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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_030979922.1 PREDICTED: Strongylocentrotus purpuratus serine/threonine-protein kinase 31 (LOC100893206), mRNA CCCACCCTCGAGCTCTGGCGTTAAACACACTGCGGATCATGTACGGTTTGACTGAGTAGATTCTAGAGAA CTCAACACCATGACAAGTAAAGGTAGCAATTTCAGCATCTATGTTGGGAACCTCCCGATGACATTTACGG ACAATGATTTTCAACAGTTGTTTGGTGAGATGGGTCCCATCTCGTCATTATTCTTGAAAGATGGGAAATC CAAGGATGGAACACAAACGTTTAAATATGGGTTTGTGAACTTTGAAGAAAGTTCGTCTGTAGATGTTGCT ATATCATCATGCCAGGGTAAACTCATAATGGGACGAGTACTGACTGTCCGGAAGTCAGAAAAGAGCAAAA ACCGAAGTCTGTTAGGAAATACAGGACGTCCAAACCCAAACTGGAATGATGGTGCTCATCAGAATAATAG AGGATCAGAGGATATAAAGAAACTCCAGGGATATGAGGAGATGGTGAGCATCACCCACGTTGTAGATCCA CACACCCTGTACGTCCAGGCACTCAACAGAGACAACCTAGAGAAGTTCTCTGTCGTCATGGCAAAGCTCC AGGACTACTGTAACTCTGCACCAAGGCTACATGAGCTTCACCAGGATAGAATCAAGATCTATGGTGCAAT TTTCAAGGATGATGAAGCGTGGTATCGCTGCAGAGTGCTAAATCATCATCAGAACAAGGCCGAGGTGTTA TACATAGACTATGGGAACAGTGCTGAGGTGGATATTAATACTATGGTCCATCTCTCTGATGAGCTAGCAA GCATCGGTCCTATCGCTCAGAAGATCAGGATCATCGGTGTAGCTCCAGTGTTGAAAGATTCTTCATCTGA TGCTGCTAGCCAGGCCTATACATTCCTTGGAACTCTTGAAGCGGAGGGAGGTGATGGGAAGCAACTGAAG ATCATCATCGCAGAAGGCATCAAACCCCAAGAAGATGGCTCCCTACCTGTACAGCTCTTCCACAACCACG TCAATGTAGCACAGACAATCAACAAGAGGTTTGCTCCAGGCTACCAAGAGAAGATGATCCAGACAAGCTC CTCCAGGCCTCCTCTTAAGACAGGTGGTAGTGGTGGAGGAGCTGGGAACCAGTGGAAGAACAAGGAACTG CAAGGAGGGGGTGGAGATGTAAATGGCATCAATGGACACAAGACACACCACCATAACAACAAAGATATGA GTGACTTGATGAAGAGATTGGAGAACTTGGAAGGTGTCATGGAACAACTCAAGGATGATAAATTCATCTT ACAGAAACAACTACTACATCACAAGACCGAGGAGGAGAAGAAGAAAGAGGAAGAATCCAAGAAGATGAGT TGTGTTCTCCAGTCCCATCTAACACCTCTAGCTGAGAGCTTTCAGAGGATCAAAGAGGCCAGGACTGGTT TCTCAGTTGATCCCGAGAATAAGAACACCGTCCTGCTCGCCATTGATCTTGCTGCTAAGAGACTGCATCC ATTCATGGAGGGTAGTCCTACCAAAGAGAAGGGTGATCTGATCAGTCTCATCCCGGACTCAGAACCAGTC GGTATAAAGCTCCAGGAACTAGAGAGAATGCAGCAGGTCTTACAAAACCTACAGTCTCAGGCTGAGTTGG