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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
???blast.query???
>XM_038189758.1 PREDICTED: Patiria miniata inositol hexakisphosphate and diphosphoinositol-pentakisphosphate kinase 2-like (LOC119720187), transcript variant X2, mRNA CCATGTAGGTGGCTGTTGGGCCCAGCAGACAGCGTCAGTCTTATCTTGCCCTATTTATGGGGCAAGCTGT ATTTTCTACGTCAACCATAGCAGCTTCTCACTTCTCAGTATTCAAATCCTAACTTTTCGTGTTGTTTGTT GTAGACCTTTGCCAAATAAAGTTGAGACAATTGCTGGAAAGCTGGAGGAGGGTCTACCAGATTCCACCAT GAACATCCCGGGCTGGGACAGCGGCGAGGTCACGATCAAAGGCTCGGTGGGCATCTGCGCCATGGCCAAG AAGTCCCGCTCCAAGCCTATGCGGGAGATCCTGAGCCGCTTGGAGATGTTTGAGCACATCGACATCATCA TCTTCCAGGAGGAGGTCATCCTGAACGATCCCGTGGAGCAGTGGCCCATCTGTGATTGTCTGGTCTCCTT CTTCTCCCAGGGCTTCCCGTTGGAGAAGGCCATCGAGTACGCCAAGCTGCGCAAGCCGCTGGTCATCAAC GACCTGGAGGCACAGTACAACCTGCTGGATAGGAGGAAGGTGTACAAGATTTTGTATGAGCAGGGCATTG CCGTACCTCGCTTTACCGTCTTTGACAGTGATAACGACAGTCCTGAAAACGTGATCAACGAAACCGACGA CCAGATCGAGGTCTGTGGCCAGGTCTTCCAAAAACCCTTCGTGGAGAAGCCAGTGTCAGCGGAGGACCAC AACATCTACATCTACTATCCCTCCTCAGCCGGGGGAGGGAGCCAAAGATTGTTCCGAAAGATTGGAAGTC GCAGTAGCGTTTACTCATCTGTCAACACCCTCCGTGAGAAAGGCTCTTACATCTATGAGGAGTTCATGCC CACGGATGGGACAGATGTCAAGGTGTACACGGTAGGACCAGACTATGCCCATGCAGAAGCTAGGAAGTCG CCTGCCTTGGACGGTAAGGTGGAGAGGGACAGTGAGGGCAAAGAAGTCAGGTACCCAGTCATCCTGAGTA ACCATGAGAAACTGATTGCCCGCAAGGTCTGCTTGGCATTCAAGCAATCGGTGTGCGGTTTTGATTTGCT GAGGGCCAATGGGAAATCATACGTGTGCGATGTCAACGGTTTCAGCTTTGTCAAGAATTCCAAGAAGTAC TACGATGACTGCGCCAAAATACTGGGTAATTTGGTGATGAGAGAGCTGGCTCCCAAGTACAACATTCCCT GGCAGATGTTTACTATGGAGGAGGAGATCCCTTATGTGCCCACCACCTCAGGCACTGTAATGGAGCTGCG TTGTGTGATAGCAGTCATTCGCCATGGTGACCGAACCCCCAAGCAGAAGATGAAGATGGAGGTCAAGCAT CCCAAATTTTTCAAGCTGTTTGAGAAGTACGGCGGCTTCGACAAGGGGAAGATCAAGCTGAAGAGGCCCA AGCAGCTCCAGGAGGTGCTGGATGTGGCCCGATATCTGCTGGAGGAACTCAAGAGACAAAAACACAGGAA CAGACTTGAGATTGAGGAGAGGGAATCCAAGCTGGAACAGCTCAAGGCAGTCTTAGAGATGTACGGTCAC TTCTCAGGCATCAACCGTAAGGTGCAGCTCAAGTACCAGCCCCACGGACAGCCCCGTCACTCCAGCAGCG AAGAAGATCTTCAACAAACTGGAATTGTTGAGCAAGATTGCAAAGCAGACCCTTCTTTGTTACTGATCCT