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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???
>XM_038207843.1 PREDICTED: Patiria miniata voltage-dependent calcium channel type A subunit alpha-1-like (LOC119734356), transcript variant X19, mRNA TATTCAACTTTGATTATGCATTATTCCGGATCATTATTCTGAGTTCTGTACTCATCTGCTCACTTGAACT GGATTGCTTTCTTTGAACTTTGTGGTGTGTTTCTTCCATGTGCGAATCGTCTGATAGATAACTGCATTGA GGGTGCCGAACATCATTGAGTTTTGAATACTTATCCGTACCTAGCATCAACAGCGGTCATCCTGTATTAC ACGAGTGTATGCGGAGTCAACCATGAAGATACTTTCATTTCTGATGTAGCCCGGAAAAAAATTCGTCTAC TCTTCATTTATTTTACCTATAATCAGATTCAGGGTTCAACATTTTGCTACCAGCCGGCACAGGTTTACCG CCACATTATTTTGGTAACTTCTTTACCAGATAATGCGCATGACTGTGGCAGAGCAGGACGATCTTGGAAT TGGCAACATGTGAGAGGAAACAAAATCTCAGCAACTCGGATCAACTTGACTCACATCGCAAGACACCTAT AGCATAATTGACCTTTCTGCTTCAGTATAGCATGAAAAATCTTTCAGAGATGGAGAAGGCGCTGAATTGC ATCGCACTTTTGTCAAACATGTACTGTTAACTGAGACATCAAATTTGCGAGCTCTTTGTAGTACGATTTA GAACCTTTTTTTCTTGTATCAAGTGAAAACTGTCGAAAATAAAATGGTTCACGAGGAGGATACATCTGAG GTTGGGATCGGGAGTCTATGGGCGGCCGTCTTGGATTCGACTACACGGATCATGGCTGCAACAGTAGCTT CGTCTAGTGACCTCTCGTCCGATGAAGACTTACCTCCAATGGCCGCCCTCTCCTCAGGACCCACCTCACC GTTTTCCGATGCCTTGGATATAGCCGGCTTTGGAGGCGATGGCACATCGCCGGCACACACCGGGGCAGGT AAAGGGGGCAGCTCCGGGAAGAAGCACAAAGGACCTTCCGGCTTCTTTCTGTCCATCATGAGAAGCAATA GATCCTTGTTCATCTTCAGCGAGCAGAACTTCATCAGAAGATGTGCCAAGTGGTTGACAGAGTGGCCTCC GTTCGAGTATCTAGTCCTAGCTACCATCATAGCAAACTGTGTTGTCCTGGCTCTAGAAGTCCATCTACCA ATGGAAGACAAGACGCCCATGTCTATGGAACTGGAGAAGACGGAGATTTACTTCCTTGCCATTTTTTGCC TGGAAGCAACCATCAAAATCACGGCTCTAGGTCTGGTACTACACGAAGGCTCGTATCTCCGCAATGGATG GAACTTTATGGATTTTATAGTCGTAGTTACTGGGTTTATAACCTTCATAGGGGGGTTAGCATCGGAGGGC GATGCGACCAGTTCTGGGGCTCCAGACCTCCGAACCCTTCGAGCTATTAGAGTGCTTCGACCCCTGAAAT TAGTATCAGGCATCCCAAGTTTGCAAGTTGTCCTCAAAGCCATCCTCAAAGCCATGGCTCCCCTCCTCCA AATCGGTATGCTTATTTTGTTTGTCATTATCATCTTCGCCATCACCGGCATGGAGTTTTTCCAGGGTAAA TTCCACAAAACCTGCTTCTACACGGATGAGAGCGGTAACAGCACAGGAGTCATGGCGGTGGAGAAGGGGG AGTCTCCCCAAGTGTGTTCAGATCCGGATGTCTCTGGCGGTCACAAGTGTCCTAATAACACCATTTGTTC GGAGTATTGGGAAGGTCCCAACTTTGGCATCACAAACTTTGACAACATGCTCTTTGCAATGTTAACGGTA TTCCAGTGTATTACCATGGAAGGCTGGACCGACATCATGTACTATTGTAACAATTCCGAAGGGCCGTATT TTGTCTGGTTGTACTTCATCCCCCTCATCATCCTGGGCTCGTTCTTCATGTTGAACCTCATTCTTGGTGT CTTGAGTGGAGAGTTTGCAAAAGAGAGAGAGCGCGTGGAAAACCGACGAGAGTTTCTGAAACTCCGGCGG CAACAGCAAATAGACAAGGAACTAAACGGTTACTTAGAATGGATATGCAAAGCAGAAGAGGTCATGTTGA ATGACAATACGACCTCCGAGGAAGAAAGAGCAACAATAGAAGCTCGTCGCCGTGCTGCTGCAATGTTACA