CGGATGCAATGCTTCAACGGAATGATGCCCGTCATGAGGCCTATAAGGCTCTCACTAGCTTCTTGGATGA TGTCAAGAAGTTACCCATTGCCAAAAGACTAAAAGATATTGAGAGTATGGTGAACCAGTTAGAGTCCGAG TATGGATCTTACCTGGACCCAACCAAAGTGATGCAGCCAGACCATAGTGTAGCAGACGTAGAATGCTTTG ATGAATACCAAGCATGGCTGGAAGAAAGATCTGGTAAGATTACCCCTCTACGTGATGAGACCAATGAGCT GAGGATGAAATGGTGTGAGCTACTCACCAACATGAACAAGTCTTTCCTGTTTGATGATATCTGCTCACCA TCTCTGGAATCTACCGATAAGCTAAGGGATGACTTCCTGGTTGCTATGGAAACTGAGCTAACATTCACTC TCCATGGTTACACGCCATCCATTGAGCTGGATGATAGCACTGCATTGCAGACCAAACAGGAGCAAGATGT GAGAGAAGTGGAGGTAGTCTCGTCCACCGTGCATGCCCTGGTCAAGGCCCTCGTCAAAGAGAAACAGACG TTGGCAAGCCTGGCTCAGGTGTGTGATAACTTCACCACGATGGCCGCTCAGCTCAATCCCTGGCTGAACA ACAGACCTGATGTATCGTGTCTACAGACTATCATGAAGGAGGTCAAAGGTCATAGGTCAAGACTCAGGCA CAAACTCGCTGATAAGAAAGACCTGGAAGAGGATACCGAGCAGTGTAATGAGAAGTGTATGGAAGAGCTA CAGGATGAGATACATACCATTCAGGGGAAGCTGTGGACGCTCTACCAGAAGGAAGATGCATTACTGAGGG AACTTTCTGAGCTGACAGCAAATCATTACCCCGAGCTGCCATTCCTGTACCCAGTCATAGGCATCAGCAA GTTCTTGGAAACCAATGGACTAGTCAAAGATGGTCGTGACCTCACGCACTTTGACCTTTCACCTGTACCA GACTGTAAGAAGACGACCGTGAAGCTTGCCAAAGCTAATGGAAAGCCTGTCAGCGTCATCAAGGTGATCC ACCTGCCTGACAAGCACACTCTAGATAAGATGATAGCCTACTCTGTGATTGAAGTCCCAGCCTGCATGAA ACTCCATGCCGTCTATCCAGAGAGTGACGGCTCTCAGCTCTTCCTTCAGTTACCATACATGGGACTAGGA AACCTAGAGTCTGCTGTTAAAGAAGATGGACTGCTCAGCAGAACAGATGTGATCAATGTCTGCAGGAATG TCTTAATGGCATTAGAGGGACTTCACCGACTAGGTCTGGTTCATGGAGGAGTACATCCAAGGAACGTCCT CTTAGAGCAAAGAATGGAAGGCAAGGAGGAGGGGGAGGAGGAGTCTTGTATCATTGCCAACCTGGCTGAA TTCGACTTCACTATGACAACTAGTGAGACAGCTCTGAAAGGATTCACCTCTGAGACAGGAATGCGTTTCA CTGCTCCAGAGGTTAACTGTGGACTTCAAGCGACATCACAAGCTGATATATTTGCTTGTGGACTCCTCCT TCTTTGGGCCCTTTTCCCAACCAGAGTCTTCAAAGTTGAGCCAGACGGCACGCCAGACCTGGAAGGCTGC AATCTACCGCCCTCTCTGACGGAGGTTCTAGATTCCATGCTGAATTACAGCCCTTCCAAACGACCCTCTG CTGCCCGCGTCATGGAGTCTGCATTCTTCACCAATCCTCCAGAGTTTGCCGAAGAGACGGTGACGCCGAT GGAGGTGGCAGCGGTTGATGGAGGAGATGTGTCTCTGAATGAGAGTTCTCTGTGTGATATCCCAGAAGGA GAGGAGAATAAGCTTGATGTTAGTGCACCAGGAGATCTTCAGATGGAGCATTCACAACAGACAACACCTG