GAAGTGGGGAGGCGAGCTGACAGATGCCGGCAGGGACCAGGCTGAGGAGTTAGGCAGAGCGTTCCGTTGC ATCTACCCTGGTGGCCAAGGGGAGTATGCAGGTTTCCCTGGTTGTGGCTTGCTTCGTCTGCACAGCACCT ACCGTCACGATCTGAAAATATACGCATCGGACGAGGGCCGGGTGCAGATGACTGCTGCAGCATTCACAAA GGGTATGTTGGCATTGGAAGGCGAGCTGACCCCTATCCTAGTCCAGATGGTGAAGAGTGCTAACACCAAC GGCCTGCTTGACCATGAGAAGGACTCGGTCACAATACAGGGAAAATCAGCAGCATTTGATACAGAGCTCC AGAGTCAATTATTTCACCACAGGGTGAAAGAGACTCTCTACGAACGATTTCGCAAAAATGGCAATTTCAC CGAAGACGACAAAAAGGAGCTTGCACCAACGGGCAGCAAGTCCATTCACTACTCGCTGTCACGCATCCAG AACCCCACAGAAATGTGCGAGAAGATCTACAGCCTCATCAAGGAGCTGACTCACATGGTGCGCAGCTGCA TTGATGACAAGCCCTCCCAGGAAGAACTTATCCTGTACAGCAACGAGTCGCTGGAGCTGATGTTACGACG CTGGGCCAAACTAGAGAAAGACTTCAAGACCAAGACTGGCCTGTTTGATATCACCAAGATCCCGGACATC TACGATTGCATCAAGTATGATCTGCTTCACAACGAGAAGCTCATCACTCCTTTGGGGTTCAAGGGCATGT GGGAGCTGTACCTGAATGCTCAGGTGCTGGCCGATGTCATCATACCACAGGAGTACGGCATTACCAAAGA AGAAAAGCTCGGGATTGGCACCAGTATCTGCACTCCCTTGCTGCGCAAGGTCCGTGCCGACCTGCAACGC ACCAACTTTGAGGAAGAGACCACGTTCAGGCTGAACCCCAAGTATTCAAAGGGGGTCTTGTCCCCCGCCC GCCATGTCCGGACCAGGCTGTACTTCACCAGCGAGAGCCACATTCACTCTCTGCTCTCCTGTCTCCGATA TGGCGGACTCTGCAACGAAGAGACTGATGCCCAGTGGGCCCGGGCCATGTCCTACATAGGAGAAGTCAAG GAGCTGAACTACATGACGCAGATCGTTCTCATGTTGTACGAGGACCCGACCAAGGAGCCCATGTCCGAGG AGCGCTTCAGGGTTGAGCTGCACTTCAGCTCGGGGGCCAAAGGCTGCAACGCCACGGACATGCCAACGGT GGGCGGCTATCGCTCAGCGAAGGGAGACACGTCACCCACCGAACAACTCTCAGAGAACGACGACGAAGTT GACAGTGCTTACGACGACCCCACAGTCACCTGTGACGAACCCATGTTCTCGGTGACTGGCAACGACAGCA CGCCGACGTCCTCCATGGTTGGCCTGGACTCGGGACCAGAAGACCAGCCGGACTCGGCCCAGAGGTTGCC CTTCGTCAAGCTGCCCGAGCCCCACCACATGCTCAAGGTGGGCCTGGGGCTGAGGGACGGAAGCCGACCC AGCTCGGGCCCAGCGTTGACCCCGTCCAGGGCTAGCTTCAACACGCTGAATGACATCAGCGAGCATGAAT CCCTGGCTACAGAAGCCAAGGTGTCGGCTAGCAGTAGCAGGGGAGGATTGCTAGGGGTCCACAGTGCCCC GACCCTCCACGGTATGGAAGGCACTAACCCCAACGATGCCAACTGGGTAGTCAGTCAAGAAGATCTGCTC AGACGGGCCTCGCATTTTTCTGCTCAAGGTGTACCGCTGGACCATCAGATGCAAGTACCATCCATCCTTC CTCTGGAAACACTCCATAACCACCTGTCGCTCAAGCAGATCGACACGTTTCTGGAGAGTTTCACCCAGAA CGGAGCCCGCACCCCGGAGACCTTCACGCCCCGCCAGTCCTTCAAGCTGAACACCTTCACCCCCCGTCGC