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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_041620863.1 PREDICTED: Lytechinus variegatus tudor domain-containing protein 1-like (LOC121424965), transcript variant X1, mRNA TATATCGGCGGCGCGTTGGGATATTATAATTATTGCGTGTGGGTGCAGCATGCAGGTCAGGTTCTACAAC ATACAAGAGGAACACCAATACAACCTACATTTGTAATGGATAACTGGCACCCCATGGCAGACGATTATGC AAATCCTTCTTTTAACTCGTACAATAAGGGTCCTGCTTCCGGCCTCAGAGGAAATGGGGCAAGCCGCAAT GGACCTAGGAGACATCGTTTGTTCGTAAATGGTTTGCCCAAGGAAATGACAACAAAAGGGCTGGAAAACT TATTTTCCTCTGTAGCCACAGTGACAGACTGTTTCGTGAAACCTTCTGACAAACCTTATACTTATGGGTT TGTTAATGTAGGTACGCCAAAGGAAGTAGAGAATGCTATAAGGAAACTTGACGGTCATCGAATTAAAGAT ACATGCATCAAAGTAGCCGTGGCAAGAGAGGGTCCATCCGAGCATTTTAACAGAGATGGTGGTAGGCCAC CTTTCAGGCCAAGTCCTGGTGGTGATGCGCGGGAGACGATGAGACCTCAATCCCATTCAGCACCATCCAG CATGAACAATGGTATCCCTGTCAATGGCTTCGCAAAGGGTGTGGATGATGAGGCTCCCCAGAGCAACAGG TCCCCTGCCCAACAGACCTCTCCAATGAGCAGCATGGTGACTGCAGGTTGTGAGGAATGTCAACGACTGC TAATGGCCCTGATGACTCACATGCAGCAGAACCATAGCCAAGGTCAAAACCAAGGCGGCGGAAAGCAAGA GGCTGGTTCCAGAGTATCTCGTGATGTAACATCCCCAGCCAATGGCAGGTCCAGTAATCTGCCTTACAAT GGTCCTGGAACCAGGATTCATCGGTCAGATGATGACGCAAACCAGAGGCAGGTCAACAGTCTCCCTACAA GGGGGAGGTCTCCAGCGGAAAGAAGTCAGGGCCAGAGCTTCCAAAGCCCTACAGGAAGTGCATTCAGCAA GCCCAGTCCGACACAGACCAAAAATCTTGATGTGAAGAAGCCAACACCAGTGCCGATGCCTAAGGATCAG GATGCTCAGAATCAGAGTCCACCAAAGGTGAAGTCACCCAGAAGGGCGTCAGAAAGGAAGGCAGAATCTG ACTTGAAACCGTGTGAAGCATGTGGGAAGTCAGGGTCTAAGCATTGCTCTAAGTGTGGTGCTCCATACTG CTCTGTTGTCTGCCAGAAGGGTGACTGGAAGAAACACAAGAACAAGTGCAAACCGAGCCAGTCCAGTGGC GAACAAAAGGACACAGGTGCGTCACTCCCTGCATTGTCATCTCTTAATCTGAAGTATGTTGAACCATCAA AGAAAGAAATGAGAGTGGTACTTACTCATAAGAACAACCCTGGCTCATTCTGGGTTCAAGTTGGCGATGA GGAGAATGTGAAGTTGTACAATAAAATGCTGGAACTCCTCATGGAGCAAGTACAGGCTTCTGGACCTCTA CAAGACCCCAAACCTGGGAAGATGTGCATATCCAAGTATGCCGTCGATGATTCATGGTATCGAGCAACCA TCCAGACAATCAATAAAGAACGTGTAGCCACTGTCTTCATGTTGGACTTTGGTAACACCGAGGAGGTTCC CTTCAACGACCTTCGACCTGCATTGCCAGAGATAGTAGAATTCCCAGTATTTGGATTGCACTGTGCTATA GCTGATATAGAGCCAAGGGGTAGCTCAGGCAGGTGGTGCTATGATAGTGTGAAGCTGATGGACAAACTGA TGGAGGAATGTCCATTACCCACAGTACGCTTTGAAGGAAAGAAAGCAGGCATCCACCAAGTTGTTATGAA