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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
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>XM_041620730.1 PREDICTED: Lytechinus variegatus MMS19 nucleotide excision repair protein homolog (LOC121424883), mRNA TTACATTATTTCTTTTTCAATTCAAGATGGCAGCCACCATGTGGACCGAGGCGATAGAAAACTACGTTCG TGGCGAACAAAAAGAAGCTTTGAAGTTGATTACCGCAGAAATCACAAATGGACAGAAAACAGTGGATGAT TTTGTTGACAGCATGGGAACCTACCTGATGAGTAACGAAACCAGGATCCGTGCTAGAGGGGTGGAATTAA TGTCTGAAGTACTGACAAGTTTACCAAGAACTTTCCTCAACCAGCAACAGATTCAAGTCCTGATTGAGTT TCTCTGTGCTAGGCTGTTAGACCACCACTCTATCACCCAACACACTCTCAAAGGTTTGCTGCCAATGACT TCTCAGTCCAGCTTTCCTGCCAGTTTGTCGGTTCAGGTGATGACAGCAATCTTTAAAGAGGTCCAGGTCC AGACCATGCTACAGGTGGACCGTAGAACAGTCTACAACATCATATCAAACCTACTTAGGACTAGCCTTAC AGAGCTACAAGGCATGGGGTCAGAGTTCGTCCTCGGCTTCCTCCATGCTATGGACGGTGAAAAGGACCCA AGGAATCTCATCCTCTTATTCAACATCCTACCGACCGTCATCAACAACTTCAAGATTGATATGTTCATTG AAGAGACTTTTGAGGTTGTAGCCTGCTACTATCCTGTTGACTTTCACCCTCCACCCAACGATCCATATGG TATCTCAAGAGAGAAACTGGCACAGAGCCTCAAGACATGTCTCTCCAGTACCCCTAAATTTGCGCAGTTT TGTCTGCCAATGATCATGGAGAAGTTAAGCTCAGACTTACAGACAGCACGGTTAGACTCCTACCAGCTGT TACAAGCATGCGCACCGGTCTACAGTCAGAGTGATATCATGTCCTACATAGAAGCGATCTGGTCATACTG CAGGAAAGAGTTGATGTTAGGTATCAGTGTAGAGTTAGACAAGGAAGCTGCAAAGACATTAGGTGCCGTG GTAACAGCAGTTTCATCTGGTATCCAGTCTACGTCTGGTGGTAGTGGGGACGGAGATCTGAATTCATTCC TCAGGAACATATTAACAGAATGCAGGCAGCATCTTTGTGAACCAGACCATCGGATGATCCACCCCTGCAG TAAGCTTCTGGTTGCCATAGCAGCAGCATCATACCCGGCTTGCATTGCCATTCTCAAGTATGCCGTCCCC ATCCTCCTAGATCAGTTCAATATATTTGACCAGACCAGAGAAAGAATGGTCCTATTAGACATCCTTGAGA GACTCCTCCACTCCAGTCAGGGTCACATCAAGGAACCAGAGGATTGGAGAACTCTCTTTGCCCATCACAT GGACACTGTAGTGACCACTGTCCTGTCCAGTTTTGCCAGGGACCAGGGTGTGCCGGACCTCAGGAAGATT GGGCTAGGAACCCTGAGGGAAATGGTCCAGGTCCCGATTCTTATGGACCAGAGTAGGCTGGAACTTGTGG GACAAGAACTGACAAGGGTTCTGCTAGAAGAAGGAGATGAGGGTGTGAGGTGTGAGTGCATAAAGACGGT ATCTAGCCTTGCCAAAAAACACACAGACTTTGTCAAGTCAACAATACTTACGTCTTTATGGACCACTGCA CAAAGAGGGGGTCCAGGATACCAAAGAATAGTAGTTGACATGGCAACCATAGTAACAAATACGTCAGATG ACCTCAGCAGGTCGCTGACCTCCGAGCTTGTGTCAGAAATAGCTAAGCCAAAATTAAGTTCTGACCAGCA TCTAGTGTATCTTGCCACGTTAGAAACCTTGACAGCCAATCTTTCCAGTACACCTTCAAATCTAGAGTCC CTCCTAGCATCTGTTGTCTACCCTTTACTTAAAATGGTTGTGTCCGCCACTCTACAATCCAGTACTGAAG CTGGGATCAGTCCACATTGTTGTGGGGAGGTTCTGGTTGCCATTGCAAAAGTGATTAGAGTGGTTGTTCC AAGATTAGATAACAGTATGGGGATCAAGCTATGCCAGTGTGCTATTGACGTATTCCTTCACGGGGAGTTA AGCAGTTTGGAGCTAACGAATCACAACACATCGGTGCCCTTCTTACCATTGGCACCTCATGCACCAGGCC ACCAGACACAGCTTGTCACAGTTCTCCAACCAATAGTGTGTTCCCTGAGGAGAGAGGTCCATCTACCATC CTCCAAACAGCTGATGTCAAGTCTACTTCACATATCAGCTCATAGTACTGTGTGGTTGACTAGTACCTGG GCTACTAAGGCTTTAGCTGGAGTCATTAATAAGCACCAAGCAGGGTCAGATTTAGATGAAGTCTTAGTTG AAGCAGAGAGTCTTTTAGGTCGAGCAATATCTAGCATGGAAGAAGGATCAAGCAAAGAAAGAGCTCTTAT GGCTTGGGTCTTGCTGACCAAGGCTCTTGTGATGCGTTCCCACCCCAAGGCAACAACATTCCTCACAACA TTACTCAGACTTCTTGAAGATGAAGATCTTGGTGATCAGGTCCCTCAAACCCTTGGCATGCTCCTGGAAG