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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_011683663.2 PREDICTED: Strongylocentrotus purpuratus protein FAM124A (LOC755220), transcript variant X5, mRNA GTATGTCTGTCAAACTGGGCTCTCCTGGCGCCCTGCAATGATTGGGTGGCTTTAGCATGGCTTCCTGGTA CCCATTTACCTCACCTGCGTAGAATGTGCAAAGGTGGATTAATGTCTTGCCAAAGGACATCATTGCTGCG ACAGGGATTAGAACCCCGTGGTTAACAGTTCGGAGACACCTGTACAAAGGCACTATTTTAGCAATAGTTT CGCATTATCATGATTGTCATCGTTAATATAGATTCAAACCCCGATTTAGTTATGGATTGTTATACAACGC AGTGACCATGAAGATTTAGACAGCAAAACATGAAGTGTTGGCGCTGTTTCGTGGATTACATAATTATTGC CGTCGAGAATAATCACTGTCGCCTCATAGCGTGAAATGACGTCAGATGAACCAACGTCATTATTATTTGG ATGCCGATAGATCCGGCGTCACCCCAATTCGGCATGTCCTCCCCATCAGGATCCAGTGTGTCCAGCGATG AATCCAATGATGGAGACTTGACGAGAGATCCTTATGGAATCACACTCCACTTTGTTACTGATCCTGGAGA GAGTATCAAGCTTCGGAAACTCATCCATCCGCTTGTCAAACACTTCGACCATTCTTTCAAGATGTTCAAC ATCGCAGAACGCAGCCGACCCAACGGACAATTCAACAAAGCCAATGGTGGCGCCAGAGACGTCTTCCCCG CATTGTCCGTTATGTTGTTCCTCCACATCGATGAGGATGTTGATGACAGGAGGATATCCACAGCGCAGGA ATTCCTTGCGAGGAAACCTTGGAAGTACCACCACAACTCGCGGGTTCCGGGGAAGTACTACCTCTGTGAG CCTAACTTTCAGAACTTCTATACCACCGAGCAGGACATGCCCCTGTGGGCGGTGAGACAAGTCCACTACG GCAAAGAACATCTCAGGTTTATGCTATACGCGAGTCGAGAGAACTGGGAAGACATGATCAGGTTCTATAC CCTAGTGCTTAATCGAAAAGTGGAGTATCAAAGAGAGGACTTCTGTTACTTTGTAACGCACTCAAGAGAC TCTTCAGACATCCAGTTCGCGCTTAAGAGGATACCTGAGGACTATTCGGTAAGACCGCTTTACACTTCGT TTCTGCAGTTCAAGGTGCGCGAGGTTGGTGAGCTTGTGCCATTGCTTCCAAATTCTTGCTCGCCGATCAG TCCACAGAGGTGGCAAACCACAGATCCTGATGGCAATGTAACACTTATCCTGGTAACCAAGAAAATAGGA ACAAATAACAACAGCGCCCTCACACCCAGGAGACAGTCCGTGGACGTCCTGCAGCAATTGATTGCTCCGA AGGCAATGAAACCCAAGGTCAGGCAAACCTTACAGACTGTCCAGGATGAAGTGGAAGAGGAAGAAGACTC GCAGTAACCTCTGATAAAGACAGAAATGTAATAAACAAGAGAATAAATTTGATATTACCGAGACCTAATC TGACGATATACGATTTCCTAGCTGAAGAAAAATAAGTCAATGCTGAACAAATTTCACTCATGTAAGTTCG GTGCATACTCAATGAAATCCCTATTAGCCAAGAAGCCTTCAGTATAAACTACATTGGTATACTACGTGCA TGTGGCATGAAAGGTACTCAAATATGTGATCTATTGTCTTTTTGAAAATAATTATTTGTTTTTCTAACCC AATTAGAATATTGAAATGAGGTATTTGAATATACAATTATATCGAGCCAGTAATAAAGTCGCCATGTACA ATAAGTATTGTAACATGACTGCAGGGAAGTTTGACTGTCTAATTCTAGCTGCAAACCAGAAACAAATTCA ACTCGCATTCATTGAAGGAAAGGAGGGGGGGGGGGGAGGTGAATATTACAAAATATAAAATTGATAGGGA