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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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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_030998822.1 PREDICTED: Strongylocentrotus purpuratus ubiquitin carboxyl-terminal hydrolase 7 (LOC575057), transcript variant X2, mRNA TACACACACAGATTCCCTATGCACTTTTGCATAGACAATAATCATTCACCATGTATTGAATGGAGTTAAT GCGGCTGCATACACCTTGCGAAACCATTGTGATGAGGTTGTATTTTTCATTTTCCGATACCGATTGACTC CCCAAAATCTGATATTTAGGCTTGTCGTGTCGGAAGAAGGCCCCTGCCAGCAGGGGAAATCAGCCGAGAT TGGGCGGATCGCAAGTAAGCACGTGAAGGTGCCTCCAACGTCCCGAAAAGCACCCTCGTCGCAAGGCAGT GACAAGGGGTCAGATTCGGCGACGTCGGTCGTGGAATTGAGAGAGTCCGATAAGAAAAAATCGAAGAAGA CGAACAAGAGTCCCTCAGGCACAATGAACCACTACCCCAGCAACGAACGACCTCAGAGTGAGACGGAGGA GATGGATACACAGGAGGCACCGAACGAAAACATCCCCACCAAAGAGGAGACGTCCCCCACCCAGCCCCTG GGGGATGACGTGGATACAGGAGGGGGTGGTGGTGGGAGGGACGAGAACCCTGTGGTCATGAATGGGGACC TGACCACTGAACCGGGGCCGGACGATCCAGAACAGGGAGAGAAGATGGAAGAAGATGGCAGTCGTTCGGA AGCCACCTTCTGCCATACAGTCAACAACATCAGCAAGCTGAAGGAGACTTCACTCAGTACGTCTATCACC GTCAGGAACTTGCCATGGAAAATCATGGCAATGCCCCGGACGAGTCACAACAGTGCTGAGCGCAGCTCTC GAAGTTTGGGCTTCTTCTTACAGTGCAATGCAGAATCCGATTCACAGCTTTGCAGAACATGGTCGTGTCA GGCCACGGCTGAACTTCGGCTTCTGAATCAAACAGGAGGACAATCCCATGTGAAAAAAATCTCTCATCTG TTCTACAGCAAGGAAAATGACTGGGGTTTCAGTCATTTCATGGCATGGAGTGACTTGTTAGATCCAGAGA AGGGGTATGTGAAGGATGACGCCATTACGTTGGAGGTTCACGTTGTGGCCGACGCCCCTCATGGTGTTAG CTGGGACTCCAAGAAGCTAACTGGGTATGTTGGTCTGAAGAATCAAGGAGCGACGTGCTACATGAACTCT TTGCTGCAGTGTCTATTCTTCACCAATGAACTCAGAAAGGCTGTGTACCTTATGCCAACGGAAAGTGACG ACTCTTCAAAAAGTGTGCCACTTGCGTTACAGAGGGTGTTCTACGAGCTGCAGCACAGCGATAAACCTGT CAGTACCAAGAAACTCACAAAGTCATTCGGGTGGGAGACGCTAGACTCCTTCATGCAGCATGATGTACAG GAACTCTGCAGAGTGCTCCTGGATAACATCGAGAGCAAAATGAAGAGTACAGTCGTCGAAGGAATCATTC CAAAACTCTTTGAAGGCAAAATGATTTCATACATCAAGTGTAAGTACATCACATACGAGTCAGGGAGAAC TGAGCCATTCTATGACATACAGCTCAATATCAAAGGCAAGAAAAATGTACATGAATCCTTCAAAGACTAC ATTGCCACGGAAACGATGGATGGGGAGAACAAGTACGATGCAGGGGAACACGGCATGCAGGAGGCAGAGA AAGGAGTGATCTTCACCAAGTTTCCACCGGTCTTACACTTGCAGCTGATGAGGTTTCAGTACGATCCACA AACAGACTCCAATGTCAAAATCAACGACAGATACGAGTTTCCTTTCAAGTTGAACCTGGACACCTTCATG AAGGAGGAGGAGGAGACTTCTGCCGACTACACGCTGCATTCTGTGCTGGTTCACAGTGGGGATAACCATG