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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_030999419.1 PREDICTED: Strongylocentrotus purpuratus signal-induced proliferation-associated 1-like protein 1 (LOC580086), transcript variant X1, mRNA ACGGATTTACTCTAATTCAAGGTCCTGTCCAGCAAACCGCACCGCTACTGGATTTACCCGCTTGACCTGG AAATGATGATCAAGGGATGAGCTTGTGATTACAGGCAGACCGTCCGTCCGACCCAACTGTTCTGTCCGTA CATGGCATTAGCAATCAAAGCTTGACTCAACGGCCAGACTAGGAAGGAAAGGGGCGACTCGACGCAGGAG CAGAGCCGTTGTTTTGGCCAGGAAACCGTTATGTTTGATTGCCATTCTCGTCCAGATCGTGGACAGTGCA ACATGTGTCTAGCCATGTGTGGATTACTCTCGAGCGAATAGGATCACTTTCTATGAAGCTTTATTGTGAT GTGAATCATTGTGAGAGATGAATTCTGATCGACAGTAACGATGTTGACGCAGACAAAGAAATGATTAGTT TGTTTATAGCGTGAGAAAGTGGCTTTGTTTTTGTTACAGTCGAGGGAAAGATAAAGTGATAAATTTGCAT GGCTGAATATGGCCACAGCTAGTAGAGGAGTGCATGGGAACTACGTACACGGTGGAGGCGCACAACCAGA GCTGATTCAGTCGGCAAGACAAAGTGCACAGGAGATGGCCGATTACTATCACAGCAAGGTGGTACAAAAC GGTCATTCTTCTTCTTCTCAACAGTCGGAAGATAACTATTACAGGCCAGGCTCGTCCGCGCAGAGCCAGG GCAACGGATACCAGTCGGGGAGCACGGTATCGAGGGGTGTGAGTACCCCAAGGAGCGACGGTCGTTCGTG GGGAAGGAGCAGCGGTGATAGCGGTAACGGTCAACTAACCACTGGTCAGTTTCGGGCAACTCCGGTGAAG GTCGATTTCCAGACCACCGAGGTAGTGTCGGAAGTATCGGTTGCGGATAATGAAAAAGACTATCACAAGG AACTCATGTCGTCAACGCAGGACTTGCTTGCCAGGCAGAGCCCTTGGCTCAGGAGCAAAGAGGAAGCGAG GCAGTATTGGAGAGATGAGGAGAAACGGAATGTCCGATCTCCTCAACATCGGAGGCACAACACCAGCCCC GACGGCAAATACTTTGAGCCCGCTCTTGGGGTGGTCAGTGCCTCCTCGAAGGAGAGTCATCGAACCCTAG CGTTGACCACAGATAATCTCAGGAAGTTTAACCATGGGGGTGACTTGCCCCGCATGCCTCTGATGCAAAA CCTGAGGCGTAGCATGAGTAACTCGACGCTAGACATGATCGAGAAAACAGACTTCAATGCAGCAGCTGTT ACCAGAGAATTTGGGAGCACATCCTCGATAGATGTCCAGAGCACCGGAGGAGAGAGTTTTTTTAGAATGC TGCAGGACTACAAGGCTGTGGATGAGCGCAGTCCAGCGCCCCCACAGTTCAAGCAGCTTATCCAGGGTCG TGTTCCCTCGGTCCACGATGGGCGCAGCAACACCGCCCCTCTGCCTGCGAGGGTGGCACAGCAGACACCG CAGGCAACACCAAAGCAACGCAGTACTACCATCGAAAGAAGCCAAACCATACACAGTCCTAAAACACATC GCAGGTACCCTAGTAAACGAGAAAAGAGGGACAGAACTAAATCCTACTCGAGCGGCGAGCGCAGGCATGA GGGCTCCTTCTTTAGGAAAAAGGGGAAGAGGGGCGACATTTCCAAAGAGAACCATGATAATAGAACTGCT GATGAGATGCTTGAAACAAGGATCGAAGAAGGTGTTAGGAGGAGAGCATTTGAGCATTTTGATGTGCAGA GCTTACACTTTGAACTTGGGGATTTAACCAAGAGTAGTGACTTGATCGCTAAGGGCAACATGACAACGGG