TTGTGACAACTATCATGTCATAAGGTATAAACAAAATAACTAGTGAAACACAATTTTGTCGTGATGACCA TCAACGTTCTTAACAGAACTTGATAAAGGTCCGTGGATAAGGTCATGCTGCAGCGCTGCAGATTTCTATT TTTTTTACCTCGTGAAAATGATAATTAATTTTGACTATCAGATATTCAAAATGTATTTTGCCAAACTGTT ACAATACCAGCACCAATATCTTGGTTCATTTCAATGTAGATTTTTTAAATAAAGGATTTGACTAAATTCA TTATATTTAATTTTGAATAGAATGTGTCACCTGAAGAGGAAATATTTTATACACTGTTGCCCATAAAGCT TGATTTTTTTTTGCCTCTTTTCAAAGAAATGATTATGACCAAATTGTTTATTCTTGACAGATAAAGTTGA TATCTTCTCAGAACTTTATTGATCATCTCTTTGACTCTTTAGATTGATGAATTAAGTTCTGAGAAGATAA TTATAAACTTTATGTATCAAGAATAAACCATAATACTCACAATTACTTCGAGAAAAGAGGTACAAGAAAA TTATTCCGAATTTATGGTGTGTCATTACTGCTTTTTGTAACGGACAAACAACTAGTCACTCCAAGCATAC CAAGTGACTAGTTAAATGCTCGTAATATTTATCAGGTTGCACCGTAGCATCATAATAATCATACATATTC AGTTACGAGCCAAATCAAATCAATATTTTAAGTTATAAATGTTCAGATCGTCACAGAGATAAAAAGTAAG CCATGATGAATGAGTTCTAAAGATATTACCATTCTTGTTAAAAGCTGATAATTATTTTATTGCGATAAAA GTTATGTAGGTGTGACAAGATGTTGACTCGATTATCAATTGCTTGGATAATTATATTTTCATGTTTAATA TTATATATGTGGAAGATTAACTTTAATATGATAACAGCATGATTATTATTAAGTCCATCGTGTGTTCTTA TTATATGGAAATTTAATTTTTAAAACGTATGTTTTGTGAATACGCATGTCTATGACCTATAGGCTGGTAT TAATTTTAATTGAAGTATGCTTTTCGTTAATCTATCGCATGTCACTTGCCACTTCGTTTATCTTCCTTTA TTTCCTCGTTTGTACAAAGAAACGACGAGCAAGATAAATAAAATAAGCCGATCTACCAGAGGTCTTTCGA AACGAGGAATATGATTTTTTTGAAAAGTTTTTTGAGAAGAAAATTGATATAGATTCGGAAACGCAATTGT TAATATCAATGTATTTAACTTCCATTTTGGTTAGCTCCGTAAACGACAATAGAGTAGAAAGTAAACGATC CAATGCTTCACAGAAACAAAAAAGGTGTATACATTTTGTTATATGCTGGAATAATGCCATGCAAGTAAAA CAAAACAGTATGTACTTTTTGTCTTATCTTAAAAAATATAACGTTCATGTTTCCATTAAAATTCAAGAGA TATCACAATTTCATGAAAATGGGCCAGAATTTGGAACTGGAATTCATCAAAAGTGCATTTTACACTATTT TTGAAAAAGAAAAAAAAGAAGTTTTAATCAATGGCATTAACTTACAAAGTCGTTTATTCGCACGGCTATA TGTGTAAAAATGACGAAGTCAGAATTGTTGATGAATTGCAAACGTTTGAGTTATATAGTATCTTGCAGTC TAAGTCCTAAATAAACGGCGGTATTTAAGGGTTTTAAGTAAGGTCTCGTATTGCCATTCGTTGCAAATAA TTGTAATTTATATAAAATATATATATATATCTAATATAGACAGCTAGATAACCATGTGAAACCTTACACA TAGTATTCATTAAAACAAGAAAAAGGTGTTCACGGCTTCGTTTATTTCCATGCGTAAATCAACCAAACGT AAGAAATATTGTATGTTTGGATGAGGTAACATTATCTTCAAACCCGCCAAACAATCAGCATTTTCCTTTC AACTTTTCATTTTTTATGTTTTTGTATGTCTTTGATAATAAATATCGGATACAATGTAATACTTTA
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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