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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_011683423.2 PREDICTED: Strongylocentrotus purpuratus nuclear protein MDM1 (LOC594510), mRNA GACTCTCTGACGTGACCTACTTGTTGATATGGTGGCAGCCTAGAATATAATGCGACCGAAACCAAACACT GCATTTCCATACTACTGTTAATGTCGCTGGGTTTTTTACGTTTTTATTTTTGGATGATGAAACTGTGAGC TTGCTATCATGCCAGTCAGGGCGAAGTCGTCTTCTGAATATGTGAAAAAGTTCCGCTGGAATGACTCGGT CAAGTCTGCATCATTTACTCCTACCAAAGAGCAAAATGCCCCGCAGGCGGGAATGTCATCTGTTGGCCAT GCTGATAGCTTTGCAATCACCCGCGAGCCACCACTTCAGCGAAGGAGAAAACCGATCCAGGAAGATAACA AGATGACCTACACCACAAAGCAGTTCATGGCTGCAGGTGACTCGGAGGACAGCAGTGATATAGGCAAACC AAATAAGATACCAGGGTCATCGCTTTCAAAGACTTTCCTGAAGAAAGTGGATATGCCCGCAAAAACAAGG CCACCTATTGACAAGACTCTAAAGACGGAGAAGAACAAAGCCCTTGCTGCACAAACCAGAGTCATATCCA AACCTAGCCAGCCACCTCCTCCTCCCAAGAAAGTGGCCCCTCCCTCTCCAATCAGGGCAGCTAAGGGTCC AGCAATCACTAAGACGGGCAAACATGTTCCTAAAGCAGGAGGCGATGCATCAAAAACAAAGGGCAAAGCT GAACAGGAGACTGATGAAGCCTTACAGTACCGTGCTGGTATTAAAGCAAGGCCTGGTGGTCCCAGGTATT CATCAGAGTACCAGCGACAGTTTGCCTGGAAGCAACCATCAAAAGAATCACCTTTGATGGCTGCAGAACA GATGGTACATACCTCTAATGCAAACCTGGCTCCGTACGTACCAGATAAGATACCCCGGCACACAGAATAC CAGAGGCAGTTCAAGCAGCAGAACCATGGTGGCCCTTTGGTACAAGATCAGCTCATGCAGAATGCACAGC AAGAGATCAAAGCAAAGTACAGGGTCAAAACAAAGAGCAAACGAGGTAAGAAGCTGACCCCTGATAAACA GCAACCAGCTGGAGTGCTATCGGTAATCTCACATGATGATCCAAGACTCGTCAAATCATCTCAAAATCCT CAGAGACCTTTCTTTCCACATGCAACAGTAAGAAAATGGAGGTCAGAGTACAAGTCCAACTTCAAAACCC CTCAGGTGTTTAGTTATGAGAATGGAGTATGGAAAGGTGCGGATCCTCCTCATGTCCAACCTAGAGATGA TTCATCAGATAGAGGGGGTAAACCAGAACAGCTGACCAGGTCTAAGTCCGTAGGGGACTTACCCAACTGG TTTTCAGAAGTCTTAGAATTACGTGAGAGGGCAAAAGAGTATCAGAAGCGGTCCCGAGGCACTCATTTTA CCAGGCAGCACCTAGGTCAACTACTGGCTAATCAGGCCAAGTTATGGGAGGAATCCAGTGATCAACTTAG TACATCAAGCTCTATCTCCACTCAAACAACGGGGTCAGAGAAAAAAGATGAACCAAAGGAGGGAGCACGC CCTTCAGCGAGCGCTCCAGACTTGGGCCATGAACCAACGAGAAGAAAGCTAGCTTGGCATGCCAACAACA ACAAAGCCGAGGAAGAACCCAACCCAAACCAAAACATTGCACATCTTGAAAGGAGATCAAGTATCAGCAG TGTTACAACCCCTGAGTCAATGCCAAGCATGTCATCTCGGAGTTCTGAGATAGAAAGCATTGAAGAGAAT GGGCGCCTCACAACCCCAACCCTTAAAGAGTCTGAACAGCAGTCACATGGAAGTAAGAGACACCATTTAG ACAGGACCACTCCTGCAAAAGGAGGTGCCTTGCTGACTTCACCAGCATCGAGAAGAAGAGCCACCCATGT TCCTAAAACCACAGTGACCTATCCAAGGCAAGGAGAGCTGATGAAGCCCAGTAGTCGTACATACGTTGCA