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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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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
???blast.query???
>XM_041621927.1 PREDICTED: Lytechinus variegatus cilia- and flagella-associated protein 65-like (LOC121425818), mRNA GGCCCAGCGGCGACTGTAAATTTATTATGTATTTTGGTTCAAAACGTTAAAATCTGGGAGTGATATCATC AAGTGTTGACTAGGAGACCTCCATCATGCCAGTGGCAGTGCCCAGGAGATCCTCCTCTAATGTTCAACAC AAGACAAACCATTTTGGGATTGAGGTGGTCAAAGGGTTGACTTGGAAAGGATGGGAGCCAGGTGGTGAAT ACACCAAGCATGTAATCTTAAAGAATGTACAGGTCAAGACACAGAAACTGAAATTCAGCTCGCCAAACAC AAGATTCTTTTCCACCCTCTACCCCGAGCCTATAGTGCTGAGTGCAGGGACCAGTTACAGTCTACCTGTT ACATTCAGACCCCTGGAGAAGAACATCTATGTGGATAAGATTGAATTCCAAGCACAGGATGGAGTATTTC AGGTCCCCATGCAAGCTGTGCTTCCGAAGCATGAACTCTCTCTACCTAACCATCTTAACTTTGGCATGTG TGCCACTAAGGACTTCACCAAACTTACATTTGAGCTTTCAAACACAAGTGAACTAGTCACAAATTATGCT TGGTCTGTGAGCTTACCTTTTGTGTTGGAGCCATCAACGGGAACACTGGAACCCAAATCAAAATGTACCA TCACAACAACATTCAAACCCACCTCTGCCGTTGTGTACGAGACAGTTGCTGAAGTGCATTATGGGTCAGA TTCCCTGTCTTGTAAGAAGACCCTCAAGTTAGAAGGAATAGGCAAGCTACCTCATTTGTTGGTGGCCCAG GCTGGCCGTCATCCACGAGCCATGGAGAACCTGAATATTGAGAGTGTAGTGTCATTCGGTGATGTATCTA TTGGATCTACAGCAGAGAAATGGATTGAGTTACATAATCTTGCTCCGGTTAATTCTCCTTTCACTGTTGA CCATCCCACTGCTACAACAAGAATTGACACTGTGTTTTCATGTCAGCAAAAATCTGGAACAGTCCCTCCA GAGAGCATCAGCAGGATACCTGTGAGCTTCACTCCAAACACAGTTAATGAGGAAAGTGTGGATTATCTTC ATATCCAAGCCATTGGCAAAGTCAGCAAAACCATTGTCAAACTTCATGGTAGATGCAAAGGGCCTGTGGT AACACTTGGTTCACAAGTGCTGAATTTTGGTCTTCTAAATCTTGGTGACTCCGCAACAAGGACTCTAGAT ATCATCAACCAGTCTGATGTAGCAGCTTATTATCAGTTTATGATAGATGGTGAGCAGAGTGTGTTTGAGT TGAGTGTCCAGTGTGGTAAGGTAGAACCACATACCACTCAAACCCTGATTATCACATTCACGCCTTCCCA TCCAATCAACCATTACAGGAGAGTTACATGCCTTGTACAGAATCAGGATCCATTGTTTGTAGATATGATT GGTACCTGTCATACAGAACTGTGTAAACCAGCTGTTCTTCAACCCATCCATCTTACCAGATATCGTCAGC ATGTGGCTGGTGGATTCTCAGTCTTCCCTCCTGAGCATTTGAATGAGATGGTGAAGGATGGGAAGCTTGC ATTGGATTCTAATCGTTGCCTGACCCACCCTTCGGCTGAAGCTGTGGATGATCTTGTACAGAAACCTACA CCCCTCCCTCCCATGAAAGAGTATTTTGATGACGGCAGACATGGGGAATATACACAACCTGTACATGTGA CCATCGATACCACCCATGTTGACTTTGGGAACGTGCAAGACCTTCGCCGCCCTCTTCAGAAGACCCTCAA TGTCACAAACCACACCAAGGGAAAGATAACAGTCACCTGGATGGGAGATGAAAACCACATCTATTCTATC