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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_038192811.1 PREDICTED: Patiria miniata cilia- and flagella-associated protein 65-like (LOC119722610), mRNA CACGAATACCAGGAACTAGACTATACCCATAGCAACATGATTCCAAAACAAGATGGCGGTAACTGTTCGA GAATTTTGAGTCCCGTCATCGCCGACCAAACTACATGAGGAAAACATTATTCTGCTCTGTATTACGTATG GATCAATCTGAAGGTTTATTCATCATTGCAAGTAGAAGTTGTGATATCTAAGATGTCAGTTGCCGTCACT AGTCGTCATCACCACTCTGGTTCCAACCACAGTGGCTCTGCTCTCCCACGTGATGGATACAGAAACAAAA GCAAAGTCAAGCATTATGGCATTGAGGTTGTCAAAGGTGTAACATGGAAAGGATGGGAGCCTGGTGGAGA GTACACAAAGAATGTCATTCTCAAAAATGTCCAAGTCAAGACACAGAAGCTAAAGTACAGCTCTCCGAGC ACTCGCTTCTTTTCAACGCTTTATCCTGAGCCTATTGTTCTGAGTGCTGGCACAAGCTTCAGTCTACCCA TCACCTTCAGACCACTAGAAAAAAATCTTTATGTGGACAAGATTGAATTTCAGACAAATGATGGTGTTTT TGATGTTCCAATTCAAGCCGTACTACCCCAGCATGATCTTTCATTACCAAAGCATCTTGACTTTGGCATG TGCGCATCAATGCACAACATTCAAAGGACGTTTGAGCTGAGTAATACAAGTGAATTGGCAACCCGGTTTG CTTGGTTGACGTCCAGTCCCTTTGTACTAGAGCCGTCAGAGGGAACCCTAGCTCCTAAATCCCGATGTAC CATCTTGGCTACATTTAAACCCACATCTGCCTTGGTATATGAAACAGTTGCTGAGTGCCGTTATGGGGAT GACTTGTCACATAAGAAGACTCTTCCATTGGAGGGAATTGGTAAATATCCCCATTTGTTGGTGAGCTCTC CTGGCAAGATTCCAAAGGCTATGGATAACCTGAATATGGAGAGTGTCATAGCATTTGGAGATGTTCCAAT TGGAGCCACAGTAGAGAAATCACTCCAAGTACATAATCTCTCACCTGTGGATGTACCATTTACAGTTGAG CACCCGACATCAAGCACATGCATTGATACTGTCTTTTACTGCAGTCAAGCAAGTGGAATTGCTTCACCAC AGAGTCAACTTCAAATTCCAGTGAGATTTCAGCCACAGAATGTGAATGAAGAGAGTGTGGACTATCTTCA TATACATGCCATTGGCAAGGTCAGCAAGACAGTGGTCAAACTGGTTGGAAAATGCACGGGTCCGCAGGTT AGCCTTGGAAGTAAGGTTTTGAGCTATGGACTGATTAACACTGGTCAGTCAGGTACAGGGACTATAGATA TAATCAATCAGTCTGGTGTAGAAGCAGTCTTCCAGTTCATGATTGACAGTACTGAGAGTGCATTCAAGTT TGGGGTTCATTGTGGCAAGATTGCAGGCAACACAACACAGACCATCATTGTTGTCTTCAAGCCAACTCAT CCCATCAATTACTACCGCAGGGTCACGTGTGTTGTTCAGAACCAGGATCCTCTGTTTCTGGATCTGATAG GGACATGCCATACAGAGCTTGTTAAACCAGCTGTGTTGCAGCCTCAACATCTGAGCCGATACAGAATACA TCAGGCTCGTGGCTTCTCTGTCTTCCCTCCTGAGCAATTGAATGAGATTTTGAAGGAAGGCAAGTTACAG CTTGATGATAATGGATGTTTAATACATCAACAAGCTGAGTCCGTAGAAACCTACCTGAATCCAGAGGCTC TAGAACCACCTATGGCAGAATATTTCAATGATGGCTACTATGGATCTACCAATAAATGTCTACATGTTGG