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Echinobase
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Echinobase Accession
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Echinoderm mRNA
Echinoderm protein
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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_038194362.1 PREDICTED: Patiria miniata zinc finger protein DZIP1L-like (LOC119723616), transcript variant X3, mRNA ACAGAGGGGGTACTTCTGGCATTCCAAAAATGGCGTCTGGTTTGAGTGTTGTTGACTCGGGGCAACGGAA AGTTCAACTGTTATTGTAATGAATTTCGGCGTTTGAACTCGGTATATGACATGTGGGGTTACTGCAAATT GACGTCGTCACTATAGAGTTAACAAATGATGCATGGGTCGTATTACCCATCACCCCGTGGGGCAGGAGGC AGCACAAGTTACGTCTACACCAACGGACACGTACCCAATGGAACACCTCGTGCTGCACCGACCGCCATGA ACGGTGGTCCGGGGTTCACCTTCCAAAAGAGACAAGAGAGGATTGATTGGAGGAAAATGGCTTCTGTTGA CGTAGATCGCGTCATGAGAGAACTTGACTTTGCGACCTTACAAGACGTCATCATGACTGTCACCTTCTGT GACATCACGGCCGAGGTCGACATGAGGTCGATGGATCCTAACTTTATCAAACTCTTCCAGCTCTCCCAAC TCATTGCCGAGTATTTACTGCATTCCCAGAACTACCTGACCCACAGCATCAGCTTGACTCAGGAGAAGCT GCAGCAGTCCGAGGAATCCCACAATGCAACGCAGGTTGAGGTCAGCAAGGTCAGACAGGAGGTCAAGAAG ATCAAAGAGGAGTGTCACAAACGGAAGAAGATGCTCAAGCAACAGCAGAACCTCATCCAGGCTGGAGCCA ATAATTATCACAAGTGCCCATACTGTGTTAAAGCCTTCGTCCACGCAGCATACCTTCAGTCTCATCTCAC GCGCAAACATCCGGAGTACGTCCCCCCGTCGGCGGACTCTGAAGCCAAGAGACAACGGGAGAGCTTGGAA AGAGAGATCGAGGGATTCAAGGAGCGGTTGAGACTGACCGAGAGTCAGATGGAAGAGGAACGGAGGACGA TGCATCAACAGATGACAGCTCACAAGGAGAGTCTTGCCAGGGAAGACAGTAAGAGACTCGAGGAGTTGCA GAGGCAACAGATGGATTCTTGGAAACAAGAACAGCTAGAATCACAAAGAAGTGAGATGGAGCGGATGCAG GAGATGTTCATGAAGGAACTGAAGGAGATGAATGAGAAATACTCCTCCTCCCAGCTGGCTCTGGAGGACC TTCAGTCCAAGTATGGTAAGAAGTCCATGTTGGGAACCTTGGAGGACGAAGATGAGATGGCGGATCTCAA GAAACAGATCAAGAGACTGAAAGACGAGAGTGATCAAAGGAATCGAGATCTTCAAGATAAACTTGCCTCC ACCCAGTCTTCCATGCGAGAGCAAGCCAAGATGTTCAAGGACCAATCCAAGCAGACGAGGAGAGATCACA AAGATGAGATGCAAGAACTGAAGAGTCAGTTGGATCAGACGCAAGCGGCACTCAGGATTGAGAGGGAAGG AGGGAGCAACATCGGCAGGAAATACGAGAAGCAGATCCAGCAGTTACTACAGGAATCTAAAGACCAGCAG AAAGTATTGAGGGCAAAGGAGAAAGAAATCAACTCTCTCAAGTCTCGACCAAAATCTCCAGCAAAGCCTC CCCCGTCTCCTACCGCCAAGAAAGCCCCGCCCATCCTGGCAAAGTCTCTCAGCTCCGAGGAGGAAGAGGA GGAGGAATCAGATGAAGACTTAGAATCAGCAGAGGAGGAAGGAGAAATATCTATGAGATCAACACAGGAG GATCTGCTAGCAGCTTCAAGTTCTGAAGACTACTCAGACGGAGAGATTTCTATTACAGATGACAATGAAA