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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_041596695.1 PREDICTED: Lytechinus variegatus ubiquitin carboxyl-terminal hydrolase 47-like (LOC121405743), mRNA TCAAAACTCGTCATATTTATTTCCACACACGATGAGTATCAATGTTCGGATGTTGTGAAGAAAAAGGATT CCAAATTTCACGGTTTGAAGAGATATACGACGACAAAAACTACTTTCAGAGGATCTTGTTGAAGAATGGT GCCGATAGATAGTAGCCAGCTGGTTCCATTAAACGATACCTGTACCGCTGATCTTCCCAAGATCCTTTGC ATCATTTATGACATCACCAACCCGCAATGGCAGACGTGCAAGTTCACCGTCACGCTGCCGACGTCGACGA CCGCCGCGGAACTCTGCGAGGAGGTGGCCCGTCAGGCCAACTACGAACCAGACACGTTTGAGCTGTACTG GCAGAGAGGAGGAAAAGATGGCAATGATGATGTTCTCATGAGCGACAAGGGTCAAAGTTCACTGGGCGAG CTCGGCCTGCTTACAACGGGAAGGAATCTATTCAACTTGCAAGACAAAGATGGCACCCAGCCAGTCCCTA TACAGGCTGGGGCAAGCGGAACCACGACATCTCCTAGCGACATCGATGCCTTGAACCTAGCGACAGATGA TACAAGTCCGATCATCACAGCGACTTCCGATACGAGCTCGCTCTCATCGGATTACTCCTCGTACGTCCCG TACTCCTCTGCGGTCATTGGACGATCCGAAACTGGTTTTGTTGGTCTTGTCAACCAGGCTATGACATGCT ATCTCAACAGTCTGATGCAGACGCTCTACATGACCCCGGAGTTCCGGAACGCCGTCTACAAATGGGAGTA CACCGACACACAAGAGGAGCCGTCTAAGAGCATCCCGTATCAGCTCCAGCGCCTCTTCATCCAGCTTCAG ACGAGCAAGAAAAGGTCGATAGAGACGACAGATGTCACACGCAGCTTTGGGTGGGACAGCAGTGAAGCTT GGCAACAGCATGATGTGCAGGAGCTGTGTAGGGTCATGTTTGATGCTCTGGAAAAGAAATGGAAGAACAC GGATCAGAGTGATCTAATAAACCAGCTATACCAGGGTCAGATGAAAGACTATGTCAAGTGTTTAAAGTGC GGGTATGAAAGTGCAAGAACCGATGCATTCCTGGACATCCCGCTGGTGATCAGACCGTTTGGTGCAAACA AGGTCTACAGCAGTGTTGACGAAGCATTACAAGCCTTTGTTGAGCCTGAGACATTGGACGAGAGCAACCA GTATTTCTGCGAAAAGTGCAACATGAAATGCGACGCTCACAAGGGACTCAAGTTTCAACGCTTTCCTTAC CTCCTCACCCTACAACTCAAACGATTCGACTTTGATTATAGCACCATGCATCGCATCAAACTCAATGACA AAATGACGTTTCCCGAGATCCTTGACTTGAATGCATTCGTGGAAAACGAGGCCGACTCACAGGGGGAACC CCCTACACAGACGACGACGGTTCAAGCATACGTGGAAGGGGAGACGCAGTCCGACAGCGGAGCGGAGAAC GAGGACGGGAGCCCCAGCAGTCAGAGTCAAGAGAATTCCCTAGAGGACGCCCTCGACGAGGGGATCGTCA TGGAACAGACGTCCACCGCAATGACCAATCACAGGAACGAACAAGAGAGACAGACGAGGGGGCCCTTCAT GTACGAGCTCTTCTCCATCATGGTGCATTCTGGGACGGCATCTGGTGGACATTATTACGCCTATATCAAA TCCTTTACTGATGGTCAGTGGTACTGTTTCAACGACCAGCACGTAACACGGATCACCTATGACGATATCC