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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
???blast.query???
>XM_038209130.1 PREDICTED: Patiria miniata xylosyltransferase 1-like (LOC119735427), transcript variant X4, mRNA GAACACGTGTGCACAGCTAGCACGGCATGGCCGCCAGGGCGCGAGTTGGTGTTGGTAGCGGCCTCTATTG GGTCTATCTTATCAGTTTCAGACTTACAAATGACGGGCAGTGGTTGATTTTAAATTAAGACGTTGCTTGG AAAGATTTTACAGATTTTGAAGTGAGGCAACGATGATTTAGCTTACCCGTGCCATTCATTTTGCTGTAGT GCACAGGTTAACTTTAAGCCCAGGCTAGGCAGGCCAATTATGAATATGAGAAACAACCAGTTGACAAAAT CCAGTTTGCATCTGTCGGAAACAACTCCAGTTATCCAAAGATAAAAGAAAACAACTTTCAGAATGGCAAA GGTAACGTGCCACGCCAACAGGTCACTGTTGCTAGTGTTCTGTCGCTGGGCATCTTCAAAGACGCCATGA ATCAGTTTAACGAATCACCCGTGTATCGCCATGGCGGTCGGGCCAAACAGACAAAGGAGGACAAATTTCC GTTGGACAGGAGGCGGACTAAGGGGAAACAGACAAAATCAAAGACTAAACCAGTACCCGAGCAACCGGTA CCCGAGCAACCGGTACCCGAGCAACCGGTACCCGAGCAGGTCAACTCAAATCAACTTACTAACAGTGCTA ATGCAAACTCAATGGACAAGGCGGCCATATTGGTGGCCCCGCCGGCATATGATGATAATGACCCACCTGA CGAAGCCCCACCATTCGATGGAGCCTTGCCTGCGGACAAGGAAACTTCGCCCATTGGGGGCGGGAAACCA GTGAAACAGTACCAGAGCAGGAAGGCCAACATGACCATCGTCGGCAATAAGACTGTCCAGTTCGATTACT CATCGAGTTGTCCGATTGAAGGAAAGGATGCCGTTTCGGCGCTGGGTCGTGCCACGACGCTGCAATGCAA GCAGGACATTGCCGACGTCGTCTGTCGGATGAAGAAGGGCTCCCTCTATCCTCAGAAGATTGCAAGAATG TGCCCCCTGAAAGGCAAACCAAATAATGAAGTTGACGACAAAATCAAGTACAAGCTAGTCGACGATAAAC CAGTACGCATTGTGTACGTTCTAGTTGTTCACGGCCGAGCTCTTCGCCAAGTCCGTCGGTTGATACGGCT GCTGTTCCACACAGATCATTACTTCTACATACATGTTGACTCGAGGTCCGACTACCTTCACCGTGAGCTC AGCAAGATGGCCCAGGCCTTCAGCAACATCCGACTGACCCCCTGGAGGTTGGCCACCATCTGGGGTGGAG CCAGCCTCCTACAGGTCTACCTACGCTGCATGGAGGACCTGCTCAACATGGCGGACTGGCAGTGGGATTT CTTCATCAACCTGAGCGAGTCCGACATGCCCATCAAGACCAATGAGTACCTGGTCAGCTTCCTCAGCCGG TATCGCAAATACAACTTCTTGAAGGCTCACGGAAACGACGACGAGAGGAAAGACAAAAAGGGAAAACGAA AACCTGGGTTTATAAAGAAGCAAGGCCTGGATAAGGTGTTTTACGAGTGCGATACCCACATGTGGAGGCT GGGCGACCGCAAGCTACCCACGGGCATTACGCTGGACGGAGGGTCCGATTGGATCACCATCAACCGTCAG TTTGTGGAGTACCTGATCACGTCCAAGAACGAGCTGTTGACGGGATTGAAGCAGATGTATAAGTACACGC TGCTGCCTGCCGAGTCTTTCTTTCATACAGTCCTGGAGAACAGCGAGTTGTGCAAGACGTTCGTGGACAA