AGGTCTGCCCCTGTCAAAGCAATCATTCCTGGTGGTATCACAAAAGGCTTTGAGTATGATAGTGATGATG ATGATGATGAGGATGATGTTGACCTCGACAGAACACTTACACGGGGGCAGCAGACTCCTCCTCGTAATCC AACCCAACAAAAACAGATGGGAAGATTCTTGCACTCTTCACCATCAGCTGGAAGGCGAACCTCTGATCCA CATCCTCTCAACGAGGAACTGATATCCCCAGGCTTCCAGAGGCACTCTGAGAGATTCTTTGAAACCAGTC CCGGGATGCCAACCATCCCAAACAAGATCGAGCCGCCAAAGACGTGGGCTGCCCCCTGGGCGGGTCTCAA AACAGCTCCTCCTGCTGCTGGGAAAGGTCCCCTTGAAAGACCTCACTCTGGGAGGATCGGCGGACGCCCA CAGACGGCCGTCCCACAGACCAGAGAAGCTGCCTCTCAGCAGGTGCAAAGACTCCATTCCTTCATGTCAC CCAGGTCCAACGGTCTAGAGTCTCCCGATGATTGGAACCTGACCCCACCCAGGGGTGGAGGAGGGGGGCG GAGAGACAGCGATGAGCTCTCCTTATCAACCATGTCCAATGCATCCAGCTGCAGTCTAGCGTCTGAGGTA CTCGAGAGAGCCAAGAAGAGGCGTGATGACTTCTGGGGAAAAGATAAAAGAGATTGAGATGATGTGCTTT AGTGAAATGAATTTATAGCAGTAATGGTATTCCTTTTTTTTTTTTTTTTGAACAAATACAACACACAGGG GGAATCACTTTGAGAAGTTAACGATTCCCTTACAGATTAATCAGAGCCAATATAAACACAATTTCAGGAA ATGTGAACAAAAGCTGGGGAGAATTTGGAAGTTGTGTGGTTCTTTCCAGAAAGGAAAGTGGAAATCCGAA ATGCCAGTAGGACTTTTCCCCTGTAAGCTATTTGTAATGAGTGTCTAGCTCATGAAGACCTGATAACTTA ATTCATTCTTTTTATTATGTGTTGTGATGTTATCCAAAAATTAGTTGAGCATCATATGAATCATCATGCA TTGATAGAATATTTAATACTTCATAAATCTCTTGTCTTCATTAGAGACAGTGTTAAACATTAACAGTCTT TCAGACATAAAAGGATGTCTTTTTCATTGAAAATCAAAGCACTTGCCACTTTAATCTCTCTTAAGTAAAC TAAATTTGAGCACAACCTCTTTATATTTTTAGACTTCTGCAAAGAAAACAAAATCTCAGGCAAATTTTAC CTTGTAAATTTTGAGAGGCCTATTTTACTTTTTATCATTTCTGACTTTAAACATGGGCACTTATTTATTT CCTTGTGCTTCTTACGTGTACATAGTGTATAGTATTATTTGTTTTGAAGTGAACTGAATGAAATATGTAA CATTATGTGCAGTTTTGATTTTATTTTTGTTTATTATTTATACATAGCCCATTCATGCTTCGAAGTTAAT TTGTAAATGTCTAATACATGTATCTAATTTTAGACATGAATTTGAATAGAAAATAGTTTGATTTTGTTGA TAAATGGATGAGTGAACATTCAAACTGCCCTTTAGCTGTGTAGTCATTCATATAGGTTTGCAATATAGTA AAGGGATCATGTAGGACCATGTTGTGTTAGACCAAAGCTTTTGTCTGGGCATGATTTGCATATCATAGTC TTTCCAAATACATGTAGATATTTTTTCAGTTTTCCTCCTGTACTCTTTGGGTTTAGATGTACTTTACATT CCACTTTTTCATCCAGTTATAGATACATGTAAATGCAGTACTGTAGCTTGTGGATATAATATCCTGAAGT ACATGTGTTGATATGTATAAACAATGCAAAATAGAGTCTTTTATACTTGCACAAAAATGCATTAATGTTC TATTTTTCCACTGGATATTCATGCATGTATTTTGATTTGGAAAAACATGTAATAGAGTGTATAAAGGGTG AACTAGAAGTACTGTTTAAAATGAAATGAATTGTTGTTTTTTCCTCCATCATATGCAGTATGGATGGATT AATTATTATTTTCACACTTTCCACAAATATGGGATGTTAGCATTGCTAATTAATGACTGGCATGTGTATG