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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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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_030972182.1 PREDICTED: Strongylocentrotus purpuratus prickle planar cell polarity protein 3 (LOC576048), transcript variant X2, mRNA AATGTAAGGAAGACTTGCATTGGTTAATCCATCAAGTATTAGTTGGCATCAATAGTAGAAGAGGATTTGA GTACCGGTATCAGAATACCAACAGAGATTATTCTACAATAGAGATAGATGGCAAGTCTTTGCGCTATAAT TGTTTAATAGGAAAATAGGAGTGTTCTGTAAGTAATTGTTCATCTCATTACGTACTATTTGTCCTTATAT AAGATTTTAAGATGGTGTGGTATTTGCCCAGGTTGCATTCGCTATCATGTCTGTACAAGACATCAGTGCC GAGAAAAAAGAAGAGAAGTGAAGAGGAGTCATGAGGGATGTCCTCATCAGCTCAAGATTGCCAAATAGCT CGCTATTTCTGATTTGGGAAAATAAAGCCTGAAGTTACAAATCATGTTTTCATTACCTCGAGACTTGACC TTGAAACTCGAAACTCCAGCTTGAGAAAATAGCTTGAGATATTTTGCTCAGCGTTCATGCATAGTACGAG TCTTCGGACTGGTGAAGGCGCACCAGACAAATAGGATATTTTGCAAACTAGCCCAATATATCTTGGGATG ATTATCTGAATTGAGGGCTGATGAAAACGTGAATTAGCTGGATAATTTGCGATCGGGATAGTTCAAATAG CGGGATATTTGGCAATCTCAAGCTGATGACGGCAGACCTTTTGAGCTAGTGATCTGTGCTATCATGTCAA GTCTCCACTTGTATCCGACCTGGCCAGTAATCCCCTCTCATAGGAAATCAGAAGAATACAGAGGCTTGAA GCTTGTCCAGCTTTCTCACCTATTCAACCAAAGCCATTGACTCAGGGGTGAACTTCAATGGCCAGTAGAA CAATGGCTGGTCAAGGAGATCCAAAGAAATAGACAATGGATGACCAGAGGGGTGTGTAATACCTCTATCC TCCCTGTTGTCCAGGGATAAAATGGTGACAGGATTTAATAGGACGCTGCACAAAAGGTGGGTTCCTTGAA GGTCTAAGGAAGTTAGGAACACTTTACCATGGCTGAATGAAGTCAACCATGTTCTTGATCTGGCAGAGAC AACTGAACCCAGCCAGCCGAGACCTACACCTTTGTTCTAGCTCATTTGTTATAGCTGTTGTGGTTGAGTA CTTTGTCATTGATCACCAGCTGATGAAGAGGAGGGGCTTGGTGACTCGTGCGTTGGACTGACTCACAGAT TGTCCAGCTTTACCTACCTTTCAACTACACCAGAAGGACATTGACATTGCGGAGTTACAACTCTTGTTGT GGATCTAGATTTTGAGCAAGAACTTTAAAAATTCATTGTCTGATTTGAAGAAAAAGGAGAAACCGGAACC AGGTCAGGTGATTTCTTAGAATATCAGAAAAATTGGAAACTTGCAAGACATTCCAACTTGAAGGAAGATT TGTTTGCACTGTAAGTGTCCACGGGAGGACCACATCGTGATGGCGGTGGACCAAGAGAAAAATGTCAACC GGATGATGACGGACTTCCAGAGAAGCTCTGCATCTGATGATGATAGTGGGTGTGTCTTGGAGGAGTACAC ATGGATACCACCTGGGCTCAAACCGGATCAGGTTCATCGCTACTTCTGCAGCCTACCCGACGACAAGGTT CCATACGTGAACAGCACTGGGGAGAAGTTCCGCATCAAGTCGCTGCTGCAGCAGCTTCCGCCTCACGACA