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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_785485.5 PREDICTED: Strongylocentrotus purpuratus EH domain-containing protein 1 (LOC585665), mRNA CATGTATGTGTAGGCGCTAGCTTGCTATCTTCAGTTGACGGACGAACGTGTACACACGTACGTGGTAATA TTGTTGTATTGTTGAAATAATTGTCATTTAACTCGTGAAAATTCGAAGGAAAGGACGTCATTTGAACTCA TTCATCATGTTCACCTGGCTAAACAACGATGAAAGCCGGCGCAAGCAGCCGCAGGTTTTTAACAATGTTT TGGATGGACTCAAAGATATGTATAAAAAAGTGATCTTCCCTCTCGAAGATGAATATCGCTTCAGCGAGTT CCACTCACCGTCTCTTGACGAGGCAGATTTCACAGCCAAGCCTATGATCCTCCTTGTTGGCCAGTACTCA ACGGGTAAGACCACTTTTATCAGGTATCTGTTAGAGCAAGAATTCCCTGGTATGAGAGTTGGTCCAGAGC CCACCACAGACCGATTCATCGCAGTGATGAAAGGCGAAACAGACCAGGTGATACCAGGGAATGCGCTCGT CGTTGATCCAAAACGCCAATTTCGCAAGATGTCAAAGTTTGGCAATGCATTCCTCAATCGTTTCCAATGC TCACTGACCAATTGCCCGGTACTCGACAGTATCACCATCATAGACACACCTGGTATTTTATCAGGAGAAA AGCAGAGACTTGATCGTGGCTATGATTTTGTGAACGTGTTGGAATGGTTTGCAGAACGTGCAGACAGGAT CATTCTCCTATTTGATGCACATAAACTTGATATTTCTGATGAGTTTAGGAGATGTATTGAGGCAATAAAA TCGCAAGATGAGAAGATTCGCATTGTCTTGAATAAGTCGGACATGATCACCCATCAGCAATTGATGAGGG TGTATGGGGCCCTTATGTGGTCTCTTGGCAAGGTGATCAATACTCCAGAGGTTTCGAGAGTGTACATCGG CTCATTTTGGAATAAGCCGCTGCACCATGATATGAATAGAAAGCTGTTTGAGGCAGAGGAAGTTGATCTC TTCAGTGATCTTCAGAGTCTTCCCCGGAATGCAGCCCTGAGGAAACTCAACGATCTCATCAAGAGAGCAA GGCTAGCAAAAGTCCATGCCTATGTGATGAGCATTCTGAAACGCGACATGCCATCCATGTTTGGCAAGGA TGCCAAGAAGAAAGAGCTGATCAACAACCTACCTGAAGTATACAAGGAGGTAGAGCGAACCTACCAGATC TCACCAGGGGATTTCCCCTCTCTCAGTCGCATGCGGGAAGTCCTGAAGGATATGGATTTCACCAAGTTCC ACACCCTCAAGCCACGCATGATTGAGAAGGTGGATCTTATGTTGAGCAACGACATGACCCGTCTCATGCA GATGATCCCTACCGAAGAGGCTCTGGATAAGAAGCAGCTCATCAGGGGCGGAGCTTTCGTCGCGGACGAG GCTGGTCCATTCGGCATGGGATACGGAGAGGGTGCAGACTTCGGCAAGAATGAGATCCAGACGTGGGTAG TGGAAGATAAGATGGATGAATATGAGAAGGTCTTCAATTCCCTAGGTCCCATCGAGAATAAGGTCTCTGG TACCGTGGCCAAGAAGCACATGATCAAATCCAAGCTGCCCAACATTTCACTCGGTAGGATATGGAAGCTG GCTGATGTGGACCGAGATGGTATGCTGGACAGAGAGGAGTTTGGTCTGTGCTTACATCTCATATCTATCA AAGTAGAGGGGCATGAACTTCCCTCAGAGCTACCATGGCATTTGGTACCCCCAAGTAAAAGGGGATTCAG TGGTCACGATCCACAATGATTAATTGGGTTATAGTAATACTAATTTACATTGCAACAGTACATTGTACAT ACCTAATTACATAAGGATAGAAAAAAGATATATAAGATAAAAGTTAATTCTCTTTTAAGAGTGTGCACGT