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Echinobase
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Echinobase Accession
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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_030998207.1 PREDICTED: Strongylocentrotus purpuratus coiled-coil alpha-helical rod protein 1 (LOC100888089), transcript variant X1, mRNA ACAAACGAAATTGAGAGATTGAAGAAAAAAGAATGGCGGGCTCCTTAAAAAATCCTGCACATTTCATGAA ACCTCTGTCAAGCCATGGTGTTGGTACACCACCTTACAAATTGCTGCCTCCATCAGCCCTCACAGTACCG GCCAAAGTGGCTCCCAAGGTCACAGGGGTCTCAGGAGAGCCAATGGCCCCCAAGGAAGATGGAAAACAAT CCTCATTAAAACCTGCTCACCAGACATCTCCAGCCTCACAACATGAGAAGGAGACCCAAGTCACCTTGCA ACCAGAAGCCCCTGCTGTAATACCCCAAGGAGCTACTGGCACTCCCCTTCCATCCCCTAGCTACTCACCA TACCACCACCACCACCCACCCCCTCAAGCACCGCACCTTGCCCAACCCTACCCCCCTCCTCCTCCACCAC CACCCAGCCACCCTGGACCAGACCCCCACCACCTTCTGGAGCTCCAGCGCCAGACCGATATGATCGTCAG CCGGCAGGCAGCGGACATCGCCCGCCTCAAGACGGAGCTGTCCACCCAGGAGGCCCAGCACTCTGGGGAG CTGGCCAGGAGCAGGGCTGGAAGCAGGGAGTCAAGAGTGGGGCTAGAGGAGGAGGTGCTCAGACTCAAAC AAGAGCTGAAGAGATGTAATGCCAGCCACAAACAGCAGGTTAGTAATATGGGAGAGGAGCATCAAAGAGA GACCATCCATCTGACAGAAAAGATGAGGAAACTAACAGAAGATCTCCATAGCGTGAGAGAAGAATCAGAT GGAAGGAATGCCAATTTGACGACTCGTCTAGCCGCAGAGCAGAAATCAAGCAGTGAACAGAAAGATCAAC TTCAAAATGACGTCAGGCAGAAGCAGGAAGAAATCTCTCGTCTTACAACTCAAGTTGCTCAGCAGAAGGC TTACATCGGCGATGCTCTCCCTAGCAGTAGGACCTCGGCACAGTGGAACATCGAGAAACAGAACTATGAC AAGAAACTCAAGCTGTTGGAGGAGGAGAAAGAAAACATCCAAACAACTGCCGACATGTTGAACGTGAGAC TCTCATCAATGCAAGAGATTATGGCCATTCAAGAGAAAGAAATGACACAGGTACAGGAAACACAGCATGA TGTGACTGATAAGCATCCTGGAGAAATCCTTTTAACCAAATGGAGAGAGAAGGTTTTTGCTCTCTTGGTT CAGAGGAAGTCCCTGGAGATAGTTCTTAAGAAGGACGCATCTACGCATGGGGATAAGCTCCACAGTCTTG AGGGTGAGTTAGATGGATCCCTAAACAAAGTTAGGATCCTGGAGCATGCCTTAGCAGACAAGGAGGCTCA GCTCCAGCTGGAGAAGAAGAATGTTACGAAAGTGGAGCATGAGCTAGTTTCAGTCCAAGAAGTAGCAGGA ATGCTTGATAGTAGACTACAGGAGAGTGAGACTTGTCTTTGTAGAATGAGAGATATGGTCATTAGGTGTC ACAAGTATTCTAATGGACTGGATATGCAAAGCAAAGAGATGGTGTCAAGATTAAATTCTCATCAACAACG ACTGACTTTCGCTATCAGCAGAATAGAACTCCTGCAAGATCTTCTGGCTCGTAAAGACTCAATGTTGAAG CTGAAGGTCAGAGGTTCAAGCCTACAAGGATACTCTGACTTATCAACACAAACTGATGATCAAGGCTTGA ATCCAGACAGTAGTGCTGTCCCAATGGAGCTGAAAGCGGAGCTCGAACGTCTTCAGAAGGAGAGAGATAG TCTTGCTTCCAGGCTCAAAGAGGATTCAGCAGTTTTCCAGCAGAGAATTGATGACATCAGGGAAGAGATG ATGGAGAAAACGGATAAATATGAAGAAGAAAATAACCAATTAAGAGCCAGAGTAATAGATAGAGGAAAGG AGGTGGAGAGTCTAGAGGAGCAGCTTTCTGCCAGTGACAAGTCCTTGACCGAAGCAAGAGAAGAGACTGT CAGGTTTAGAACGGACCTTGCACGCTCTCAGCTAGTGGCAGAAGGAGCTTCAGATGAGAAGTGCAAGTTG CTTGAATCCCAACATACAGAGAGACTAGCAGAGATGGAGAAGAGATTGAATGAGGCTAGGAGGGAACATG CTAAAGCAGTTGTATCATTAAGGCAGCTAGAGAGACGACATACTCGTGAGAAGGAGAGATCATCAGAGGC CCTTGCAGCGCAGGAGGACTACCTCACCAAGGAGATATCTAAGCTCAAGACAAGGCTCAGTGAAGTAGAG GCCGATAGAAATATGCTAATGGTAACATTAAGACAGGAAGGCCTCCTGGCAACTTGCAGGGCAAAGCAGA