ACGAGGTCCGGTACTGCAACGGTCTGGGAGAGGATGAGAAGAAAGAGTTAAGGATGTTCAGTAGCCAGAG GAAGAGGGAAGCACTCGGCAGAGGAGCAGCCAGACCCATACCTATCACCCTGTCAGCAAGTATTTGTAAC CAGTGTGGTGGTGGGATCAGTGCGGGAGACATTGCTGTGTTTGCATCACGAGCCGGTCACAATGCATCAT GGCATCCTGGTTGCTTCGCATGCTCTGTGTGTCAAGAGCTCCTGGTGGATCTCATCTATTTCTACAGGGA AGGCAAGGTCTACTGCGGAAGACATCATGCAGAGTCCCTCAAACCTAGGTGTGCTGCTTGTGATGAGATA ATCTTTGCAGACGAGTGCACTGAGGCAGAGGGTCGTAGCTGGCATATGAAACACTTCTGTTGCTTCGAAT GTGACACACAGTTAGGAGGTCAACGTTATATCATGAGAGAAGGACACCCTTATTGTTGTCATTGCTTTGA AAGTCTCTTTGCAGAGTACTGCGATTCTTGCGGAGAGGCCATCGGGGTCGACCAAGGTCAAATGTCACAC GAAGGCCAGCATTGGCATGCAACAGAGAAGTGCTTCTCATGCTGTACATGCCATAGGTCGTTGCTTGGGC GACCATTCTTGCCAAAACATGGACTCATATACTGCAGCAGTGCATGCAGTCGAGGAGAATTTGGAGGGAA AGACGGCAAAGAGACCCTGCATATCGCCAAGGATAGTAGGACTGATAATGAGAGTAGGAGTCGGAGACCG ATTAATCTTGATGAATTGAACCTGGACAATTTGAGTGTTGTTGCTTCCGATACAGGCAGGGAAACATCCC TCAAGAGGAGCAAAGACATGTCGAGGAGATCATTACCAGATCTGAGAAATGGTTCTTCAACAGACTACAG TAGACCTAGGAGTGCAATGCAGGACAGACGAAGGAAAGCAAACAGTTCCTCTTCGCAAAATCTGTCCGTG CACAAAGGTCAGAGACTTGATCAGAAGGGTCGGCCACAACCTCCACCAAGACATCCATCTCACACGCAGG TGGATGCCAGGATGCAGGGAGGTGCAGTGGATTTCAGAACAGCTACTAACACGATCGGAGGTGCAAGGTC TATGCAGGCATCGACTGTGAGCACTCCTCAGCATAAGAGATATCAGACACCATACACTGCACAGCAACAA CAGCCGCATCAGAATGGAATGAGACCAGATGCTCTGAGACAGGATGCTCTTAGGTACGAACAGCAGCAAC GGGGGCAGGTGCCACACCAACAGCAGAACCCACACCAGCAGCAGCAGCAGAACCCACACTTTAATTCCTA TGGGAGGAACGAGAGGCAAGGTTTTCCTGAACACAGGTACGAAGAACCACACAAGAACAACCGGCTCCGC AGCGAGAGCCACCACACCAAACTTTGTGACAATTACGAAGAGCTTGAGCCTGTATCGCACCACAAGGACA TGCAGAGGAGAGCTTCGATCAAGTCGGAAGGGGGCGATCGCTACAGTCCGAAGAGGAGGCCCAACGAGCA TATGTCACGGTCAGCCTCTCACTTTGATCGTCGTGCTGATACCTATCACTCTGAGAGGGGTCGGGATGGT CAGTACGGATCTCAGAGGATGACAAGAACTGTCTCTTCTCATATGAAATATGATAAATACAACAGGTATG AGGATGACGACTACTCCTCCTCTTCCTCTGATGATGATGATGACTACTTCATCAGCTCCCGGAGTTCATT CATCAACGCAGGCCCCAAGATCCGATATGTTGAAAGGGGTCCTGCTAGGGTACAGATCAACACCCTTCCC ACTGTACATTATCCCAAAGATGGCAAAAAGAAGAAGTCCAGATCCAAGAAAAAAGGCAACTGTGCCGTCT CCTAAGTGTTAAGCTGAACAAAGATCCACTTCCAAATTTACGTTTTCCATTGTATTCCCAATTTTTATTG ACCACCAAAATGACATGGGAGTTCTTTAAATGTAAAGTGTATTCGTAGAGTCAGTTCAAACTAGTATGAA