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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_038204857.1 PREDICTED: Patiria miniata PH and SEC7 domain-containing protein-like (LOC119731654), transcript variant X1, mRNA TAATTTGTGACGACCAGCGATATCGCTAAAAAATGGTCAAAATAATCCGTGCATACGTCATGTACGTGTG TACCGTGCAAACATGGACGAAATGGCCGACGGGGTGAAAACTTTGAATCTTCAGCGGGCTCTTTCTGGGG GATTCGGTTTCTCCCTGATGGGAGGAAAGGGAACTAGTTTTCCTCCAGTCATATGCGACGTTCTGAGCAA TTCGCCGGCCTCGAGGTGTGAACAGATGCAAGTCGGGGACATCATTCTGGAAATAAATGGCGAACTCGTC GAGGGCAAAACTACAAAAGAAGTTGTCACCAGTTTGATGCGTTCACCGGACGACCTCATCCTGAAAGTCA AAGAAGATACGGATACAAAAGCAAGAGTGCTCAAGTTTCTGGAGCCCCTAGAAAATCCTCCCGGGTCCAA CCCCAAGATCAAAGTGAAGTCCATCGGTCGCGCCAGCCCCAAAGTGAAGCGACAGAAGAGCAAGGAATCC TCTCCGTCCAGAACTGGTCCAAGCCCTACGTCGACCCCCAATGAGAGGAACAACGATAGGCCCGAGAATG GACGGACTAGTGCGGGTTCGGATTCCCCATCGCAAAAATCGGATGCCAGTTCGGGGAGAGTTGATGGCCA TATAGGGCAGAATGCGTCCACAGCTGACACGAGTGTAGATTTAGAAGTCAAACAATGCAAGAGCGGGGGT GTGATTATCGTAGAGAGCCCTAAAAAATCCCAGCAGTCTCCTGTGAAAGCCAACAACGTCCATTCTCCGG ATCACAGGATAGCTGGCGGTGGCCCCGTTAACGGGATTGCGAGGGATCGATTACGGGAACGGGATGTGCC AAGCGCCAGGCAGGTGTACGCAGCCAATGCGTACTCGTTTAGCTCCGATTCCAGTATTTCCGACATTCCA TCCGTGCAGGTTATGACCACGGTGGCGCAGATACACCGAGAAGACTCGTCGCTTGTCGCACGGACGTCAA TCGAACAGGGGAAATCTGATGCGGCAGACGGTCAGCTTCTCAGCAGTCCAAGTCACAATCACAAGTACCC CAGCCAAGAATCTGATTTCAAGCACAACGATATCAACAGGAACATTAGCAAAATGCCAGTTGTTACGTTA GCCGAGAGCGAATCGTCCCAGAGTGAGCTATCCTCCCAAGCAAGCTCTTGTCCGGAGGAACCACTTACAG ACTCGCCTCTCAGAACTCAAAAACTCGCAGCGACCTCGAAGCATCCCGCTGGTAGGGATGCCACCGAGTG CGAACGCGCCACGCAGGTTGACGTCTCGGTGGGAGGAGACAAGGAAACGGATAGCGTGACTTACGACTCT GGATACGCAAGCACGTCATCTGTCGCCAAACAGTGCACAAACCTCTCCCAGTCCCAATCAACTCAGACAA ACTTGGACCCCGACACCAACAGGTTGGTGGAAAACTCCGTGGATGAGCAGCCCACGGATGAGTCCCCAAA GGCGGCTGCCCTGGTGCGTCATGGGAGCGATGCCACGGAGACATGGAACGGGGGAATGGGTTCCAGGACG TCCAGCGACCACAGCGTGAATTCCGAGGAATCCGAGTGTCTGGACATGGACAGTTTAGGTAACGCTCTAC AGGCCGGCAGCAAGAATCTAGACGTGCCGTCAGCCCAGCGGCTTGCCAAACGGTTGTTCCTGTTGGATGG ATTCAAGCGGTCGGATGTCTCAAAGCATTTAAGTAAAAGGAATGACTTCAGCAAACTGGTTGCCGAGGAA TACGTCACCTACTTCGATTTCAGCAACCTACCCCTGGACATCGCGCTACGCAAATTCCTGGCCAAGATCG CGGTGTCGGGCGAGACCCAGGAGAGGGAGCGCGTACTGCTTCACTTCTCCACGCGGTACCAGCGATGCAA