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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
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>XM_038197496.1 PREDICTED: Patiria miniata RUN domain-containing protein 1-like (LOC119725900), transcript variant X3, mRNA CCGGACTTCACTAGCCTAATCCCCGTCCGCACACGCACAACAACATCAGTAGGCCTACTCGGTAGTGTCG AAAAGTGGTGCCATATTTTTCTGATTTTCGTTACTATTTCGTAAAGTACTATGTGCAGTTTATCACAGAC GAAAACATGCGACATTCCTGAAGGCAAAGCCTAGAGTGTGGAACAAGATGATGGAAGAAACTGTATTGAC TGATGATTCTATGGATGATCAGTATGACCGGCCTAAGACACGCTGGGGACCTGTAGGAGCAGTTGCTAGT CCTCCTCCATCAGTAGGCTCAGCAGAGGATGGTCATGTGAACATGGTTGACCAGCTGCAGCATCTCGAAG AAGAACAAGAACAATTGAACTCCTCGCTACTTGCTCTGACCACACACTTTGCCCAAGTCCAGTTCCGACT CAAGCAGATCGTCAATGCACCTATTGATGACAAAGAGAATTTGTTGAAGGATCTGGAGGAGTTTGCATTC AAAGGTTGTCCTGATGTCAGAGGAAGCCGTTCACAAGATGCTCAGATGCTAGAAGATGCTAGTGAGAAGG AACATGAGAGTCGTATCACTGAGCAGAGGGAGAAGCAGATGGAGCTGATCAGTCAGCTCAAGAGCCAGCT GGATGACTTGGAACAGTTTGCCTATGAGGAGGGAAGTGGAGAGTTACCTCAGAACATGATCCTGGAGAAG CAGAACGTCATCATTGAGGAGTTGAAACAGAAACTGGGCTTGAACATCGAAGACATGGACAAGCTAACGA CAGATGACTTGCGGCAATTGGTGGACAGTGCAATCGGAAGAATAGTGAATCCAGCCAAAGTGAAGGAGAC AGTCATCCATCAGCTCAAGAATCAGATTGGTGATCTGGAGCGATTCATTTCATTCCTACAAGGGGAAGCA TCTACGCCGGGCCTGGTGACTCCAAACAGCTGCAGCTGCCCTGTCGATGCCAAGGATGATACCATTTCTG AAGCTGACTCAGAAGCTCCAGACTGCTGTGTGCATCCCAAGGCAGGCAAGCTTGGCAGTAAGCAGAGCAC AGCAGAGAGGATAAAGAAGATGCGTGAGAGCCACATTTCCTCCATGAAGAAAGCCTTGGCCCTGCTGCAG TATATGGCCATCACTCAGCTTGGCTGCGGTACCGACAAACTCAAAGAAAAGAAAACTGCTAAGCCAGATG CATCTGATGATTACCGTGAGATGCTGAAAGTTCTGGATGCTGCCGTCAATCATGTGATCATGTTGGCACG GCAACAGCAAGAAAGCCCTGCGGAGGATAGCGACTACACAAGTGATTCCTCAGATAGTCCAGTCAACAGA CCTTTGGATGATGTGACTGTCGCAGTGAGGAGAGAGCTTGCCCCGGCACTCAGAGATCTCTTTGAACATG GACAATTTAAACATTCTAGTTCCAGTGATGCATTGATCACTCCAATCACAGCCTGCCTTGCCACCCACCG AAACACTTCCAGCCAGAAAGTTCATGCTTGGGACCTCTTTGTCAAATACTATGATATCAAGAAGGGAAAG GCTTTTGCTATGTCTCCAGCCAGGAAGCTGTCTCAAGCCTTTGATATTGATATCGTAGGAGGCACAGCCA TTACTGCTAAGCAGACTCTGTTAGCTGCTATTGACTACGTCAGTGGCTCTCATGAACCACTCAAGCGAAG CAAGGAAGCACAGTTTAAAGCCTTCGTGTCAGAAGCACTCAATGGGCAGAAACTGGCCATTTGGTGTCGA CTGATCAGCAGAACAACATCTCTGATAGATTATCATTACTATCCCTGGAGCTACATGATGAAGAATAGTT TTGATGGTGCACTCCAACTTCTGGACAAACTCAGTGAGATCAAATTTCGACTGAATGTGGACATAGCAGT GCAACAGTTCTACAACATCAAAGATGCCTTCTGATTGGTCTGTATTGTGAAGAGCGTTATTTGGAACTTC TGATTGGCTGGACGTTTCACACCTTGTATTCAGTTTGAACTCTAGCTGCCCAAACTGGCAAGATTCCCTT TTGTTTTCTTAGATCTTTTCTGATTGGTTAACGAACATAACCAGGTTGTCAGCTGTGCAATCACATTCAT TGTCTGATGGACAACACCTCACCTTGATATGAACTGTTTTACTGTCCAAGTTGAATATGATTTCACATGG ATAAACTTGTAGTATGGATAAGTTTTAAAGTTTTAAAATTGTAGGTTTGTAATATTTTTATTTATTTTAA ATTAAAAATATACTAGTAGTTAGTATAGGTTTAAAAATAACTGAGTGCAAAAACTCTAATGTAAGGTGTA TATGAGAAACAGCTGAATCCACTGTCAATAGTTGCGCATGTTACTGCCATCTGTAGTCAAGCAATTCAGA TTGAGCTGTGCATCATAGGTTCCTGATGGAAGTGTAGTCAGAGTAGATAAGGCTCATTAGTCACTTTGTA TTCTTACAGAAAAGGGAGTAAACATATGATTCCAGCTGCATTTTATGTGCAAATCTAAGATGTGATAAAT