TTCTGAGTAGATTGATTTGTAAGTTCAAAGCTCCCTTCAATTAAAGACAAAATTAACTCTAAAATAAACT AACAATCCAACATTATAATACAATATATCCTGATCCTTGTATGATGAAGTCCAGTTTCCCATGTAAGTTG AGCTCACTTAGAACTGAAAGTAAAGGGAGTATAGGGGGAACATTTGGTATTCCCAACATAAGTAGCATTT GATATCAAATGAAAGTACACTTAGTTCCTGTTAGTACTTCCTCTTAATTAATTTGTTTTGGTCTCACCCA CATAAAGTAGTTTGATGCTCAGTGTCTTTTTCTGCTATCCCTGTGAACTTCCCCTGTATGTCTACGTGCA ACGATATAATGTACAATGTCTAATGTATCTGTAATTCAATTTCAGATACCCGTTCAACTATTTTCCATAT TTGAAATATGTGGTAGTAGGATGATTGAAAGAGTTAAAGGAGTTTTGGTGTTTACCTACATGTAATGAAT GTTTGAATTGTGCAAGAAGGTATTAAGGTACAGTGAAAAGTTCATCTCAAGTAAAACTGTGTCTACATGT GTTTCTATTGTAACCATGTGTGAAGATTGTACTTTGTACTTTTTTCGTTCCCAAAGACCAGGAGTAGTAC TACATGTTGTAATGGATATTTACCATATCTTATCGTCATTGTACACCTTTGGGGCAGTAACAATGCTGTA TTTCCCAAGTATCATGCCTGTGCTTCATGTATGAAATTGATCATGTGTGTACATACTGAGATCAAAACAG GTCTGTGAACATTGCAAATCCTGTAGTCAATACCCTCTTCTTTTCTGCTTTAGATAAGAAGCTTACAAAT GTGACAATGTCAATGAACTCACATGCATACATGCCTGTACAATTTGTACTTGTACAAGCCACACAGAGGT TTTATGTCCTTTTAGGATGCAAGTGTTTGTATTCTGACAATTTTGATTTGAACTTCACAATCTATTTGAG AAGTTCTCAACATATGACATTTGACTTTCATTTTGCGTACCGCTATATTGAAAATCAAGACTTTCTATAT GATCAAATATATCTTATCAAATGAGAAAGAACATCCCAGGATAGAAAATATTCATTGCTGCACTAAAAAC ATACTACATGTACAGTACATGTACTTTTGTACATGTACATTTATCTTAAAATACCATCACTATCCTTCTT TCTATTTATACATGTGCATGTTTGTTAGGATTCTACACCCTTGTTTGAGCAAAACCCATATTTCAGAATT TGAATTATGACTTGACAACTGCTACTGTACAATGTACATAGCTGTACAATGGGTGCACTTCTTTTTATTG GTAGCATTTGAACTCAGTGATCTATTTACAAATTAAATGGAATACACATGTACATTCTATGACTTTTTAT TGTTTCCTCAATCATAATCGGCTCAAGGTTTGTACATCAGTGCAGTTAGATTGTATTTCATTATCTTGCA AAATGAAGGACAGATACTGTAATTTTTGCCAAGCCACACAGATACAGAAAGACTAGGAAATGATACTTTT TCATACTTTGTTGGTCTCTTTCCAAATCCTTGTAGTATGAATACGATTGTTAGTCTGACCATACTCTGGT ACATGTTACAAAAACTACAGAATTATATTTGTATAATAATTTCACTTTGTAATACCGGTACACTTCTACA TGTACATGTAGCTTGGGGTTTGACAATCTGATGGCAGTGTTGCGAGTAGCTCTTTACAGTTAAAATTTGT TCTAGTATTGGTTTTCTTTTCTTTTCTTTTCAAAGCGATATTGCAAACATGATACGTATTTATAGGCCAA AATATTGACATCTAATACATACAGACATACATCATTAACTACATGTATGTTAATTATTAGTGCGAATTTA AAAATGGCAGTGAATTGAACTTCATGACATGTTGTACTTGTTTAAAAGAAAGTGCCAAGACTCTTCCAGT TCAAATACTTGTATATTATGTAATGAGCAGTGATGTATGATCAATTATGTTGATACATGTACCGGGGTAC ATGGTGATAAAAAGACAACATGAAACATGTACCTTGATGCTGGCTGATTTTCATACAGTACGATACAATA TGGCACAAGTGTTAACTACACGTACATGTACATGTATATTTATTGTATAGTTCAGTGGAGTTGCCTTCAT