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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_041613767.1 PREDICTED: Lytechinus variegatus DNA helicase MCM8-like (LOC121419345), mRNA CCCTGCACCCACAGCAATGACTGAAAGTTCGACAAAATGTGCCTTTTGGTAGACTAATTTTCACTAGCCA AATTTGGTGGAGATGAGCTGATCGGAGCAGAGACAGAGTTTCTGGCGCAGTTTTCGAATTCTGAAGTCGA TTTATATCATAAACTGATGTCTCCTGAAGATGTGATTTAAAAGTCAGCATGAGTCAGAGTCAGGGGTCCT CATCAACCTGGAGGGGAGGAGGAGATACCAGAGAAGAAGGGGGAGCAAGGGGAAGAGGGGGGCGAGGAGG AACCAATTGGAGAGGACGAGGGAACACTCGAGGAAACTATTTCAGTACATACCAGAGTAATGGAAGAGGG GGAGGAGGTAGAGGATGGAGAGGCCAAGGAGGAGGTGATAGAGGTAGAGGTGGATGGAGAGGAAGAGGAG GAGGTGGATGGGGATCATGGAATAACAGAGGAAGAGGTGGTGGCTTCGGAAGTAATGTTTCAAACAATAC TGTCCCGGTTTCAAGTACACGCCATTCTGAGTTAGAGAATATTGCTAATAGTCTTATCCCCTATAAAGGA TGGAGGCTGTACTTCACAGATGAAGCATACAGTTCAGATTCCCCCACAGTAAGCAAGATAGAAACCTTTG AGGTCTTCTTCAGACCAAGACTACCAAAATATGACAAGACTGAGATTGATCAACGAGGAAGCATTCTAGT TGACTGTAAGGAACTCTTGGAGGATGAATCAGTAAAGACTGTCCTTCCAACTCTAAAAAATGAGATAAGG GATATGCCTCAGAAAATCATCAATTGTCTAGGAGTAGCTTTCCATCAGGTTTGGACCAAAGATCTAGAAC AACAAGCAGCAGTTTTACAAGAACAAGAAAACTCTGAGAACCAGTCTCAACAATCTGTTGACATTCCTCC TATGTTAGTTCAGGTGCCATTGATTCATGCCAGAATACTCAACTATGAACCAATAACAGCCTTCAAAAAT TTGAAAGCTAATTGCTATGGTAAATTTGTATCTGTGAAGGGTACAGTAGTAAGAGTCAGCAATATAAGAC CATTATGTACCAAGATGGCATTCCAGTGTAATACATGTGGAGATATTCAGATTGTCCATCTACCTAATGG AAAGTACATCCTACCAACCAAGTGCCTTGCCCCAGAATGTAGAGGGCGCTCCTTTGTACCCAAGCAGAGA TCACCTCTGACGGAGACAGCCGATTGGCAAACCATAAAGCTACAAGAGATAGTTATGGATGAGCAGAGAG AAGCAGGACGTATACCAAGAACAGTAGAATGTGAACTCATGCATGACCTTGTGGACAATTGTGTACCGGG AGATACAGTTACAGTCAGTGGGATAGTCAAAGTATCAAATGTAGATGAAGGGAAAGGACGTAACAAGGAT AAATGTATGTTCCTCCTGTACATCCATGCCAATTCATTATCAAATCTGAAGAAAGGTAAGAAGAATACAG ATGCTAATGGTGGGATAGGTGGTGCTGCAGTGGACTTCAGTATCAAAGAACTCTATGCTATACAGGAGAT ACAGAGTCAAGAAAACTTGTTCAAACTCATCGTAGGATCTATGTGTCCTTGTATCTATGGCCATGAGTTA GTGAAAGCAGGACTTATTCTTGGATTATTAGGTGGAACACACAAGTACACCAATGATAAGAACCGAATCC CAGTTCGAGGAGATCCTCATATTCTTGTTGTGGGTGATCCAGGGCTCGGCAAGAGTCAGATGTTGCAGGC TGCTTCTAACATTGCTCCTAGAGGGGTGTACGTCTGTGGAAACACAACAACTACCTCAGGTTTGACTGTG ACTCTGACCAAGGATGGTTCTACAGGAGATTACTCATTAGAGGCTGGAGCATTGGTCCTGGGTGACCAAG GTTGTTGCTGTATAGATGAGTTTGATAAGATGGGTTCTCAGCATCAAGCTCTTCTGGAAGCCATGGAACA