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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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-- 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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>AY701853.1 Strongylocentrotus purpuratus egg permeability glycoprotein (ABCB1) mRNA, complete cds ATGGTAGAGGGTGACCCACCTGCTGTGGGTTTCTCCAATGGCAATGGAACAGTGCAGATGAATGGAAATG GAGCTAGCTTTGATGGACCAGCCGTGATCGATGTGTCGCCTGTACATGAAGACGCTCCTTCTGCTAAGCA TGCGAGAGACTCTCCTCCCCCCGCCTACAATGATGTTGATGGAACGAAGGAACAGGAAAACGGAGGATCT GTGGAAGGAGAGGGTGGAGAGAAGGAAGAAAAGAAAGAGACAAAAGTAGTGGGCACGTTTGAAGTGTTTC GCTTTGCAACTGGTCTAGACGTTGTGTTCATTCTGCTAGCTCTTGTGATTTCTCTGTGCCACGGAGTGGC CTTGCCTGCCGTTCTTCTCCTATTCGGAGAAGTCACAGATTCTTTCATCACCACAGCCTCCGTGAACGTG ACAGACAATTTGGCAGCCTTTGAGGAATCAGTGGACAGTATTATAACTTTCTCCATCTACTATTCCTACC TGGGTTGTGGAGTACTCGCCCTGGCTTACTTTCAGGTGGTGCTGTGGGACGTGGCAGCGGAGAGACAGAT TCACAAAGTGAGACTCCGGTTTTTCCATGCCATCCTCCGTCAAGAGATTGCCTGGTTTGATGTCCATAAA GGCGGCGAACTCAATACAAGACTTGCAGATGACATTGACAAGATCCGCAATGGCATTGGAGACAAGCTTG GCATCATGCTGCAGTACACGGCCACGTTCGTTGCTGGCATCACCATCGGCTTCGTGAAGAGCTGGAAGCT CACCCTTGTCATCCTGGCAGTCTCTCTGATACTAATTGTACCCCTGGTTGGATCTACATCTGTGATTATC CAGCGGATGACCAAGCAAGCCCTGGATGCCTATGCTAAGGCCGGGGCCATTGCGGGTGAGGTCTTCTCAG GCATAAGGACTGTGGTCGCATTCAACGGGGAGGAGAAGGAGATGGTCAGGTACTCCAGCAACTTGGACCA AGCTAAATCAAAGACGGTCAAAAAGGATTTTGCCACACTACTTGCCCAGGGCTTCCTTTTCTTCTCCATG TTCTCCAGCTATGCCATTGCCTTCTGGTATGGCACAGTTCTGTATTTAGATAATGAAATTACACCTGGAG ATATCCTAACGACATTCCTTGCTGTGCTCTTTGGTGCTTTTGCCATTGGCCAAGCGGGTCCAAACTATAG TGACTTCACCACAGCTCGGGCAGCAGCATCTAGCATCTGGGAAGTCATAGACCAGATCCCTACCATCGAC TGCTTCTCGACCGACGGAAAGAAGGAGAAGATTACCGGACAGGTGACCTTTGAAGGGGTCCATTTCTCGT ACCCGTCCAGAGCATCGGTCAAGGTGCTCAATGGGATCAACCTGAAGGTGGACGTTGGGAAGACGGTGGC CATGGTTGGCAGCAGTGGATGCGGGAAGAGCACCTGCATCCAGCTCATTCAGAGGTTCTATGATGTTGCT GAAGGCAGCATCAAAATTGACGGCATTGACATCCGTGACCTCAACGTGAGCTGGCTTCGGGATCACATCG GTGTCGTGAGCCAGGAACCGATCCTGTTTGCGACCACGATCGAAGAGAACATCCGCTACGGACGTCTTGA CGTCACCCAGGTAGAGATTGAGAAAGCCGCCGAGGAAGCCAACGCCCATGAATTCATCTCCAAACTTCCA GAGGGTTACTCCACATTGGTTGGAGAGCGAGGAGCTCAGCTGTCCGGTGGTCAGAAGCAGAGGATAGCCA TTGCCAGGGCACTGGTCAGAAACCCTACAATCCTACTCCTGGACGAAGCCACATCGGCTCTAGACACGGA GAGTGAGGCTACCGTTCAACTCGCCCTCGAAAAGGCTCAGCATGGTCGAACCACCCTCGTCATCGCTCAC