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Echinobase
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Echinobase Accession
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Echinoderm mRNA
Echinoderm protein
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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_038216170.1 PREDICTED: Patiria miniata stAR-related lipid transfer protein 5-like (LOC119740760), mRNA CTGACCACACTACACTGTCGACTGCATGCAACTTGAGAGAGAAGTGGACCCAACAGCGTTCACGGAGCTT TTGCACAGAGTGTAATAACTGAACACTCGAATGTTCCACCGCTGGCTCGCTAACACTGTTGACGTCGCCA GTTTGTTAGATATCTGCAGGTGTCGAGACGATATTGTTATCTGATCCAACGCACTTACCAACACATCAGA CATTTCCGGAACTCTCACCCAACCTCAATCTCGCTCCAGACACATTATTGTGGTATCGTATGTTATCCGC CCTCCTCGTGTCTGCAGCTGCTCGCGCACCGCGTCGTGCGGTAGAAGTTCTCACGCGCTCTCTCGACCAA TCGTACAATCGATCTTCGCCCATAAATCGCGCTTATTGGTGCATTGTCTGCATAAATTATGCTCAGATAT TTGGCGCCGGTGACATTAGGTGTCTGCGCCGTCAGTGCGGGCATTCTTAGTGGGAAACCAGCGGCGAGTA GAATCAGTGTGTCGTCTGCCGTTAGGAGGCTGTTGGTCGCAGCAAATTGCCACGCTGGTGGTACTGGAAT CTCCTCCTTTGGAAGCATGGATTATAAGGAAGAAGCTGAACGTATGTCACAGCGGGTGTTTGAATTATAC AGTGACAGTGACTGGAAGGTTGCCAAAACTTCGAAAGACATCCGAGTTCTGTACAAGAAATCCGCTGAAT TTGACGGCTATGTATACAGAGCCGAGTGCACGCTGGACTCGTCTCCCGAGAGAATCCTGGAGTACATCCT CCCGTCACCGAAGGGACTCCGGGGAAAATGGGACAAGAATGTCAAAGAATCCGAGGTCATTGAACACATC AATAAGGATCTAATCGTCGCGAGATCCGCTACACATAGCGCGGCTATGGGGCTGATATCGTCTCGAGATT TCCTCGATTTGATCTACGTGAAGCGGTACCCGACCAACAACATGGTGTGCACTCACTCCAAGAGTATCAA GCGTAAGGATTGCGCATCACGTGACGGCTTCATACGGGGTACCAACTATCATGGCGGCACATTCTGTATA CCCGTGGAGGGGGAGAGCACCAGGACCCGAGTGATCAACATGGTCCAATCCGATCTTGGTGGGATGCTGC CCAAGACTCTGGTAGATTCAGCGCTGCCCAGCAACCTCATCGACTTCTTCGTGGATCTAGATAACGCCCT CAAGTCAAATATAGAATAAGAACCAGGCAGATGTTTACGATGGGATGGGGGATTTGGAAGGGTTTATAAA CAAAAAAAAAACAGTCTTTCGCTGGTTACCCTGTTAAATGTTGTTATTGCGCGAATTCAAAACGCGAGGC TGGCGACCAGCCAAATTAACCATTTTCTACTTAGGCCTATATCAGATCCAGCTACATTGTAATGTGTATT TAAAGAGCGTTCTAGGTTTGACTGGTTACCCATATTGATTGGTATCAGAACCAATCTTCTGCTTGAAGAC AGGTCTTAGATGTTTGTTCGATCTCTTGAAGCGTCACTCTGGACGATTATATACGATTCCAGTCTAAATA AAATGATTTATGTAGTGTGTAGGCCTAGAGTTCGGGGAGGTAATCCCAAGTATAGCCAAGTCTTACGGAT AATAAGCTTAATTTGATTTTCAAGGGGAATATTAGAGTGAGTCTGAAAGACGATGCTCGTTGGGGCTTTT TGAAAGCAATGTTGTGATTCGATGTTGGTAAGATTTCTGCTGCATGTGAAAATGGCGCGCTTTTATTGTG