GAGAAAGGATACATACATTTCATCTTGATAGTCATAGTGGTGTTTTAAAAAATCTTTTCTTCTTCATACT TAAACATACATGTAAATCATGATTAAAGAATTATTATTGACTAAATTGTAATCTTTGTTTCTTTTTCTAA TGGGTCAATTGAAGAAGAGGGTCTTTCTTGGACAATGGGATCTTTCAAAAATGCATGAAAGGCACCACTA AGTTTGCTCAATCCTTTTTTTTCTTCTTTCCAATTGACTTTTTAAACTGAATTATACATGTATGGCTGAA CTTTGGAGTAAAACCATCTCTGAATATAATTTTCTCTTTGGGGGGAAATAGGGGGCAGGGGAGGGGGCCA ATACAAATTACATGTATGCAGAGTTTCTGTTGTCACGTATCTCTGCAAAATTGATAACACTCCTATGTAA AATACTAATTAGTGTAGGGAGGTCTATTTGAAGAGGAAAAAACTCCAGAGAATTCAACAAAGAGCAGTCA TTTTATCATTTTTTAACAGACTTGCATATCTTGCATATTTCATGTGATACTTTTAATGAAATCATTGAAA TTATCATTTTTCTACGCACATGATCATTGCTTTTAAGTGTTCAAATTTGTACAAATCAAGAGAAAATTAC CTTCATTTCATGAGTGCAATTTGAATCAGCGTCAATGGGATATTATTATGTTACATAGTTTGTCATTTTA CGAGTTGAATGCCATTATGTCGTTATCTCATTGAAAAATTGTATTCTGTAATTGTTTTGATGTTTCAGAC AGAGTATTCATTGAGCCAGAAAAATGAAGGACATTTGTAGTTATGATCAGTATCAAAATAAATATGTTAT GATCCTGATCATCATTTTATGCTCAAATCACCTTCATGCAAATTTGTTGTAAAAATACAGACAAAATGAA TACTTATCATATGGATACAAGATGATATTGATAATTTCACCCATAATTTGCTTATTGATTTATTTCTTGG AAAAAACAAACTGTGCTGTGAATATATTGCAATTTATTAACTGAAATTAGAGAAATCTGAAAAATTGATT GTTGTGTTACAATACTCGGCATAGACTTTATTGATATATTATTTTTCTCTTTTTTTATATCTTACAAAAT TAATATGGGAGTAGTAAGCGATCATGGTTAGAATTCTCTTGCTTGCATACCTTATCATATTCAATCACTT TTGGTGGATATATGAAGGAATTCATGAACATTTAAAAATGTATTTCAAACAGGTAGGTTGATATCCGCCC TGTGTATTCCAGTCCTGTTTTTGTACTTAAGAACAGTACTATTACAGTTCCATCCTTTATTAAAGCTACC ACTGTCCATTCTTAGTATTTATTTCGGCAAATGCCGTCTAAACCTTGATGAACATGAAATTCAAAACTAA CGACTAAGATATATTGGCATCTGTTATATAGATGTATAGTTTGCTAGAATAGCATTTAATGTTTGAAGCT ATTTGCTGTCATGTGCGAGTGCATCATATGGTATTTGTAAGTTTAATAGTAACAACTTTCCATTCGTAAA TTATCAACTCTTGTACATATATACATACAGAAGAATTATATAGTTCATGATGTACATGTACATATACAAT GATTTTATGGTAAATACATGTATCTGTTCTTGTAAATTAAGAGTATGTGGGAGCTTGGGATATTAAGTAA AATTTGAGATAAAATATTTGGCAGTATGATGTAGTTGAAAGTTATGGCAGCCAATATTAGGAATATTTAC TATCAATATGTATTATGAACCAAAAGTAATTTATAATATATGTTCATATTGTTGATGATTTTAGAAGCTG TTTATGTTATTTTAGTGAAATATTGGTGCTTTTTTTAATGCTCCATCTTTTTCCATTTAGTTTTTCCAGA AGTATGCAGTCGGTGAAATGGCAAAAAAGAAAATAAATTCACAATTCATCAGTTTAAA
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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