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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???
>JT104176.1 TSA: Strongylocentrotus purpuratus WHL22.3956.0 mRNA sequence CTTACTTTCAATCCACTAATAAAAGGTGAATCTTAATGTAATGCAAGGATATTAAGTTTCACATCCTCAA ACCCGTCCTTGCACATAATTATGTCTTCATTGTATGAAATGTGCAGCTGTAATTAGAGCTGAACAATTTT GGGTCAACTCAATTTATGGACACCGAGAGATGTAGGCCTACATTGGTTATCGTCATACTTATTTCATACT GTACGTCGCCTGCCAAGGAAAAAGTGACAAATTATGGTTCTTTGGAATTGCAGTTTGATATTGTTTGATA TTGTGAGCTAACATGCAGTATACTTGTGCCTTCACAACTCGGAGATACTCACTGATTATCGTATCAGACG TTTATCATCAAAACTAACGCCATACCAGATCCCATCTACAAGTAAAAAAAAGTGATTGGAATTGCAATGA AATACTTTTTTCCATTCCACAAGTTGATTTGAAGTTACCATATAGTAAGTTTGTGCTACCTGATGCCGCT TCTTCAACGTAACGCTGTGTTCTACACCGCTCTTGCCAGTGCAGGATTGACATATTTTTGGGAAACCACA ATAGACGTTTTGCAGTTGCACAAGTTTATTTTGTAAGTTACTCTGTGTATTTCTTCAACTTGATGGTTAC TCAAAAATTATCACTTCAAGATGAGCGTTTATCCTAATATAAAAAAAGATTGTCGATGCATTAACTCTCG CGTGGGACACATTTCCTTCGTTTGAAAGTAGACAGATGGACGGATTGTTAAATTTGGATCAGAATTGTGT TCCTCTATACCTCATCATTCTTCTCTCAAAGTGACTCGGTAACATTGTTGAAGAAAATCAAAGAAAGATG CCATCGAAAAAGCGTAACCTGTCCAATTCAGGCCTACCGCGGACGATGGGCGATGCGGAGGCCAGGTTCA TGACTGCCGTCTGCAATGGTAACCTGGCCTATGTGAAGACGACACTGAGTGGCGGTGCTGACATTGCGAC CATCAATACAATGCTTCATCTGACGGATAGCAAAGACCGTACCGCCCTCGAGATCGCAACGGAGAACGAA CACTTTGAGATCGTGCTTTTCATCATCGAAGAGCATGATCATCACCTAAGTCTCAATGAGATACATGAAA GCCTCATGGTGGCCATCACCAAGGGATATGTTAACATTACGCAGGTTTTACTGGGGCATCCTTGCTACGA TGAGAAGAAAAACCGTGCGATGCAAACATTAGGTCCTCACGAAACCTTCTACGATCGTAGCTACCGATCT AAGTTCGACCGTGACGTCACCCCGATCATGATGGCAGCCATGTATAATGAAGTCGACATCCTCCGAATAC TCATGGATCGAGGTGACGATGTTGTCAAACCCCATCACCCTCTCTGTGGATGTACAACCTGTTTGAACCG GAAGGAGTATGATCCTCTCATGCACTCTCTATCCATCATTAATGCATATCGCGCATTGTGTAGTGAAGCC TACATCTCATTGACGAGTGAAGATCCTATCTTGACTGCTTTCCTCTTGAGCAAAGAGCTAGACGGCCTCT GTCGGACAGAGAAAGAGTTCAAGACTGAGTACAAGGAACTGAAACAGAAATGCAAAATGTATGCATCCAA CCTTCTCGATATGTGTCAAAATACGGAGGAGGTGAAAACGATCTTGAAACAGGCGGCGATCTCAGAAACT GAAGTCAAAGAGCAGGCCTGCCACAATCCTCTTGAGAATGACAAGGAAGATCAGAACGCCCTCCCACGAC TGGAGATGGCCATCGAATACCAACAAAAACAGTTTGTAGCTCATCCTCATTGCCAGCACCATCTTTCTAC GCTGTGGTACCAGGGTCTTCCGAAAATCAGACTGATGAACACATGGAGGAGAATGGTCATGTTATCTCTC TTCCTACCCCTTGTACCATTCGCAGTCATTATTTATCTCATCTATCCCAAAGGAAATTTTGGAAACTTCA TGCGAAGTCCCATCATCAAGTTCATCAATCAGTCGGTGATGTACTTGGTCTTCTTACTTCTCATGTTCAT