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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
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>XM_030997896.1 PREDICTED: Strongylocentrotus purpuratus FK506-binding protein 15 (LOC584718), transcript variant X7, mRNA GGTGTCCTGTAAACTATCATTTGGACCAGAGTATACCGATAATATAGGACCATGCCTTTGCTTTGGAAGC GTAGTCTTGCAATACCTGAATATCGGTTTAGCAAGGGTTATGGCAAGGAGGCGTCTAAGCTAAGCTCCCT TTTTGGGATGGATAAAACCAGCAATCAGGGTGGCAATGAGTCGCTGACATTCACAGCACCAAAACAGCCT AAGAAATCCAAAGATCAACAGCAACAACAGCAACCACAGCAAACACAAGGTCAAGGGGGCCAGTCAGCAT TACTTCTAGCAGTAGCAGTTCATGCATATAGATTTTCAAATGGCACATATATCAAACACGGGAAGCTTGG TGCTGCCATCCTGGGCAACCACACAGCTAATGATTATAAGATACTTCTATACATCAGCAAACAACAGCAG GTCACACACGCAAGGATATCTCCCACATTTGCCTTCACAGTACAAGCTAATAACTATGCAACATTTTATG ATGAACAGAGACAAAACTGGTCGATAATGTTTGAATCAGAACAGAATGCTATAGACTTTGCAAAACAGGT TGGTCTAGCCAAAGTGAACAGTGCAGGTAGTGCGTCCAAGTCCTTGGTCTTCCAAGATCTGACCATCGGT CTGGGGGACGCTGTCCAGAGTGGCGACTCGGTAGAAGTCAAATACACAGGCTGGCTGTATTCCAGCAGGT CATTCGGAGATGTATTTGACAGTAATACCAGTGTAGACAAACCATTCCGCTTCAAGATCGGCAAAGGCAA AGTGATAAAGGGCTGGGAGGAAGGCGTGGTTGGTATGAAGAAGAATGGGCGTCGGTTACTCATCGTCCCA CCCCCACTGGCGTATGGCAAGAAGGGGCTCGGCTCAAGGATACCACCCAATTCAACTCTTCTCTTTGATG TAGAAATTAAGAAGCTTAAATTTTCAAGAGATAAGGAAGAAAGTGGTTCACTATCTTCAGATGCCACAGA TGGCTTGAGGTCGGAGGAGAGGGTCGGGTCACCAAAGGTTGGAAGGTCGAGAGGAGGAGATGTTTCAAGT GACAATGAAAGCAGAATAAAGCACAACAACAACTCAGAATCACAACTGTCAACGAGTCCCTCATCAAGTA AAGCCAAATTGATCTCCCGTATGGCCAAGATGGGACAACCCATGCTGCCGCTCGCTGGCGGGGTCGTAGC CCATGATAGCACAGACTCAGAAGCAGATGAGGCAAGCGCATCAGACACAGGGGGCATGTCACCCTCGGGT CACCCAAACATGATGGCCAAGAAGGCCATGAAGGTGCCCAAGAAGATGCACAACAACCACACCAATAACT TCCAGTCTGATATGGGCCATGGTATGCACAACCAACTACCAAGGCCTGGCGACCCTGGAGAAATGGAGGA ATATCCCAACTTTGAAGAATTCCCTGACCCTACTACCGGAAAAACAGTTCACCAGGTAGCCATTTATAAC CCACAGTCAGCCCAGCACAACCAATCTCAGCCTATGCCACCAGGCCAAGGCCACCTAGGACACCAAGCCC AGGCCGGCGGGATGGGCATGCAACATGGTCAGCAACCACTACCGAACTATCCCTTGCATCAGCAACAGCA GCAACAATCACAGCAGCAACACACGTATTACCAACCCCCACAACACATCCCCTCGCAGAACCAAGGACAG AACCCCATGCAGCAGCACCAGATGGCGCCCTACCCCAACCTGGCCAACCAGCAAGCGCTCGTCACCCAGC AGCAGATGACAGACATGCAGATGGTACCCATCGTCCTGTCCGAGGCCCGGCAGCACCACTCCGACATCCG GTCGGCGGTCGGGAAGGTGTCGGATCGCATCGACGACCTCTGTAAAAAGGTCAACGACATCCAGCCGACC