GTCAGTTTCAGTTTCATGTGATTCATTCATTGCCATTGTAAAACAAACATGGCTGGTGCATGCAGTGGTT TATCCTCAACTATTGACAGTTTAACACAACACTATTTTAACATTGGCAACTCTCGCACTGTGTGCTTCAA AGTTCATATTGTAAGAATTTTTAAAATCAATATTTGCTTTTTAATCTATAAAAGAATATTAGTTGCTTCC AACACTGTATGTATCTTTACTCTATGTATATTATATTGAGTTGTATTGCATGTAATGTAGCTGTGTGGGT GTGTCATCAAATTGTTTTTTCTTTATACCAGCAGATATAAAATGTTAATGAGATTGCCATCATAGTCTGT TATATCCAGACATTTAATTGATGATTATATGCCGTTGAATACAATGTCATGGTATTTGACAGTTATTAGG CCATTATTACAGCCACTACATGTGGTGCAGTGACTGTAATTGTTACCAAAGTACTAGTGATTGTGTATAA AAACTTATAGTAAGCCAAATTCCTATCTATCTATTTTGTATAATGTACACAGAGTTTTGTTATGTGAGTC ATAGTGTATAGTTCATGACTCATAAAATAATTATTGTAACATGATACATTTACTACTGCATTTATTTCAT CATCAGCTTTTCAAGATAACATACTAAGATAACCATCCTGTTATTCACAAGTACTTCAAGTTATTCTTTA TTACATGTAGTAGCTCGATTGTTACCAAAATTGGTACATTTCGTGTAGAAGAATATTCAAGATGATCTGT GAAACTCTGAAGATTGCAGTATACAGTTATCATTAGAGTTATTGACATTTTAAGAAAGAATGTGCTTGCT TGGTATGGAGGTTTTCTTGTTTGATGGCTTTTCTTCTTCATTTATGATGTACATGTATGTATGTGCACTC TTTTCCAATGTACTCTAGAGATGATAATATAAACAATTCAGGTTTTTTCAGTGGTGAATTAATGATCTAC ACTGGTAATGTTGAAGAAGGAATAATGTATTGTTGGTTGAGCTGTTAAATATATGTACATAAAGTGTATG TACAAAGATTTCATGTTCTCATACACAATTTCACATGTTTTTAAACAGTGTTTTCACTGGCCATACCATA TTTTTCATTTTTTTTTCTTTTTTAGGAATTTTGCCCTGGTCTAATAGATTTTGTATATTTTGAAATTTGC TTGCATTTAAATTATAACAGAAGTCTTTGAATGTCTGAAATACTAAAAATGCTGAAGCAGTTGCATAATA TACATGTATATCCCCTCCCCTATCTTTATTCATATTTTATTAAAATTAGAATGCTATTTGTTAAATTGGT TGTAAATGTTGATTGGAGATGTAGATTAATTATGTTTTTTATATAACATTGCAGCAATGATATGGGGTCA CTGTATATCACTCATTTGATTTGATTTTCTTCAATTATAACTGCTGCATGTAGGCATATTGGGATCATTT GTACACTGTACAAAGGTGGATCATGACTGAAACATTCTCTTGTTTCACAAGTCAAGGTTCAAACTTCAAA GTAAACCTATTTGAGCAGTAGAATGGATTGTTAAACCAGGCATTTTTCAATATATTGCTTCTTTAGCAGG AAACATATGGAGCCATGAGGTAATAGGAAAATTTTCTGTGTGTTCCGACAACTTACAAAGTCAAGCAAAG TCATTTTAAAAAATGAATAATTTTGAACTTTTTTATGAGAAGAAAGAAGAAAAAAAAAACCTGAATGTGT AGACACTTCACAAGTTCAAAGAAAGATAAATTGCACATTATATCTTAGAAATGCAGATGCAGAAAATTTT ATGTTGATATCACTTGTGAGAAATTGTTCTCATTATAGTGGCATGAAGCGAAGTTCATTCAGCATCTGCT TGCCATTTATAGTTTGTAGAGGTAATAGAGGATTTGGTATTTGTTTTTTAAATAAATGTCTGTAATTGTC AAAAAGTGAAGCATTAAATCTTTAAGAAAGGAGAGTGCA
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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