TCATTCATTGGTATAACTTAAAGTACTTTTACGGTATTTTGGCATATGGCGAAAGCTATATGACTTAATA TATCTTGTCGTCAAACCTGGAAAATTGCATGCACTTTGTGAATTCATATACAATGTTTCTATTTAAAAAA ATATATCCATAAATAAATATTCATAGCAAATCCTCCTTTATAAAAAAAATAATCTTGCATTAAGGTCAGA GGTCAACGACTTGCACAACCCAAACTGTTATTACTGTTGTTAACTAGAGGTTCATTGTATCAGCATGCTG TCCGTGTTTTTCATCAGGGTTTTGAATCAAGACCTGCCAAGATAGGCTGGATTGGATTGGCTGGGAGCAA TTAAGGAGATTGCGGGATGGATACCCGTATGTCGTCAGGTTAGCGATCCGGTGATTAGGGTAAGCTAGTC TTGACTCGAGCAGCGATGAAAATGTCGGTAGCATCATAGACATCTATAATGAAAGATTGATGGGTAGTGC CAGGCAGATCCCGTGCAACTGCTCAAATATAATCACTTATGTCTGTATTTTGTGGCTGGGTAGATGTGAA GTTGGAAGTCCGTACCCCTAATTAAAGTTGAAGATGAGAGATGTGAAATAATGTGTTGGGTTGGAGACTA GCTCCAGGCATAGGGCTTGACCGTACAATGACATTTGCAAACTTCGTCGCATGATGCAAGTTACCAACTG AAAGAAGTTCACGAGAGAGAAAAAAAAATATTCGAAGTATGTCTGGTGGAGAGTTTATCCTTGGTTGCCC TGCCGCCACGCGTGTTTATAGGCTGTGGTTCGCGTGCTTCGTGCTCCACGTGGTACGGCAGCCAGCTCGG CAGGAGCAAAATTGATCGGCGGCTGGGGCACTGAGTGGTCGACAACCGTTCCGATGAAGTGAGACTTACC CCAGCAATCGGATATGACGCGTGCCACGAGCTAAGACGTAAGAACACACTGCGATGCACGTAGGGGGAGT TGTATTGTCGAGGAGTGTTTGGGTTTTTTAGACGCTCGTCTTCACCTTGTACTTGGACTGTCCGGTGTAT TATCGGTGACGCCCGCTAGCGACGTATGACGAAGCATTGCGGCGGCGGAGAGATAGATCCTGAACACGGC GTGGCTGGCATCGAGGGCTTGCGAGACCATCAAAACCTCTCTACATCATTTTAATTCATTTCCAACGGGC CCTCTGGGGCCCCCATTTCATCCTGACCATCCATTTCATCCGTGTTTCGTACCCGCTATTTTTTCAAGTG TCCAGCAGTCAATTAGAATGACCGAACTGAACTCAAAACTGTTCATTTAATCCTAGAATACGAATATCTC TTGCTTGCATTTATAAACGCATGCATAAAGCGAAAACCATTTGACTTTTTCATGCGCAATTATTTCTCCA TTATTCCCTCGCTGAATGTCGACATAATCGTAGTTAGATGAAAGAGTGGTCATGGTCGGGACAGCGACCA GACAACACGTCATCCCATTAAAATTGATTTCATTCTCTGAGCAGTATTGATTTCGTCGCTCACAATCTGC CACGATTGCATCACAAAGATTTGGACACTGAATGCCAGAGGTTGTCAAGCTGCGATGTTGGTCTCAGACC AACTTCGAGAGTAATTAATTTGTTATTGATGCAGAGATTGGCATTTTTGACGCCAAGCTGTAGAATAGAT CCCAACATGTACATTTTTCAAATGGATGCCCAAATACGACTTTTTGAAAGTCTGAAAAATGTAAAGGAAG GCTGCATGTCTGGCGCCACCACGAGTTTCAAACTTCAACCATTGTGGATTGAGATTTAAAATGGCGTCAT TATGAGGTCCTTGGATATTAGATGCAGACCAGTAAATATATTCCTGTAGGCACCAATGATAAATACCACA AACTTGACTGGGGGAAAAAAATCTCACAGGTGATCAAAACATGCATCAAAATAATGAAAGCTTGATTTCG CCTTCGCTCGTACCCCCGCCCTGCAAACAGGGTTGAGAGGGGGGGGTACGAGCGAAGATTTCGCCCTCTT TCACTTTCTGTTCAGTTCTTGGGTGTTCTAACTGATGATTTTTCTCATCAAAGATGAACACACCCAAAAG CAGTACTGAAGACCATCGCCATTTTGAACAGCGACCCCTCCACTCCATTGCAACATAGTGCAACTTTCTG GTCAAATTTCAACCCAAAGTTAACAGAAACTTCACAGACCGGTTCACAGCTTGGACCTTCATTTCTACCA