTAACCAGAGTCTGAGTCTCTGGAGTATCATCAAGAACTG TATCGGCAAGGAACTATCCAGGATACCCATGCCGGTCAACTTTAACGAGCCGCTTTCCATGCTCCAGCGG CTGACAGAGGATGTGTTTTACAGCGACCTCCTCAACATGGCTGCCCAGTGTGATGACACCTGCGAGGAGA TGGCTTACGTGGCAGCATTCATCACATCAGCTTATGCTGAAACGTCAGTTCGTACGACCAAGCCATTCAA TCCCCTCCTTGGAGAGACATTCGAGTGCGATAGGATGGATGACTTAGGGTGGAGAGCAATAAGTGAACAG GTGAGTCACCATCCGCCTGCAGCAGCCTTCCATGTAGAGAGCAAAGACTGGACGCTGTGGATGGAGACCA CCATCAGCAGCAAGTTCCGTGGAAAGTACCTCCAGATCTTCCCTCAGGGCACCGCCCATATCTCCTTCAA GAAGTCTGGTAGTCACTACACATATACCAGAGTTACAGTCACCGTCCATAACATCATTGTAGGAAAACTA TGGGTTGACCAGTCTGGTGAATGCGAGCTTCTTAATCATACAACCAAAGATGTCTGTCGACTAAACTTCA AACCCACCAGCTACTTTTCTAGAGATGTCCCAAGGAAGGTAACTGGTGTAATCATGGATGCCAACAATAC AGCCAAATATGTGTTATCAGGGACATGGGATAAGAAGATGGAATGTGCAGAGGTGCAGAACATCACGATA GAGAAATCAGGTCGGGGCAAACCGGTCTATAACTGTGGGGCAACCAAAGTACTCTGGCAGAGGAACCCTC CTATGCCAAACTGTGAGCAGATGTACAACTTCAACGAGCTGGCTGTGACCATGAATGAGCCCGATGATGA TGTGGCGCCCACGGACAGCCGGAACAGGCCCGACCAGCGTCTGATGGAGGATGGTTATTGGGATGAGGCC AACCAGGAGAAACTCAGGCTAGAGGACAAGCAAAGGACAAAGAGAAAAAAGAGGGAAGCGGAAGCAGCAC TTGCTGCTGAAGCAGGTAAACCATATGAAGGCTACCGACCAGTGTGGTTTGAACGACGGATGGACCAGAT CACAAAATCCATGGCATATACATATAAAGGAGACTACTGGAGCAGCAAAGAAAAGCAAGAATGGAACGTT TGCCCAGATATATTTTGATGTGAACTCTGTCAGCCTCTCCTTTTGATTTTTCTTCCTCGTTCGCATAAAA CTGATTAGTTGATTATCAGCTGCTGAGAACGACGTGATCCTCCATTTTTAACGGAGTGGTGATGACTTCC TGAGCAGGTTTAACAGCGGATGCTGCATGCCAGAGGACCTGTGCAAGGGGAAATATGAATTCCTTTTGTT CGACGTCATCTTGGAATGCTGGTCTTTAAATGGGCAATTAACGAAACTTGTGAAATGATAATGAGCTTCG TATTTTGAATTAGAGGAATGGTAGAGTGATGCTATAACTGGACCACAATGGCTTCAGATGGTTTTACTAA AAATGAGTTGGATTTTAAAGGATTATTGAGAAATGAAGATATATCTATGTGCATTTGGAGATTTTTTTCT CAGAGATATACTATGTGGAATTATGTGATTATGACTTGGATGTCAAATAGAAGCAGCTTTGGATAATGTG AATGACTCCTATGGAGGGAAAGGATGTATATGACGAAAAACTTTCCGAAGGATGATCTCAAAATGAGTGA CGATCGTTCCAATTATATCCTTCCTTTGATGTGAGAGATTAACTTAGTTTAATCTGAAATAAAGATTATA TATGGATCATGTTTGTTTGTTTTTTGTCTGTATTACATTGAGTGCATATTGGGTTGCCATTTAGGCACAC TCTTGCAAAGCTCAGTGAGTGTATAGGAAGAAGAAATATCTAATGACACCAAATCAGTTTTTTTTTATAT GAAGTAAATTCCCTGAATAATTTATGGCTTAGCCATGCACAGGGAATTTTAGAAGTTTATAGATATTTGT