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Echinobase
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Echinobase Accession
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Echinoderm mRNA
Echinoderm protein
Echinoderm CDS
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_038190144.1 PREDICTED: Patiria miniata sarcosine dehydrogenase, mitochondrial-like (LOC119720472), mRNA ATGTGGCGGTCTTTAGCTAGGACCTCACGCTTCATCAGGCCCCGGCCCTATGCAGCTGTTGCTGCATCCG CAAGGCCGCTGGCGACCGGCAGCTTGCGTCACTACAGCCAGCAAGCCGAGGGCGGTGTCCCGTACGAGAC CCTGCAGAGCGCCGACAAGACCCGGCCGGCGTCGGTGCCGGCCTCTGCGGATGTGGTGGTCATTGGGGGA GGGTCCATCGGCTGTAGTACGCTGTACCATCTGGCCCACATGGGGGTCACCAACGCGGTCTTGGTGGAGC GAGACCAGTTGACCTCTGGCACAACGTGGCACACAGGAGGTCTAGTCTGGAACCTGAGGCCCTCGGACCT GGAGGTGCAGCTGTTGATGTACATGGCTCACCTGGTCCGCAACGTGCTGGAACCGGAGACAGGCATAGTG CCAGGCTGGAAAGAAAACGGAGGCATCTTCGTCGCCAACAACAAGGAACGTCTGGATGAGTACAAGAGAC TTGCAACGCTGGGCAAGGTGTTCGGTATCGAGTCTCACGTCCTGTCGCCGGATGAAACCAAGAAGGTCTT TCCGCTGATGAACACATCGGACATCTACGGCTCGCTGTACTCCCCCACCGATGGTGACATTGACCCAGCA GGTTTCTGCTCTGCATTGACACGGGGAGCCACAAAACTCGGTGCTAAAGTACTGACTAACTGTCCAGTCA CAGGCATCCAGGTAGGAGAAGACGATTACGGGGTGAAGCGGGTCAAGGGGGTGGAGACGGTGTCCGGTAC CATCAAGACGTCCACTGTAGTCGACGCCTGTGGAGTCTGGGCACCATACATCGGTCAGATGGCCGGGGTG AACGTCCCACTCACCCCCATGCATCATCACTACGTGGTGTCGGAGAGAATCGAGGGGATCCACGGCCTGC CCAACGTGCGCGACCACGACCTCTCAGTCTACCTCAAGGTCCAGGGGGATGGGCTGGCCTTCGGTGGCTA CGAACCAAACCCAATCTTCTGGAAGGAGGTGAAAAATGACTTTGCCTTTTCCTTGTTTGAGTTGGACTGG GACGTCTTTGGTTTCAACATTGACGGTTGCGTGAATCGCATACCCGTGTTGGAAACCACGGGAATCAAGT CAACAGTCTGTGGACCGGAGTCTTTCACCCCGGACCACAAACCACTGATGGGGGAATCGCCCGAGGTGCG GGGGTTCTACCTGAACTGTGCTATGAACAGCTCCGGTCTGATGCTGGGCGGCGGAACGGGCAAACAAATG GCCCACTGGATTGTCAATGGCAGGCCCGAGCTAGACATGTACAGCTACGACATCAGACGGTTTGACCCCA AGGTCAGCAGGAATTCCGCCTGGGTGGACGAGCGTAGTCAGGAAGCCTATGCCAAGAACTACTCCACTGT CTTCCCTCATGATGAGCCTCTGGCTGGTAGGAACATGAGGAAGGATGCCTTGCACAAGGTTTTGGAAGAT GCAGGCTGTGTTTATCAGGAGCGGCTGGGATGGGAACGGCCCGGCTGGTTTGCAACAGATGGCCCTGCTC CGGTTTTGAAGTATGACTTTTACGGCTATTACGGCACACCAGAGCATGAAAACTACCGCTACAAACAACT GCTGGGCGATGATTACACCTTTGACTTCCCCAAGCATCACGATATTATTGGGAATGAATGCATGACGTGT AGGACGAGCGTTGCAGCCTTCAACATGTCGTACTTTGGCAAGTTCTATGTGACGGGGCCGGACGCACAGA AAGCTGTTGATTGGATGTTCACCAATGATATGTCCAAACCCGTGGGCTCTACCGTGTACACCTGTGCCCT