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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_038216557.1 PREDICTED: Patiria miniata U3 small nucleolar ribonucleoprotein protein MPP10-like (LOC119741002), mRNA ATGCATAGCTAGCTCAGCTCTGATCAACTGAACACGTGGATACCGCCCCTGGCCTGTAATACCAGCAGTA TCTTTTGTGAAGACAGCCATGGAGGAATCTTCAACCATTTTACACGTTTTAAGAGATTTTACGCAAAATA GTAACTCTCCGGAGAACTTCATCGGTGCTCAGTCACATCTTGAGAAGCCGTTCACTGAATGCACCAAGAG GCTGTTTGATCTTGGCAGTGACTGCCACACCATCAAACCACCATCCCCAGCAGATGGACTAACGGAGCTA ATCATTGAAGGGTTGGACGGCGAACAAATATGGGAGGAATTAGAACTAACAAACAGACCGCTCCTCAAGC ACACAATGCGCGATGTGGCAAAGTTATTGACAAGTTGCACTGGTGTCTCATTGATTAGAACAAGAACTAA GGAGGAAAAAACGAGTAAAACAAAAGAGAATGTTGAATCTGACGAGGATCAATTTGAGCAGGGATATGAT GGTAGTCAAGATCTCTTCGCCGATTCCGAAGATGTCGCTGGCTCAAGTTCGAACTCGTCAGATCCAGACT CTGAAACAAACTTTGACTTCGAGGACTTGGAATCACGGTCAAAGAAAACCGCCCCAAAATCATCGAAAAA AGCAGTACAACCCCGTGGCAGGCCCTCCGTGGTGGATGACCGATTCTTCAAACTGTCCGAGATGGAGCGA TTTCTGGAGATGGAAGATGCCAAAGAGGATAGGCGGAGACACAGGGAGGAAACTAGGGGTGGTGATGCGG AGGGGGAAGATCCAGATGAAGACACGGATTCCGAGTCGGTTGATCTGTTCGATGACTTGCCTTCCGATGA AGAGAGTGATGTTGAAGAAAGTCAGGAGAAAAGTGCAAGGAGCATGCATTACAGCGACTACTTTGAGAGT GATAATCGGAAGAAACTGTCCGCAAAAAAGAAGAGCGTCAGATTTGAGGAGTTTGATGAGGAAGACGAGG ATGAAGAAACTGGCGATGATGACGATGATGATTCACGGAAGATAAAAAGTCGTAATGATGATGGCGATGA TGTTGAAGAAGATGATGAAGATGATGAAGATGAAGAAGAAGAAGATGATGAAATTGAAGGCGAAGATCTG GCGGACATTCTCGGAGGCAGAGCCAACGAGAATCAATCATCCTTCGAGAAGAGACAGGAAAAGCTCAAGC GAAAAATAGAGGCACTGGAAGAGGCCAACATTAGTCAGAAACCATGGCAACTGTCTGGGGAAGCCAAAGC CACCAAGAGGCCAGAGAACAGCCTGTTGGAGGAGAATGTGGACTTTGAAGTCACCAGCAAACCAGCCCCC GTGATCACCGAGGAAACCACGCAAGCCTTGGAGGATATCATCCACCAGCGAGTCTTGGACCACGCGTGGG ACGACGTGGAGAGAAAACAGCGTCAGATTGAAGCACCGTACGAGTTCAAGAAACGCATCACGCTGGATCA GGAGAAGAGTAAACAAAGCTTGGCTGAGATTTATGAGCAAGAGTATCTGAAACAATCTGAGCAGGAGAAA GAAGAAGAAGAGAACCCAGCTCACGCTGAGATCAAGACCACAATGGACGCACTGTTTGTCAAATTAGACG CTCTCTCCAACTTCCACTACATGCCCAAACCGGTGCTACCGGAAGTGAAGATTGTGAGGAACGTGCCGTC TATTTCCATGGAGGAAGTCACCCCAGTAACGGCGACAGACGCTTCGCTAATGGCTCCCGAGGAAATCCAG GAAAAATCAAAATCTGAGCTCAAGGGTGACACCGAGAGGACGTCAACGGACAGAAAACAAGCGTTGCGTG AGAAGAACAAGCGTCAAAGGGTACGGGCCAAGGAAAGGCTCATGAAACAAAGAGCCGTTGAGAAGCTGAA ACCAGGAATGGGCAACAAGTACAGTATGAAGGGCGCCCTCCAGAGACTAGAACAGGACAGCAAACTGCCT