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Echinobase
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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_030992624.1 PREDICTED: Strongylocentrotus purpuratus kinesin-like protein KIF27 (LOC756355), mRNA TAGGCCTACAAAGAATTTACGGAGGATGAGTCACGTCCAGATACAGATGAGCATTGAGGATTAAAACAAG ATGCAGGAGTGTCCAGTTAGGGTAGCCGTCAGGGTGCGCCCTCTGTTGGCCCAAGAGCGTCTCCATCACC ATGAGCTGTGTGTGAAGGTCAACTCAAAGGCAAACCAGATTGTAGTCGGGAAGGACAGGGCGTTCACCTT TGACCATGTGATGTCATCAAAGACATCTCAGGAAGCAATCTACCAAACTTGTGTTGACAACCTCATCACC AGTTTCTTTGAGGGTTACAATGCAACAGTGTTTGCTTATGGTCAAACGGGATCTGGTAAAACCTTTACGA TTGGTGGAGCTGATGTGATCAACATTCCAGAGAATGAACAAGGCATCATACCCAGGGCAATAGGTCACAT CTTTGAGAACATTCAGAACAACCACAATCGAGATTTCACGATCCATGTGTCCTACATCGAGGTTTATAAA GAAGATCTACGGGACCTGCTGGATATGGAGACTAGCAGTAAAGATATGCACATCAGAGAAGATGATCAGG GAAATACAGTAATCCTTGGCACCTCTGAGATCCCATGTAGCTGTATGGATGATGTCTTGCGTTGCTTAGA GATAGGCTCCACCCACAGACACACAGGAGCTACTAACATGAATGAACATTCCAGTCGATCACATTCCATC TTTACTATTCTTATGGACCAACGATGGAAAGCGAGCGCTAACTCTCCCTCATCTTCCCCTGTCATCTCGC CCCGCGGAGAAGACGAGCTCTCAGACGAGGAGGACGATGGTCAGGACTATCACTTCATGTCCGCTAAGTT TCACTTTGTTGATCTCGCTGGCTCGGAGAGGGCTCATCGGACTGGCAATGCAGGCGAGAGGTTCAAAGAA TCTGTGTATATCAACAGCGGTCTCCTGTCGCTGGGCAATGTGATTAGCGCCCTCAGCGACCCGAAGAGGA AAGCCACGCACATTCCGTACCGGGATTCTAAGATCACGCGCCTGCTGAAAGATTCGCTGGGTGGGAATGC TAAGACCTGCATGATCACTTGCATCAGTCCTTCTGCAGTCAACTTTGATGAGACCCTGAATTCCTTGAAG TATGCAAACAGGGCTCGCAACATTAAGAACAAACCAATCGTGAACAAAGACAAGCAGGCCACCCGTATAG CTGAGATGCAAACAGAGATTCAAGCTTTGAGAGATGAACTACAAAGACATAGACTTACTACAGCTAATAC CGAAGTGGGACCGGATACATTACGAGTGCAGGATCTAGAAGAGCAGATCGCAAGATTAAGAAATGAACTG TCTCACTTCCACGTGTGCACCGACGAAGCGTCCAAGATCTTCACCGGCTTCCAGGACAGCGATCGTCTGA CCAAGGCTCAACGGACAGCGGTCAATAACTGGATGGACTTAGCCAGTGAGATGAAAGATGCCGTCAGGTC AGCCACGCCCCTCGACCCCGCCCGGTACGGACAGGTGGAAGGCCAAGAGAAGACTTTGGAGCTGGAGAGT AAGCTTAAACAGGCGTTGGGTGATCTTGCGAGCGATGAGCAGATATTTGCAGACAAGAGAAGAGAGAATG AAGATCTACTTGCCAGACTCCAAGATATGGAATCCGACAGAGACCGTTGCTCCAATGAGCTGGAGAGGGC GCTAGATAACATACGTCGTCTAGAGGGCGCTCTTGTTGAGCAGCAGACCAAGATCACAGAGCAGCAGTCG