GCAAAGCATCAGTTTAGCCAAGGCTGGTGTGGTGTGTAGTCTTCCTGCCAGGACCTCAATCCTAGCAGCT GCTAACCCTGTGGGAGGTCACTATAATAAAGCTAAGACTGTCTCTGAAAATCTCAAAATGAGTGGCCCTC TGTTGTCTCGGTTTGATCTAGTGTTCATCTTACTTGACAAACCTGATGAGGAGATGGATTCTTTACTCTC TGAACATGTGATGGCGATTCATGCTGGCAAGCAAAGAGCAATGAGTGGTGTACGTGTGATGAGGCATCCC TCTGGGTCTATCACAACAGCTGAGGATGAGGAAGCAAGACGATTGTGGGAATCTGAAAGGCCTCTCTCTG AGAGACTCAAGGTAGGACGAGGTGAAGCCTTTGATCCTATCCCACCCCAATTACTCAGGAAGTACATTGC CTATGCTAGGAAGTATGTCTACCCCAAACTCACTCCAGAAGCTGCTACTGTCTTACAGAATTTTTACCTT GAGCTTCGTCGCCAGCATCAGGGTTTAGACAGCACACCAATCACCACAAGACAGCTAGAATCATTGATTC GTTTGACTGAAGCAAGGGCTAGGTTAGAGTTAAGAGAACAGGCTACACAATCTGATGCTGAGGATGTAGT TGAACTTATGAAGTTCAGTATGATAGATACCTACTCGGATCAATTTGGCTTTCTAGACTTCCAGAGATCT CAGCATGGATCTGGAATGAGCAGTAAATCTCTAGCAAAGAGATTTGTAGCTGTTCTGAACAGAGTTGCAG AAAGGACTTATAACAACATCTTCACTATGCAACATCTTAGAGAACTTGCCCAGGAAGCCAGCATCCAAGT TCCTGACTTTGATGGTTTCATAGCATCCCTCAACAATCAGAACTATCTTCTCAAGAAAGGACCAAGAGTC TTCCAACTCCAAACAGCCTCTTTCTGAGTATCCGCCCAAAATAATTAACAAAGCGGGTAATTCAGAAATG ATCAGCATGCATTTACATTATACTTGTGGTATATTCATGAAAATGCTTTCTAAATGACTAGAGCATTGAA AAGGGACCAGTGTTGGTCTGTGGAATGAAAACTCCAAGAGATACTCTTCATTTCCAAAGATAAATAAGTA AGAGTCTTGTGAGTATGAACTCATTTATTGGATGTACTCTTCCTGAGAATGTTCAAGCAAGACTTCACCA CCCCTCTGCAAGTAGAGCTGGCTTTTCCATGATTATCCTTTGAGTGACTATTGTAAGGAGAGGGGGTTAC TGTGCTTCTGTAAGAAAACTCTGAGGGGTATGATTATCCATTTCCAAAGGTAAACCTAATGTCTTGTGAG TAGATCTAATTGTCTATACTTGATTGGCTCTTCTCTTAAGAATATATATCAACAAGTTTTCCAACTTCAG AAACTCACAGAGTACCTGTGAGTCTTAAACATTTCTGTATAAATGTTAATAGCTGATTGAATAATGTACT TTGACCTTAAGGAATTATAAAATTGGTCTTCTGGAGCATGACTACATCGGACTGCTTCAAGGAAGTGTAT TTTAAGAAGTCAAATTTGTGTAGGCCTATGCCTGTTGGAGGATATTTTCAAAGTGACCGGCTTCATGCAA TGCTGATAGTAGTGAAGAGTATCCATGTTCCTTGGCATTGACAATGTAGTCTGTGCTAACAACTTTCATG AAATGCCTCTCTCCTCCCCTTTCTTTGAAAGTTAGTCTGTAAACCACAGCAGTATAAGCTATTAGAGCAG ATTTTAGAAGAATGAACACATGTAGAGATCAGAAACAGCTTTAATTGTATTTAAAACCTAAGATTTAAAA CCAAATAGTTTGTTGAATTCTCTGCAGGCCCTATGTCTGATGGTGTTGATAAGGGTTTCAAATGTCACAC ACTTCAAAAAGTTGTCAATATACATTTGTACATTTTGTTGTAAATGCTTGTATTATTCAATCTCATCCTC AAAAGGGTAGGGTTGTCAGGCTATCAGCATCTTTTGATTTTAGTCAAATCAACTCAAAAGGCAGTATTTG TAAATAAGACAATAGCTATTTATGAAAATATTTGACCATATGTTGACCTGTTTGTAATAAATTCTAAATT TCAA
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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