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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
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>XM_041624584.1 PREDICTED: Lytechinus variegatus signal transducing adapter molecule 1-like (LOC121428006), mRNA TTGCGCATGCGCATTCCAAGCAGTATACCCTTATCATCTGATGTTGTGTCACAGCCACAATCAAACGTGT ATTAAAATCACAATTTTTATGATAAAGATTCAATCATTTTCACGATGCCGTTGTTTGGAGGAACACCGTT CGATACAGATGTTGATAAAGTGACAAGTGAATCTAATACTACAGAGGACTGGGGACTTATTCTTGACATC TGTGACAGAATTAAGGCAAATTCTAATGCGCCAAAAGATGCTTTCAAGTCGATTATGAGGAGATTAAAGA CCCCTAATCCACATGTCCAGTTGCAAAGTTTAGTGCTCTTAGGTGCTTGTGTGAGTAATTGTGGCAAGCC ATTCCATCAGGAGGTAAGCTCAAGAGACTTCTGTGCCGATGCCAGGAATATTGTCAGTAAGGGCCATCCT AAGGTTTCTGAGAAGATGAGACTATTACTGAAGGACTGGTCAGAGAAAGAAATGAAGAATGATCCCTCAT GCAGTTTAATTACACAGCTGTATAACAGTCTTAAAACAGAAGGGTTTGGTTTCTCTTCATCAGATGATAC ACCTAAGTCCTCACAAACATTCAGCAAAGATCCCAATGTAGTCTCTTCTCAACAAGAAGAAGATGATATC GCTAAAGCCATTGCCCTATCATTAGAGAATGATAAGAGTTCCAATCGAAGTTCCAGCGGAGGTGGAGGTA ATAGTGGAGGAGGGGGAAGTAGCTACCAGTCATCTAGTAGCTTATACCCCTCTACCAACACCCTTTATGC CTCACCAATCCAGCATCAATCCAGAGAATCAAGAAAGGTCAAAGCACTTTATGATTTTGAAGCTGCAGAG GACAATGAACTCACATTCAAGGCAGGAGAGATAATCAGTGTATTGGACGACAGGGATGCAAACTGGTGGA AGGGTGAAAACTTCCGAGGCACAGGTCTCTTTCCATCTAACTTTGTAACAGCAGATCTTACAGCAGAAAC AGAACCAGAAATCAAAGCACGAGAGAAGAAGGTATCATTTGATGAAGAAGTAGAGGTACGGACCATCGAA CCACCCTCAGAGATCAAGATTAGTGCAGAAACAATGGACCAATGCTTAGACATGCTTCAGAATACTGATC CCACCATGGAAAGACCTGATAATCCTGACATGCCACTTTTAGAAGCAACGTGCAATGGAATGGCTCCTCT CATTGACCAGGAGTTGGAGTCAATTGACCGTGATCATGCAGACCTGACGGCTCTCAACCAACGGCTCATT GATGCCTTTCAGATGTACCATGATCTGATGAAAGAAGCACCTGTCTATGGCTACTCTCTGAAGGGAGTAG TTGCCGGCCAAGGCCCTTTTACAGGGCAGGGGCCGGTGCCTATCCCTGGTGGCTATGTCCCTCAGCAACC CATGCCTCCACAACAGATGACTCAATACAATGCCGGAGCACCCCCTCAGCAGCATTACATGGGTATTGGT CAACCTATAATGAATCAAAGTATGAACATGCCCCCTTCCTCTCAATCTGTACCTGTATCAACTATGTCTA TGAGTCAGCCAATTCCCTCTCAGTCAGCAGTAGGGCCAGCTTCACAACAAACCTATTCATCAAGCCCAGC ATCATCTACCATGTACAATAACATCCCCCAGAATTCCTTGCCAGCCACTAGTCAGTCAAGCCCCGGATCC ACTCCCTTCCAATACAACTCTGCACCTGTTGGTACCGTGGCACCCACCAACACCTCCTACAGCCAGCCAG CCCCCATGGGTAGCATGCAGCCCCAAGGGGGAGTGCCCTCTACGGGTATGGAACAGGGGTATAGCATGGC