ACGCGAACTGAGTCTGGGCAATGGAAAGGCCATCAGCAGCACAATTGAAGATAATTTTGATCTAGACACG ATAGATAAAGCCAAACTAACCGGTTCCCCCAAATCTAACAAATCAGAGAAGGCCAAGCAGAAGCAGAAGC GCTGCCTCTGGCTCCGTCGCCGAGAGAAGAGGTTACGATTCACCGTGCGTCACATGGTCAAAACGCAGGC GTTTTATTGGCTGGTCATCGTGCTGGTGTTCCTCAACACCGTCTGTGTCGCTATCGAGCATTACGAGCAA CCTGAGTGGCTCTCACAGTTTCTCACCCATGCAGAGTATGTCTTCTTAGGAATCTTCATCACGGAGATGG CCATCAAGATGTACGGTCTCAGCCCGTCGGTCTACTTCAAATCTGCCTTCAACAAGTTTGACTGTATGGT TATCCTGGCTAGTTTGTTTGAGGTCATCTACACCAAGTTTCAGGGTGGTTCCTTCGGTCTCAGCGTCCTT CGAGCCCTGCGCCTTCTTAGAATATTCAAAGTAACAAGATATTGGTCCTCATTAAGAAACCTGGTCGTAT CCCTCCTTAGTAGTATGCGCTCCATTGTCAGTCTGCTCTTCCTTCTATTCCTCTTCATCCTCATCTTCGC TCTCCTCGGAATGCAGTTATTCGGTGGAAGTTTTAACTACAACCCTGACAGCCCCAAACCTGCCAACAAT TTTGACATCTTCCCAATCGCACTCATGACGGTGTTTCAGATCCTGACTGGAGAGGATTGGAACATAGTGA TGTACTACGGTGTTCAGTCCAAGGGAGGCGTGTCATCGGGCATGATCTACAGTCTCTACTTCGTCATTCT GGTGCTATTTGGCAACTACACCCTATTGAATGTCTTCCTTGCTATCGCTGTGGACAACCTGGCTAACGCC CAAGAGATGACCAAACTAGATCAGGAGGATGAAGAGGAGGCTCAGGCACTGAGAGATGCCGAGCAGAGAG AACTACAGTCTCAACGTAACTCACCACAGCCTGGAGAGGAAGCAATAGAGGGGAGTACAACCATCCATAT GAACGATGTCAAAAGGATGAATGGAGACCACAATGTGGAGAATGGCGACCCAGAGATCAAAGTGACTGTG GTGGACCCTCCTCAATCCCGGTGGCGCCGCTGGTTTACCTATCTGAATGTGCATGGTATCCCATGGCCGT GCCCCTCTGTGGGACCGGTGAATTGTCCCGGTATGGACGCCGTCTGTAACTCCACCTGCTGGTCTGCTTG TCCCTGCTCGCGACCCCGCTGCTGTGGTAGACGGGAGAACAAAGATGAAGAAGCTCAAGATACTCAAGAA GAGGATGAGTTTGGACCCAAGGAGATGGTTCCTTTCAGTTCCCTCTTCATCTTCAGTACCACCAACCCCG TGCGACGGTTCTGCCACTACATCGTCAACCTTCGCTACTTTGACTTCCTCATCATGGTTGCCATTGCTCT GAGTAGTATCACACTGGCCATGGAAGACCCCATCCATTCAGAGAGTGACTACAATAAGGTTCTGGAGTAT TTCGACTACGCCTTCACCACCATCTTTACCATTGAGATGATACTCAAGATCCTCGATATGGGGCTGCTGC TCCACAAGGGATCATACTGCCGAGATGTCTGGAACATTCTAGATTCCACTGTCGTCATCTGTGCGCTGGT CGCTTTCGGTGTCACCCAGTCGCAAGGAGATGGAGAGAACTCGGGTGCTAGCAAGAACCTGAACACCATC AAAGCGCTCAGGGTGTTTCGAGTGCTACGACCCCTCAAAACTATCAAGAGAGTTCCCAAACTCAAGGCCG TGTTTGACTGCGTGGTGAACTCCGTCAAGAATGTCACCAACATTGCCATCGTCTACGGCCTCTTCATGTT CATCTTTGCTGTGATTGGTGTTCAGCTCTACAAGGGTCGTTTCTTCCACTGTACAGATCCCTCCAAGCAC ACCGAGATAGAGTGCATGGGTAACTATTTCGTCTACAGTGGCGACCTGATTACAGAAATCCAGCCTAGAA AGTGGGAGCGGTATCCATTCCATTATGATAACGTCTTTGCAGCGTTACTCACACTGTTCACCGTCTCCAC CGGAGAAGGATGGCCTGACGTCTTAAAACACTCCATCGATGCGACAGCCGAAGGCCGAGGCCCTGAGCCC TACAACAATCTCCAGATGGCGTTCTTCTATGTGGTCTACTTCATCATCTTCCCTTTCTTCTTCCTGAACA TCTTCGTTGCGCTGATCATCATCACCTTTCAGGAGCAAGGAGATAAAGATTTCCAGGACGGAGACATTGA CAAGAATCAAAAACAATGCATGGAGTTCTGTATTCACGCCAAGCCCACAGACGGTTTCGTCCCGGTCGAA