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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_041599430.1 PREDICTED: Lytechinus variegatus maestro heat-like repeat-containing protein family member 1 (LOC121408090), mRNA TCAGGATACTGAGAGCTGCATGATCATGCCGAATCCGGGAGAGGAACCAGTACTCGGTACTGGTGGACAG ATTGATGGCATGGTGATGTCCCTGATAGATGCTGCTTATGACAAAAAAGCTAATGTAAGAAGCATCATTA TCTCTTCATTGGTGGATGTTGGCAAGAAGAAACCAAAGCTTGTTCTCAGCTCATGTCACTCATATTTAAG AAAACACAATAAGTTACCCAAAGATCACAGGACAGTAATCCTCCAGACGATGGAGCGAGTCTTAAAGGAA GGAGATGATGTACCAGGTGCACTCTCTATGGATCTTATCAAACTAGCCTCCGATGAAATGACCACTTCAA AGGAAGTGGAACCAGAGTGGCAGACTGCTGCTAGCAATGTCCTAGTTGCCCTTGGTAACAAGTTATGCAA TGATGTCATGGAAGATCTCTACAAGAAATTCCAGCCTGGTTTCCTTCCACATTTCTTTGTTGTACAAACC ATGGCTAACCTGGCCAATGTCAATCCATTTGGGTTTGTACCTCACCTGAGTGCTGTATTGAGTACTATGA TACCCATGTTGGGTATGGCCAAACATGACAACATGAAGTGGGTCTTCTCTGCAGCATTTGCAAGATTCAG CGAAAGCATCCTTCATTATGTAGCCAACTCTGACACTGCTCCAGATCCAACAATAAAGAAAGAAACTTAC GCTGATCAGATCTTCTCTGGTTTTGATGTACTATTCTCACTGTGGCTACCATCAAAGGAGGCTAAGCTAC GTCTGATAGTAGTTGAAGCATTAGGTCCAATGACTCACATTATGACCAAAGAGAAGTTAGACGAACAACT TCCTAAACTAGTCCCTGGTATCCTAGCACTCTACAAGAAACACCAAGAGGCTTTCTACATTACACAGGGA TTGTGTATGATTCTAGAAGCAGCTGCTGCTGAGGGTAGTACTATTCTTGACCCACAACTAGATACCATCC TAAACACAATGCATGCACAGGTGTGTGTACCAGTAGACTACACCAACCCAACAGGTCTCAAGAATCATAA TGAGGTCCGGCGTTGTTTTTCGGTCCTAGCTACGTCTTTCCCTGATCGTGTAGTCAACTTTTTACTCCTG AAGCTAGACAACAGTAATGAGAGAATTCGCATTGGTACACTGGCTGTATTTAAACAACTGATTAACTCTG CAGGCCCTCATATGGAAGACAAGAAGCCTTTGATTTTATCTGGTCTCAAGCCTGTGTTACAGGAGAACAA TAACAAGGTGAAGAAGATGTTTGCCCAGGTTGTAATAGCTATGGCTGATCATGATTACTTGTTACTAGAG GGTGGTCATCGTATGGTTGAATTCATCATCTGTCAGTGTACCCTTACTCCAGATGTACAGACTGGTAAAA GGAATCCTGATCCGGAGTTTGTGAGTAATGAAGCTTTAAGATCTATGAGTGAGAATGTGCTTCATCTCAT TACTACAACTATTGGTAGCATGGAAGAGGTTTTATGGCCATTCCTGTTGGAGTTCCTAGCTTTACCTCAG TACACGGACGCCATGATGCCATTGTGTCGTAACCTAGCCTACATAGCATCTAAGAAACGAGAAGCCCAAG ATGAGGATTATATGATAGACTTTGAGACACTTGTCAATGTTCCCAGACCATGCTCTATCATTGCCAGGCT CATGGTAATGGCCGGTAGACCAGACAATGGTCGTCAGAGAGGTGTGTATGTTCTCAAGTTGATGCTAGGG TTATCTCCGAACCTGAATGAATCAATAGCAGACATGTGGGATGCAGTCATTCCCAAGCTCATACAGTATT TAGAGGATAATCTTGATAATCCTGACAAGTGGTCCCAGAAAGCTTGGGAGGATCTTCTCTTAAAGTTATT