TCACCGGTGTCATCCGACATTCCACCCCTCAAGATGACATCCTTCAGAGTGACATTCAAACCGAATGCTC CAAATCAGTTCTTTGGTGCAGAACTAGAAGGTTATGCATTTTATAAGAGCATGAGAGACTATAGGCTTGT TCAGGATGAGACATTCTGTCCACCATGGTGTCTGACCGTCGCTGCGGTTGGTCAGACATTCCAACCAAAC AACGAGACCTTCCTGCCACGCTACACACTGGACACCAAGAAACTGGTTTTCCCTGCTGTTGACATTGGAG ATTCCATCTACAAGACCTTGTTACTTAGCAATGCAGGAACCACACCCATCCATTTTACCATTCCAGATGA CCCATCAGGAACATTCAAAGTCAAGCCATCGTCAGGCTTACTGAGGGACAAACACCAGCTCTTTGTCTTC AAGGTCATACCAAAGGTCAAGGACAAGACCCTTAGACATCAATTCCGCTGCAGGCTCAATGATTCAGACA AGCACATCCAGGAAATAGACTGTCTTGGGTCATCAGAACAACCAAGGGTATTGCTTGATACTGAGGGTGT TTTGTACTTCAAGAGTACTTGCATTGGTACATCATCACGGAGGAGTTACAAGGTCAAGAATACATCTCGG ATTGCTCTCAAGTATCAATGGAAGGTACCCCACGCCCAGAAGGATCGCCTCTCCGTTTATCCAATCACCG GTATCATTCTGCCCAATGAAACACAGTCCCATGTATGGACTTTCACGCCCAGTGAAGAAATCAAGTACGT GATCAAGCCATCTATGTATGTTGAAGACATCAATCACATTGGGGATCTGACAAGACGGAAAGCATTCTTG CTTAGAGTTCTTGGAGAAGGATCTATTGGCCGAATCAAGTGTGAAGATCCTGTGGTGGACCTGTCAGATG TGGTAGTCAACACAGCTGTTACCAGAGACATTGTCCTCCATAACAACAGCAACTGCAGCCTCCATTATGA GCTTAGCGTGGAACAAACTATGCAGGGTAGCTATGCAGAAGAGGCACAGGAAACAGATGATCTTGCACTC ACGCTTGACAGAACAAGGGACATCCTTCCTGCGCGATCAAGGCGTGTCATCAGGGCAACCATCCGCCCCG AGAGACGCCTTGGCTACACCTTCTTCGTCGGTTACCGTCTCCTCACACCATCCATCCCAGACCTGGAGAG AACACAGAAGAAGGATGAAGAAAATGAGGGGAAGGAAGAGGAGAAGAAGGATGGAGAGAAGAAAGAAGAA GAGGCAAAGAGTGTTTCTGAGAGCGAGGAGGGTCCGTTGGTTCCTGTCAGTGACACAGTGCATCAGCTTT GTGAGATGACAGCAGTAGGTGTGTACCCCACCCTCCAGATCACTGATGCCCGCTGCTATGGCAGTGCTGC TGGGATAAGCAAGGCGAGGCTCTGGAGTCTTTTGTCGCTAGACAACCTGAACTCTTGTCTAGACTCGGAC CCCTCTCCTGTAGAGCTCATCTTCTCTCGTGTTACAAAGCATAACATGCGTCGTAAGGCAGTGGTGTTAA CACAGGCACTGCTGGATTTTAACTTCAGTGCTTCACCGGTAGGAGCAGAGCCTTGCATTGTTCATCTCAT GTTGGAAAACACAGGCACAGTCAATGCAGACTGGGCTTACCTGTTTCCAACTGATCTCCAACTGGAGATG GAATACTGGGCAGAGACTGGAGAATTTGATAATGATGAACTTCATGAGATGAGGATTATGGATAACAAGT TGTTTACTGTAGAGCCAAGCAGTGGATCCTTGATGCCTGGTCAATGCCAGACCGTCACTCTGACCTACTG CCATGAGTTTGCAGGAACGGATAGACTTCCTGTTCTATTCAAGATCATGAGAGGCAGAGAAGTTTTGTTA AACTTCACTGGTGTGACAGTGAGCCAGGACAGGCGCTACGTCCACTTCCCCAGCAACAAGCACATGTTCT CCCCCGTGCCAATAGGGGGCGTCATCAACCCTAAGCAGGTCTATGAGCTGTATAATGGCGGTGGTATGGA GGTCATGTATCAGTTGGACCTCACTGCTCTGGAGCAAATCCAAGAGGAAAACTTCAATCACAGGATCTTT GATTGCCTTAATCCAAAGGGTGTAATCCCAGCTGGTAGAACAGCCAAAGTGGAATGGATCTTCTCCCCAT