CAACCTGCGCGTGACCAACTGGAAGCGCAAGCTGGGATGCCAGTGCCAGTACAAGCACATTGTGGACTGG TGCGGCTGCTCCCCTAACGACTTCAAACCAGAAGACATGTATAAAACAAAGCCAAACCGTCCAGCCTACT TCGCCCGCAAGTTTGAGCCAGTCATCAACCAGGCCGTCATCAACCAACTTGACACGTACCTCTATGGCGC CTACCCCGTTGGCACTGCGGGCGATCGCTCGTATTGGCAGAGCCTGTACCACCGAGCAGACGGAGCCACA GAGGCCCCCGGCGACATCCCGCTGACCGTCTATCAGAGCTTTGTCCGGCTGATGGCTGCCCACATCAACC TGGTGTCCCAGGGCCACCCGTACGACAACCACTGTGCCTACAGCATCAAGTCTTCCCCGACCGAGGTCAC CTTGTTCTTCCAGAACGACGACTTCCGGGGCGTGGTCGTCTCGGTGGAAGGCCAGACGCCAAATGGTGCC ACGGATATACTGGAGGTGTGGTTGTCGCTGGCCAGGGAATTCAGAATAGTCAGCTACGTCGGGCCCAGTA CACGGCTGCAGAAATTTCAGGTGGGCACGCAATACGACCTCAAGGAGCGCGTCCTGCGCAACTTTGCCAA CATCATGGGTCCCGAGGACAGTCCCATCGTCTTCATCAAATGGAAACCGGGAGAACAAGTCCAGGTGACC ATCTCCTGGATCGATCCGACCAATCACATCGCGGCGTCGTTTGACACCACGGTGGACCACGACAAGGAAG AGACGCACCACAGTCCTCCGTTTAAAAAACCGCTCCGGCCGGGCAAGTGGTACGTCAAGCTGTTGTATCA GTGGATGGTTGTCGCTGAAGTGGAATTCCTGATCGTCCCGCAAGCCCTCGCGGAGGGCAGGCCGATTCAG CGCCACGACTCCATCATGCTCAACTCGGGCGTGCCCAACAACAGCTACGTGGAGAAGGACTTCTCAAGCA TGAAATCGATCTTCCAGCTGGGGGACTCGGCCAGCTTGATCGCGGAGGCCAACAAGCGAGCGCAGAACGT GGGGGAGGCTCTCCACGACTGGGTGGACGAGATCGTTGGCCAGCACTGGTCCGTCATGGGCTTCTGCGTG GCTCCGACGAACGGCACGAAAGTGGCCGAGTGCCGGCAGTTCAAACCGTGCTACGGTCAGTCCTGGAGCA CACTGTCACCGGATTCCAAATCGGATCTAAGTCATGTCAAAGCGGACGGTCGGATTAGGTGATAAACAAA AACACAAGCTGATTTTGGAATGAGCCGTTATTGGTTGTTTTACTCACTCGTCATGAATACCGGTGAAACT GGTTCCTTTGTGTGACGTTTGTAGAATGCTGCATAAAATGCCACAGTGTTCAAATCTCATAAAAAGGGTG ACGAAAGGTCGTTTGGTAATGTGATCTGTGGATGCAACATGACGACTCAACCTGAATCACTAGCGGCAAA ATGCGTCAATTACGCAACAATTTCGGTTAATTCCAAGCTCAATGGACAACTGCTAGTGGTAAAACAAAAG AGAATATTTATTTTTATACAGTAATTTAACCCTGTGTTCAACTGGTGCTGTATATATTAAGGCTGTTAAT AATGAATAGAATTATAGTTAGTTTCTAGTTTTATATGTTTTGTATGTCATAAATACCAGTTTTATATCCT GCATTGTAAGTGGTGTATCTTAATTCGGCAAATTCTGTTTGTTGTTTTACCCTTTTTCTGTGTGAGCTGC AGCACAGGACCCTTATTTTTTTTTTTTTCTCAAACTCTTCTCAAGCAAGTTCCAAAAATAATCTCTACTG CAGAAAGGCCTAAGTTCAACAATCATTGGCTGACTTTGTGGTCACATAATAGCAAAAATGTGAATGATCG CAAGTCAAGCATAACCACTGAACCTCACATCCCTGGCTCCCTGCTGTACATTGAAATACACATGGCATGT AACCAGTGATGTGACACTCACCACCGATATTCCTGGTAGTGTTTTGAGAAACTAGTTTATAGAAAAACTA