CAGCTAGGCCATGGGACCGGTGGAGGTGCATTTGAGCTGCCCCTGTCTGCCGGTAGGAGAGCTATGTCAG TGCCTCCTCATGCAATGAGGACCAAGTCTGCTTCAGGGAGTAACACAGCCAGGGACAGAAGACCCGAGGC GAGGAGACTACATACCAGCCCGCCCTTGTTTTCTCTGGAGAGGATTGTTCAGGGTTTCCGAGCCAGAAGC CAGCTTCTCATCCGTCATCTTGAAGATAATGACGCGGTCCTTCAGGAGAGCCTTACCGATAGCAGTGGAC CCGAGGACTCAGATACAGAGACAAAAGCTTTAGGTCAGACTTGGAGTAAGGAAGAGAGAGGAGGATCATC ATCAGCCAGACAGATAAGGAGAACCCATATCAAGAACAACAAAGTTGCTAATGGGACCCTCACCAAGTCA AGGGCGGGTCAGGACACGCCCTCTGAAGCTGTTGACCTGAGGTCAAGTGTCGAGGCGGGTCACGAGCGTG TGAGGGCGTCCCAACGTAACATGCAGGAGTCGCATCACAAGCTACGGGATCTTAACCTCAATATCAAATT GAAAGAAGAGCTGATCCGTGAGTTGGCAAAGACTAGCAAGGAATCTGAGGCGGCTAACAAGAAATACTCA AACAAAATCAAACTGTTAGAAAAGGATGCCCAGAAAGCGAGGCAAGAATTGATGGAAGCCAAGAGGCACC TCCATGGCCTTGGGTCAAAGGGTGAGATGGAATCAAAGGAGAAGAACAAGCTAGAAGACGAATACCAGAA GAAGATGGAGAAAGCTCATTCAAAGGTCAAAGAACTTATGAAGAAACAACAGGAGTCTGAGAGAGTACTA AAGATGCAGACCCAGAGAGAGAAGAAGATTGAAGACCTGGAGATCGCTGTAGGTCGGATGAAACAACACC AGGAGTTACAACAGGCACGGCTTAGAGAAGAGGGGGATCGGAAACTAAAACTTGAGAGAGATCTACAGAG GGATCAGCAGAGGATTAAGGAGCTGGAGATTAAGAACGATCAGCAACAGAAGATACTCAAAAGGAAAACA GAAGAGGTCGCTGCTGCCCAAAGGAAGTTACGTGTAGGCTCTGCTCATGCACCAGACCATGACAAGGTGG AGGAGCAGCGAAAATGGCTGGATACTGAGGTTGAGAAGATCCTACAGAGGAAGAAGAAGATGAAAGACCT AGAAGAGGAGCTGAAGAAACGTGAAATCAATCTTGCCAAGAAAGAGTCAATGTTAAGGGAGATGGGAGAG CTAGAGATGAGGAAGCTAAGATCAAGCCAGTCAATATCAAGGGATATGACGGGTCTTGCGTCAAAGCTGG AATCAGTGGAGAGACAGATTGAGGAGAAAAACAACACCCTGAGAGTGAGTCTGGACGCTCAGAAACCAGT CATAGGCAGAGAGGTACAGGCACTCAGGGATGAAAGAGAGAGACTTCTTCACCAAAGGATCCATCTTGAT GAGAAGCTTCAGCACGGAACACTGCTCTCAGCCACTGAAGAGAGAAGGTTGATAGAGTTGGATGAAGGAG TAGAAGCACTGGAAGCAGCCATCGAGTACAAGAACGACGTTATATCAACCAAGAAAAAAGATTTACGAAG GAATGATCTCACACAGAGTGAAGCGATGTTAATGAGTCGTCTGAACAGTCTTGCCCCGTTGGAGACCAAG AGCCTTCTTGCCAAGTACTTTGAAAAGGTCATTGACCTCAGAGAGGGAGACAGAAGAAAGGAGCTAGAGA TCAGCGAATTGGAGGTGAAGCTGGATGAGCAGGAGCGGGTGATCCAAACATTGGAGGGCTCCCTCAGGAG TGCCGGGATGGAGAGTGAACACAGACTGGTGGAGCAGCAGAAGGACTACGAGAGGAAGGTCCAGATGCTG ATGAGAGAACTACAGGGAGAAGGAGGAGGAGGAGATGGAGGCACCGCTCTGGAACTCAAGCTAAAGGAGC TGGAGAAGGATCTCTTCTATTACAAGAAGACCAGCAGAGATCTGAAAAAGAAGCTCAGAGAGTTTGTGCA