GAATAAAGCCGGGGGTGTAGAAATGGACCTGACGGTGTCCGTCATGGATAGCGGCACGGGCTCTGCCATC GATCCCGTCTTTGATGGGCAGGGCTTCTACGTGGCTGCCGGAGGGGGTGTAGCCCAACACGCCAAGACGC ACATGAGGACCATCATGCAGGATGAGCGATTTGACTGCAACATTTTGGACCACTCGGAGGACATGGGAGT TCTAAGCGTACAAGGACCAAAAAGCCGAGAGCTGCTGCAGTCGTTGACGTCAGCTGATCTGAGCAACGAG GCCTTCCCTTTCGCAACCCACAAGGTGATCGACATAGCAGGGAACCAGACCCGCGCCATACGGCTGTCCT TCGTCGGGGAGCTGGGGTACGAGCTGCACGTCAACAACGAGTCGGCGGTTGCCATCTACCAGGCCGTCAT GGAGGCCGGGGCCAAGTATGGCATCGTGAACGGAGGGTACCGGGCGCTGGACTCCTTGAGTTTAGAGAAG GGCTACCATCTATGGCGTAACGACCTCCGAGCAGAGGACACCCCTCTGGAGAGTGGACTGGGCTTTGTGT GCAAGTTGAAGAAGGGCACTCCATTCCTCGGGAGAGGGGCTGTGGAAAAGCAGAAAGCCGAGGGGATCAG AAAGAAGAGGGCTTGCTTCACTATAGAGGAGCACGTACCACTTCTCGGCTTTGAATGCATCAGACGCAAC GGCGAAGTGGTGGGTTTTGTCAGGCGCGGCGAATTCGGCTACCACCTGAACAAGAACATCGGCTACGGCT ATGTCAGCAACCCCAGCGGCGACGTCGTCACAAATGAATTCCTGGCAGAAGGGGACTACACCATCGAGAG AATGGAAGAGGTCTACCAAGCCAAGCTACACCTGATAAGCCCCTTTGATCCACAACACAAGCGAATAAAG GGTATCTACGCCGACGACTAAGTGACCAATTACGATAACAAGAAAGTAGAAGAATGTTGCAACCTGACTC CACTTCAGCGGTTGTGTACCAAGTCTATGGAGAGTCAAGACAATTTATTTCCTAACAAAATTGGAAATGT TTCTCGGTCCCAGATTCATGTCTCATCATCATTTCTGCAATGAATGACCTTCGTTGAGATGATACATGAT GAAAAAAGCAGCGTCAGGTTGCAACATTCTTTCCACTAGAAAGATAAGCTGATCAACGTGGACGAGCCAT GTTTGTACTTTGTTTTTACTTATGTTATCAGTAGTTTTGAGACTTTTTTTTCCGCTAAATATGCATGTTT CTTTTCTTTTCTTTTCTTTGCTAAAGATACAGATATAGTTTTGAAAGCCTATTCTAAATATTAAGAGTGA AGACAGGACAGATTGTGCACAACTGCCCGAAAAAAAATGAAATAAATTTATTTAAAAATTGTGCTTAAAT TTTATTCTTTTTATAACGCTTAGCGTGCAAAAACACGATTGCAGTTCAAACTCATGACCTCAGATATTAA TGCCAAAAAATTGACAAACATACCATGTTTGTACCATTTCTTTAGGGTGATGTACTTCAAAATATATTTC AGGGAAACAAAATTTAAGTACATTTGTCTATTGTTTTTAATCCTAAAATCTAATCTTACAACAACAAAAA GTAAATAAAAAAGTGGAATCTTTTTCCCAGATCAAAGAGTTTAAATTATACTGATTTATTCCTATGTGAT AGGGTGGTGGTAATATATTTTTTTTTCTAAGATTGCAGAAATTTTGTATTAGATTTAGAAATTTTTTTTT GATGTATCATGAAAACTTAACATGGGCGGGTGTGCGAGATTGGCAAAAATGTTACACAGGACCCACTCAC ATCTGATTTTCAAAATTGGGTTCCGAAAGTATTTTTGTGGAAAATTCTTATGTAATTTGGAAATGTCTGA TTCTTCGTCCTTAAAAGCTCAGGAATCTTTTACATAAGCCAGTTTTTTGTTTTTTTTTGTAAACCTGTCT GTAACGTCGTTCTATCAAACAACTTTAAAAACTACTGGCCGCCATGCCGATTAATTAATTGACTGTTTAT TCACTGTAAGGCCAAATAAAAATAAAAAACATGTTTAGCGTCCTACCTTTT
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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