TGGAAGCTAAGACTTATATGGTTGATGTTCCTATCCACATCATCGGCGGTGACACTGCCCTTATCACCTT CACTGGTGTAGGCTATGACAAGCGCAACCTGGGTACCACCATGCCCATGACCGATGGTACAGAACTCACC GGCGTTCCTTCCGTCCAGAGCATCCCTCTCAACGAACAGCTCCTGTATGCCAGCGAGGAGAGAGTGGCCT TTGGGAATCTTCCACTGTTTAGTGAGCAGCGCAAGGTGGTGTACCTGACCAACCGATCACCAAGCCATAC TGTGTCCTTTGAGTGGTATGTCACATCAGAGGATGATTCCCAGGTGTTGGACATTCAGCCACCCCAAGGA ACCCTTCACCCAGGAGAGGGATGTATGTGTAAGGTAGTCTTCACAGCTATAGGAGAACCTTCATTCTATG ACCTGGATGTCATCTGTGAGGTTGCTGATGAGACAATCATGGCTGAATACAGGAAGGAGCTTCAAGACTG GGAGGCAGAGAAGGAGAGACAGAAATATGAGTTCACCATCACTGAGTTTAGAGACGACACTAAGACGGAT GGAAGCAGTGCAGGCCCCGAAGGCAGGAGTCGTTTCAAGCGGGAACGCACTAATTCACCAGTCCCTCCTG AGGAATTCAAGCGCTACCAGACCTTGCCACCAATCAAAAATGTTTTGAATGAGAAAGAACTTAATGAGAA GCATGCCCGAGAACATTCTGCAAAAGATGGAAGTAAGCTATGGCCCAAACCTGAGAAACCGGACACGTTT GTCATGCACCTCGGGGTAACAGCAAGAACTCACACCATTGCTGAATTCCAGAGCAACTTCCCCAATGAGG TCCAAAAATTCTTCATCGACAGGGGTATGAGTGAGCGAATGGTGACAAGCGGTAAAGGAAAGCGATCGCA GAGAGATGAATCAATGGAACCTGAAGATTGTGATGAGATGGAGGCTGGAGTTGTCGGTGAGGTCATGAGC ACCATCGTCAGAGCATTACTTGATGATCATGATTTCCATGAGGCCCTGAGGGACATCCCCAACGAACCAA TCCCTTACTTCACTCAGTTTGGAGACAGACCACAGTCTCTCTCCCGCATGGAGGACCTCAAGATCACCTC TCCTCCCCCATCACAAGCTCAGCCACATGAAGCTATGGAGAGTCCCACTAAGACGGTCCAGATCGAGATG GAAAGTAGGGGAGTGCGTACGCCAGAGAGCACAGCTTATGGGGTGCCCAGCAGAACAATAATGCATGATT CTGTTACTGAGCAACCTCCCTCTGCTCCCACTGGTGAAGATGTAGGTCTCATGCCTTCAAGGTCTGTACT CCAATCATCCCCTGGCATCCATACCGAGTATGACTATCAGATCAGCTTGCGTGAGGAGAAGGAAAGACTG CAACAACAGAATCTTAAGAGATTACCAGAATTTGCTAGCACTGTGGAATCGACTCTAGATAACACCCTCT TCAACATCATGATGGAGGCATTCGGAGGAGAAATCAACTTGACTGCCAGACCCCGCCTTATAGCCCTACC CCCTTCCACCCCTCCACGTACCCCACCCACAGCACCAGGTGCCAAACCCAAGCAAGCCTCTGTCATGGGG ACATGCACCAGACCGGGGTCGGGGAAGACATCTAAAGGAGAAAGACCAAGCTCGGGAGGGAAGGAGCGGT TGGTTGACACGCCCAAGGTCTCGGTAGAGATGGTGGGATCAACGGGGAGGAGGGGGAGCTACACCTCCCA AGTCACTGCAAAGTAAAATTGTGGGGAATTTTGGGTACTGATCTAAACACATGTTTGAATGTCTTTCATA GAAAATTGTTTATGACAGTCGTGACATGATTTACTTGATCCGTCCTACAAAGCATTCTGTGTTCAAATTC AATAGGAATATAGTCAAACACCTTGAGTTCTATGAAAAATATTCTGTTATAT
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???blast.false???
Automatically set to False for sequences longer than 4500 bytes
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BLAST time is limited to 30 seconds