TATGGATACCATCCAAGTAGATTTTGGCCAATGTCTAAATCTAAGTCACATCGAGTCCAAGACGCTGAAT GTCACCAACCATACCAAAGGCAAGATGACAGTGACATGGATGACAGATGACACCAATGTTTTCTGTGTCA CACCAGTCTCATGTGACATCCCACCCCTCAAGATGACATCATTCAGGGTAGCCTTCAAGCCAGGAGCACC CAATCAATTTTTTGCTGCAGAGCTGGAGGGATACGCATTTTACAAGAGTATGCGAGACTATCGTTTGGTG CAGGATGAGACTTTCTGCCCTCCATGGTGTCTGACTGTTTCTGCTATTGGTCATACCTTCCAACCAAACA ATCAAACCTTCTTGCCTAAGCTTTCCCTTGACACAAATAAAGTGGTTTTCCCAGCTGTGGATTCAGGAGA TTCCATTTACAAAACCATTTTGATAACAAATGATGGGTCTACACCAATTCAGTATGCAGTCCCAGAGGAC CCTACAGGCACTTTCCAAGTCAAGCCAAGTAAAGGCCTCCTTACAGACAAGTACCAGCTACTGGTGATCA AAAACACTCCTCAGCAGGAGAATGTCAAGCTAAGACATCAGCTCCAGTGCTGCTTCAATGATGACAGTAA GCACAACAGGACTATTGAGTTACTTGGCTCATCAGAACAGCCTAATGTGCTGCTGGATTCGGAGGGAGTG CTGTTCTTCAAACCAACTTGTATTGGTACTGCATCTCAGCATAGCTACAAAATCAGGAACATATCCCGTC TTCCATTAAAGTTTACTTGGAAATGCCGTCAGGAGGACAGGTCACTTGTCCAAGTTGAGCCAGAGACTGG GACCATCCTGCCCAATGAAATTCAGGCCCATGTGTGGACTTTTACACCAAGAGAAGATAGGAAGTATGTA CTGAAGCCATATGCTCATGTGGAAGATATCAGGCATGAAGGAGACATAAAACGACGGAAGCAGTTCAATC TGCGAGTTGTCGGGGAAGGGTCAACAGGGGAAATCAAGGCTGAGGACTCTAGCATTGACCTGTCAGATAT TGTGGTTGGCACAGCAGTCAGTCAGGATCTGGTCATCTTCAACAACAGCAATTGTAGTCTTCATTATCAG CTTCTTGTGGATCAGGAGTTACATGGAAGTTATGCAGATCAAGCTAGTCAGCAGGATGGATTGGCACTGG AGCTAGATGACTGCAAAGGCATTTTACCAGCTCGTTCTCGCCGCATAATCCATGCCACCTTCCGTCCTGT GCGGCGTTTATCCTACACATTCCACATTTGCTATCAGCTCATGTCACCTACAGATTGCCCTCTATCACAA GATAAGCAGAAACTCTGCACAGTCAGTGCAGTAGGGGTTTACCCTAACTTGAAGGTGACTGATGCAAGAT GTTATGGCAGTGCTAGTGGTATCAGTAAAGCCAGACTGTGGAGCTTGTTTTCCTTGGACAGCCTAAACAC TTGTTTAGAGTCGGACCCATCCCCAGAAGAGTTGACATATACAACGGTGACATGTCGCAGTACAACCCGC AAACCAACTGTCAATACCAGAGCAATTATGGACTTTAACTTCAGCAGTGCTCCCCAAGACAGTCAGCCAT GCATTGTTCATCTCATGCTGGAGAATACAGGCACAGTCCCCACAGAATGGTCATTTTCATTCCCAACTGA TCTACAACTTGAATTAGAGTACTGGGCAGAGACTGGAGACTATGATGCTGATGAATTACATGAGATGAGG ATCATGGACAACAAGTTGTTTTGTGTTGAGCCTCGCTGTGGCAAGCTTGGGCCAGGACAATGTCAGACCA TCACGTTTGCTTACAAGCATAGCTTCCCTGGCACTGATAGACTGCCTGTGCTCTTCAAATTGACAAGAGG CAGAGAGATCTTGCTGAATTTTGTTGGTGTGACTGTGGATCTAGACAGCAAATATGTTCACTTTCCCAGC