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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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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_041602629.1 PREDICTED: Lytechinus variegatus mutS protein homolog 4-like (LOC121410495), transcript variant X1, mRNA AGGGGTGACGAAAACAGCAAATTACACAGCGGTGCTTTGAAGATATATGATTATTGTCCTATGAAACAAT TTTCAAGTATTTTCTCTTTCAGATGACATATAGAAGTAAGGATATTGTAGCTAATTGAAAGAAACATAAA GGAAAATACGTAAACTGAGCGACGATTGGGCAGCGTACAGGTATATAACGTCGCGTCGGTACAAAATAGG ATGACGGTATCATTAGTAGAAGAACAAAGTTAGACTTAGACTTCACATTAGTTCTAGCTGGAGCGGTATG AAGTTGGGTTCAGAATACAATTTTGAAATCTATGGCACAGCTGCAGGTAGTAGTAAGACTCCTGCTTGCA CCAGGCCTCTTAATAACTCAGCATGGAGCATAACTGGACCATCCACATCTGTATCATGTATCACCAGCAA CAGCTCTAAGGAATATGGTACAGTTTCATCAAACTTGCCTATGTCATCCCGAGCTAATACAACTCTGATG TCATCAGCAACAAGTAGGGCACTACAGAGGGCTGCTAGTTCTGGAAGATCATGGAGTTACACCCCTCTTA CATCAAGTGGTGGTAGACTAAGAACTCCTGGACGGACTCCTGGGAGAACACCCGGGTCTAGGAGTACAGT ATTTGGAAGCTCAAGTACAACCCTTGGCGTCAATCCTCAGTCTTCGGTTCTTGTAGCCATTGTAGAAGGG AGAGGTGTAGCTCAGGGTGAAATAGGAATGGCTAGTATTGACCTGAAGCAGCCTGAACTGATATTATCAC AGTTTTCAGATAGTCAGACGTATGTGAAAGTAACAACAAAGCTTCAAGTATTGCAGCCTATTGAGATCAT TATGCCTCATACAGCATGTGAAGGAGGAGCAATGACAAAGCTTTTCAAGCTTATTAGTGATAATTTCCAG GGTCTTGATGTTACAACAGTCCAGCGAAAATATTTCAATGAAACAAAAGGGCTGTCAGTAGTCAAGCAGT TATGTGTTGCAGACTTCAGTGCAGTTGAAATGGAAATCACATCAAAATACTACTGCCTTGCAGCGGCAGC TGCTCTATTGAAGTATGTAGAGTTCATCCAGAATTCTGTTTATGCACCAAATTCATTGAAAGTGGTCTTC AAAGGGAGTGAGCAATCGGCTGTAATAGATGCAGTTACAGCTAGAAACCTTGAGCTTGTTCAGAACCGTA AAGATCCCAAGAGTGATCACACATTGTTTGGCGTTCTCAATTACACAAAGACTATGGGAGGAGCTCGTTT GATGAGGTCAAATATCTTACAGCCGCCACTGAATGAAGAAACCATTAAGCTTCGCTTGGATGTTGTAACT GAGTTAACAGAGAGTGAGGAACTCTTTTACAATTTGCAATCAGTTCTGTCTAGGTTTATTGATGTGGATC ATCTTCTGTCATTGTGTGTTCAAATCCCAAAGGAAGAATCTGTGAAATCATCTGAGCAAAAGATCACTAA TATCATCTACTTGAAGCACACTCTAGAGCTCGTTGAACCACTCCGTCTGGCTCTTCAGTCAGCCAAGTCA AAACTCCCTCAAGCATATCACAAGACTTTACAAGATAGTCGATTTCAGCAGATCTTAGAAAAGATTGGCA CAGTGATTAATGATGAAACCAGATATCAGAAAGGGGCTCTTAACATGAGGACTCAGAAGTGCTTTGCTGT CAAACCAGAAATTAATGGTTTACTTGATGTGGCAAGGAGGACCTACACAGAACTTGTTGACGATATTTCT GGCCTTGTTTTCACAGAGATGATCAAACAGCTCTCAGATGAACATGGTCTGTTGCTTAGGACCAATTACA