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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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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???
>XR_005271491.1 PREDICTED: Patiria miniata early endosome antigen 1-like (LOC119731829), transcript variant X3, misc_RNA TGTCGTGCAGCTGCAGCCGTGGCTATCGGACGCACAAGCTCCACCCCTTCATAAAACTTGAGAGCTCGAT GTTTCAAGGTTTTTCCCTCAGACAAATTGCATCTTGAACTGTGAGCCTAGTGCCCATTTAGCAGCAGCTG CAAGGAGTCACAATGGAAGCCTTGAAAAGGTTCAAGAAAAGGACGAAAGATGCAGTTGAGGGCAACAAAG GACAACCGCAAAAGGACTCTCAAGCTGCAGGAGAACAAGAGGGTTTCATATGCCCGGTATGTATGGTGAC CCTGGCTTCACCGGAGCAGCTCCAAGTGCACTGGGAGACAGTTCACAATGCACCAGCTACTGAGCCAACT CCTGCCCCTCCTAGCCAATCCCCTAAAGCCACCCCTGCTCCTATAATGGAACCATCCATACAGCACTCAT CAGTGAACAGGGATGGAGATGTGCTGGCACTCAGACAAGAACTGGAAGATTTACGTGTTTCATTGAAGGA GGAAAAGTGGTATTCTGAGGAACTGAAAAAAGAAGTGGACAAACTACAGCCAGGCCAATCGGCAGCTGGT GGAGGAGATGTGAACATGAAACGAGCAGAGGAAGACAGAACAATGTTGTCGTCTGAGGTGGTTTTACTTC GTCAGCAGTTAGCGGAATCCATGGAGAATGCTAAAGCTTACAAGACTGTCAAAGATGCCATGGAGCAGAA AGCAGCCTCATTGGCAACTGAGATGGTGACTTTGAAGTCTAGTCTGGATGAGGAGAAGACGTTGCATAAC AGCTTGAAGGAAGCCATGAAGCAAACACAGGTAGCCACAGAAATTGAGCTTCAAGACAGAGATTCCAGAA TGAAGGCAGTCCAGTCTCAACTACTTCAAAGGCCTGGTGCTGATGATGTCATGGTGCTCAAGAAGGAACT AGTCTCCGTACAAACCTTAATGGATGAGTTGTCACTAGCCAATGAAGCAGAGATGAATGAACTGAAACAG AAACATGAAGAACTCAAGGCTGACTATGACAAATTACAAGCATCTGTTGCTGACAGCAGTAGTGGCAATG AAGCAGTCAAACAAGAACTAGAAGCCAAGATGGCAGAAAACGTCGCCATGTCCCAACAACTCAATGAAGT ACGCAGTCATTTGCAAGATCAAGAGTCAGCATGTAGCAAACTGCAGCAGGAATTGGAGTTTACTAAGCAG CAGCAACTGCAGCAGGTGACAAGTAAAGACAGTCAGCATGCTGAGCTGCTGCAGCAACTTCAACAGTCCA AAGCTTCTCAAGCAGAGATGGAGACTGAGATATCCCAGATACAGAAGCAGTTAGCAGACAGTAGACAGAT GTCAGAGGAGCAGCATCGACAGCTAGAGCAGCAACTCGCTACAGCTCAGCTACAGATTGCCAAGACTGAG GGAACAGTGAATGAGAAAGATTCCCAAGTGACGGATCTCCAGCTACAACTGGACATGTTACAGCAGCAAT ATGAGCAAGAGAGTATGAGTAACGACGAGTTGAGATCTCAGCTACGAGAACGTCAGTCACAGATAGAAGA CCAACAACGCTCACTCACAGACAAACAGGAGAAACTTGCTGAGTTGGAGACGTCGTTGCAGAAGCAGAAA GATGCAGCAGAGAGATTGGAAGGAGAGAGAGCAGACTTAATGGCCAAGATTGAAGCTGGAGAAGGCATAT