AACAAGCATATGTTTGCTCCGGTTCCTGTGGGAGTAGCTAGCCATCCAAAGCAAGTGTATGAGTTGTACA ATGGTGGCGCTGTTCCTGTCATGTATCAACTAGATCTGACTGCTTTGGATTATGTTTTACAGGAAAACTT CAATCACAAAATCTTTGAATGTCTGAATCCGAATGGTGAGATAGCACCAGGCAGAACCGCTAATATTGAA TGGGTATTCTCACCCCTAGAGGCTAAGACGTACATGGTGGACGTACCCATCCATATCATTGGTGGTGATA CAGCTCTTATCACATTCACTGGAGTAGGGTATGATAAGAGAATCATGGGAGAAACTATGCCACTGACAGA TGGGACAGAGATTAGTAACGTACCAGCCACTCAGAGCATTCCCATGCCAGGCCAGCTATTGTACCTGAGT CAGGAGCGAGTTGCATTTAGCAATGTGCCACTGTTTTGTCAGGCCCATCGTATGATTGAGATGGTCAATC GATCAGCTAGTCACAGCTTGTCCTTTGAATGGTATGTGACATCTGAGGCAGACAGTAAGGTGATAGACAT TCAGCCAGTCACTGGAGCATTACAACCATCACAAAACTGCACATGTAAAGTCACATTTACTGCCATCGGA GAGCCATCATTCTACGACCTGGACATTGTGTGTGAGGTAACAGATGAGACTGAGATGGCAAAGTTCCATC AGAAGCTTGAGTCTTGGAAAAAAGAAAAAGAACGTCAGAAATATGAGTTCACCATCACAGACAAGGACAT GATCAAAGAGACTAAGAGTAGCAGCAAGCTGTGTCGTACCCTCAGCTCCAAGCGCAGTGATAGTCCAGAC TTTCAGCATTACCAGACCTTACCACCAATCAGGAAAGTCCAATCTAGTAAAGAGCTTGATGAGGCTGAGA GATTACAAGGCCTGACAGCATCAGGCACTCCAATCTGGGATAAACCAGCACCACCTGACAAGTTCCTCCT GCATCTAGGAGCCACTGCACGAACCCATACCATTGCAGAGTTCCAGAGCAACTTTCCAAATGAAGTGCAA AACTTCTTCATTGACAGGACAATGAGTGAGAGATTTAATCTCAGCAGTCAGGAGGTGGAAAGGATGCCAG AAGTAACCACTTCACTCCAAGCTACTGAGGAGGAACGAGAACTAGTATGTGGGGTCTCTGCCAACATCAT AAGAGCTCTTCTTGATGACCATGACTTCCATGAAGCACTGAAGGACATCTCTGATGAGCCAATACCCTAC TTCATGCAGTTTGGTGACCGTCCCCAAACCCTGGGTCATCAATCTACTGAAGCACCCCTCACTGACCCCC ATAAACCATTGACTCCACCTGATGTATTCCTACCGTCTGACTCACGCCCCTCATCTGGCAAATCAGAACC TTTAGCTGAAACAGTTGATATCAAAACTATTGAAGCCACTGCCGTCACCCCCAATGGAATGGATTTAATT GCTGTCAGGTCCCAAACCCAGTCATCTGGGGCCCTACACACAGAAGCAGATTATCAACAGAGTTTGAGGG AGGAACAGAAGAGAATGGAACAGCAAACACTGAAAAGGCTGCCAGAGTTTGCAACTCTTTTAGAGAGTGT GCTTGAGAATAGCCTGTTCAACATCATAACTGAGGCAAGTCATGGAGAAATCAATTTGACAGCACGTCCT CGTCTGATTGCTCTTCCACCAAGTAGCACGCCGCAGGTAGGGCCTGATCAGCATGCTGCTGTGCCTAGTG TCAGGATTGGTTCTACTAAAAGAACCAGTAGTGCTAGCCAATCAACACAGTGTGAATCAGAGAAGAGTCT TGTTGGAGATAGAGCCTGCAGCCTCAGTGCTGTGTCAAGATAGACTTGTGCAAGCTCAGTCATTCACAAG TTTCATTTCATCAGTTTGACAGAAATGAGACATCAAACTTCTCATAAGTAGAGTGTCCTACATTTTGAAC TAGAAGATTCAATTGAAATTTCTTTTTCTTGAAGATTGTATTGAAAACTGTTTAGCGAAGAAAACTTTGC