GGCTAGTACTAGCTCAAGCAACGGACATGAGGAGGTCAAAGGTCATGGGAGTGCTCGTGGGATACCAGCA CAGGGTGGAGATGCCGTACCTAGGGAGGCGACGCCCATAAGGAAGACACGGAGAGAGGTCCGAGAGCTGA GCGATGCTGAAGTATCCCTGAGGAAGTCATCCGCAAGTCAAAGGTCATCTATCGTTGCTGATTCCATTGA GAGTGTGACGAGTCGTGGAAACAACCCCTGGAATTAGTTGTGCCTTTCTATAATGCCCGGTTTCACAAAA ATATCTGGTGCCCAAGTGATAAAGTATGTATAGTGTATACCACATGCGAACGGATCCAATAGAAAATCAA GTGGGTTTCTTGTTCATGCACAGACTGCTCTTTATTAATTCTTCAATTTTTTCTTCAAAAGCTCTAACAT TGCCTACATGTGTGTAAATGTTCATATAAATGTTCTTGTGTAAAGAACCCCTGGTCAGCATCATAGCCAG ATGGAGTGTCTTGCTGGCCCTGGTTTCACAGAAACACTGGACAAAACATGTGCCTGGATTGAATGTGTGT GCATACAGGGCATGGTCATGCACATGAAATTGTACTTATCCTGTTTTCACAAGATCTTTAGTACTGTAAT TGTGCACTTACAATGTAGGTACTTAAAGTACCTTTGTTTTGAAGAGGTTCAACATGACTGTATAGATCAC TTTAGAGATAACTTTTGTACAGATGACCCCCAAATATTCACAGATCTGTTAAACATGGAGACGTTGTGCA TTTTATTTTTAAAAAATGGCTGCCAAAGTGAAGGAGGAGCTTTATGAAGACCTGTAGAAGAGTGTACTTC CACCTGTGTATCATAGAATGTACCCTTGGTGGATAAATGAATGATGATTACATAACATTTATGAATATGT ATCCAGCATTTGTTTCGATGGGTATTGCTGATTTGTAAAAATGATATTTTGATCTGCCCAGATAGTACCT CCGAAGTCTCTTTATTGTACTAGTGTATGTGTGTTTTGTGTGTGTCATTGCAGTACTGTTTATTTTAAAA TGTTTTCACCTCTATACTGAGTCACATCACCTTGCTACATGTAGACAATTTATGCTAATATATTCAAATT TTATGGTAATCTATGGTGATGTATTCTAATTGTATGTGTAAATATGATTCTGTTGATCAGTTGATATTTG TCTGATATTCACAAAACTCATGTAATCACATTTAGAACATGATGTGATTTGATAGCACTAATATATTGGG GACCAATATAAAATGCCCTTGAAACCTTGTGAGCAAACATTTCCCTATTGTAGGTTCATGATGTTCATGT ATTTCACTTGATACAGTGTGCCTAATATTGTTTGATATTTGATGAAGTTTTATGTCAATAACTTTCAATT ATATCCCAATATTATGAAATAGATATGCATGCAAACAGTATTATCCTAATGCATACAATCATGAATAAGT CGGTAGGTTATTTCAACTTACAATAAAATATTGCAAGACTTGTTAATGTATTCTATGCACTCACCTAAAG GCATTTTAGTTTACGATGACTAAGTTGCAAACTTGGCATCCACAAACATGTTTCTTGTAAGATGTTGCAA ACTTTGAGGGGAAAAGGCATTTTTTCAGACTTGTGTTTTCAATTCAACTTTGTAAAAAAAAGTTAGATTC AAATATCTTTCTCTTTGTTAGGGATGTACTAACTTTTGTTGGAAACTGTTTCAAAAGGCATTAATACCAG TTTCCCAAGCAAGCTATACTTGCTAAGTACTGTACATACACCATTCTATAAGTGCAATCTAATTCTTGAA ATATTCCATGTTCCGTTAGTCTTACCTTGTTATGTTCAAACATATATGCACTGTGTTCTTACTTTTATTA GTATTTTATAATTTGCCATGTAAAAACAAAAACAGTGTGTTGTTGCTTCATGTA
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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