GCAAGACCTATGGCGGAGAGCCGACGCACTATCGGGGCTACTACTCTAGTTCTTACACCAGCTCAACCAA CGCGTACATGTTAATGTACAGGCAGATTGACCCCCTTCGCAATGCAAGTTTCATGAATGCGGATAACTTC CCGAGTCACATATCACATCTCTCCACGGGACTCTACCAGGAAGAGGAAGAGGAGAAGAGACAGAGAGAGA TAGAGAGAAACACGTGCAAGATCAAGCTATTTGGAGTTCATCCGGTGACGGGAAAAAGCATTGAGACAAG ACTAGAGGTGCATAAGGATAGGACTTTAACGGAGGCTACACAAATTGGCCATGAGTTACTTGGATATGAT GGTGTGATACCGGTTGAGCAGTGCCGTATGGTCAAGTATGATGAGTTTCACGAGTCGCTGGAGAGATCAT ACGAGGGGGAAGAGGACACGCCCATGGGTCAACTCCTCGGAGGGGTCAAGGGGTCGTACATGTTTGACCT TCTGATGGAGACAAGGACAGCAGAGCACCAATTCCAGAGCTATAAACCAGGAGGTGTGACAATCAAATTA TTTGTTGTTGACCTGAGGCAAGATGAAATCCGCAATCCCATCACGACGAGAGCCTACCATCAAACGACAA TCGCAGATCTTAAGCAACAGATTGAAGGGTTAACAGGTCTACCATCCAGTAAGATGCGCCTCGTACTAGA GAAATACTACAACGAGCTCCGTCTTCTCACCGTCCCTAGCAAGAATCTGAAATCAGAGGGATTCAGTAAA TGCAATAAGGTTTTTGTTGAGGCCAGTGGTCTGGAAGATGTGGATTCTGAATTTCCAAGTTCCCAGCTCT ACACTCTACTTGATAGATATGCCAACACAATCCGTCTTCTTGTATCACTACCACCACCGCTAGGAGAAGA GGAAGACAGTTCCAAAGATGAAGTGTCAGAGACGAGTTCATCAATAGACTCAGTGGCAGAGAAATTCTCT GACCTTCAAGTAGAGACCGGAGGCCTCTCTCCCAACAAAATCCCAACGCCGAGCCCAACGGGAAGTTCCT CAACGCTGAGCGACGATCACCCGCTGGAGAAGAACGGTGTGAATTTAGTGGGTAGTGAAACGGACAGTGG AGTTGTGTCACTGAATGAAGCTCGTCTTACAGATGAACAACCAGGAGAGGATGATAATGTATTAGGAGAT GAACTCCGTGGGGAACCCGATGGCGGGTGTGACAGTCCAAAAGAAAAGCAAAGCATTGTGGACCCTTTGA ATGCTCAAGAATTAACTGATGCGTTAAACGCAGCGAGGCCAGTTGCGAGCGATTTAACTTCTCCGCATCC GCCCAAGGATGCAAGTCACAGAGACAAAGGGGAAAGCGCCCCCAGAGTTCCCTCTTTATCTAGCCAGAGA CAAATCGCCAAGAGCCACTTGACGTTGCCGGTGGCGTCGCAATCGCAGGCAGCGGCTTCCTGCACGGAAT GCGGGAAGCTGCAGGTGCCCGACGCGGGCAGCCTTCGTCCCCGGGCCATGAGCCCGCTTCCGGGACCGCT CAACCCTCAGATCATGGACGCTATTCATAGGCGGAGGGACGCGGTGGATCAATCGTGTGAGAGGGGTGCA GACGGGATGGAGCCGGGCTTTATAGGTCCTAGTGGACCCCCTTTAGGGTATGCTGAACCGCCTAATGTAG ACTCAGATCAGGAACTCAGTGAAGCGGTTAGAACGCAAAGGAAGAAGAAGAATTGGTACTTCAAGCCTTT AGAACTCTCAGATACGGAGGAAGGCAGAGTGTTAGTGGTAAACCTTGACAGGCGGATGTCCTTAGGATTC TTCAAAACGTGCGTTGAAACACACGTAGGAACAACAGCACTCAATTTCAAGGTCTACAGAGTGTATGCCA ACAATCAAGAGTTTGAGAGTATCCGATTGAACGAGACATTGCAATCGTACAGCGATGATAGTAGGATAGT