AGTCGAGGATAAGAAATTAGGCACAGTGTCCGTTGGCGATGCTTTGATCAAACAGGAACTGGCATGGCCC AAGGGTAGACAAGCAGCACCGCCACCCAGGAAAGTTCTATTGAAGAGCTCTATGAAGCGTCTGGAGATGC CTTCCGGGGGAGAACCGGTTAGGATTGCAATCAACAACTATGTGAACCCAAGGGAGATGCAGTGCCAGGT TATCACCCCTGAAAGTTTGAAGGCAATAGAAGAGTTGTCAGGAGCATTGAATTCTTGCATGGAGGGCAAG TCACAGCCACCTGGTTTCACCCCGATGCTTGGTGAAGTTTGTGCCGGCAGGTTCACACAGGATGACCAGT GGTATAGGGTGAGCATACAGTCTGCCAAGATGGACGGAGGTTACTTTGTGGAGTACATTGACTTTGGTAA CACAGAGGTCCTTGATCCAGCAAGAATGTGCCCTCTACCAACCCAATTCCACAACACACCCCAGCAATCG TTTGTTGCTTCCTTCGCAGATCTTCCTGCTGGTGATATCTCCCAGGACCTCTCCCAGGCAACCATGCAGC GGCTCAGCCAGTGCAAAGAAGGATTCTTTCTGGCAACTTTCACAGAGAAGGACGACACAATCTTCGTGAA CTTGCAGGATCCAAACACAAATGAGAACATTGCTGAGGCAGTTGGGCTTGTCCAGCCAAAGGTCAAAGCT CCCAAGGTTTCAGACATGACCTTCAGGACATTGCCATTGAACAAAGATACAGAGTTTGTGATTACCGAGG CGGTATCACCTGGAGAGTTTTATGGCTTCTCCCCGTCTGATGCTGAAAGTTCCCAGATTCTAGGATTGGT TGGAGAAGGAGGAAAGGAGGTCAGTAGCCAGCCAGCTGTTCAAAATTTCAGACCAGGAGTTGGGAATGTG TGCTGGGCTCAATTTTCGGAGGACAAGGACTGGTACCGTGCCGCCATCCTGCAGGAGTTGCCCAACGACG AGTTTGATGTCCAATACATCGACTACGGCAATGGAGAGAAGGTTCACTTATCTCTTATGAGGCCAATCAG TGATGACATAGTGGCTGTACCAGTACTTGGCATCAGATGCTGTATTGCTGGACTTCCCAATGACAATGGA CAATGGAGCGAAGAGATTAATAACACCCTGAAAGAGATGACTGGTGTTGGAAGCAAGAAGATCATCCTCA GAGCCATTGAGCATAGGAAGAATGTGACATATGTAGGGCTTGAGGATCCAGCTACAGGCCTGAACATATC CCAGGAAATCATCAACCTGGTGAAGGAAGCTTCAGGCGTTGAACCATCTGTAGTCAGCGGACCATCCTCT CTTTCTTCCCATCCATCCATTGGGGAATCCCCTAGAGGACACAGACAGCAGAAGCAGCCCAGTACACCAA ACCAGCCGCGTAGTGCTCCGGTCATCGCGCTCAGTCCAGAGCAGATACAAACCATGCAGGAGCAAATGGC CATGCTACAAGCCCAGCTCAATATGGCTAAGGGCATGTCCGCATAAGGACACGTGTATGTGAAGTCTAGT CAACCCATAGGTACTATGCTGTCAAGTTGATCTCTTGAATTTCTCAAGGTCACAGGCCAAGCAAGATTAT GGTTTCTAAGTTAATAGTAAAGTCTGAGTGTTAACCTTTGTCCAGAGAAGATTGGTAGAAACGTACAGAT TGCTCCAGTTTCTTAGCATGCAAAGATTTTTTTTTTTTGTAATGAAGCTGCTCGTTTTTATTTTACCCTA CAAGAGAGGTTGAAAATCTTATCCTGCATGCTTTTCTCAATAAATTTGTCAGATAAGCATAGTTACCAGT TTGTGACTGTGGCCTCAGAAGTTAAGCATCAATCATGTGTTATGTTGCAGTCAGAGGTCACATGGTAAGG TCAAAGGTCATTTTCAGGTCAACATTAAAGTTTACGTGCAAGGCTCTTATGA
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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