TTGATGTTTCCCTGAAGACACCACCAGCGTCTCCTGTCAAGGAATCCATGACAGAAAAGAAAGGCCAGGA CTCACCAGGACACATAGTCCAGGACTCACCAAGACAAGTCCAGGACTCGCCAGGACACGTAGTCCAAGAC TCGCCTAGACACGTTCAGCAGTCACCAGGAGGTGTAGCTCAGAACTCACCAGGACGGGTAGTCCAAGGCT CACCAGGACACGAAGTCCACGACTCGCCGAGACAGGTAGTCCAGGACTCGCCGGGACTTGTGGTTCAGCA TTCACCAGGATGTGAGCAGACCCACGATGAGACCCCTATGGATCAGGGAGAGGAGCAACGAGCAGAGAAA CCTGAGGCGGTAGTCCAGGAAGTCAGTCAGTTCACCCTGGAACCTGCTCACAAAGTTGAAGAAGAAGCTG GTGAAGAGGCTTCAGACTGTGATAGTGAGCCTCCTCCTCTTGAAGATGATGAGGTCATCAACCATGTACC AACACTGGTAGAGAGAAGCATGCCTTCAGAAGAACCAGTTGGAGTCACCAATGCTCGAGAAGAGGCTGAT GATAATAGCTCTCCAGTGTGAGGGCTGATGCTATCTCCTTATCCCAAGTTTCAACTAAGCATCCAAAAAT TGGTCAAAATCCTAGCAGGAATTGTTTTATATTACAGTTGTTTTACGTTCTAGAATTTTTCATAATAAGA GAAACACCTTGTTTTATCTAGAGTTCATTTTAGTATTGAACCAAAAAGTAAAGGTATAACCATTCGTTCA AAAGCCAAAAAGGGCTTGTGATCATGGAAAGTTACTTTATTTTTATCAGTAGATATATACTTTGTTTTTA TACATTGACAGGCTGACTTGTTACGGACATGTATATTATGTAGAAACTCAAAACAGTTTATAGGTTAACA ATGACTTCAGGAATTATGAAATGTGTGAAGCCAGTTGGTTATGTTACTCAAAGATATGTCACTAATGATT TATTATCGCTCGCTTTCTTTACCTCAAAACTCAACATTTTGATCAAGAGCAAATTTGCTTGAAAATGTTA TGAATTAATCATGATAAGTTAGTTTTGATTTCAACTCAAAATGTTTGCCTTTAGTTTATAAGCAGCTGAT TTGACAAAGTATTATTCAAGTTGTTGCGAACAGTATTCCTTGCCAACTAGTATTAGCTTTTCTCCCCATG ATGATGTTGGGCAGAAATTCCATTTTTATGTTTGCCAAGGAGAGGGCCTTGTTTATACCTCTTTCAGATG TGCCAAAGATACAAAGCTGCAAGCTTATGATTCTGTATTCATTTGTTGTTTTTGATATGTGATATGAAGA TGGGGAAACGTTTTCTTTCTCAGATGTTTATGTTTAGATTGCCAACAAGCGGCCATTCTCGTACCTCTTT CAAAATGTGCCAAAGGTTTTACACATACAGACATATGGTTCTGTAATGGAGTGTGTGATGTATTATATTG ATGGATGATCAGGTAGAGTTGCTTCCATTCCATGAATTCTATAGAGAAGAGGTACCAATAAGTTTCTAGT TGTACATCTATGAATGACGCCTATACCGAATACCGAGTTTTAGCTATAGAATATTAAGAAGCTGATGACG GTGGCTCTTCTTTGCAAGTGATGGGGTCGCCTTGCCTCTTTCCATTTCTGTTAGAGGCAGATTGTATTGA TTTATGTGACATTTGAGTCA
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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