GTCCTCCCAACCCCGCTGTCCTTCGGCCGGGAGTCGGACGGCTCCCTCTACAGTCGGTCCACCAGCAACC CGTCCTCCAATACCTCCAGCGCGCTGCCCTCGCCCACGGAGAGCAATTCTACCAACTTTGACTTCAGCGC CTTCGTTGATAAGGTAAAGAGGGAGAATCGGAAGAGTAGCTTCGACATGGCGAACAGTCTGGACAGCGTC ACCGGGTCCCTGTGCCAGGACGGGTATGCGGCCGAGGACGAGAGCCGGTCATCCACCCCCAGGAAACCCA GAGGGGGTAGCGAGACAGGATCGCTGGATCAAGTAGAGCCCATGGATACACAGGACTCGGACGCAGCTAA GCTCGGAAAGCTTGGGAAGGGACAATTTGGTAGCTTGACTGTGGACATTGAATGCGGCGGTGAAGTTGCC GATCAGGAAATGCAGGACATTCAGACACCTACAAACTTATGAGGAACATCATTGTTGCAAATACTCTCAT GAGCATATCTGTGCCTGTGGCACTTCGTCCTTCGGTAAACCTTACAAAATTATGCCGACATCAGAATAAA CAGGGTGTGTTAAAAAAAGGCAATCCGAAAAATAATGGGTTGGTTTGTGAAAGTAATGAACTTGAACGCT GTCAAAGTGATGCCATCTTAAAGGGTAGTTCATTAGCTTTCTATTGATACCTTATTTGCATCTCTGAAGT CATGGATGTCTGAGCATCATTGATTTTAAAATAAAGGCCATAAAAGAATGGTGAATTGCGATGTTCAAAA CTATTTGCCCATTTGAAGGAGCTTAAATTCACAAGGTTTGACAAGTCAGATAACGGGCTGCTACTTTTTG CTTCATGCCGTTCTAGACACCGTGCTACTGCAGTGTGGAACTCAATTAATTCCACTTTTTAAAATTTGGC ACGGCTATAGCACGGCGTTTAGAACCATTTGGATCGGCAAATTGAATTCGGAACGGCACCCTCCTATGGT TTGTCAGGGCTGCCGCGCTACCGTCTGTCTGCACTGTCCTAAATGCCGTATCATTGCTGTGCCGAACTTG ATTCAATTCGAAGTTAAGAATTTTAAGAATGCGCATGCTCACAATACCCTCTGTCACGTCCGCATCAGGG GGAGTGGAATTGGCACGAACATTTTGACCGCACTGAAAGTTCACTGAACTGCTTGAACTGCTCTAACCTA GCCCATTACTCCAGATGCATTAAGGTTCGACTATTATGTTCTGCGTTTAGAGCAACTGCAGTGCTGTAGA CGAGCAATTGCCGCTTATTTCAATTAATTTCGACACGGCAGTAGCACTGCGTCTGGCAGGGGCCTTACAT TCACTGAAACCAGGGTACAAAAACTTGAATTCAAGTGAAAATACTTTTAGAAACTGCTTCCTGGAGTTTG TCTTCGTGCTAGTTCTTCATACATATTCATAAATCTGACATAGCTGTGTTGTAGTGGTGTAGAGAGAAAC CACTTCTGTAGCATTTATTGATGCCCAATTTGGAAGTTGTTAAACATATATCTACATAGTACAAAATGTA CATGCATGGTCAAATTAACACTTTTGTTGCCTGTGTGACATTTGGTCTCCAGGGTATGTGAAGTTTATCA AATAACTATGAAAAATACTGGCCTCATTACTGTATTTGTGGTCATCTGAAAAACCATTAACCTGCACTTC TGCTATTTACGGCATAGTTCTGCTTTCTGTATAGGGCCAGTTCTGTTACTATCTACATTTGTTTGCATGC ATGCATGTGGATATTGTTGGTTGCATTTGGTTTGCCTCCGTTGCTGTGATATCCAACATAAGCTACAAGT TTTTAGTAAGGAAATAAATATGTGATGCGATCAAGCTA
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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