ATTTGTCATTAATGACTGTACCTATATAGGCACTTGTGACCTTTTGCAGGTAAATATGTTGTGGTTTATT TGTGAAGTGCTGTTGAAGATCTGTGATATCTTTTGGCAGAGTGATATTTGAACTATATAAACTAGTCATT TAAATGTGTAAATATACATAGTTAGTGCAGTAAGTCTGACTTGCAAGTATGCATTGTTGACATGGACTAC TAGAGAGAAAATACTGTATTCATAAACTGTAGAGTAAAGAGTCATGATTTGGGGGGAGGGGCTCGACATC CTGTGAAACTTAGGGGTCTATCCATTATAGATTGCATACGTACATGGCAAATGACTTACATGTACCTTTA GATATGGTTTTAGGCATGTTTGAAAATACATGTACTTTGTGTATGTTATACAAGTCATCTGTTATCTTCA TTCAATCATTTACATTCAGTTTATTGCTGCTGATGACCCACAGCACAGTGTTCTGCTTTTTGTAAACATG TAAATAATGTTTGGTTTTCATTGCATTAGACCTGTTTTGATGTGTTTATTAATGTTTAAGTCAAACATCC CAACTTGTCATATAGAGGTGGATCAGGAGGTTTCTTATCTGATTACTGCGTGTCTGTATTGCCATCACTT TTCAACCTCTTGTTCAATATTTTTGTCGTTTGACACCATGGTTTAGATAAATCAGTTGTTTTTATGCAAA TACATTTATATTCGTGTTATCAAGGAGGACAAGCAGCTGTATTAGATACCTCTCAAAGGGCGTCACTCTC TACAGACATGTAGGGAGTGAAATTTGTGTGACGCGCATTGGCTGTGTCATATTTCAAAGAAATTTCGAGC AACATGCGCGGTGTTTAGAACATTTTGCACACTGAACACGTAATTTTCCTACAAAGATGGCTGTCTATGA GAAGGGTCTATTAGATGGTTCTGATACAAGGCTTTTAAGTATTAAAAATCCTATTGAATATCCTGTGAAA GTTCTGGTATCCATCATTGAGCGGTGAATCAACCAATAGGGTCACTGATTGAAATCACTGTCATTGCAAA ACATCAAACCCTGGCTTACAATACAAAAATGCATAATGCATGTTGCATATCTGACTCAGAAATGTTGATA TAGTATTCACTGCAGCAATATTTTTTAATTTTGTGATGTACATATTTACTTAAAAGAGTTTAAACTGGAA GACTTTTTCAAAGTTTGCTGGAGAGCAGTTTAATGTATCAACTCTCGGTCGGTTTGTATCAAAATAATTA GATCATTGAAAGTGTTGTAATGCACACCTATCACAGATATTTTCATTGGTAGGGGACCTATCACTAACAA ACAGAAACGTGAATTGGCTGGAATATGTTGTGTATTCAACTCTAGATTTTCTTTATATTTGGTAGCAAAT CCACACATCATTCTGCACCTTTCAACTTTGATTAAAACTACACTTGAATTGTTTTCACTTCTGCTTCTTT TTCAGTTCTTATTCCACAAAGATTAATAACAGTCCGTCCAATTTGAAGACATTTTCTTCCAACATATTTT TACATTTTGTATTTGGATTGAAATGAGTTTTTTATGTGAATAAATATATAAAAAGTAGCCTTATGTGTAC CGCTGTGCATTGAGAATAAACGATTCTTAACTTTGCTGACCTCAA
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???blast.numalign.100???
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???blast.matrix???
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???blast.matrix.blosum80???
???blast.matrix.pam30???
???blast.matrix.pam70???
???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