CCATCCCAGCCGGCGTTGCCTAGCAACCAGGCAATGGAAGCGACAGTCCTGATGTCGAACATCTCACGCA TCGTGCAGGAGAACGAGAGGCTCAAGGATGAGGTTTACGACAAGAATACGAGGATCGAGAAACAGAATAA CAAGATTTCAGAGTTGCTACAGAAGAACCAGCTGCATAATTCCAAAGGAGTGAATCACGATGGCCTGCCT AAGAAGTACGTGGAGCAGAGCAACTCGCTGATGGAGAAGACCAACGACTCGTTCAAGCTGACGGCAACCC AGTCCCAGCAACGGGTCCTGGAACTGGAACAGGAGAAGGTTCAGATGACCTCTGAGTTGACCAATGCGAC CTCAAAGATCAGTTCGCTACAGATGGAGCTGTCCAATGTCCAACAGAGAGAGGGCCAGCTCCGAGCACAA CTGAACGGCGCCATCAACAACAAACATGAAAACCTGGGAGAGCTGGATCAACTCAGGCAACAACTCAAAG ACAACGACAACAAGTACACGGAGGTCCTGAAGGCGCTCAAGGATGAGAGGCAGCTCAAGAAGCAGCTGGA GAACAAGGTCACAACCATGGAGGAGGAGCTCTCCGAGATGAAGATGGAGAGGGATTCCATCGAGAAGAAT CTGTTAGAAAGGAAGAGAAAGGCAGCAGCAGAAAAACAGAAATCGGAAGAGGATATAGATGATATCAAAA GATCATTTGAGGATGAGATCTTACAATTGAAGAGTAAAATCAGGCACCAGAAAACATCTACGGATGCTGC TACAGCAGAACAGGTCTCTCAGGTGGAGAGGGAGCTAGAGACCCAATGGAGGGAGCGTTCTGATCGACTC CTTCTCCAAGCCAAAGAGAAGCACGAGAGAGAGATGGAAGATGCAAGAGATGAGAAGGAACAAATCAAGA GAAAACTGGCTGCCACTGAAACAAAGATGCTAAACGTCAGAGCTAATGACGATAACAAAGATGAGGTGGA AGGCCTCCAGAAGCAAGTCCAAGAAATGGAAGTCTGGAAAGAGAAATACGACAGCTTGCACTCGAGCGCA GTTAGCATGAAGGAGCGATACGAGACGAGGATTAAGGAGCTTATCCAGGAGAAAGCTGCAGCGGCCGCAT CATCTGCTACCATCGCACCAGCACCAACAAACATTGTTGATGAGGTCAAAAAGGTAATGAACAACGTCTA CCACTCTCTACGAGGCGAGATCGACACCAGCGAGAACTACAAGGGTAACGAGGTCCTCAACATCATTATG AATACCATCAAGATGATGATGATAAAGGTCATGAAGGAAGCTGCGAAGAAAGGAGACCAAGAGGAAGGTG ATGATGAAGAGGAGAGTGAAGAAGAAGAGGAAGAGGAGGAGGAAGAAGAGGAGGATGATGAGGAGGAAGA AGAGGAAGAAGTACCTGTAAAGGCACCTGTGAAGGAGACTGTTGCTAAAAAGGAAACTGCTGTGCCTGCC ATGTCTGCCCCTCCCTCCGGAAGTCCAGCCCCTTCAGCAGTACAGAGCACAAGCCCTCCACCACCACCAA CAATAGTCATTGAGGAAGTTGTACAGAGGGAGGATGAACAAGTGGTGGAATCAGCCAGACAGCCTGAGGT AGAAGAGGTGAAAGAGGAAGAGGAAGAGGAGGAGCAGAAGAGGGAAGAGGAGAAGGATGAAATAGATTCC TCCGATGTTGCTCCGGCGGAAATATCCACAGAACCAACCAAAGTAGTAGTGGATCAAGGAGAACGGGTAC AAGATGAAGAGAAGGAGGTAGAAGAACAAAGAGAAGAGGATGACACTGATGGAGGATTGAGGGATAGTAC AAGGGTTGCGGATAACAACACTAATGATCAGCAGGAAGAGGAGGAGGAAGAAGAGCAAGAGGAAGAGAGA GAGGAGGAGCAGGGGGAGGATGATGCGGATGATGAGGAGAGCCTCAAAGATTCTAAGAAAGATGAAGATG ATGACTTCTGGTCTGCAGAGGGCTCAGATGCTGAGGAAGAAGGATGATGATGATGAGCCTGATCCATTTG CCCCACCTGAACCTCCACCAGCAGAAGAAGAACCAGAAGATGATCAAGAGGAGGAGGAAGAAGAGGAGGA AGAGAAGAG
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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