GCGGGCATTATGTGGGCTTCATCAACCCCAAAGGAGACGGCAAGTGGTGTAAATTTGATGATGACGTCGT CTCCCGGTGTACCAAAATGGAAGCAATAGACAACAACTTTGGTGGTCACGACGAGGACATCTCAGTCAGG AACTGTACAAATGCATACATGTTGGTCTACATACGGGATAGCTGTATGAGTCGGGATATTTTAGATGAAG TTGTCATGAAGGACGTCCAGGAAGATCATATTCCAGAGACGCTCAAGAGGAGGTTACAAGAAGAAAAGAA ATTAGAAGCACAAAGGAGAAAAGAGAGGACAGAGGCGCACCTGTACATGACCATTCAAGTGGTCGCAGAA GACCAGTTCTACGGTCACCAAGGCAACGACCTCTTTGACTTCGACAGAATACGATTCAAAGAGTTCAAGA TAATGAAGTCAGCCAGCCTTGGGGACGGGCTAGATGTGTTGTCTCAGTCAATGGGCTACCGTATCGATCA GATCAGGATCTGGCCCTTCTCACAGCGGACCAATCACACCTACAGACCCACGTTACTAGAGAATGATGAC CCGGTCAAACCGATGAATGAAGTAGCAGACGGAGACAGTGTATGGACAGTGTTCCTTGAAACGCAAGATC CTGAAGCACCGCAAGTCTGTCTGCCATCATTCGACAGAGAGAGTGATGTTCTTTTGTTTCTGAAGCTCTA CGACCCTAAGACAAAGAGTCTTTCCTACTGTGGGCATGTCTACGTTCCTATCACTACCAAAATACAGGCA CTTGTTCCACTGATGAATGAGAGGGCAGGCTTTCCGGAGACAACAGAACTCATTTTATATGAGGAGGTGA AGCCTAACCTGACAGAGAAGATAGAAGACCTGAGTCAACAGATGGACAAGGGTCTAGATGAGCTCATGGA TGGTGATATTCTTGTATTCCAAAAGGACGATCCCGATAAGATGCAATATGACCTGCCGACGGCCCGAGAC TACTTCCGCGACCTCTTCTGCCGGGAGGAGGTGACCTTCTGTGACAAGTCAAACCCTCGTGACCCGGGCT TCACGCTGGTCCTCTCCAACAAGATGAACTACTTCCAGTTCGCCAAGGCGGTGGCCCAGCATCTAGACAC GGACATGATGTTACTTCAGTTCTTCAAGAGTCAAGGTCACAGAGATGGACCTGGCCATCCTCTAAGATGT ACGTTTGAAGGTACATTACGAGATCTCCTACCGCCCACCAAGTCAAGGCAACCTAGGAAACTCTACTATC AGATGTTGAATATCAGGATAGATGAACTAGAGAACAAGAGGCAGTTCAAGTGTATATGGGTCACAGATAA GCTCAAGGAGGTGGAGGTTGTACTATATCCTAACAAGACGGACACAGTCAGAGACATGTTGGAGGAATCT AAGAAGCATGTACAGCTCGCAGAGAATGGCACTGGAAAACTTAGGTTATTAGATATCATCAGTAACAAGA TCTTCCAGCAGTTTGCAGAAGACACACCCATCGAGAACCTGGCCTTACAGGGGACCAAGATGTACAGACT AGAAGAAATTCCTCAAGACCAATACAAGTTAAGCGATGATGAGATGATAGTATGTGTAGCTCACTTCCAG AAGGATCTCTACAACACGTTTGGTACACCCTTCTTTGTCAGGTTAAGAGAGGGCGAGGCATTCTCCAATG TTAAGGAGAGGATACGAGAGCAACTAGACGTCTCTGAGAAGGAGTTAGAAAAGATCAAGTTTGCAATAGT TGTGATGGGTAGACAGACGTACATCGGGGAAGAGCAAGAGTACACCGTACGACTGAAAGACTTCCAGCCA CAGGGACATGCATCTAATCCCCAGCCTAGGCCGTGGCTGGGTCTGGACCATGTCAACAAGAACAAGCGAC CCCGATACAACTACGTGGAGAAACCCATCAAGATCTTGAACTGACAAACACTTAACAGACCCAGCCGTAC GTACGTACCACCGCTGGAACATTATACAAAACACTTAGAATTTACATAGATATAAATACCGGGGATATAA TGATGGAGATTTCGATAAATGGAAAACAGATGGAGGGATAGACGGACAGATATATGGATGGATTGATAGT