ACATGGAGGATGTACTGAGTGAGGAACTTCACTCAGACATCAAGATCATGTACAAACAGAGGGTCTTCCT GCAGGCACTTCCATTTGTCATGGCTCTTTTTAACAAAGATAACCTGCAAACAAGAGCCATCACAGCCCTA TGCCATCTACTCCCCAGCATACCCCGCCCCGTCCTGCTGGCAGAGTTACCCCCCATCATACCCCGCTTGG TGCAGTCCCTCAGGGTGACAGACCCACGCCCCACCCTTCCCATCTTGGACATCTTGGAGTCTCTACTTGG GGAGACACTGCCCTCATTGGTGGATCAGATTGATAACCTTATACCAACCCTCTTGGAGCTGAGTTCCTAC CAAGCTTCTTTGAAAGTGCGCATAGCATCTCTGAAGTGTATAGGGGCTGTTACCTCTTTCCCACATCATA TAATTTATCCGCATCAGGAGACAGTGGTCAGAGCATTAGCACCAAGGCTGGACGATAAGAAGAGACTGGT CAGACAGGAGGCGGTCAAGGCTCGGACAAAATGGATTCTGCTACAACAAGACACAAAGAGATAATACAAC ATTTTATTGTATCATATTATGGTAAGGCATCGATCATGTTAGATGGGCACCCAGTAGGATTTTAAAGCCT ATGCAGTATTCTCTCGCTGGAATGCTCCCCAGGGAGTGAAGGAAGTGCATACTTCTCTGTGGACAAGCCA GGATGCAATGATCAGGATACTAACATATTTGTAAAGTGCTTTGAAATGTTATTCCGATGCAAGCGCTATA TGTTTAGACAAAACTCTTACAAAAGTACAGCATAGTATGTATTCTTCTTATGGTGATTGAGCTTGAAGTC AATGTCAAAGAAAAGAGGTTGAAATACAGTCTACAGGATATTCTTTATGACTGGAGGAATCATGCTTTCT CACTAATCTAAATAATCTATAGTGCACCTAAATGTTCCTTCCTCAGGGTCTGTTTAAAGACTTTTCCCCC TGAACAGACAGGCAGCTCAGAACAATCTCATGATGATCATGTAACTTTTATTTTGATTCATGAAATTTAA CATATAGTCAGCCGACAAATGTGACATGATTGTGTTTGGGCTTTATCCAACAAACCTAGTTCAAGTTTTA TTTTCGAAAACCTACATTTTTTTGGTGAACGTTGTCACCAACTGGGCAGTGTGGAGTGCACTTGATATAA TCGTTAAGTGTTTGTTTATGTCTGTACAAACTCAATCACAGGTACACACATTTTTATTAGAAGTAAAATC CGATCCTGGATATTTTATCTGTTTCATCAAGACCAATTCGGGCAAATTGATGAAACAAATATGATTGGAT GTGAAACCTTCCCCTAGATTGGAATCGTAAAATCAAGTTATCAATTGCAAAAAGAGCTGAAAGCAAATGC AACTCTAAACTTCAATCTCAAGTAGTAACGATACTATTAACATTCCCTCCAAACAAACACCCAATACAGT GGTGCTAAAAAGTTAGTGAACTCCTTCAGAAAATGCACTCCTTCATGCTGAGTGTTGAATGTAGAAAACA ATGGAACAGTGCTTGGCAAGCCCAGAGAAACAAATTTATTGAATGTAATATTCAATCACCTGACTTCACA ATTAAGTATCTAAAAGATGGCAGAATTTGAATACTTGAAATATGTTAATTTTCTGGTGTGGTACACTAAC TTTTTAGCACCCCAGGTGGGTGTTTCATAAAGCTGTTTGTAAGTTAAGAGCGACTTTATGAACGACTGGT GATCCCTCCTTGTGGTAAATGGTATATTCGTTGGTGATGTTTTGGCACATAAAGAAGGTTCACCAGTCGT TCTTAAAGTCACTCTTAACTTACGAACAGCTTTATGAAATGGCCACCTGTATATGTTCATATGAGTTGTA TTATGTATGACTTGTCAGACAGTGCTTGCATTCATATCCCTATTTCAGCATGAATCAAATTTCATGCAAA GGGATTTAAGCAGTTAAAACTGAAAGGGCTTCCCTGAAGCAGTCAAGTACCATATTTCTGTTTTTCTGTT ATGTATGTAAATTATGGATGTTATATAAATTACATGTTACATTATGGCTATGAAGTTGAGTGTGTGTTTA ATCATCATCATTATATCCATAAATGATTATTTGAAATGCTATGAATCATGTGTCCAAATTATTGAGAGCT ATACAAATACTGAATCACTTTTCACTGTTAAACACTTGCACAAAATTAGTACTATTCACTTTTAAATTCT CTTTTCTTTGCATATGTATCTTTTGTATACAAAATAAATACATGAATATTAAGAACATATTTGGCCAATA TAAGTGTGCTGTGGAACCAGTGTTGAAAATCTAAAGCTATCTTATATTGCATGAGCACAAGACAAGGTGT TCGAGTTATTATGAGATGGGGATTTTGAGAAGGGCTGACAGAGTGGTGATGAGAGTGATAAGTGATTTTG ATGAAATCAACAAGGATCACACATTATCAGATACATTTATTAATAGATGGGCCAATACAGCAGTTACTTT GTGACCTTATCTTTAATTTTCTTCTAAATAGATATTCTAGATTTATATAACTTCAGAAAATAGAACAAAA CCTTACAACCAACAAATAGAACATACATTGAAAATACACTTAATTATCATCAAGAGCTTTGTGTTGTAAA TACCTGTAACTGATAAACTCACACACAATGCCATAGAGAACTGCTTTTCATTTCCAATCATGCAA
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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