TGAAGTATAAAACTATAACAAGCCTAAAGTTTTCAGATCATGCCAAAAAATAAATGTGCATATTATTTTT AAATTGTGAGGGCATTGTCTGCTTTGAAAAATAATAGTTGTTTAGTTTGACATTTAGATACAAAGTCTGT GGAAAACGTTTGCCCTCAAATGGCAAAAGTGGAAAACAGTACTGCTATGGTTGGACCACAGTACACACAA TTTCATTTCATCTGAATGTGCTCAAACTCACAGCATCTTTGCGCCAGGCTTATATGGCTGCAATGCCTGC AAGTGTCCTGCCAAGCTCTCTCTTCGCAGCCGTTGAGGGGGTGCTTGCGCATGGAGTCTAAAGAAGGAGT TGTGCGCGCAGCACCATCAACATGTACACTCCCAGCACAGATTCTATAATAAGCAACTGACCAAGTTCAT GAAATTTTAAACTATAAATTATTTTTTCTTCCGCGATGTTTACAGACGACAGCATTATGAGTTGGTATCT GATGATACAATTTTCATTTTTATACTTAATTTTCTATGTTGTTTTGTCTACCTGTATGTCACTGTTTTGA ACATTGCCACCTTTTTTTACCACCTTTGACAAACAAAGTAGAGGTGTTCATTAACTGTTTCTAAGAGGCT TTTTAAAAATCAGGTGGGTGCCAACGGTTGGTGCTGGTGACTAGTTGATAAAAAAATTGCAAAAATTAAG TATTTTTTTAATGAAGTGTAGCAAGTTTGGTTGGGGAGGTGAGGGGAACAAAGAAATATGGACTCATTTT TGGCTGTCTATACTTAATCTTTTATCAGATTTTAAAATAAACATATTATAAAGTACTTAAGTTTGAATGT GTCATTTGATAATTAAAAGTTCCAGACTTTTGTTGTAAGTCTGGGAAAAAGTCCTGCACGAAAAAGGCAA CTTTTAACAAATCAAAAAAGATCTACCAGTCACATCTGGCAGGAAGCAGACTGCATGCTTAAAAAACAAA AACAAGCCAGTGCCGTACGTGTGACCAATGAAATTCTCTGCATTTAAATGCCTGATTCAGACCTAGTCTT CTGCACTTCAAAACCCTTCAAGTTTTTGCAAAACCACTTTGCTCATAGAGTAAGCACCCACACTTCAGAT TCCTTTGAGACGATTTAAGGGAATAAATGTGTGTGTTGGGATGTATTAAACGCTATGATTAAGACTGGTT GAAGTTTGGAAGGCTGATAAACAGCCGAGTTGTAACTTAGTGTTGTACTTACATTTTTCTTTACCAGACA CTTTAAAAGACGCACTTTTAAACAATCGGATTTTTGACCCCCGTGTTACCCCTTTAGTTCTAAACAACAC CTATGTCAGATGTTTCAACCTGTCAGCTATATTCCCTTTTTAAATTCCTTCTCACTGATATTGAAAAGGG GGAAACTCTGTAAACAACCTCACTAGATGGCCAATTTTTTTTTCAACTATTTTTTTTTTCGAACGCAAAA CTTGTTGGTGCAGAAGTATCGTAGCCTGCAATCATTGCGTGCGAAATGTTTCTAGCTATGTCAATAGAGG GCGCTGTTTTTCTTATGTTTATTATGGGAAGAAATTAGTTCGGCAAACAATGCTCTATATTAAACTGCTA TTGGCTCCACCCCCCCCCCCCCCCCCCCCTGATTAACATAGTTATTATTATTAAGCAATAAACTAGGAAT CTTTCCATATCGGTGAAGTTAAGAACTAAAGGGGTTAGTCCCTGGTGTTTAGTCCCTGGTGGACCGTTCG GGAGTTTAATGTACAAGGTACACGGGGGTCTAAAATCAACTGGATCTATTAATGTACATTTGTATCTTCA TAAGCTGCTATAAATTCTATTGTTATACCGTTTGTTGATTGAA
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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