CCACAGCAATACAGCAACTCAGGCAGGAAAATGAAAGCTTACAAGATCAGCTATCTGAGCTGCAGTTGAA CAAAGAGAAATTGACAGAGGAACATCGAGCAGCAACTCAAGATCTTCATAAACAATTACAACAGAGTAAA GCGCAAATTGAGGGTGTGACAACACAGCATGAGAGGGCAGAGGCAAACTTGAAGGAGACAAGAACTAAAC TGACTACAACTCAAGAAAAACTGGCAAATGCCGAGTCTGATCTCAAAATTAAGGGAGAATTACTTCTTGC TATGGAATCCTCCATGGCAACTCAACGAGCAGATCTTGAGAGTCATCTTAGAACATCTCGGACAGGATTG GAAGATAAACAACAGGAAGTCAACAGGCTACAGGAACAACTGGAGAAGACTCGATCTGAATTATCAAGCA CCAAGGACCAGCTAGCTGACCTTGATGTCAAACAAACATCAATTCAAGAACAATTGACGTCATCAACTCA TCAATATTCATTGCTACAAAATGATCTACAGGCTAAGGTTAGTCAGTTAGCACTTGTTGAAGAGAACAAG AGGGAGTTAGAAGCACAGCTGAATGGTCAGGTGCAGTCATTACAGGCAAAGCTAACGGACAAAGAAGATG CATACAGTAAGATGGCTGGAGAATATCAACAGACAAAAGAGCAAAATGCTGCAATAATCTCTGGACTACA AGGAGAGTTGGACTCAACCAAGACGACACTGGCACAGACACAAACACAGCTACAACAACAGGTGGCCAAG CTTGAAGAGGAGAAGAAATCTGTTGAGGAATCACTGTCAGCAACACAGCAGAATCTACTGCAGAAAGAGC AAGAATCTACACAACTACAACAACAAAAGGCTGCAGTTTTGGTACAAGCTGCGGAAAAAGTAGAGAAATT GACCGCTGATCTGCAGACCACACAGACTGAACTCAGCCAAACTAAGACTAATCTAGCTGCCAAGGAGCAA TCTGTTCTTGAACTGACTGAACGCCTTGAACGTCTACAGACCGAGAAATCTGAGTTGCAGGATCAATTTA ATGTGGAGCAAGATGTGGTGGTTTCTCTCAAGAAACTCAATACTGATCAAGAAGCAACTATTGCTCAAAA GGTTGAGCTGTGTGGCAAGTTGGAGAAGCAGTTGGAGAGTAAAGAGAATCAACAGAAGGATTTACAGCAG AAGATTGAGGTTCTGGAGCAAGAGATTGCCAAGTCATGTGACCAGTGTCGCAACTATGAATCACAAGTGG TCAAACTTCAGTCACAAGTCAGGGATGGACAGGAGAAGTGTACAGCTCTTCAGATGGAGCTTGAGAACCT CCACGACACTTTGACAAAGACTGAAGACTCCTTGGAGAAAGTCCGAGGGAGTGAGGCATCTCTCATGAGC AGCGTGGAAGGATTACAGGAGGTCAAAATGGTGCTGGATGCCAGAGTGGCTGAACTAGATGAAGAGTTGA AGGTTGAGCTTGGAAGATTCCGGTCTTTGAAGCAGGAAGATACTGCCAAGCAAGCCGAAATCGGGAAGTT GAACGGAAAGATTGGAGAGTTAGAAGAATCTAAATCCTCACTGAATGCTCAGCTGTCTGAGTTGCATACA GCAATCCAACATGAAAAGGAAGACAGAGCGAAGGAAGTATCAGCCATGCAGGAAGCTAAACAACTCCTGA TCAAACAGAAGCTGGACCTACAATCCCAGTTGATGGATAGGGAGACACAGTTAGCTAAAGCCGAGGTGGA ATTCAATGAGAGTAAAGAAGTAGCACACAAAGTACAGACAATGTTGAGAGATGAGTCGGCTGCATTGCAG AATAAATTGGCAACTGAGGAAAAAGCTAAGGCAGATTTACAGCGACAAACAGAAGAGTTAGAGCAACGGT CCAGCATGCAACTCAGTGCACTGAATGAAAACCTGGCTACTCTCAGAAGCGATCTGTCACAAGCTGATAC