ACCCCCTACAGGTGACCAAGGGATGATGATGGGACAGGGGATTCCCCCTCAGCAACAGCTTCTCTTATAG TGTCTGCTGTCGTCAGCTTCTGAGGACAATTATCTCAACATATTTATCATTTCAATCATGGATGAAGAAA GGAAAAGAATATGAAGAACAAACTTCCTGTGATACATCGGCAATTGCTGCTGAAATGGGTAACATTTCCC CCTCTATCACCTCCGTTGATTCTGGGCCACTATCTGGTGTTTCAAGAGGAGCTGCCATAAATATATTTAT AATGTCTTAGAATGTTTACTTCTTGTTGGATCATTCTTATGTCAGGTAAGGGAATAAAAACTTTGATGGA ACTCATAGTTCGATGGACCATCATCACACACTTCATCCGTTCTATGCTTTGAAAGAAATATATTCACTCC TTTGTACTTCATTAATTATCTAGTTGGCAACACTGTCTTCAGATATTTCTGTAGAGTTTTCCCACTGTTT AGAATTGTCTATTAAGTTCATATTAGGGTTTAACTAATATTTATATATCTAGACTGTCAAATGTTCAGGT TAAAATGAACATAGTGATAAAGATATTACTGCATAATAAATTGCTTGTTGAAACATTTTCTATCAATTAT TTTTTCCAAACAAAATAAAATCTGAATATGCTCTAAAAATTGCTCCATATATGCACATGGTCAGTGGAAA TGAATCTATAGAGGCCAAGATAAATCCGCTTTCACTCTTCAAATTGGCAAGAAATGTACATACATTCTCA TACTGTAAAGAAATCAAATATGGATTTAACGCAAGTCAAATGAGTAATGTAACAAAAGAAAAAAGGTTGC CAATTTCGATTTTAAACAGTAATTATGTTTTTCCCATTATATTGCCAACTTCATGTATGTAATGCTTATC TTAATGTAAAGAACTTTTTTTTCCGGAATGGTGATGCATACTGGAATGGAAGTGGTATCAAGTTCTCACT ACATTATTCTCTTTCCAGTCATGATTCATTTGTGATTACTAGGATAGAGCTTAACTTTGAACACGAGTGT CTTCTTGAAACACATCTCTATGGGTTCAAAGGGACCCTCAAATAAATGATCTTAGACACTGGAGGCATTT TTGTTTACTGATATGAAAAGAACTGTAGACCAATCAAATTCTAGAAAAGATTGTGAAAAAATGAGATTGT TAGCAAAACTGTGGAAAAAAAATTATTTGAGGTAGGATGCATATAATCGTTGTAATCTAGCACTCAAGTT GTGAACGCTTCACAATATTTTCTGAACAATGCTTTTATGTTACCTTGTTAGCTATACCCTGTATCTACAG AATACAATTTCTTTTCTAAAGTAGGAGATGAAGTTCAGGGGCCCGTAACACAAAACTTAGCAATGATCGT AGAACATTACACTGTACAATCAATCGTGAAAATCAAGCGTACGATCAATCGCTAACCTTTGTGTTACGGA ACCCTGGAGATAATATACCACATAAAAGCATTGGTTGGTTTGACACAAACTGGGTATCAGTAATTGCTTG GGGTACCTCTTGACAAAAATTGGTATGAGAGCAAACTTTTAACTGTTTGTGGCTTTTAGATATTTTATCC AAAGTCGAACTTTAGTTATTGTCAGTTGTCTCAAGTTTTATTCATCTTTAGTTTTGTCATGGTCTGCATG TACGCATAGTCTTCAGTTTCACAAACTTCAGAGTCGTATTCTATCTAATTAGTGAGACAATTGAAATGAA AAATAAAAAAGAGAGCATGATAATCCACAATGTAAATATCACAAACGGACACAAAGCAGGCATGGGCTTT GTTCCATTTCACTTCTTTTTACATAAATCTCAACTGCTCATGTGCCCATTCATGGAAAGTGACTTTGTGG AATTATTTAATGTGCAAGACTGCATTTAGTTTGTACGCTGTCATTTCATAGATTCTTTATTCAAAACATT ACCGAAAATAGAAACCCTAGTTTAAAGTGTTACATTGTTAATGTGGGAGCACCTTGAGCACCTAGCAAGG TGGATACGTGCGCTATACAAATCCTACATCATTTATTATTGTTTTTTTTAATATTCAAACTTTGATTTAT