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Echinobase
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Echinobase Accession
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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_031000423.1 PREDICTED: Strongylocentrotus purpuratus host cell factor 2 (LOC586153), transcript variant X4, mRNA GTACATTGCATTGTGGGTAAGAGACAAAATGGCGGCTCCCATACTAAAATGGAAGCGTGTGACAAATACG ACTGGTCCAAGCCCCCGACCTCGCCATGGACATCGAGCCGTCGCAATCAAAGACCTTATGGTAGTCTTCG GCGGTGGGAATGAGGGGATCGTGGATGAACTTCATGTTTACAATACAGCTACCAACCAGTGGTTTGTCCC AGCAGTGAGAGGGGATATACCCCCAGGCTGTGCAGCTTATGGCTTTGTCAGTGATGGCACCCGTCTCTTC ATATTTGGAGGAATGGTGGAGTATGGGAAGTACTCCAACGAGCTATATGAACTGCAAGCCAGTAGATGGG AATGGAAACGACTCAAGCCTAAGACTGCTAAGAATGCACCACCCCCATGCCCTCGACTTGGTCACACGTT CACCATGCTTGGGAGTAAAGCATATCTCTTTGGAGGACTTGCCAATGATAGTGATGATCCAAAGAATAAT ATACCAAGGTATCTCAATGATCTCTACTCACTGGAGCTGAGATCAGGCTACTCGAACATGATATGGGACA TACCCCTAACCACAGGACCTGCCCCTCCACCTAGAGAATCACATACCGTCGTAGGTTATGCTCCAAAGGA TGGCTCCTTTAATCGACTCATTGTATATGGTGGTATGAGCGGTTGTCGGCTCGGTGACCTTTGGCAACTC AACATGGATACACATACATGGATCAAACCTGAACTCAATGGACCCAACCCACTACCAAGAAGCTTGCACT CTGCCACTGTCATCGGAAATAGAATGTTTGTGTTTGGTGGCTGGGTACCTCTTGTGATGGATGATGTCAA AGTAGCAGCTCATGAAAAGGAATGGAAGTGTACAAACACACTGGCTTCTCTCAATCTAGCAACCCACACA TGGGAGCCACTGGCGATGGAGGTGTTTGAAGAGGCTGTACCTAGAGCCAGAGCTGGGCATTGCTCTGTTG CTATCCATACCAGACTCTACGTATGGAGTGGAAGGGACGGATATCGCAAGGCTTGGAATAACCAGGTGTG CTGCAAAGACCTTTGGTTCTTGGAGACTGAGAAGCCCATGGCCCCAGGCAGGGTCCAGCTAGTCCGAGCC AGCACCACCACGCTGGAAGTATCATGGGGTGCTGTAGCCACAGCCGATGCCTATTTACTACAGCTGCAGA AGTATGACATGCCCCCTACCTCAAGTGCAGCCTTATCCTCTGTGGGTGGCGCTGCTTCCACCAAGCCACT CCAGTCACCAATCAAAGCACAAGCAACCACCACGTTCCGTGTGGTGGCTCCAGGCTCCTCAGCCTCTTGC CCTATTCAGTTGATAAAACACACTCCAGGAGTTAAGATTCAGAGTCCAACCTCGATGGCTGGCTCAGCAG CCAGTTCACTCTTTAAACTCAGCAAGCCCCTCCCTACTCCCGGCGTCCAGCAGCAGAACACCCTGAGCGG TATCGTAGCTCTCGCTGAGGCTGCTGCAGGCACCCAGAAGATGGTCAGTAGTACCACCGCTGTCTCACCA ACCCCCAACAAACCGCTCCTGGCAACGGTAGGAGGGTCCAACCTGACCCTGGTGACCCGGTCCATGCCAG GAGGTGTCAGCGTCACATTGCCGCAAGGGATGAAGCTCACCACGGCAGCAGGAGGCGGGCTCAAGATGAC GACGGCTGGAGGCAAACCCCAATTGGTGTCAGCTATGGTTTCAGGCACCACTAAAACTGTTACACTTGTG CAAAACGCTGGTGCTAACAAGGCAGGTGGTGTAGGGCCTGGCACTACCATCGTAAAACTTGTCTCAACCA CCCAGGCTGGAGGCAAGCCTACTACCATCATCACCCCTATCAGCCAGGCGGGGTTGAAAGGTCAACCTAC