AGCATCTGCAGCATCGAGGGCCAGTGCTACCAATACACCAGAGGGGAGTGTGGAGGATCTTATAAGCGCC GAAGACCAGGACCCCGGTGACAAGCAGAGCAACGATCTCCTCAGTAGCTGCCCTTTCTTCCGCAACGAGA TCGGCGACGAATCGGAACCCAGGGTCACACTCTCCAAGATGGGCATGCTAAGCACCAGAGCCATGAGAAG GTATCGTCATCAAACCATTCTTGAGAAGAGGGGGGCTTCCGAGCTCAGCATCAACGACGACCAATCCAAT TATGTGTGGCGAGGGCCTGTCATAGAGCACATGGACCAAGGGGCCCTCTATTATCGGAAGCACTTCTACA AGCATGAACACCAGAACTACTTTGGTGTGGATGAGTTCCTTGGCCCTCTGGCCGTCAGCGTCCGGCGGGA GAGGGTGGAGGAGCAGGAGAGTCCAGTGGAGAACAGCAAGGACCATAACATGAGATACAGATATAGGATT CTACTCCGTTCTAGTGAGCTAACAACCCTACGAGGCGCCGTCATGGAAGACTCCATCCCATCCACAACCA AACACAATACTAATCGAGGCATTCCACTGCGTGACGTACTAGAATACATAGCGCCTGATCTACCTCTCGC TTGCTTACGCCTTGCCACAGACGCGCCAAAGGTCAGAGATCAACTTCTCAAGATTGATGAACAAGGGGTA ACAAATCATTACAAGGTCGGCATCATGTACTGCAAAGCCGGACAAAGCACCGAAGAAGAAATGTACAACA ACGAACATGCAAGTCCAGCATTTGATGAGTTCGTAGACTGTATAGGAGAGAAGATTCGACTCAAAGACTT TGAGAAGTACAGAGCGCAGCTGGATAATAAGACCGATTCGACGGGCACGCACTCGCTATATGCCATGTAC CAGGGCAAGGAGCTCATGTTCCATGTATCTACTATGCTTCCCTTCACAAACAACAGACAACAGCTACTGA GAAAGAGGCACATAGGCAACGACATAGTGACCATCGTGTTCCAGGAACCCGGCGCTCTCCCGTTCACGCC CAAGAACGTCCGCTCACAATTCCAGCATGTCTTCATCATTGTACGAGTCCACGAACCAAACACAGAGAAT GTCCACTACTCGATTGCTGTGAGCAGATCTAAAGAAGTCCCATCATTTGGCCCTCCCTTGCCAGCAAATG CCAATTTCCAGAAATCAAAATCGTTTGCAGATTTTCTTCTTGCCAAAATCATCAATGCTGAGAATGCGGT GCACAAGGCGGACAAGTTCACGGCCATGGCGACGCGGACGCGCAAGGAATACCTCAAGGACCTGGCCGCT TCCTACGTGACCTCGACCGCCATCGAGACGGGAGGAGGGGGCAAGTTCAAGCTCTTTGACAAGAAGAAGG AGAAGACTTGCCCCAGGCCTGCCCCAGACTTCAAGGCCAAGGGAGCATTGGTGTGGGACGTCCAGGTTTA CATGTGGTCACCCATCTCCAAAGGTGTTAATTCGAAGGCTGAGGACTTCAGTGTATCTGACCCTGTGGAT TGCTTACTGGCTGTCTCGATGGATATGATGGTTCTAACGAACTACCATACGAAAGAGGTTCTCTTCTCCA TTCCTTGTGTGTCTGTTATCGGCTGGACTCCCTATCCACATGGATTGAAGCTGTACTTCAATGAGGGTAA CTGTATTCGAGTTCGCATTCCTGACCAAGATCTGGATGAGGTGCCTGAGATTGTCAAGAGATTTGAAGCA GTCTCCAACGGAACTAGGACCAAAGAGATCACCTTGAGGCGGAACGGTCTAGGTCAGTTGGGCTTCCATG TTCACTACCAGGGGATCGTGGTGGAGGTAGATCCGTATGGGTTCGCTTGGCAAGCTGGCCTTCGGAAAGG AGCAAGACTTGTTGAGATCTGTGAGATAGCTGTATGTACCCAGACCCACGAGGAGATGATAGATCTACTA CGGACCTCTCAGACGGTCAAGGTCGTGGTGGTACCACCTTGTGAAGATGGAAGTCCAAGAAGAGGAAGCA CACCAATCGAGTACATGGGTAACAGTGAAGCAGTCACCCAGCCGGGAGGGGCTAGGCTAGGCTTCAACAG