CGAGATCGAGTACCGGTCAGCCGATGCCGTACACACCCTGACGTGTGCGCTGATGCTGCTGAACACCGAC CTCCATGGACAGAACATCGGCAAGAAGATGTCGCTGAGCTCCTTCATATCCAACCTGGAGGGTCTGAACG AGGGTGAGGACTTCTCCAAGGAATCTCTCAAGATGTTCTACCAGTCCATCAAGTCCAAGCCGCTGGAGTG GGCGTGCGACGAGGATGAGAAACTCCTCAAGCGAGGGAGCAGGACAGGCAACGGGACCATGACTATCAGC GGCAATCCGTTCCTTGAGGTCCAGAATGACCCTAATGCTCCAGTTTACATCAAAGGTTACATTATGAGAA AAGTAACCAGGGACGCTGAAGGAAAGAAAAATCCTAAAGGGAAAAGAGCGTGGAAAATGTTCTATGCAAC AGTGAAAGGACTAATTCTTTATTTACACAAGTCTGAGATGCACCATCAGATGCACTTCAACAGCCCCAAG GAAGCGGTCAGCATCCACCACTGTCTTGCCAGCAAGGTGCCCAACTACAACAAGAGACCCAACGTCTTCA ACCTGCGTCTTGCCAACTGGAAGGAGTTCCTCATGCAGTGTCTACCATGCGATGACAAGCAGAATCAGGA AGCAGGCGCCACTACTGATTCTAACACACCCCAAGGTTCCAGTGACACACAAGATTTGCAGAACTGGATG CAAGCGTTGAACCTAGCCTCAGCGGTTCACTCCGCTCCGCCGTTGCCGGCCGCCGTCGGTCTGCAGAAGA CGTTCAGACGACCGCTGCTACCATCATCACTAACCAAGCTGAACATGCAAGAGCAACTTGCCAACCACGA GAGGAAAGTAGAATCCATAGAGCAGGAGCTGGAGGACCATCGGACCTACCCTCCCGATCAGGGGCAGAGG ACGTCCGTGATGAAGGACTACCAGATCAAGCAAGAGTATCTGGAATTTGAGTTGTCTCGCTTCAAGACCT ACATCTACCTACTCCGCTCCCAGCCCACCTTCCCCATCGGCAAGTACCCGCTGGAGGAGGTCATGCCCCA ACCCAAGCAGTCAGTGGACAGCATGTCGTCCTCCACGTCAAGCATCTCGTCGTCGGAGGGGAGTCAGGGT GCCAGTCCACAGCAGCAACAGAACCAGATGTACATGTATGAAGATGGTGAAGTAGTCAACCGTTACTACG ACGACACGGATGACACTGATGAGGAGAGTGACTCGGACACAGGTTATCAAGAGGACTATTCCGTGATGGC AGTAGCACCTTTCCCTATCAATCAATTTGACGAGATGACAAAGTTGTAAAAAATGAATATTCATAAAATG GACTCGATCTACCTGTCAGTCGTACAGTGCATGTTGACCAATTAGATCGCGACTTTTTGGTAAGGTGACC ACTGAAGCTCGGTCAAAGAAAATATTAAATTTATCGATTTTTTTTTATGCCAGTTACAGAATATTCTGAA CTTAACATCAAGAATTAGTGTATCATAATTGACCGATCAGTTACTTATTTTATATGTATAGTCATAAAAG TATATTCAAAGTGTATTCAATTATTGTAAAGTGTGAATAAGGCATTATAAGCATCAAATGTATGTAAAAA AAAAATTTGTCATTATAGCTTTGTTAAAACTATATTTGTTAATACTATCCTCATTACCCTATTTATGACA TACAAATGACAAAATGGCCATTCTAAGACTCGAAAAAAAAGTGAAACACACAGACAACTGGACTAAACTT ACTAGAGAAAGTTTCATGACCTATCCAGGTCACTTCCTCAGCACAACAGACTTTGAAGTTTATTGGTATA GGCAATCAAGTTTTATCACAGTATTTTCTTTTTAAGTTTTGGATTTTTTTGTTTTTAATACTGAATAACT CAGTCTCGGAGAGCCAGTTTTCACGTCAGCAAAACAATTTTGTTTTAAACAATGAGGTAAAACAAACATG TAAATTGAACCAAATTTAATGAAAACTTGAGCCGAAGAAAAAGTGAGATTTTT
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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