GATGTAATATATTAGAGGTGAGATTATGTCCTTGGTTTTACCTGAATCATGCATATCATCTTACATGGAT GGCAATGATTGAACAATTTGAATTAAAATGAAATCTTTCATTTTTATTAGAAAAGTGATTTAGTGCATCT GCATTTGCATGCACCTCGTGAAATCAGCAGTTTTTCATAAAATATTGCATTTGTGTTTTGTGCAATGAAA TACAACCCAAGAACCCCTCAATGTTTAAGCAGAGTTCTGCTTTGACTTTATACTTATTATTGGTAGACTT AGAGATGTGGATACATATAGTTAACCAAAACAAACACTGCTTACAATTTAAACATGCAAAGATTTTATGA TTAATACCAATTTGCTTGATAAGCATTTTTGTTCAAAGCATATTAATAGATATTATTTACAAGTATTTGT GTGACATGTTACAGGTATATGGTTTATATATAGACATTGAATGATTTGAAGCAAGTTCTGTAAAGGGATT CTTGGATTTGTCAAATAAATATCTATTATGATTTTGTAAACTTGTAATTTTTTTATCAAACAAACCTGCT TTATATAATTCATAATATGTTGGACAGTATTTGTGTTTTTATCTCTCAAATGGTTATCACTTTGTTTGTA CCAAGCCAGCTTAATATTTTCTTTCTATTGCAAAATTGCAAAATTTCATTTTCATAGTACGATGTCGAGT CAAATATTTCACTTTTATATAGGTGAATATATTTCACCCTTTTCGCTCCACGACAGAAACAGACTTTTAT GATGCTAGATGATTTTGGAAGAGACTTTTAGCCCCGTCATAAATAACTGTCCTGTAACACAATATTATTG CACTCTGTATAGGGGACCTATGGGCAAAAGTAAATTCTTGATTTTCCCATAAAAACATGGTATTCATTGA AATAAAAGTCTGATATGGATTCAGCTCTCTTCACAATGTAAGAATAATTTGAAACCTAAGCCCCCATTTC GGGGGAAAGTAAAACATAATACACACTTGGCGTATGTCATTAACTTTGAGTAAGAGGGGTTGTCGTTTGG GTACTACCAGCAAAAGAAAAAAAATCCAGATGGATTTTGAGACTGATTTTGCTGTGCAGATATCAATGCA TGTGAAATGGTCTAGCTGGAGGGGTGAATATGACCCATGGATTTAATTGCCAGCGATCCTCTAATACACG CTAGATGCATGTAATGATGTATATCTAAGCCTTAATTCAGTAATTTTTTTCTCCCTTAATATGTAATTGA TTTGTTTGAAGAACCATTTTCTTATCCATGCCATGATACATGACATGTATAGCCCAGTGGAGTGGCGGGC ATGCTATGCTGAGCAGTCGTATGTGAAGCACAGGATTTTCTCATGTCACAAGTTGCGATGTGAAAAATCC AGATTATGACTAATTCAGAGGCTCACACAGAAGATTGTGCAATGTTCAAACAAGTGGATCTGACTCTCAC ATTTGAAATTGAGGGTAGTGGTTCATATCCCAGCCAGGACTTAATTTCCTTCAGCAAGAAATTTATCCAC AATGTGCTGCACTCAACCCAGGTGAGGTAAGTGGGTGTCGGCAGGAAGTAATTCTTCAAGAAGATTTGAG CACTGGGAATGGCGGCTAGCTAGCTGGGGTAATATAGAAGTGTCTTGAGTACATTAATAAGGTAGATGTG TGCCCAATATGAATATTCTATTGATTCTTTTGAAATTTAGTAAAAGTATATTATTTATGTGAAGTAGTAC TTTCTGAAGCTGCAAATGTATCATGAGTTTCAAACAAAGTGACAGCAGTCCTTTCATTTGTCATTCTTGT TCAGATTTTATAATTTGACATACCCTCTTCTGGCATATAAAAGCAATGCCACTACATAATCAATCTTCCT TGAATCATATACAGGTGAGTCTTTTTAAATCAAGTCTCTTTGATATGCAAATTTGGCAGCTTTGCATGAT CGGGGAGGTGTCTCAAAAAAGGTTTTACGGTTTCTGGAAGTTGCATTTAATACCCCCAGCTGCATAATAA AAAATAATAAT
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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