TCCAGCAAAACCACAATCATCAAGGATGACAAGAGAGAGAAGGCGCTCAAATCCTCCAAGTCGTTCTTCG GTCGTTTACAAGACGAGGTGACGTCAGAACTGCGTGGTGTGAAGACAAAGAAGAAACTCCAGAAGCAGCC AATGTCCAGCAAGAAACTCAAGTTGTGAGGCCCTTAGCTCCTATAGACTCTGTGTACATGTACCCCCTCA ACAATTACAAATAGCTAGAGAGTTTGGGGACACCACTGGAACAGCCTTTTGCACGAATTATCGTCGCAAC CTGACGCTCACGCAAAGATGCTATTAGTGGGGCAGATAGGGAAACATTTTGGGGGAATTGTGCCTTTGAT GATACAAGCATGGCATTTGGCACAGTCAGCTAGAATATGTCACGTGAAAGAAATCTGGCTATAGGGCCAT CGCAGATTTGTCCTTTGAAAAAAATATTGGTAGAAAAACAAGCAATTTTCAACATTTTCAAAATGGCTGC CACTCTGACTGTGTGCCCAATTTCATGCTCGTTTCATGAAAGGCACAATCCCATCACCTATCTGCCGTTC TATAGGGTACTTTCAGAATAAACCAGTATAATAATAAAAATAATAATATGGGAGGCTAATCATCCTTATT CGCAGCTGCGAAGCTGAATTGCAAAGGACGCGGCTACAACGTGTTCGTGCCGAATGTATGTAAAGGCGCC GTCGGCAGGTAGCCATACGACCCATGTATGACCACAGACCACAGCCAAAGATCAAATGTGTTTGATTTTT GCGGAGGGAGGAAAACCGGAGAGCCCGGAGAAAAATCCTCATGGCACAGGAGAGAATCAACACACAACTC CACTTACATATGGTCTGAGCCGGGAATCAAACCAATGATTACTGGTAGCAGGGTTTTGACCAAGTTATTT GATTAAGTTCAGAGTTTACTGCATGCCACATAACTGATACTGTTTTCATCGTGAGCACTTATATCGTTTT GTATTCCTCAATTTGTGAAATGATAAAACTTCAATAAAAGAAAAAGACAAAAAATCAGGATTTGAGAAAT CATCTTTAATTTAATCAGATTTTTTACAATGCTGCAGCAGCAGAAGAAAAAAAACCAGTACATGCATATT TAGCGGAAAAAGTAGCAATCTATGCAAACATGATATATTTAACTGCACCAGAAAAAACACAGAAAGAAAA ATTGAATGAATAGTACTACTAATTGCACTGGAAGTAGACGGTTGCCAATGACAGGCCCTGATTAAGTTTC TTGTGAAACTGCAGGATTTGGCAACACTTTTCCCCCATAAAAATGAACGCCTAAAAAATGTTTTAATGTG CACATGTTTGTGATCACATTTTTGTGCTATACTGTAGTGCAAAACTCTCATCCGTCCTAATGGGTAATAT TCAACACTCTGATGACGGCGTTTATGGAGTGTAATTTTCAATTTTCTCATTAAAACTGCCATTTGAAGCA ACAAAAAATTGAGTAAAAAAAAAAGCCCATTGACCCTAACCAACCCTCAACCCTTCAAAATCCAACTGCA TGTTTTGTTGGAATCTGTTGGAGTGAGTTTTGCACTACCTAATAAACTGGTTATGCTTTACATGGGATCA GGCATACCACCATAATCAGAGTTCAACAGTTTGGGTGTTAAGTTTACCATATGGTGTTGAGTTTACCATA TGGTGTTGGGTTTACCATATGGTGTTGGATTTTGCAAGAGTGAGGAAGATTCCTAGTAAATCACTCAAGG GGGTTAGGGTTAAGTCCCCTGAAAAGAAAAGCTCTTTCTCTTAAAAACCAATTACTTAATTTAAAGCCAT TTTGTAAACTTGCAACATTTACATGTTCATCATGTATATTTTCAGTTATTTCAATGCATGTATACTCATT AAATTCTTTGATTCAAAGTATGGTATGAAAGTGGAAAAACAAAAGGGAGTCTTGTATATTTTATCTGATG ATAATTTGTATAAGCCTTTTGAATCGTGCTCATTCAAAAAAAAAAGAAGCTTACACTACATGTTGATCCT CACAATTTGGAAGTCTGGTGAAATAAAATGCAATTGGCGATACATA
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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