AAGAACTCCGTCAAGTACAAAGTCTGGAAGCTGGTGGTGTCTCAACCGTTTGAATACTTCATCATGATTC TCATTGCTCTGAATACCATCGCGCTGATGATGAAGAAATACAAAGCCTCCCAGGAGTTTGTTGATATCTT AACCTACCTCAATATCGGCTTCACGGTTCTCTTCACGATTGAAGCCATCTTAAAGCTTATTGCTTATGGG CCCAAGAACTACTTCCGGGCAGCATGGAATACATTTGACTTCATCACCGTGATCGGGAGCATCGCAGACG CAATCATCTCGCAAGTTGGCGCTGATACTTTCATCAATCTCAGTGTTCTGAGGCTGTTTCGCGCAGCTCG GTTGATCAAACTCCTTCGCCAGGGCTCCTCCATCCGAATTCTTCTCTGGACATTCGTTCAGTCTTTCAAG TCTCTGCCGTGGGTCTGTCTGCTCACTTTCATGCTGTTCTTCATCTATGCAATCATAGGCATGCAGGTGT TTGGTAACATAGACACTACCGACGTTAACAGCCAGATTAATCGGCACAACAACTTCAGCAACTTTTTGAT GGGCCTGATTTTACTCTTCAGGTGTGCGACAGGTGAAAGCTGGCAGGGTATCATGTTAGCCTGCGCGCAG GGTAGTAAATGTCATCCAGAGAGTATTCCTGCGACAGCCACCGAAGAAGAGAAATACGGCTGCGGCTCGG TCTTGTCCTACGCCTACTTCGTCTCCTTCATATTCCTCTGCTCTTTCCTCATGCTGAATCTCTTCGTGGC CGTCATCATGGACAACTTTGACTATTTGACTCGCGACGCTTCGATCCTGGGTGCCCATCACCTGGACGAG TATGTGCGTGTCTGGGGAGAGTTGGAACCTGCGGGAACTGGTCGTCTACACTACAAAGACATGTATGAGA TGCTGCGGACAATGGAGCCCCCGGTTGGGTTTGGTCGGAATTGCCCCTACAGAATCGCTTACAAGCGTCT GATACGAATGAACATGCCCGTCGCCGAAGATAAAACGGTGCATTTTACCACCACTCTGATGGCCCTGATA CGCACGGCTCTAGACATCAAGATAGGACAGGTTTCCGACAGAGATCGTCACGATCGTGAGCTGAGGGAGG CTGTCAAGAATTTCTGGCCCACGTTGAACGCTGAAAAGCTAGATTTGCTGGTCCCTCCAGACAGTGAGTT AATCGGAGAAAAACTGACCGTTGGTAAGATTTACGCCGCTCTACTGATCTATGAGACGTGGAGAGAATAC AAGGCAAAACTACAGAGAGACGGTCACGCTAGAACGCTGATGGAAGTTATAGAGCTGGCAATATTTCAGA AGCACTACCGAGCCAATCCCTATATGAACATCAACAGCGTTCATTACCAGAAAATCTTCACAAACAGATT CAGAAATTTTATCCAGGCTGCTCAGAAGCGCCCATCCCTCTTCCGACGACTCGTTGGAGCCGTCAGGCGA GGAAGCGCTGAGAACGTCTTCAAAGAAGTTGAAGAAGAAGACGAGGAAACTCCACTAGCACCCAACGAGC CGAAGCCAGAGCCCAAGGCCATTGAGCCCCCGCCTGCCAAGCCGAGAGAGAGGGACCGGGACAGAGATCG GGACAGGGACCGAGATCGGGACCACGGCAGGCCCAGGATGATAGCCAGCACGCTACCTAGAATCGACAGC TCTGGGTCAGAAGGACTGACAGCAGACCAGCACAGCAGGAGGTCATCACCACAAGTACACGACAAGTCCC CAGATAGACATCGTGGAAGATCCCGTGATAGACAGTATGACAGATCTCAGGATAGACCCCAGGACAGACC CCAGGATAGACCTAGTGACGGGCCACGAGAATCTCGGAGAAGGCCTCGGGACACGCTAGACAGCGCAAGG AAGACCCTAGTAGAACACATGGAGCAGCACGAGTATTCCGATGAGGGTTTTTACAATGAGGAGGGCCGAG ATAACGCTGCATGTTATTTTGAAAATGAACGCGATGAGATGTTCACTCCAGGTATTGAAATGGCTGATAT AAGAGGCCACGATGCACCAGATATACAAAGGTCTGCCTCGGGGTCCATGGACAGGAAGGACGATCCCCAT CACCAATACGACGTCGAATACCAAAGGTAGACCTACCAGACCCCTCTGCACACCCGTACCTACCCCCTTC CCCAACCTACCGGACAGGCCAAGAGGATCAGCCACACCGGGGAACAACCAATGGCAAACG
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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