GGAGTCGGTCATGGAGTCGTCTGGAATCTTCAGACGTAATGATATCACCATTGAGAGTATTTTCCAGTCA TCAAACTCATGTCGACCTTACATAGATCAAATTGGTAGCTACCATAACATCAAGGCCAATATCAGAGAAG CTAGCAGCATCATCGAGTTCATTCTTTTTATTTTCGTCATGGGGATGATTTGGCAGGAGGTTAAGCAGAT ATGGCGAGAAGGCGTGCATACCTATGTTAGATCTATCTGGAACTGGATTGATTTAGCTATGTTAAACCTT CTCCTGAGTTCACTTGTGATTGTGTTCATGACTACTGAATTGACCAACAAGGCCGAACAATTCTTCCAAA CCGAGGGGAACTGCAAGGCTCTCATTAACAATGAAGCCAAGGCCCAGCGGCAATTTTATTTCCTATCCGG TGATCGGAGGGCCTGGGAAAACAACGACCCGAACCTGATAGGGGAAGGCCTGTTCGCTATGGCCAATGTT CTGAGCTTCTCTCGTCTCTCATTCATCCTCCCTGTCAGTGAATTCCTTGGACCGCTCCAGATCTCCCTTG GAAGGATGATGGGTGATATCATGCGATTCGCCGCCATGTTCACCGTGGTCTTCATAGCCTTCTTGTGCGC CATGTGTAATCTGTATTGGTACTATCCCAATGAAAGCGCCTTTGGATCGCTGTTGAACGCTATCCGGACA CTAATGTGGGCTTTGTTCGGTCTTGGCGACCCTTCTGACCTATCGTGCCCTGATACTGATTCAGACTGCG GCCATACCTCTACCGAAGCCTTTGGAATTCTGCTCTACAGTTCCTACATGGGTATCATGGTCATTGTTAT GCTGAACATGCTCATCGCCATGATGTCTTCGTCCTTCGATGCGATCAATAATGACGAAGATGTGGAGTGG AAGTTTTCTCGTTCCAAACTCTGGCTGTCATATTTCGAGAAAGGGGCCACATTACCTGTTCCGTTCAATC TCATACCTTCACCCAAGTCTATCTTCAACAATATCATTGTGGCCGGCTATCAACTGATCAAAAAGAACTC ACGTCAACGGAACATCGCAACTCACAGAATAACTTCTCAGAGTAACCTGCGGAGGGCTTTGCGACGGAAT GTAACGAGTCATGACGATCTTATGAAGAATGTCGTCAAGAGGTTTCTCTTCAAGTTACAACGATCAAAGG ACACCGATGAGGTCGATGAAGGAGAACTTGAAGAAATCAAGAATGACATATCTAGCTTCCGATTTGATGT GCTGGGAATGCTCGGCAATCTATCTTCAAAGGTCGACGCCCAGAAGCCTGGAAACTCCAACATGAGCAAC GGATATCAGGAGCAGGGACAGGGCGGGCTCGGTAAGACAAACAATTTAGATGACTTGGAAAAAGTCGCTG ATGGGATCAACGAAAAGCTTAATGTCCTGTCAGACATGATGACAATAATGCAAGACCGGTTCTCTGAGAT GTTCCAGAAAGGCCAGTCAGAATCGAAGGCATAATAACACAGATCATCGGAGTCCTTCGGTCATGAGACG TTTTAACAATTCAAACCTCGGCGACTCACTGTATAACGGAATAATATCGTTATCGACACGCAATTTAGCT AGTCGATCGTCAGGGAAAGAATGAGCTGATGATGACATCCGAGGAAAGAAGAGAGAACATTTTGACAAAT ATGAATCATAAATGTCTTATTATTTTGTTGTTTCGCTCAATTCAAAGTTAACAGGGTTTCGCCACATGAA GAGCTGACATGCAAAAGGCGCTAAATCCATTTTCACCCGCTTACAATGTTTCTATACACCGTTTATAACA CATCATAGATGAGCATCCAAATCACGCAATTTCACCTCAAAATGTTGCAGGAAATGTTTTTAAAAATCAT CAATATGTTTTCTTTCAAAAGGCACTAAATCCAAAATATTTACCATGAAAAACCCGCTATTTCCATGTTA TCTTTATTATTTGTTCTTGTTGGGCCAAGCATCCCAGCTTGGAGTGCCTTGACCAATTAGAAAGCAGAAC AGAGACAGAAAGCTTACTTCACAATGGGTAAATTTGTAAGCCTACATAAAAAATTTGGTTTTAAATTTGT ATTGTTATAATATATTTTAGGTACATGAACGTTACTATACTGTTCGAATTTGTATCTACATGTAACGGTT