TCAGTGGACAGAGGAGCCAGGAAAGGAAGGATTTGTAACCAAAGAGCTTCAAGCTGCCAGCAGAGGATTC TAGAGAGGATGGATGGAGGAGAGCCGATGTGAAAGCAACGGCAGCGTCGAGAGAAGCACTTGTTAACACT GAAACGCCATTGTCATAGCTGTTAGGGATCCAACACATCTTTGTGAACATGTGTCTTTACTGTGTGCCAA TTCCCCTCTTCATGACCTTAACCTTTTCGTGACCCTCCCTGAGGAAACTTTTAAGATTAAGAAATGTAAA AAATAATGTCCGGGCTTGCTTATAAAGCAACCAGTGCTGTTTCAAAAACGATAAATAGTGATATCTAATT TTTTTAGAATAAAATGACTTCTCCTCATACCAATAATCATTGATTTTCATCTTCACCGCAAATATTGAGG TATTGAGTTCAACCTGTGTATAGAGTTTACTTATGAAAAATTGTTAAGAGTGGCCAAAGTAAACAGGAGG CCTTTATATAGTGATGGCTACTATAAGTGGTCTGACTGTCTGTCTGTCTATATTAGGCTATTTTATGCTG TATTAATTTTAACTTGTTTAGATTAGTTACCCAAAAATAAAAGTGGCCACTATAAACAGGTGGATTTATA TAGCAGTGACCGTTGTAGTTAATCTGTTTATATGGCTTGATTTTGGTCTGGTCTGCATTTAGAATAGCAT CGATTACACTTTCCCCAAAAGATGACACTTAAATCCTGCAAGGGTAAGAAAGAGATTAATTGGTTATGAA CCATGGTCGTTGGCTGTGCTCATACGAGAATGGTTCTCCGCAGCACTGGCCGTAGCCTTGGAGACACACC CACATCATGTAGACTGGGAGACATGCCCACATCATGTAGTCTGGGAGACACGCCCACATCATGTAGACTG GGAGACACTCCCACATCATGTAGACTGGGAGACACTCCCACACCATGTAGACTGGGAGACACGCCCACGT CATGTAGTCTGGGAGACACGCCAACATCATGTAGTCTGGGATACACGCCCACATCATGCCACTCACACCT TTGTGTTTGCGCCAAGGCCATCCATGTGGGGTGCCTTGGCATGGCACTTGTGTCGTCTGCAAATCAATGC TTAGAAATGTAATAGTTGGTATATGTATACATGTAGCAATCCTCACGGCTGTTGCTTGTACCTTACAATA GCAAGGTCATTATTAAAGTTGTTTATATTCTGTACACTTGCTTGGCCATGTCCCTTTGACGTAAGTTTAT CAAATGATAAATTGCACACCTTTGAAATTCTTCTTATCCATTGCCACTTAAAGCCCCACCGCACTAGTTT GGCCAGGAGGGATTAGACCTCCCTGCATGGTCACATAGTGCAGTGGGGCTTTAAACCACACAGTTCTGTC AAATATTAGTGCTGCTTGAAGGGCATCTCTCCAGAGGCATTCAATTAAAGTCATTTCTAGGAAAAGAAAC AAAGTTGATTTCCACTACAGTATCGTTATAGTGCATTCACCCAAACTGGCAGCATCTTGTATAATGTTCA TGTACTAATATATAATGTATTAGCATTGATCTCATGACATCCCTCCAGCTTGTAATTATTCAGCGATGAT TTTATCTGTATGTCATGTCGACTCTGACAGTCCAAAAGTACACAGTATTTTCAAAATTCAAATTTTATCT TTCTTCTTTTTGATGTTTCCTTTGTATTTATTTTCTTTCTTTTTTTTCCGGGAGAGGTAGAATGGTTGTC ACGGAAATGATGCTTTGCTCAATCAAAGTTTTATAAATCAGATGATCATCTTATTTCTGTTTTTTTTTTC CTTCTTCATATCAACAAAATACTCAAGTTATGAATTTTAACAAACATAATAACATATAACGTTAGTAGCA TTATGAATGTAAGTGAAAAGATAAAGAAGTGTTTTCCCTATAAACCTACAATGTACAGCAGACTTAAATA GAAAAGTCAGTTATCAATTACATGAATGTTGCACTATTTATATTATTTCATTGCATTAATTGTTCATATT ATTCATTGAATACAAAGAAAAGAA
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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