AACATTGCATTATGTTGGAAATGATATTGTCCCGATTCTTTCAATATTTGAAGAATACCGTTATGTTGTT AGATCCCCATTACCCCAAGTTAAGTATTCATATTGAATTCTGCCCGATTGTAGTATATGAATCTATTTCT ATTTACCATTGCGATTCCATTTTATAAGTACGCTGTGTGAGGCAAATTGTAGTATCCATATTTCACAATT TATTCTGCTGTATACCTTATGGATGTGATATGCTAAATTTTATTGAAGCAGTATTTCATTTTCAAGAGAT GTATATGTGTGGATTTGCTTATTATTTGCTTTAAAACGGCAATATTCAAGGTAGACATCAGAAACCAAAT ATTATTGATATGTTTATATTTTCTATGGAAAAATTAATTTGAAGTAGAGAGAGAGAGGGAGACAGACATA GAGACAAAGAAAAGGGAGTGGAGAGGGGGGATATTAATTGACACAGTAAGTGAATGTGACTCAAGTTTAG CACTGACATACTCACTAATTGTGTGAGAACTGTCAAAGGAAAGCTGCATGCACTAGTTGTTCTTTTGTAT CTCTCTCACCCTATTTCTCTTTCTCTCTTTCTCTCCTTGTGTTTTTCATCTCTTCTTTTACCATCCTGTC CATCTTTTTGTATGTGTTTCACTCTCACTATATATATCTATCTTTCCTTCTCCATCGTATCCTCCTCCCC CTCTCTCTATATCTTCACTCTTCTTTTATCTGTTGTAAAGTGATATATTCTGTGAGTGATCTAAGCAAAA TGTGCTTTTCATTAAGCATTTGAATTATTTTCTTCATATTGTGCTATTACATGCCTAATACTACTCAAAT TCTATATACTTTGCGTTGTGCCATCATCCATAGCATATTTGTGCTTCACATATTTTCTTTCTTTCTTATT TCTTCAATCTCTTTCCCCTTTTATTTCTCAAATCATATAATGACAGTTTTATCAGAGGGTGAAATTCTGA AATTTCATTTCCACAAAATTCATATATTTATGTAACTCTAACAAAGAATAAGATTAAATAGTTATATGAA TGTGCAATTTGTATTTGTAATGAAATATGGAAGTTGCATAAATGGAATACAATGTGGATAGAAAATGAAT TATGATAAAGGTAGAATTAACTATAAAACATTTCGAGAGTTTGCTAAGAACGTTATAAATTCCATCATAC TCTAGCACAAAAATAATCAGTAATGGAGTGTTGAAAGTATGTAACACTGTAAATTCATTTATTTGGAATA TAACTTTTGCTACCATTTAACACAATGTTAAATCTCCTTTAGGCCTTTTTCCACTAATCATACTAAATAA AGGATGATTTCATCAAAATATTGTCCAGAATATTAACACAATCTCTTCTAAATTCTCAGCCAGCTTTGTA CATTTTTTTTATTTCAGCAATACACATTATTAGATGTATATCAGTTTGTTTTGTTATATATCCTCTTCTT GTGGAATGCCTCCATTTTATTGCTAAGTTTCAATAAAGCATATTCTGACACTTCAATGTTTTGTTGAAGA TTATATCATAGCCACTGTGCTAAAGGAAATCCTTACTGGACTGTCAGAAGTTCTTCCTACATGTGTTTGT ATACTTTCATGTACATGGTTACTGAAATGTGATTTTAAACACTAATCATTAACTTTACAACATTTGAATC ACAAAGATAACAATTTTATTTGAAATGACTTTAGTTTGCTTCTGAACGATTGACAAATCGTTGTCCATAG TTTCTTTCATGCATTCTATTGGTAATGGCTACATTTAAAGATGCAGACCTTGCAGCTGTCCACATAGTAT GATTTCAAAGGTGTTGGTGTTTGGTGTTAATGTTTAGCAAGTGAATAAGGCTACTGAGCTGAGCTCATAC ACCAAATTCAAGTTTAGGAAATGATGGTATGGTGATATATATTCACGGCTCACCTCTGAGTAATGGCATT CACAATACTGGCATCATTTTCAAGTTTGGTGTTAATTTTGTCCAACACCAGCTTTGACACCAATATATTG