GTACAGCTAGAGGATTTTTCATCCAACTCTACAGTAAAGGCAAACACAGCATCCCTATAGAATCTCTACC TTCGGTCTTTATCAAGGTTGTCAAGGCAAAGAATATGCTCAGCTTCACTACAACAGATCTGATCAAAATG AATGACAGAGTAAGAGAGTCACTCAATGAGATCTACCTCATGACTAATGTTGTTGTGAGCCAGTTGCTGA ATGACATCAGAGAGCATGTAGGCTGCCTATACAAGCTAGCTGAATGTGTTTCTGTCATTGACATGCTTGT TTCCTTTGCCCATACATGTACTCTCTCAGACTATGTGAGACCAGATTTCACTGATACTTTAGCTATCAAG CAGGCAAAGCACCCAATCCTAGACAAGATCTCCTATGATCCACCCATTCCAAACAACATTTATGCATCAG AGGAGAGTAACTTTCTTATCATAACTGGTCCAAATATGAGTGGCAAGTCAACCTACCTGAAGCAGATAGC ACTACTACAAATCATGGCTCAGATAGGTTGTTATGTACCAGCAGAGTATGCATCTTTTAGGATCTGTGAT CAAGTCTTCTCAAGGATTGGATGTGATGATGACATTGAAACAAATGCATCATCATTTACGTTAGAGATGA GAGAAGTGAATTACATTGTGCAGAACTGTTCTCATGAATCACTGGTCATCATTGATGAACTAGGAAGAGG TACTAGTAGTGATGAAGGTGTTGGTATCTGTCATGCTATCTGTGAATACCTTCTCAGTCTGAAAGCATTC ACATTCTTTGCAACACACTTCATGGAACTAGCCAATCTGGATGCTCTCTATCCCAATGTTGAAAATTATC ACTTCCAAGTGGAGCAAAGTCAAGCTGAAGGTTTAGATAACAACATGATCAACTACACTCACATCTTATC AAGAGGGAGAACAACAGAACAGTACTATGGTATCAAGTTAGCAGAGATATCCACCTTACCGCCATCTATT GTAAGAGAGGCCAAGAAATTGTCACAGAAATTAGCTCATCAAAGGAAGACCCAACTAGAATCTGTCAAAA GGGACCTGAAGATGAGACCCCTCTTTAGACTAGCCAACAGGTTGCTTCAAGCTGCAAGGAGTTCCAAGTT AGACCAAGCTGGTCTAAGAGAGTACCTCAAAATACTGAAGGAGAGTTACTTCAAAGAAATGGGATCATCA GAAGAATGATGGGAAATCATTTCAACTTGCTTACAGACTCATCAAAGCTACAAAGAATTCATCGTAATGG GAGGTTCCATGAAATGTGTATGCCAAACTGTATGTGTGGGACTTTCCTGAAGTCCAATCTAGTTGCTAGA CTAGCCTTTCCCAATAAATAGAGACTTCAGAGTTCATTTTCAAAGATATCCCTTAGCTTCTCTGAACAGT TGTAAAGCACAACCCTGTCAAGGTGGGTATATTTATGTAGAATTATAAGAGTGCTGGTTTTTATTAACTG GACAAGAGGTCTTATCAAAGCCTGAAATTTACAGACCTGATTTACAGGTCTAACCGATGATTTGCTGTAA ATTATCAAACTGAATTCATTAAGAAATCTGAAAAGAAAATCCTGAGTTAATAGCCAAACTTGTGAATTTA GTATAAATGAGAGAAATTCTTGTGAATAATCTTTATTTTGAAGTATAAACCTCAATATACTGCATAGGTT GACATTTTTAAGACCAGGTTATGCAAAGCATTGTTATTGCCTCTTCAAAGTGGATATTTTGCATAAGTGT AACAGATTTACATGGTCTTCAGAGGTTTGAATTAATTAGGTTGACCTATACTCACAATTGATAGCATCTG TATTATGTATTTATATAATGTTAAATTTGCAGTCCTACTCAGTAATGTGCACACTTGTGGAAAAATGTAC AGACTTGAGCCCGGAGCACACTTTATGATTCGTTGCTATCCGAATTTAAAAGATATGGTAATGACATTTG ATTATGAACATTCCAGTCAATAAAACAATAGCAATTAGAGTTCAGAAAAGTGGTAGGACTACTAAAGTTT TTTCAATTCAAAAGCGTAATCATCGACTGCGATTTAAAGCAGATTTGGACTTTACCCCAACCACAGGACT