CAGGAAACAAGAACTAGAGAAAGTAGTGGATGAACTGAGAGGAGAAGTAGCTGTTCTTGAAGCAACCATT CAGAATAATCAGGATGAACGAAGAACTCTTCTGGAAAGATGCCTTGCTAGTGAAGGTGACGTGGAGAAGC TACAGAGCAAAGTGGTCGAGCTTCGTCGGAAATTGGAGGATGCTCAGGCCGCAATGCATGAACTAGGACG AGAGAACCAGAACCTACAGATTGTCCAATCCAAGCAGATGGCTCGCAAATGGGCCGATGATACAGAGGTC AAGACCTGTATGTCCTGTGAAAAGGCCTTCTCTGTCACTGTCAGAAGGCATCACTGCCGTCAATGTGGTA ACATCTTTTGTAATGAGTGCTCTGCCAAATCTGCCACAATCGCATCTTCAAAGAAGCCAGTCCGAGTCTG TGATGGCTGTTACTCAGAACTGATATCATAATTTCCTTCAAGAAACCAGTCAGTGTCTTTGACAGCCGTT ACTCACAGCTAATATCCTAGCTTCCTACAAGAAACCAGTCGGTGTCTGTGACGGCCGTTACTCAGAGCTA AGATCCTAGCTTCCTACAAGAAACCAGCCAGTGTCTTTGACAACCGTTACTCACAGCTAATATCCTAGCT TCCTACAAGAAACCAGTCGGTGTCTGTGACGGCCGTTACTCAGAGTTAAGATCCTAGCTTCCTACAAGAA ACCAGTCGGTGTTTGTGATGGCCGTTACTCACAGCTAAGATCCTAGCTTCCTACAAGAAACCAGTCGGTG TCTGAGACAGCCGTTACTCAGAGCTAATATCCTAGCTTCCTACAAGAAACCAGTCAGTGTCTGTGACGGC CGTTACTCAGAGCTAAGATCCTAGCTTCTGGCAAGAAACCAGACAGTGTCTTTGACAGCCGTTTCTCGGA GCTAATATCCTAGCTTCCTACAAGAAACCAGTTAGAGTCTGTGACAGCCGTTACTCAGAGCTAAGATTCT AGCTTCTTACAAGAAACAGTGTCACTGTGACATCTGTTTCTCGGATCGTGCCAACTTCTTTTGCTTTGAT CAAAATTTGATATGAGTATTCACTGTGTTTCTGCATTTTTAGGTTCTTTTTTTGTCGAATAGACTAAAAG CAATCAAACTGTCTCATTACCAATCAATAAAAAGCAGTTCTCATTTGTTACATGCACAGTAAAGGTGTTG CCTTTTGAAAGATTTCGTAGACAATTCAGAGCATGAAGCATTTTTTGTAAAGATTTTTATACGAGTAAAG CTTCTACATGTATTGGATTAAACTACATTTAGGCAAGGCTTCTGTAGGTTGTGGCTGCTCTTGGACTGAA GCTGAGCATATTGTACTTTAATCTTTGATAAATGAGGACTTGTTGAAATAATTATATAGACCTACATTTT TGTTTATTTTATTTGGAATGGCTGTCTCGGTATTAATTCTGTAAAATCATACATGCCTTTATCACATGTA TTATTGTACAGTAATTGATTATGAAGTTTCGACATTTCGAACAGTTGTGCTTTGTTCGTTATCAGGAGAC AACACTTTTTAGATTATTTCCCCTCTATTTTGTAGCTGGACACAATGAAGCTTGTTTTTAGTTATAAATG CATGAATATTGAGATTGTTTTATATTTCTACCCAAGAGAAATTCGTAGTTTTAATCAAGACACTTTGTCC TTTGAGGTGGTCAGGAAATTCAGGTATTACGAAGCTAAATACTGTATCATTTCATTATGATGTCACTTCT TTTTATACTCAAGGTTTTAAGTTTTTAAGATAACCATTGTTACATTTGGTTATTGTATCTAAGTTTGTGA TGACATTTATAATTCTATTGACGATGGAAGGCACCTAGGCTGGGCATGGGTAATAA
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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