GTGATAACAACACTCTAGAAGATGATGAGAGAGAGAAACTGAAACAAGACTTGGAGTCACACCTGAGAAA GAATCTTGAGAAGCAAGGAGTACCGGAGGGTGTGAAGGGCATCACCTCCAACTCCCTCGACAACAAGTTG AGACGACTCAAGGAGCAACGACAGGTGTTGGCCAGGGCCCATCCTACCTTCTATGACATCAGGAAGAGAT TGAAGGAAGACGTGGAGAAGATGGTGGCTGGGAAACGACGAGGCGCCAAGAAGATGGCGGCCAGTAAACG TCCCAAGTCAACTTCGCCCAAGCCTAAACCAACTGCTAAGCTCTCTAAAGGCAAACATCCAGCTTCCAAA ACCCCTCATCAGTCCCAAGCAAAGACCGCCAAACCATCAACCTCATCATCTGGGGTCAAACGGTCGGGCG TCGGCCACGCCCAGCAATCAATTAAGGAACCAGCGAGACAGGTGCCTCCACCCGTGGCTCCTAGGAGCTC AGAGTTGCCCAAGTCATCCTCACTGAAATCAGGCAGCAAGCCACCAGGATCGCCTGCTAGAGTATCTTTC GATGTCAATGGCGAGGCTGATTTTGATTCCGACGCTGAGGATGAGGATGATGACACTTCGGAAGATGAAG AAGAAGAAGACGATAGTGATTTTTCTCTGGATGAAGACAGTCCCGACGCGGACATCAATCGACGTCCGCC TGTATCCATCCCTGCCTCGTCCCTCCCTACTCAGCCTAGCGCTAGGGGCACAGCCGAGGGAATGGACGAT GACAGCGAGTGGGACTCGGAAGACATCAGCGAGCTGGAAGAGATGAGTCGTGAGGAGAACGGAAGAGGAA GTCAACGTCAGCAGAAGGAGGAGCAGGAATGGCAACAGCAGCAAGAAAGGAAGGCGAGGCCCATACCGGC TGGTAGACCAAAGAGTCCAGCGATTGCCAAAAAGGCTGAACAAATTGAGCAGTTGCTGTCTTCGCGTCGC TCAGACCACAAACCAGTGGGCGGGGTCGACCTCGGGGTCAAAGGTCAGTCAAGTAACCTCCGACCTGATT CGCGGGATGATGTACGATCACCATCGCCACGGATACCGACTTTACCTGATGCAAGCGATGAAGATGACGA CGATAGCTTTGCCGTCTCGTCTCTAGATGGAAGCAACTACTCCGTGCCTCGCACGAAAGCACCCTCTGGG CCGGTACCTGCACCGAGGCAGGGTTCTAGACCTCCGACAACAGGCAGTCGAAAGTCGGACACAGATATGT CCAATACCTATGGCACCAGCATGTGGGGATCGTCAAAAGGTCAAGGAGAATCAGGAACAGCCAAGAGTTC CTTGGTCTCAGTCACTGACTTTGACGACGATGATGATCTGGATCTCAGTGACCTTTGACACGACCAATCA GCTATGAGAATTTTTGAGAGCCCCCCTCCCCCCACAAGTATACGTTTGTAAGGCTGTGTGCGCAAGCTGC GTATTTCCCTCCACTGGGACTTTTGAAAGTGGTAAAAGGGCTCCCTCTCTTGTTCATTTGATATTTCTGA AGGAGAACAGGGACCCATATTGAGACAGAGTCCCCCAAGGCAGGGACCTAGGATCTATTCTCATGTAGCC AAAGTCTGAGGCAAAACCAGAGTTTCAAAAATGGCCCCACTTACCTCAAATGTATTCTTCTTTTTTTTCA GCAGGACTATATCGCTTACTCCGTCCAAACTTTATTCGTTGCCAGTTTATATGAATCCAGGCCAAAAAAT TTACAATGTCCAAGTATTCAACTTTATTTCATCTTAAATCTTTTATAACTTGGTGTTAAGTTGCTATTTT ATTTGCGTGACAAGATTACATATATAAAGTGATTCTATGGTTGTTGCACCGTGAGTTAAATGGGTCCCCC AGTTGAGACAGTTAGCCAATGAAATGAGTGCTGTGAGTCACATGACTTATTTGAATTTCGGTCAGATGGT CAGAGACTGAATGCAAATTTAGTGTCTAGTGAGTTCTTGGTTATCTAAATGGAGATATGTTTTGAATCTG TGCCAAATACTTATCCAGGAAAAGTTCAGAGGAATTTTGCTGTT
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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