CTGGTGACATACCATCTCTCATAGAGAAAGAAAATGGCAGTTGTGCTGGGGGTGATGGAGAGAGAAGTGA TAACCATTCCATATCACCCACCAACCATGACAGACATCCACCCGATAGAGGAAGAGAACCCCTTCATGCT GTGTTGAAGGATTTACAGACCATTGCTGCCAAAGTTTTAGAAGATGATGACGATGATGATGAAGTAGAAG GAAATGAGGAGTAGTCCAGGAAGAAAGAAAATCAAGAGTCACTTAAACTTTCCAAGTAGTTTTTGTATGC TAATAAGATAGATGAATTATTTTCAAGGTATATTCTACTTCAGTGTACAACCAAAGGTTTGAGTTGTTTA CCAATACGTAACCATTACATGACCACTTTCACGAACTATTTGCTGATTTGACCATCTTGTTCTTTTACAA TTGAACATACACAACTGTTTTCTTATTTTACCTATTTTTAAACTTTCATCTGTTTCTATGTATTATTTGA CTTCCCACAGGTCAGTTGTTATCTCGGATGGATTCCCCTTACTTGTTTTGGAGTTGGGACAATTTTTTTC TTGTATGTCATTTGTAACAAGTTCATCTGAAATCTCAGGCAAAGTACATAGAGCAGTAATGTTTACAAAT TTCAGTATCTTTTAATTAATAGCTAAAATACTGCAAGGGTTTTTATATTTGATTAATTTTTATGGTACTG TACACTATACATGTACATTCAAGTGATCAAGTTATAGACACATTTATTTCATTTCTATAATGAATAATTT GGTGATAATTTAATCATGCTGGTCTATATGTATTGAGTCAATAATTTTGAGGAGATGAGATCAAGTCTAC TTCCTATTAAATGGATTCATGAATTTGATTAATGTTCAGAGAAAATAAATGAATATTTTGAATACGCGCC ACATGCATTAATTGCAATGTAACAAATCAATTCATCCTGTGATTTTTTTTGTGAGGGAAACTTATTTGAT TTAATTAAGGGAAATGTGTCACCTTGGTACAATGTTTTGCCTTAAACAAAGAAATGTAGATCCTGGCAAT GTACAGTATTATCACTTAATAAGAAAATATTTGACTTCATGCAAGACTTTCATAAGAGTTTCACAAGACA TCTCATGCCATTTCTATCTACATGTATGCTTAGTAGAATATTCACAGCCTCTCATTAAATAATTTGATCT TGCACATCATTAAATGTCTTTATGGAATGCTATGATCAGATTTGAATGCCTTTGTCAGTATTAAAGTTGA TGCTAGAGAATGATTTCCCAGGTGTTCTATCTGTGTTCATTGTCTATGGATTTATTTATGCATCAGCAAA TCTCTTACAATTTTCCTTATCTCTTCTCCCATACGGAACTACACATACCACAACCACAATGCTATATTTA TCACTTTGAAAGACAAAAATCAAATAAAAAGTGAACAGATTCCAGATAATTTGGGGTAGTAATATACTAA GTCTCCATATTTAATATCTATACATTCATAACAGCCAACAAATTCACCCGACCACCAAAACACTGACCTT GGTACATACAACAGTATAGGAATATCTTTGAATGGAATAATGCTATTTTCAATATACACGTATCTCATAA TTTTGTTCAAAACACACATTCTTGGTATACCATTGCAAGAAATACAAGTATGAAGGATAGTTATTATTTA GAGCTTTAAGCTTGATGCAAGCAAGAAATTTCTTCTATAATCAGCTAATTTCATCCAATTTTAGCATGTC TTGATCATTTAATTCATTAATAAAAAATTCAAGATAAATAACAGTAAATATTCAAAGAAATACTGGCATT ACATAGTATAGTTATCAACAATTTTTAAAAATATGTTTAAAAAGCAGTGCTGCCCCTTGAACCTTTTAAA TGGTGTTTTATGCAGGAAATTCACTTGAAGAAAATTTTTGGGTAATTATTAAAAGCATGTACATTTTTAT AAATTATTTTTTGAATAGGGTGCTGTTTTTAGTTTCTTTGTTTTACCTGACCAGGGGACAGATGGCTTTA ATTCTTTTATGAGGGACTTATGTAGTAATGATTGATGCCTTAACAATGGGCACAAGTGCAGCAATTTAGT TTGGACCTCGCGGTTAATAGACCGCTACCCTCGGACTGCGCCATTGTGCCTCCCGTATAATTTACAATAA TTTATTATTCCTTGCAATCTTACAGCTTGTAGAGACAATTGGAAACTTATACAAAAATTGTATAAGGAAA CGTATAAAGAATCATTGTATATCGAAAGGAGCGTACAGACTAGATGACATCATATAATCAAACTGGTTTA GAATACAAAACTTTAATCACTTGGGGTGGTGTTAAACCTGGCCTAAGTTAATCCACGGACTACTTAGGCC AGGTTCAACTTTTTATAGTCCATGGACTAAAGTGAGTCCGCTTTCGAGAATACCACTCAAATCGTATAGC AACTTTGGTAGTCTGGACGCAGGTTTAGTGGCACAGAAAAGGTTACAAATGAAACCAGTAGAATTTAAAC CCGAGATCAATT
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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