AGGCACAAGCAGCGGCAAAGGACCTCATAAGATCTCCTCATCTCTGGCTATGTCAAGCAGAGATCTAAGA CAGGGATCACTACATTCCCGATCAGCATCCACCCCTGGGCAACCAATCTCCATGCTGCGTTCAGCCCCCA ACACACCCATCTATCCTCCGGGCACCACCGAGGAGGGTCTACCCGCCAAGGGCAGCGTGCGCTCGGCCAT CTCCACCTTCGAGCGTCGCATCAACGTCGTGGATCCGCCACCCGATGCTTCCGAGAAACAGCACCCCTAC CGCGCCGCCGTCGATTACTGGAAGGAGGTGAACGCCCGCGCCCATCAGCAAGCTAACACCGGTGATGGGA TCGCGCCCCTGCCCCAGGGGGGTGGGTCCAGCGGCGGGAGTGGTCACAGTAGGGGGTTGTCCCAGGATTC TGGGGACCGCTCCTTCATGAGGATGGTGCATGATAGGAGGAGCGCCAGGGAGCAGAGGAGGAGACCTGCA GACAAGCAGGCGAGGCTCCGGAGCTCACAGGAGGAGCTGGATCGGATCGGGACTGGAGCCCACTCCAGGC AGGGATCCCTGGAGGACAGTCTCGATAAATACAGGAATAGAGTATACAAAGATGTGACCAAACCTGACTG GCAGGGACACAACGAAGCCAACCTCTACCCCCAGGATAGGGGCCGAGAACAGGACAAGCAACAGCCTCAG TTTGTCACTCCCAAGGCTAGATATCCACTTCATAATGTAGCTCAGGCCACTATAAAGCACACCAGCAGTG GAGATACCCTATCGACCAACACCAGTGACGAGAAGTGGTACGATGCCGGAGACGATGCTAACGGTTACCA TGACAACGGTGTGCCCGTCTCCAAGGATGTCCCCGAGGGCATGTACCGCACCAACCCCGCGACCACGCCC TCCACCGTACCCCTATCACAGCAGGGGATCAAGGAGGAGAATTTGAGTAACTATGCAATGGCTGAGCGCT ACAGCCCCACAGAGCAGCTCTACCAGTCACGAAGCAGAGAGGGTATAGACATGGAGCAACCCAGGCTTCA GCGCCCCAACCACCTCGCAGGCATCGTTCCACACCACCATGCCACGCCTAGCAACATCAGTGACCACTCC ACCCATTCCACCCTCTCCGGAGGCTCGGGTACAGGGGCATCGAGGGACTACGGGAGCCTGAGGGCCAGCA GCAGACAGTCCCCCGCCCGTAGCCCCATGCCGGGGAGGTCCGCACAGAGCCCCGAGACGGTCAGGAAGAG GGCACAGAGTCCCAGGCGGGCGGGGGCAGGGGCGTCAGGTGACTTTGCCAGTTTGCACAGGAGGGGCGGG GCTCCATCTGCATCTTCCAGTAGTAGTATGAGCGAGTCCAGCACAAGCCCTAAGATGGCCAGAAGAAGAC CGCTAGATGGCCACAAGTCATCCAACGAGTCCCTCGCTGCCCGGTCACGGGTCAACTCGGCCACCACGCC CACCATCAGGAGCGGCGCGACCACGCCCCTCAAGGCGGCCCACACCAACAATCGGGTCCAGGACGACCTG CGGAAGCTCCTGGCCCCCGAGTCGTACAACGCTGCACTGGAGAGGGAGAAGAAGGAGAGAATGAACGGAG ACGGCCGACACACATCTTCCATTACCATTAACGTGGCCGGCAACCCCCAGATCATCTCAAACGGCCACCA TGATGGCCCCGCCCAAGCCCACCCCTCCTCCTCCGCCTTCCACAGTCCTCTCCCATCCCCCACCTCCTCC ACCCCTGCCGTTACCATGGTAACCATTCCAGGCTCCTTCCAAGAGGCAGGTTCCGAGGAGGAACACATCG TGGCTACTTCTTCTACTACTAATCGAACTCCGCACTTCCAAATCTGCATCTCACGTGTGCCTAATACGGG GGTAAATATCTCTCTCAAAGTACGTTGTCATGGTAACAGGTTACGGTGCGTTTCGGGTTGCATATATACA AGGGGAGCACATATGGGATTCACCTTTGAGTTTAGGAGTTAGAAATTTATCCTTATG
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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