TGCTGCCAAGCAAACTTGTGATTTATTATTAACATTATACTGAATTTCAAATGAAATAAATTTACTTCTT GAAATTCACACATTTAATGCAAAATGCAATTTATCTTAAGTCGTGTCGTATCAGATCGCATAGCGTGTGC GTTGGGCTTGCAGTTTGGTGTGCACATTTGAACTGTATAATACATATTTAAAATGTTCAGATGCGTCACG TTTAGTTTGTGGGAATATTTGAAGAAATGTTAAATTCTATCTATACCTTTGGTAAGGTTCAATAATGTAA AATAGACTATCATCTAATGTTCTAATCTTAAAAAGTGTAGTGACTGAAAAAATAAATGTTAATTTTTAAA ATAAAATTTGAATTTTACCTTTAAGATACATGTATTGCTCTTTCTTGGTAGTTCTTTTTAGCTACAAAGA CTACATCCTAATACATCTTTACAAAAAATCTGATCTATGCTTGAGAAGTGGTTTTCTAAACCAAAAGAAA AATTCAGTTTATGTAAATGTAGTTGGGATACTAGCCAGTTTTAATCACTATTTGACATATCAACTTCTTA CTTGGTCCAAGTATGCATACATAATTGATGATGATCTAATTGGAAATTGCCATTTGGTTTACACCTTCTT TATCTACTATCAGTTTGGTCTCATTTAAGACTCATTCTTGGTCTCTTTCTTGACCCCTGCTTGGGGCTGG ACCCCACCAAAGACTTAGTCGGGCCCCCAGGACCCTCGGACATTGGTTGTCCAGATTTTGCATTTCTAAA TGTTGGCAGGTATGTGAATGTGAACTAGACTAATTGGGTATTAAAATAAGTGTAGTGGAGATCAAACATC AATATTTGATTTAGTATTAGATTATCTGAGATGTAATACCAAGTGAATGTAAACTGACCTGATTAGTTTT TAGGTATCAAGGGTAAAGGTTGGAGGTCCTAACATATATTGAAATATCTTGTTTTCATGATAAAGAACCG CATGAGGTTTGGTGTGGTTACCAGATTAGACTTGGGTTTAACCTAGGTTTAATTATCAGAATCCCATTCA CAGAGTTCCAGAAATGCTTGTTACTATGGTGATTCATGAAAATTAAAATGCATGAAAATCATAAATATCT CATTAACAAATATGTCTGATGTACCATGTTTTACCTGCAGAGTAAATCTGCCACTTCTTGAATTTGTTCC AAGCATGTGACATTAAAATTTCCTTTCAATGAATGGTCATCCAAATTTAATGTCAATTCAAGAAAAAAAG CCATTCCGTAAGAATGGTTTGGCTTTCATGATATCATCAAAAATTTATTTAGCAAACTTGTTAAAAGAAT AAGTTTGTAAATTCAAAGTGTAAATATTCAGAAGTGATTATCTCTGAAATATTTTTCTTCAAGCTTGTGA GGATGATCTGGTGAGAGTGGTCATGACATTAATGAATATACATGTATCTTGTTCTACCAAATTTGATAAC AGTGTAAGAGATCAGATTAAATGTAAATTGTATGCATATGCAAGTCCCGGGGGGGGGGTCACTTTCATTG ACGAATGGATACTAGGCACAACCGTGGTGTTTCAAAAAAGCGCCCTAAACCAGTATTATCCATATTCTGA AAATGCACCCCATAACAAGTATTGGCATGTGAAACCCTACTCTTCTATGATAAGAAATGAAATGGTAACC TTGACAAGTATTCCCTGAATTGACCCCTAAACAAGTACAGCAATATTTTGATTGTTATGTCACAGACATG ATCACGGACGTTGGCTTTACCCTTACATTGGGTTTAGTACCGCCTCGCCTCACTCAAATCGGACTCAGTT GGGGCAAAAAGTAAAACCTTTATAAGAGCATTTCAGTCTTTTTATACCCTCGCAAATTTGACAGTAAACA CATAGCTTTCCTAGCGAAATATATACCCTTTTTCAGTATTTTAGTGGGTTTTTATTATACCTTTCTTATG TTACTTGTGTAACCTGCTTGAATTTTGAAAAAGAGATCCTTCATGCCTGGTATTCACTCGTCAATGAAAG TACCCCCCCCCCCTCCCCCTGATGCAAGTA
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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