CATCAAACTAGGTAGAGCTCTGCGGAAGGGAGAGTATCGCGTCAATATCCATCAATTACAAGTTAACTCA AATGAGCCCATCAGGTATCTCTTTGACTGGGTGTTTGCTAAAGGTATGACTGTCTTACAGTCAAAGAAAG AACTCCTTCCAGAACTCAAGAAGAAATGTGGAATAGATGTCCCTCTAGACAGGTTACGTTTACGGAAGAA GTCATGGAAGAACCCTGCCACCATATTCCTCAACGACCGAATCTACGAAGAAGATATCCCAATCTTCACC AACTGGGAAGTCTTTGTGGAGCTCCTAGATAGACCAGAGCAAGTGCAGTCGTCATCTCAGCTGGCATTGT ATGTCAGGCGATGGCGCCCTTCAGAGATGAAGCTAGATCCCTTTGAGGAAGTGATTCTTGACGATACCAA TGTCACGGATCTGAAGGCAGCGCTGGCAGACATTAGTGGAATCCCCGTGGAGAGCATCGAGTTTGCCAAG GGTCGGGGGACGTTCCCCTGCGAGATCTCCCTCCTAGAGATGAACACAGACCTGGAATGGGAGCCTAGGG TCACTGCGCTTAATACGTGGCCTCTCTACATCACAGATGATGGGACCGTCATTTACTACAGAGACAATCG GGAGGAGCTGAAAGAGTTGCAAGAAGAAGAGAAAAGAGAGATACAGAAGAAAGAAAATGCAAGGTTATCG AAGACTGGTCAGAAGGTGACCTATTCGCCTCGGAAGGAGAGAGCGCTAAAGATCTACACCGATAGCCCTC CCCCATACAGTGCAATCAACTAATACTACAATCTTACACCATAGATAACACCATAGGTAACACCGTATTT AACACTGATTAGCAAAATCATGCCAGATGGGGATGAAACATGATCTTCTGCTATTAAACCTAAAGGAAGT TCCTGTTACTGTGACAATTGCTAGTATGATGTCTCTTAATTTTCCTCAAACCTTAAGTTCAAATTACTGC AAAAGAATAATGTACTTTGGCACCATGTTTAACACTAATTATTGAGCAAGATTATACCAGGGAGTGATGA AACCAGGTTTAGTCCTTAAATGTTATGCCACAGAAAGTCCCCTGAAACATTTAGTTCAAAACACTGTAAA AGAAGAATGCCCGATTACACCTTATTTAACACTGAAGCATTAGTAACATTGTACCAGGTAGTACTGACAC CAGTATATGTTATGTTACAGAAAGTATATGTACATGTATCTGATCATTTTTAGTATGACATCTCTCAATA TCTCCCAAAATGTTAAGTTCAAAACACTCCAAAAGAAGAGTGCATTGATTAATACACAATTTTTGCAGGA TAAAAACCAGGGGTGGTATTCTGAAAACATTCTTATCTCTTTTCTTTGTAATCGATACAAGTAAGGTTCC TGCACTTATAGCGAAATTTGATTTGTATCATGTTGTACCAGACTTCAAATACCGACAATTGCTTGTTTTA GTCTGATGCATGTCTAGGCCTGTTTTCCTTTTCCTATAGCAAACTTGTCTCAATCAATCGAACATATGTA CAGAGCTGCCAACTGATACTGATTCTCAGTATTTGGAACTGAAAAATTAGAAGAATGCTAATAGTTTCAC GCAAAATACTGACTCCTAAACTTTTGGTTTAACCCTTTGTGTGCTGATGTTGCAATCTTGCACATTTGTA CAATTAAATTCAACTGTCGTAATAATTAGTTTTCTCCCCTACCTTCAAATTAGATAAGCTAGTAAAAGGC AATAGTTCTTGGATAACATCTATATAATGTCAAGTATCAATGGTGCAATATGGAAATCTTGAATTAAAGA AAACAACATGGAAAGAATTGTCATAATTA
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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