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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_038218362.1 PREDICTED: Patiria miniata calcium permeable stress-gated cation channel 1-like (LOC119742426), transcript variant X3, mRNA CTGTGTCAATCTGCTTTTTGATCGAGGCCGAGGGTCGTCAGGTGAATCGCTTCGCGAGCTGTCACATGAT TGGAACTGTAACATTGCAAAAACTTGTTTTCAGTGACTTGCAAGATTTTCATCCTTGGTTGAGCTGAGCG GGGTCATTAGCCATGGAAAACTGTGTCCTGGCAGGGAAGAACAGCTCTGCAATAGCATTCCTGGAATATG GAGGGATACCCTCCAATATCGGCTATAATATCCTCTTCTTTGTGATAATAGTGCTGCTCTTTTCAGTGTT CCGAAAGATTGCTGGAGACTATGGTCGTATTGCACTCATGCAGCATGGAGAAGAGAGGAGACCACTGAGC AATGGCGAACCGAAATCCACCAATGGATACAATGTATGGACCAGCATGTTTTACGGCGACCACAGTAAAC CGAAAAACAGCAAGCCGTCCATTAATGCAGACGGAGAGACGACAGTTGGACAGCCAGAAGAACCACACAG CAAGGCACCGGGATTTATTGATTGGCTTCCAGCAATGTTCAAAATCAAGGATGAGGATATCAGGCTGAAG TCTGGTGTGGATGCAGTGCAGTACCTGCAGTTCCAGCGTTACCTGATCCTACTGGTCATCATTGTATGCG TCCTGTCTATTGGGGTCATCTTACCCGTTAACTTCAGTGGAAGTCAGGAACTCGGACCAGAGAACTTTGG CCGGACAACCATTAGCAATATACCCACAAATTCGGATAAGTTGTGGGTCCACACCATCTTCTGTATGCTG TTCTTCCTATTGACTGTTGGTGCAATGAGGCATTTTTCCACTCATGTACCATATCGAGAGGAGAACGATA ATGTATCGCAGACACTGTTTGTCAGTGGTATACCACTTGAGAGAACGGATGCTGCACTTATCAAACAGCA TTTCCAAGAAGCTTATCCAGAGGTGACTGTCATTGATGTCCAGTTTGCCTATGACATTGCCAAGCTCAAG AAGTTGGACTTACAGAGGCGTGATGCTAGACTGAATCGACTGCACTGTGAGGGGATTTACTCCAAAACTG GCCAACGACCCCAACTGAGACAGGGAACCTGTGGACAAGTTGGCTGCTGTGATTTTTGCGGAGGTCCCAA GGTGGATGCTATTGATTACTATGGCAACCGGGAGGATGACTTAACGAGACAGGTCATGGAAGAGAAGGGT CACGCTCTTAAGAGCAACCTGGGCATGGCGTTTGTGACTGTACAGAATGAGATCATGGCTGGCAGGATTG TGAATGACTACGCGACCCTGAAGACCGGTCCTCCCACGGTGTCTAGTGTCAGTAAACAGCTTCACTCCAC CGTGTGGAATGTCCACTTTGCCCCCAAGCCTGATGACATTGTCTGGGAGAATTTGTCTGTTGGACCACTG CTGTGGTGGGGAAGCGTCATCTTTATCAACCTTGCCTTATTTATTCTACTGTTCTTCCTGACGACACCCT CTGTCATCATGACCAGCCCTGTCGGAAGCAAAAACATTGAGGACGCAGTCAAAGATGTTAAGTCTCCTTT CATCTCTCAATTCCTGCCCACCATTCTTCTCTGGACCTTTGCGGCCATGCTGCCCATCTTAGTCATCTAC TCCAGCTACTACTGTGAGTTCCACTGGACCCGCACCAAGCTGAACCACACCATCATGCGCAAGACATTCC TGTTCCTGATACTGATGGTGCTTGTGCTGCCCTCGCTTGGCCTGGCTAGTGCGCAAGCATTGTTCGAGTA TTGGATCCGTGCAAGCACCAAGGATGTGTCCATTCGCTGGGGTTGCATCTTCCTGCCGGAGAACGGAGCC TTCTTTGTCAACTACGTCATCACCTCGGCGTTCATCGGTACAGCATTGGAGCTGATACGATTCCCGGAGC