TTAACATGGCGCGGTACGGAAGCTTTAGAGTTGATTCCTTTATGTGATTATATTTCTCGTCATTATGCTT GTACAGCGCATAGAGAAACTTAGGTTTATTATGCGCTTTATAAATATTGTATTATTATTATTAGACAGGC TTTGCAATTATGTGATATTAACTGCCAGTTTTAATTAGTGATTGGGTGGAGAGGGGGTTAGAGGACTGTT GCTGCACACATTTATATTCTCGTTTCTAGTTACAAAACAATGATAGTATTTGAGTATCAATATAAAGTAT CTCATTTGAACGTTGCCGTGGACCCTCATGATCTTTCTTACAAAAGGCACTAAACCATTGTTTTCCTCTC AAAGGGCGCTAAATCCAAAACAAAATATATGTAGGATTTTGTTCATTACTGTATTTGTGATCTGAAGTGA TAGTTCTATCATATACTATCTAGGAAATTGACAACTAAAAAAAAGGAACATGTGTAAACTAAAAAGTCTT TATTTACTCTAAATTTGCTGGAAGGGATGTAGCGCCTTTGCTCGGAAGCTCATCACATTAAGACATTGGG AGCTAGGTATAGAACTGGTAGACGAAACTGCCTGTTAGTTGAATTGAGACTTGTACGTATATATTATTCG ATATATTTTTGATAAAATGTCATTTTATTATACATCTATCTTGACTTGTACATTATATTATAAGAAAATG TTGCCTGAAATCCTATCAGGTTAATTGAATGATGTAGTGATGGTCATTGGCGTAGGCTATGCAGGATTTT GTCAAGGAGGGTGTTCGAAAATTGGAAAATCGCGCCGACCGAGATTTCGCTCATTAAAAAAAAAATGAAA GGGGTAACCCCCAAAACACTACCCCCCCCCCTCCTCCCCCTGCTTACGTGCCTGGTGATGGTCACCATTT TTGCTTTGAATTTAGACCCTCCCCCTAAAAATAAAAAGCAAAACGGCAAGTATACATGGATATCTGATAT GTGCATTTATTGCTTGCTATCGGGCTATGGAATAACTTATTTAATTTAATCTAATCTAATATAATATAAT TTAGGAACTTAACATTAATCTTGATCTAAGGAGACACGAACGAACGAACTTGCTATATATTTACTTGGAC TGTGAAATGCACAGACAGAAGATGACAATTAGATTAATATGTTTTATTGTATGATACAAAGTGTCAAAGA AATTTTCAGAATGAAAAACAAAAACATAATACAATTTCTTGAGGTAAAAGTGCATGATTCATCAAACATT GTATACCTTTGATGACATGTAAATATTCCCTCTGTATCTACATAAGTATATGTAGCAGGATATAGTACTA CCTTAAAGGGCCCATGACATCGAAATACAAGTGTATTCCTGTTGGTGTGCAGTCCTGCATACATCTCATA TTTTGATATGTAAACTTCTGAATTTGTTTCATAGATTTTTTAATATTTGTTTTAATATTTGTTTTTCAAA CTTGCTAAGCTCCACCTCCAAAACCTCCAGATCTCATTTCCCTTGTGACATCATCTGTCAGCCATTAATG AGCTAACCTGTATTTTGATGTCATGGCCCCTTTAAGAAATATTAAAATAGTTCTCTGTCAATGTATATGG TCGCATATTAGATACTTCTATTTTAACAGGAGTTTGATATCAAATATTCCTACTAAACAATATGCATTTT ATCTAAATATATTTGTAACTTACACCCAGTAAATACAAAAATATATACATTTTAGTAATAATTCAGTATA GTCTGATTAATGTGTCTCTGTTCTCTGTACAATCGTCCCATTTTCGGAAATTAAATACTAAAGTGCAACG TTCTTCTGCCAATTTTGTTCCTCTTTACTTTC
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???blast.matrix???
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???blast.gapedalgin???
???blast.true???
???blast.false???
Automatically set to False for sequences longer than 4500 bytes
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BLAST time is limited to 30 seconds