GTCTTCTTTTTCATTCAAAATTGATTTGAGCACTGCCTTGGTGTAAGGAGTTCAATGTTCAGGCATCTTA CCATGTTGTTGTTTGTTTTATTTCTCCTTTGAAGTAAAATATGAGTACTGATGTTTGTGTTGGCCAAAGC AGCACAATGGGAGAGAAGTGATATTTTGGCTTCATCAGAAATATGACACAAACCACAATGCAGGGGGCCA GTCCAGTTAACAGTGTTTGAAACCTACTGACCCCATTTTACAACGTATTGTGTCATAAATATGAGGCAAT AAGTTCATATCTGTCCAACGTGAATGTTGTGATCACCTTGATAAATTCACCTAGAGCCAATTAATATTGG TGTTGGAAAAACTTGGTCACCAATTTTAGTTTCCTATTATTATTTTTTTAGATTCAATGACTGAATTTTT TGTTCTAACAGGCGAATGCCAAGTTATTCATGTTACCTTTGTACATAGCACGAACACTTATATATATATA CATTTGTGGTAATTTACGGAGAAATTATATGGAAATCTAAACAAAAATTTGAAATTTATTGATTTATAAC ACAGTGTTAAAATTTTGCACTGATGTGATTTGAGAGTGATCTCTGGAAACATTCCAAATGTTTAAGTTAG CTTAGTGGAATGACGACAGGTTCACGTCCAGGATGTGTGTAACTTACAATCAGATGTCAATTAGATATTA GAGAGAAAATAATGGTTGGGATGACCCTGACAAATAAGAACATACATGCAGTGCAGTTTGGTCCAGACGT AGATTGTAATGGAGCTGCTGTTGATTGGCAAATTGAAAGCAAAACGTACAATGTAGCAGAGACCATTCAC AAACAATATTCGTTATGTGCAATTGTAGCTAGTTACCTTGTTTAGCTCAGTAGAATTATATCAGCTGGAA AATCTTTAGCTCCAGGAAAAACGTAGGTTGCAGGCCGCATTCAGATCTTGTTTTTTTGTCCTTCAAATGT AGCTGCATGTAGTGCATGTACTTGACAAGCTTGACTTACACAAATATGAGTCCCTATCCCCACTTTGATA CTGTGGTGGATGAAAGGGATGATATGACGTAACTGTAAACTTGAATAAACCGCTTTCAACGTGTCACATT TTCATTACATGTACAGTATATGATAAATATGGAATGAATTGCCCAAAGAACAGGACATAGGAGCTAGATT TCGTCAATGTATTTGTTTTTAATGAGAATTTTAGTGGAAACAAAAGCAAACAAATTTGGACTGAATTTCA TGTGGAAAATTTCAGATGTGGCTTTGAAATCTAAAAGGATCACTTATCCTTTTGCCTTGCTTAATTCCTT CATCTGCACTAGTTACATTAATGTTGAGAGTGGTATTTAAGGTACAGAGGGATTGGTCGTTGGTCTTCTA AGAATGCAGTCATTTTTAAGGTAGGGCTGGTTTCAAAGACCAACCACCGATTGCAGGGCGTTGCTTATTG GTTGCAACAAACAATTTGTACTAACCTTCAGCACCATTGTGTGGCATAGATGTCCTAGTGGTTGCACATG CATGGAGATTTGTATATTGTCAGTACAAATGTAATACTGTATCTGCAAATGAAGTTAGCTGACATGCTTG GTGAAATAGACAAGCTCAGTTAACACAGCAACAATGGTCGTGTTTCAAATACTAGGGCCCAGTTTTATTT GAACTAGGAACGAACTTCATTGTTAAGCAAGTGGACCTGCAAATCAATATTCAACCATGTGAAAGTCGGT TGCAGGTAATATTCATTGCATTGCATTAAGTCCGATAGCCTTTTTTGTAAAGCAAATTTTGTGTGCTTAA TTTGCAGAAAGTAGCCCACGCTATAAATAATGGAAGAGTTGCCAAGCCTAGCATTTAAAAAAAAAATGTA CCAGGAAGTTTTCTGAAAAAGTTTGCTGTCAGAAATACAGCATATTGTCTGCATTTACTAACTTTATATT GTCACAATAGACGGCCAATTTCTTTTTCTTTAATTTTTTTAACTGGAAGCCAGGATTTCACTTTTTTTGT GGACATTTACTGATGGTTTTCAGTGATAACCCTGAAAACCTGATTTTATTTTAGATAATACTAACAGCAG GGGGTACCATGCAGCTATGGTATGTATTGTAGTTAATTATAGTATGTCTGTAAAGATGTGTTAGGTTCAT GAAAGGGTATGGGAGATGGAAAGAAGTAAGGTCAATAAGAAACAAACTAGAGCTGTAATCCAGTCCAGCC GAGTCAAATCGCAAGTTATTAGGATAAGAATATCTTTGTCACAGTTCATTTGAATAGCTTGTCACGTGAC TTGAGAATGGATAACTTAATTGTGATTGACGTGTGACTCGATTACACATCTGGAAATAACTTTTTAGTTT AATCGATACTCTGTGTGCGGAGTTGTAAAACAGTACTGTACTATATAAGTGTTAAAGGGTATAAAGACGT GTAAATTAGTTTAATTACGAAGTTTGTGCAACAATATGTAACACTAATATTCTTCCAGAGGAATTCTGTT TAAATCCAGTGCAATACTAAATGTCACTTGGTTTATTTAATTTCACAAGTGGAGTTTTAGGGTAGAAATT TGACACGTGTATTTTTTTCTGTCCAAGTTAATTAAATTTGTGTTGAATTTCTCGAGAGTAGAGTA
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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