GATCCTGGGTATCAGCAGCATCACGGCAGGTCAGCAAGGCAAAAGCATCATCAAGACCATTCCAGTTGGT AAAGCAGGTGTCGCCAACACCGCAACCGGCAAGACGCCCACCATCGTCACTGTAACCAACAAGATGCTGG CAGGAGCCACGGGTACTCCCACCAAGTTTATCACGACTGGAGGGGTTGGTAAGCAGCAGAAGATTGTCTT GACAACCCAAGCAGGCGCCTCCCCTACCATCCTATCAGGAACACTCAAAGGTCTAGGGGCAGGGAATTCC CCCATCACCATCATCCGTGCTGTAGCGCCCCAGGGTTCGTCTCCCGGAGCCAGCGGTCAGGTCTCAGGAG TCACAACTAAGCTGGTAACCATTCCCATTTCAGCCCTGACGGGGGCAGCAACCACCAGCGTTTCCCCTGC CATAAACGCAATCATGTCTACAACAGCCCAGGTTGTCTCAAACACAGCAGCTGTGCAAAAGACCATCACT ACCCCTGTAGCATTGAGCACTGTTGGTACAGCACAGACTACTCTCATATCAACGGTAGGAACAACACCTA CAGTCAGCCTTCCGAGTACAGATCAACAGAAGGTGGCTGAAGATGCATCAGAAACCAAACCTACAGCTGC AGAAGAAAGCAAAGAAAACAAAGAAGCACAATCAACAACAGACACAACGGCAACACCAACTCCTACAACA CAAGAGGCTGCAACCCCTGCCACTACAGAGGCATCAGAGGGCGGTGTAACGATAAAGAAGGAAGAGCAGA CTTCAGAACCCAATCAACAACCCAAGGTAGAATCGGCTGCTTCAGAAGCCACGCCCATGGAAACCGACCC CTCCCCTGCACCCGGAACAGGCATACCAGCCGAGCCTACCGATACCACCAAGACCAATGGCTCCGCCCCT GCTGAAGAGACAAAGAACAAGGCCTTGGATAACGGGGCTGTGGGAGAAGAGCCGATGGATACGAAGGAGA GCAACCCAGATCCAGATTCAGATCCTAAGTCTATTGCCATGACGATTGCATCACTTGCTAACTCGGCCGG TCCTCCTGTGATGTCGACCAGGCCTATCACCAATGGACTGGACTCTAAAACGGAGGATGGCAAGTCATCG ATAGGACAAGCCATCCAGCTAGCCAAGAAAGATGTCAACCAGTGGTACGACGTTGGAATCATTAAGACGA CGACCACTACAGTAGCGCATTATCACTTGCCATCGGAGATCATTAGCAGAAATGAAGATGACATTGATGT TGTCAGTGTGCCGGATCACAGCTTCCTCAAGAAGCAGGAGCTTCACCCGGGCACAGCCTACAAGTTCAGG GTCGCTGGTATCAATGCTAGCGGGCGGGGCCCATGGAGCGAGATCTCCGCGTTCAAGACATGCTTGCCTG GATTCCCTGGGGCACCTTCAGCTATTAGAATCAGCAAGAGTCCCGATGGAGCTCATCTATCCTGGGAGCC TCCGGCAAACACCAACGGTGAGATCCAGGAGTATTCCGTCTACCTTGCCGTACGTAGCACCATGAGCGGG GCGTCGGGAGATGCCAAGCCCACTACCCCAGCCCAGCTAGCCTTCGTCAGGGTATACTGCGGACCCAACC CATCTTGCGTCGTGAGCTCGGCTAACCTGGCCGCAGCTCACATCGACTGCACCAGCAAACCTGCTATCAT TTTCAGAATCGCTGCACGTAACGTCAAGGGATATGGACCAGCCACTCAGGTTAGATGGCTTCAAGATAAC CAGACTGCTGCTAAACCAACAACTACTGTCGCTGCCAAGAGACCAGCATCTTCTATAGAAAGTCCGATGG TGAAGAAAGTAAAAGCAGAAAACGACAGTGATTCCAAGACGGCATAAAAGATTGGAAATCATTCATCACA TCACCAGGACACACAGCTGAAATTGTGGAAAGAAATGCTTGGAAGCACATTATTCATTGTACAGGAAGAG GAATTTGTATGAACATGAGAGATTGACCTTTGACCTTTGACCCCTCTTGAACAAATGAGTTAAAAGGGTT GTCGTGGTATGATGTTACCTGCCCTAGACTACGACAACGTTTTACCCCGAAATGTGCTCTGTTATTACTT TCTGTTCATTACAAAGTTGGAAAAAATGAAATATTCGATGGAATCTAAGCC
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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