CGTCTCTCAACCATCTTCAACTCTGACCTCATCTGCGCTTTCAAGGAGGGCATCATCTCCGAGCAGGGCA CTCACGAAGAGCTGATGAAGAACGAGGGCGGTGTTTATCACACGCTCGTCATGAAGCAGGGCATGAAGAA AGAGGAGGAGGAGGAGAAGAAAGAGAACGAGGTTCCGCTCGATGATGATGATGACGAAGAGGATGATAGC CAAGGTGAGAAGGTCTACAGAGCAGGCTCTGGAAAGAAGAAGCTGACACGGGTGCTATCACGGACACAGT CACAGATGTCTGGAGATGAAGAAAAACAGGATGAAGACGAGTATGAGAAGGAGCTTGAGAAGCATTTCAG CATGATGCGAGTCTGGAAGCTCAACACCCCAGAGTGTGGTTTCATCCTCCTTGGATGCATTGGGGCCGCA ATCAATGGAGCCGTCCAGCCGGGATTCGCTGTCGTCTTCAGTAAAATTCTTGGGGCTTACAGTATTACAG ATAGAGCTGCCCTCTTTGATGAAGTGACTATATACTGTGTTCTGTTTGCTGCCCTTGGCCTACTCTCCTT ACTCGCCAGTATCATACAGGGTGTTGGATTTGGCAAGTCTGGAGGTGAGCTGACACTGAGGCTTCGTAAC ATGATGTTCAGAGCTATCCTCAGACAGAACATTTCTTTCTTTGATGACAAGAGGAATGGAACCGGTGCCT TGACAACTAAATTGGCGACGGATGTCTCTCTTATACAAGGGGTGACTGGAGTAAGACTTGGTATGATCTT TGAAGTGCTCTTCAACATCGGTGTTGGTATCGTGATCTCGTTCGTCTACAGCTGGCAGATCGCTTGTCTC CTTCTCTTTGCCTTCCTCCCCATCCTGTCCTTGGCCGGTATGATTGGTTGGAAGATCCTCCAGGGTAACT CCATCGGAACAGCCGGTAGCCAGGCTGAGGTTGGGAAGCTTGTCTCCGAGTGTATTGAGAACATACGTAC CGTTCAGTCCCTCAACCGAGGACAGACCTTCCATCTGAAGTACTGTGAACTCCAGAACCCTCCGTACAAA CAAGGGATCAAGGGAGCTTTCGCCGCCGGTCTTGCGTTCGGCTTCTCTCAAGCTACCATCTTCTTTGCAT ACTCAGCTACTTTCCGGCTTGGTGCCCACCTTGTGGGTACTGGAGACCTCACCTTCCCTGATGTTTTCCT GTCTTTCTCTGCCTTGATGTTTGGTGCCTTTGGTCTCGGTCGCGCTGCAGGATCTGTGCCAGACTTCTCC AAGGCTAAGGTTGCAACAGGAGAGCTCTTCTATTTGGTCGACCGTAGTCCAGACATTGACACTTTCAGCG ATGATGGGGAGAAGCCGGCGAGCTACGGTGGATCGGTTAGCCTCAACAACGTTCGGTTCCGCTACCCGAC CCGTCCTGATGTCCCTGTCCTGAGGGGGCTGTCCGTCTCGGTGGACCCTGGCGAGACCCTGGCTCTGGTC GGCAGCAGCGGTTGCGGCAAGAGCACCACCATACAGCTGATGGAGCGCTTCTATGACCCTCACTCAGGGA CTGTGATGTTTGACTCCCATGACGCCTCGCTGCTCAACACTCGCTGGCAGCGCGCCCAGGTGGGCCTCGT ATCCCAGGAACCCTGCCTCTTCGACATGTCCATCGCAGAGAACATCAAGTACGGCGACAACTCTCGGGAA GTCTCCATCGAAGACTGCATCGAAGCGGCCAAGAAGTCCAACATCCATGACTTTGTGGACTCTCTTCCCA TGAAATACGACACCAACGTTGGATCCAAGGGCACCCAGCTGTCCGGCGGTCAGAAGCAGAGGATAGCCAT TGCAAGGGCACTGGTCAGGAACCCCAAGGTCCTGCTCCTGGACGAAGCCACATCAGCCCTGGACACTGAA AGCGAAAGGGTTGTACAAGATGCCCTGGATGAAGCCAAGAAGGGCCGGACCTGCATCACCATCGCCCATC GCCTCTCAACCATCCACAATGCAGAAAAGATCGCCGTCATCCGCGAAGGAAAGCTCGCCGAGTTTGGCAA GCATGAAGAGCTGATGGCTATGAAGCAGCAATATTATTCCCTCTACACTGCCCAGTCTATGCAGCATTAA
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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