ACCCTCGAGCAGGTACCACAAAACCCCTCTTAACAGAAGAAATGACAGTATACAAATCGTGATTTGGCTG GCTTAGGCAATTGTGGGCCTATTTACTGGTTTGCAACCTTAGAATCGGGCAATCGTCTTACGTTGCTCCA TCTCCCTTTTAAATGTGATTCACCGGTTTTAAATGTTCTCAAAACAAGCTCTCAGACTGGAGTCTTTCCT AGTCGATCGCCTGATTTCCCAAAAGCAGGCCATATAAGCGGAAGCCGACGCGACAATTTTCAGCGGTAGC CGAACTCGATGCAGTCGGAGACGGGAGGTGAACGAACCCGAACAACGGATCTATAATGATTGATCGTGAG TTGCTCTCGCCTCGTTTACTGGACCCGTCATCACGTTACGGTGCAGGACGATGACTAAGCTTCCCAAACC ACGCTGGTCCTAGTCTACACTCAATCTGTGTTAATTGTTTGTGCTGGGGCTCCGGAGGCGATCTTACCGT ATTAATACTCGTCTGACAACAGCTTTAGCAAGAGCATCATCCCCTCGGTAGAAGCCCTCAAGACGACTTC ATTAATTAACATTCCAACCCTTAGGACCTTCTCTTTTCCCTCTCCGACGGCCGATTGACACGACCCGGCA CTGATAATGTTGTGATGATAGCATTTGTCACTTGTCGCATTTTGTACATACATCTTGTAGTATTTTTAGA ACTTAGCCATGTTACCAGAACGCACCATGCATGAGACGAATCTGTGACGCTGTGAACATGAATGAGCTGT ATGTCTAAGAAGGGAATGTGTACGCGACAATATTGGACCAAAATATTTTTGTATTACCAAAACAGTGCGC AAAATAACGATATTGATGTGAGGTTTGCCATAGGCCCAGTTTTCATTGGTGTTGGTGTTCTTGCAGGGGA CTGAACATAAGCATGTAGGTTGGGAAAGGGTGATCTAATCATTAATGTTAATGTAAAGGACCAGAGCGGT TAGGTTGTAATTTATATGCAGAATTCATGTTTTTCTTGTCGCTACTATGCAGTATTGTCTCCGTAAATTT TTACCAAGACTTTGCGCATGATTTTTTTAATCTTCATCTGTCTGGAAAACTGGCTTTCATGTGCCGGATG TCATCACAATTTATGGATAATGTTTATAGTTAAGATTGATTTTTGCGTTCATATGTGAAGTCGTTTTAAA GGCGTTCACATCATTTACCCTTGAGACATGGTTACATCTTGTTTTGTTTATCTTGTCATGTTAACACGCT TTCTTAAAAGGTATTTTAAAAGATGTTTAATGATACCCCAGTAAATTTAGGTTGTAGTGATTAATTCCCC TTTAAGGGGAACATCAAGTTCAAAATGACAAAAGATGCATCCATTTTCGTAGTTTTGTTTAATTATTACA TCTGAAAATTCTGTATGTCCAGCTGAAATCTATGCGTAATACTAGATAATAAGGCTCATTGTGTTACAGA TACAATATCAGATTTACATTATCAAAACATTTTTTTGATTTTTTTCACAAATAATTCTCCGGTCTGTGTT TTTTTTTTCGTTTTGTTGTTCGTAATTTCCTATAGGCCTAATGAACGATCCATTTTTGCCGTAATTGTAT TGAATGTGTAAAGTGAACTTAAAGCAGCTTACTAGTGGCGGAATGCAAGCAAGCCACTATATTTATACTA ATATTGCATTAAAATCGATAACTATGTATTGATATTATGAATGTATTAATTAAGCAATATCGCTTGTATT GTGTGTAGTGTATTGTTTCGGAGATTATATTCTATAAGAATTATCTCCAAATAAGAACCACGTAGTGTAA TGCGCTGCACTGATAGACAAAAACAATCGCGGCATACCAAATACTTTTAAAATACAAAGTTGTGAAATAT TTTTCTTGTGTAATGACGGCTATTGTGCATTTTTTGGAACTGTCTTAAAAGATAGGCACTTATTGGCTGA ATGTATTATGATCAAGTGATGCGTACTTTAGACTGGCTAGCTTACTTTATGTAATAAAACTAATTGCTAT GGCACTGTCCAGATTAAATGTGGCTTTGTTATGCTAATGA
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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