TCTTCCTGTACGGGATCACCATGCTGTGGACCAGGTCGAAGGCCGAGAAGATCACCAAGAGAAGTAGGCT AGCATATGAGTTTCAGTATGGTGTGCAGTATGCTTGGGTCTTGACTACATTCTCCATTATTCTGGTGTAC AGTATCACCTGTCCTCTAGTTACACCTGTGGGTCTCTTGTACCTCCTGTTCAAGCACATGGTGGATCGTT ACAACATCTACTTTGCCTACTCCCCGTCTCGCATCGATAAGGACATCCACGACACTGCCATCAACTTTGT GGTGATTGCTGGCATGCTGCTGCAGCTGTCCGTCCTGTTCTTCTCTGTGCTCAGGCTGGGTTCGGTGGAC CCTCGCTCCATACTACTCTCAGTGTTCCTAGTGCTGTGCATTGGCCTGTACATTGCCAAGGTCTGTTTCA ATATCTGGATGGGTTACATCCCGCCGGCGTACGATGAGTTTACTAATGTGGAGGACCAAGCTCCTTCCAC TGAAGATGAGGTCAAGCACTTTATTCCTGATGTTCTACAAGAAAGCGGAGATGATAAGGACGAGGAACAA GGGGGCGCGACAGCCCTGGGCGGCACCGCCCCCAAGCACGCTTACGGTACCATGGATGGACAGGTTGGGG AGCGCATACACTACGGCCACAGGGACACGCCCGATACCTCCGATGGGGAATGAGCCACTATAGTCCAGCC AGTCATAACAATGGGAGGTCACACATCGAAGCCTGGTTGGGTCGACAGCCTAGACAAATCTGATGAATCA ACTTGGATATGTGTTGGGGTTGAGCTTATTGTGAGGTAGTTTTTGACGTGGTTTTTATGCTGGAATAATT TGTATGAATTGTGTATTTGAGATGGAATAACTGCCGATCTTGAGTTGTACTTAGGACATAGTACTTGAAC AGAATACTTATTATCAGAAATCAGTGACACAGGGATATATTGTGCAGTTTGGTCATTGATAGCTCTCAAA GATATATCAATATATCTTGTTGGAAAATCAGAGCATAATCATTATAGGCGGCAACAAATTGAAAATTGAG GAGTTGTGATTTAGTAGCTTGTGAAAGTCTTTTCTTATTGGCTTTAATGTGTGGGAGGTTTGTTGTTTCT CTGAAGGAGGTGGAAAACTGATTGCAAGTTTCATATGAAAGGTCACATGAAAAGTTATTAGAAAAGTTTA AAATTGCAATATGTGAACAGACTTACATGTATAGTAGTGATGAAGTTAGGGTATAATAGACTCATCAGTC GAGGTGAAAAAATACAGAACCTGGTTGAAACTGAAATCCCAAGTTAAAAAGTTGACCCAAGTGAGAATTA GACCTGGGTCATTGAGGTCAAAGACAAGAGAAGTGCCCATGCACCCATACACATGTCGACTTCAAGAAAT GGAAAAAAGAAAAGAAGGTTCATTGATCAGCTTGTTGCCCTTTTTTCATCCCAGTTTAATGAAATATATA TTTGCAAATCTAATGCCATGAGCTTAAGTTGATTACTCAACTTTGAGAGAAAAAGGTCATAGCACCCCTA TATCGTAATTGTTGGCAAGGCTTACATGCAAATCCTGGGCCCAATATTGTTGATAGCATTGAGGTTCCAT TGGCCATGAACGCAGAGTGATCATAGTAAAATGGATTATATATACAGCAGTGGTCAAACTGAGAGCTTTA AAATTAAACTAAGGACCAAATCGGTCAGTTGCATAATCAGATGAGAATTACAGGAAGTAGGGTACAGTAA AGCCAGACTTGGGCGCCGGCGTGTAATCCGACTAGGCTTAATTGGCCACACGATTGTAGGGAAGGCAGGA GAGTTAGTTCTGTTTGTTGTACAGAAATGAAAGATTTACTTAAGCCCCAAATGCAGCTACTGTTAACTCC TTTGAATAAATTTAGCATATTGCAGTGTTTGAATGTGGATCATCTCTTCGTGAAACGTAAACAATATCTG TATGAAACAAGAATATTTCCCATTTCACTTTCTTTCCAA
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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