GTTTTCAATGTTGGAATCATTTATGGACTGGATGGTTACTGAATTCTCATTAAGAAAAACATAGTTTCTG TAGCCAATGGGTAGATGCATAATGTTAAAGCTGGTTATAAAATTGTATTTATTTGAAGCAAAAAGTAGAA CATTCAAAATTAGGATATTTAATACGTCCCTTTCATGTATTACTAGTAAACCACACGAGTCAATGGTTTA GCAACATTCATATATTTCACCCTATGATTTCAGTAATATTCATGAAAAGGTTAGGGCTTCCTCCAAAACA ATAAATAAATATCAATAAAATGTAAGGGATTTTCCATATCTGACTGAATATGACTTCCTTCTTTGTCCTT TTAAATAAAGAGTTTTTGGAAACGTAAAAATTGCAATGTGCTTCCTCATTTTGTGTAGAAACAGGAAACT GTTGATATGTCATAGTTTTGATTTAGAAACTTAAATTTCTTAAAAGGATATAACAAACATCTGCCACATC AAATAAACAAAAAATGTTTTGATATCAATGTGGACGTGGACTGAAAGCAGATGCATTATATTCTTTATTC AGTTTACATACTTCTCAGAAAGTAATGGGGAAAAACCCGACAATTTTGGGTATTAGGCCCCCTCTTGCTA TTAAAGTGCATCAAGCACCAACAAGTATACCTTGTGCTGTACTGTATTTAAAATGTGTTCTTCAAATACT GCTATAAAATAGATGTAGCAAATTTTAAATACATTCTCAATTAACATAATAATGACTTGTGAGTTTACTA GTCGATGCATTAGTATTTAGTACGTACTTGAATATAACCCAATTTGGAATTGGGTTGTGTTATTAGGGTT GAATTTTATTCTCATATTCATAGTCCTTAACCATTACCCAATAGAATGTAATTTAAAGTGTCATAAGGTA AACGTGTATACACTTTATCTGTATACAAATCCCTTTGTAGGGTGATTAGTACACTTTGAGACTGCCAATC CTCATACCGCTATAGTGATCTCAAAGTACCTTGTATGTTTAATTAGCATGGGACTGGAGTAACAAACAAT GTTCAGGTCTCAGTAGTTTCAATTTATTTAAAAATTATCTGTTACCACATCAATTGAAGGAAATTGTGGC CTGTCACGAGGCCAAGGAAATGGTTTATTGTGTGGGCGTGGGATTCCCCCCTCTGCAATAGTGGGAAAAA AGTTTGCTTGGTATGATAACATTTTCTTGAATTAAGTCAAGTACTACTAAATTGCTGAGTCATTAAGTTT AGACTGTCAAGTCCCCTTTGCATAGAATTAGTAGAAAAGACTGTCATTGAGCTGAAATGCTTTTTTGGTT GAACAGCATTGATTGTTGAAAAAGACCTTGAGTTCAGGACCTAAATAGAACAGGAGGAATAAAAACAATA TCTTGATTTTATAAATTTGAAATATAAAATGAATTCTTGATACTAAAGAATTTGAAATACTGTAAAAGCA AAGTGTTATTATAAAAAGTCTCTTGACTGTTATTAGGAATGAACTTAAATTGAACTCTTTACAAAAAAGT CACTTGGTTTGTAGTGTCTCTACTGAATTGAAAAATGCAATATGAAATATGTGGATTAGGAGATGGAATG GTGTATAAGTGTCAAGCTTATATTGTCTGTTGAGAGCCAGAAGGGCATTAAATCTGTATAAAAGTATAGG AATTGATGCCCTTGTGGCTTTTGGTGGATGATATAATGCTTTGAAACCCTGTGTAATCAAAAAGGTTTCT TTACTCCTTTTAAACGTTGAAATTGACTTTGATGTTTGAAAATGTAGTCCTCGTGAAATGGTTCTCCATG AAAACTCATTTCTCTTCATTACTGCATTCTAGTACTGCTTTGTTCATATACAGAATAATATTCAAAGTAA TAACAAATAAAGAAAAGAAGACATTACCCTGGCCCTTGGCTTGACATTGCAACAGCAGAAGATGTATATT TTCAGTTTTGTGTATGGAAACTGTGATCGAGAGGCAGATTTTGTCTTGTTTGCTAATAAATCTTACTCAT ACATGTCGGAGTATGACAGAAAA
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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