CCTATTTCATGTTTCATGGCTCCCATACTAAGTGGCATTTCTTCTAGTTTATTTACTGTGTGTGATTTCC TTGATAACCTCAGGATTTGTCTTATAATTCTATTACTTAAATTTTTAGTTGTTAAAACAGTAAACGAAGA GGGGAAGTTCATCCTGACAAAAGTTTATTTAAAATGGAAGTGGAAAACATAACTCATCATCGAGTGATTC AATACACAAATTCTCAACGGGATAAATTTAACCAAAGTAACAGAAGTATTGCTCTTTATTATAAATCAGT TCTATATGGCAATGGTGTATGAATGTACCCTAGGTCCCACAACACAAAGGTTAATTTTTTGCTTGATTTT CATGTTTGATTGTACATTGGAAAGTATGGGTTGAAGTTTCTGAGGTAGTGATTAATCAAAGTTAAACACA AATCGACCACTGATGTGTTGTCCTATTTTATCTCTTTTATTTCATTTTTTTTTTCTTTCTGTATTCCATT GAAAGAGACATTTTTTTCATGGTGAACTTTCCCTCATAGGGTAGAAAATCAAAATGTTAACCTCTGATAA AGGAGAGAAATTAGCACAGTTATAAATATGAGCTACCTGAAGTAACTAGTAAGTACGTGTGGAGCGACGT TACATTATATCTGTTATAAGTTACTGAAATAATGGCATTGATTGGCTGAGAGCAATTTTATCAAAAAGAA ATGTATTAACCTGGGCTATTGATAACAAATGATATGATGGAGTGCGGCTGGATGTTATTCAATTCATTGC TGTCTGTCATCAAAATTAAAAGTATTTTACCAAGTTTTTGACTCGGGTTAGATATTTGTCCAAACAAGGC CTGAATATTTTACCTCTCGGTTCAATACACACATTGAAAAACAAGAAATTAAATCGGATCTCTTAATTGG CAAGTAAATGTTTTTTTTTTTTTGTATGAAGTGAACATGATCTGGTTTATATATGATATGACATGTCAGT TGTGCATTATTTTGCATCAAATTATGGTTTGCGATTTAAGCGGTATTTTGGTAATTGATTTGGGGAAATT TCTGAGCCAAGAAAAATGACATTTATTATACTTTGAGTAATAAATTGAATACCACTCCATGTTCAATGAG AATACATATTGGTGAGCAAAGTTACACATTCATGATCTTGAATAGTAGAATTTGAGTGAAGTTGGTTAGC AAGATGCAGTCAAAGACAAGTTTCAAACATTGATTTGGTGCATCCACTTCAATGCTTTTCAGCAAAGGAT ATGTATACTTTACATGTATATATGCTTCCATTTAAATAAGCTTGAGTGCTGCAGGCCAAAACACCATATC ACTGCACATAAAATGTACATGTATGCATAGTTTAATTTGGAAAGAAGAACATTTGTCCTATATTATGGTG TATATCCTAATTTTCGATGTGAAATTCATCATTTTTCCAATTTTCATAAAGAAGTACTGTCAAAGTTCCA TTTTGTATATTTTAATAAATTTGACACTGATTTTATTTTTTACTATTCATGTACAAGACTCAAAATGAGT CAAGTGGTTGCTTGGTTTTTGGCATGATAGATTTGGAATTTAAATCTAAAGTAATCCCGATTTACCCTTC CTATTATGAAAAATGTTAGGATTAGGAAAATACGAACCGCCCCCATAGGTTAATTATTGAAGAAAATTTG GAGTTTCTTCATTTATTTACATGATATAGTGTGTTTTTATGAAGAATATATTCCTACCATGTTGATGTAA TGTATAAAAAGAAGAGAATAACAGATGAATGTACATGTATTAAATAATTAAAAATATTAATATAAAAA
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???blast.matrix.pam30???
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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