GTCCAAGACATTAGATGATGCACAGAATGAAGACTGGGTTGCTGCATTAGGAACATGTTTTGGAGAACAT ACTGCTTTGTATCAAAACATGCCAGAAGAAAAGAATTTCTTGTATAAATGTCTTGGAGTGGTGATGAGGA AAGTGACAAACAAACAGTTTATCCAGAAGCACCTTGATATCATGTTTGCTGTGGTTAGACATAATAACCA GACTGAAAGAGAGGGTTGTGCAATTGGCGTTGGTTTCTGTGCTTCATCCCATCTGGATCTAGCCCTCACC AAACTTGAAACTGTAACTAAGGGAGAAATGACCAGGAAATCATCTGGTTTCTTTGGATTTGTGAAGGATA AGGGAAATGATGACACTGGTAAGATCAAGAGTACAGTGATGCTTTGCTATGGATATCTAACACTCTATGC TCCTACAGACATCATCGCATCAAGGGTTGAAACAAATATCCTCAAGAATATCAATCCGCACTTCAAAAAT GTCAAGGATGCTGCTGTAAAACAGAACCTAATCCGAGCTGTAGACCTGATCGGGAAGGCCTTGCATCCAG ACCATCTCAAAACCAGGCACTCGTTTGCTAAGAAGACTGATTTACTCGCTCACATGATGTCATACATGCA AGCAGAGAGTACCAAGGAGATTACCACAGATACAAGAGCTTTAGCACTTCAAGCATGTGCAGCATTAGTT AAACTTGATCCTCTTCTTACTGAGGCTGATGCGTTTACACTTATCAATACTGGTGTGACTTGTCTCTTTA AGCTCCCTGACTGCCCGCTCATGACCTCTAAGGGAAAGGAAGAACTTCGAGAAGATGAAATCAAAGAGTA CGATGTGCTGATAGAATCATCATTGGATGGTCTTCATGAGATGCTTAAAGAGCTTCTGAGGAAAGATATC ACACCAATAGGCTTCCATAATATATTCAAGCATCTACATCCATGGTTGTTATCTGGTGAGGGTCATGAGA GACAGAGAGCAGTAGAGACTACCATGGTCCTTCTATCATTCTATCTGGAACATGTAGAAGATGTCACAGG GGGGCCCTCTGCCTTTACCTGTATGGGTGAAATCTTAGCCTACCTTGTCCCAAGGTGTTCAGATCCATGC ATTGACGTCCGTGGTCAAGCTATAGAAGGCATTCAACTCACACTTAAGATTGCTCTACTATATGAAGGGA GAGCAAGAGATTATGAAGACAAGATGGTAGAAGCCCTTTCCGTCCTTCGGGGTAGGAGTACAACCACTGA TGCTCAGGCTCTATTTAGTATCATAAGTGATCTATCAAAGGCCCTTGCCAGGAGAATACCCAGTGAACAA CTAGAAGGTTTTGTATTTCTACTAATAGAAGGACTCCTTGATACTCAATCTCATTGTTCCAGTGGTGCTT GTGTAGTACTCAACACTATCCTAAAGTCAAGAGGAACTGAACTCATCACATCAGTTGTAAAGCTTATAAC TGCCCTCCACATCAAGCTAGCATCAATCACGTTCCCACAGACCCGTACAGGAACAATGAGAGCCATTAGA ACACTAGCCTCTACCCATCTAGAACCCGTCCTTAATACACTTATCAGATTCCCACTTCCTTATGACCAAC ACATCATAGAGTGTTGGCGTACATTAGCCTGTGATGGCAGTCTTCTGCAGGCCGTCTATGATAGATGTTT GGATATGATGGCTCGTAATGTACATGTTGATGAGAAGATAGATCCTAAATCCAAGAAAATCCTCTCCAAG GTTGCCAATTTGATGCCGTTATCTGTTGTATCAGCTCTGACTGAAACATTCCAAGTGGAGGAATCAGAAG ATGTTGTTACTGATAACTTTCCAAGGTTGTTCTCGTCTCTACTGATCTACATTGGCTCTTGCGTGGGTAA GGTCAAACCTCCGTCCCTCAAAGCTGATCAGATCCAACAACAAGAGATTGTCAATGTGAAAGATGTGAAA GCATTCAACAAGGCCTTGGCTGTTATCTGCCCTAGCTTCTTGGCAACTGAATCTATTAAGTGTTTGCTAG CAAGAGGGCCTAATTCTGCAGATCTGATGGAGCTACTTAGTAAGGAGGGAGTATGGACTAAACTGCAAGA AGAGGAAGAGTATGAGGATGGGGTACAGATACTTGGGAGGGCTGTGGCAGAGTACAGAGGCAACTACATC CCTCGGATCGTTGGAGCTGTCTCTCCAAACCTCAACAGTCTGTTTGATACACAGAGAATTGTTACAACAG CTTTCTTAGCTGAGCTGATCAATCAGAGATGTGCAGGCGATATCTCTCAAGTTGAGATCATCATGAATAA TCTCCTTGGTAGGCTTGTTGATGGCAATGCTGTTGTTCGTAAGCTTTGCATCAGGGGTCTTGGTAACATA GCAAGTCTTGGATCTGATCAGGTTCAGAAGTATTCTACGACTGTGTTATCTTCTATGATGGCTGGTATGG ATGATAAAGATGACCCAGAGGATAGCATCACCTTGGAAGCCATGTCTGGTCTAACTCGTATCCTTATGGA GATCTCAGAGAGCAACGTTAGACCTATCCTTATCAATGTTACTTTGCGCATTAGACCTTGCTTTGAAAAG GACCGTGCGTCAGTACGAGCAGCATCCTTTACCCTATTTGGTAACCTGAGTCGGTTTGGTGATGGTCCAT CAAGAGATCCATTCCTTGAGCAGATCCATACAAATTTTGTTAGTCTACTGCTTCACCTTAATGATGAAGA TGATGACGTTAAGAAGTCTTGCAAATTTGCTCTAAGACAGTTTGGTCCTTTGATGGGGTCTAGTGCAATG AATGATATGTTCCAGAAGCATCTGCTTGAGGACAGAAAACTCAACTATGGAGAATTCATGTATGACCTCT CTAAAGTCATTATTGTTGACTTACTTCAGAAAGTGAATTTCTATGTGATGGGTAACGTTTCATTCTTCCG TAGTGCTTGGCCAGATATTAGAGCTAATGCTGCTATGTGTGTTGGATTCTTACTTGGAAACCTACCTAGA GATAATCATAGTCTTATCAGCAAGGATCATGTCTGCGGAGCTTTGATTCAACTTCTTAAAGATCCAGAGC CCTCTGTAAGAGTCAAAGCAGCTGAAGCCATGAGTCTTCTCTTTAACTTCTAGACAAATTTGGTACTTAT GATATAATCATCTTTAATATTCAGCAAACATATATATATCATTTCTTTCAGTACATAGTGAATTAGCAAT CAGAAAACATGGGGATGTGACTTTGAAAGTAGGTATTTAAAGAGAGTTTATTGCATCTCATTGTGGAGTT TACAACTTGGGATCTTGGGATTTTGGATGAAAATTGTACATAGTTATTCCTGCAGTAGCATGAATCAATG TGTGATGCTAGCTTCTAAAGCAAGTGCAGTATACTAGTAAAACTCATCATTTTACATGAGATATATAGTG CAGTATGTAATATGTGTGGTAGACTAATGATTAGCAAAGTCACATTTTTTTATTGACTTTAATGATGTTG TTATTTATTTCCATCATCATATGATGGACAAAGCATATTTTGCTTGTAGTTCTGGTTTATATACAGACAG ATCTCATGATATATTACAGCTTATAAAGCAAAAGAATGAACTACATGTAACAAACCTGTTGGTTCATTAT TTAATACATGTACTTGCATGATCAGATGAATGATTAAAAATAAAATTTGTATCTCTTTTAAAGTGCTGAT GTCAGATATTCAATCAAGAAAGATAGGGTTTTCAAAATTTAAACAAGTTTAAACAATAAATATAGTAATT AATATAAATATTAATAGGCTGCCGTAGTAATACTTAAAAAAATTGCATTTTGTAAATAAATGAGTCATTT CCAATTAAGAAAAAAAAATAGTAGGAAACAACTGAGAAAAAGTTCTGGTTCTGTTCAAGTCATTTTCCTG CATGAAACTGAAAAGAAGTACATTTTTGTTATCAAAAAGAAACAATTTGCTTTAAGTTTTGTGAAGTTGT ATTGAAGTTAGTGCGAAGAAGTGCAGGTTTTTGTCTCACCTGCATAGCAGAGTGAGACTATAGGCGCCGC TTTTCCGACGGCGGCGGCAGC
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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