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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_038222236.1 PREDICTED: Patiria miniata cyclin-T-like (LOC119745697), transcript variant X2, mRNA GATTTGAAGTTGCAGTAGACCACCCACACACCCACGTAGTCAAATGTACACAGATGATTAGAGTTTACAC CTGACCACGTTCTGTCTGCAGTACCGACCGACCGTCGTGGCATGCGTCTGCATCTACCTGGTGGCCAAAT GGTCACAGTGGGAGATCATGAAGTCCAGCGATGGCAAAGATTGGTGGGAATATGTCGACCCGACTGTCAC CAAGGAATTGCTGGATGAGCTTACAAAGGAGTTTCTGAGAATCTTTGATGCCTGCCCCAGTCGACTCAAG AGGAGAATCTCAAACGAAAAGATAACGTCTCAGTCTAGGAAACGCCCCAAGGAAAGCTTCTCCGAATCTC ACTCAGCCAGCACTGCCAAGTCTGTCCCATCCTCCTCTGCCTCTGTCTCCTCCGTCGACAGCGGGCTGCC TGGAAGTGGAAACTCGGAAAGCTCGGTCAACACCCAGGAGCTAATCGCCACAACCTCAAGTCAGGGTGAC AGCCTCTCATTGTCTCAGGACAACTCCCACACAGAGGGAGATAAGCTAGGTTTGCATGAGATCAACATGG GCTTGCCCATGATGGAAGCCTCAATGTTTCCCCTAGAGTCTGAATACATGAGTGGTGTGAGTTTCAACCC TGGCGCAGAAATCAAGCACGGTCCACCTAGCACACAGTCTGATGCAGATCAAGGGAAGCCGATGGACCAG CAGGGCCATCCAGTCAAGAAGTCTCTGAAGGAATATCGGGAGCAGAAGGAACGCGAAAGGATGAAAAATG CTCAGAGCAGGGAGAAAGCACCTCCCAGACCTAGTCACACTGCCTCAAGGCCAGGTGCTGTGTCAAATCA GAATCTCCACACTCCTAAAGTGAATGTGGATGCATCCCATACTGACCAGCGGCACAGGGAAGGGTACCAC AGTCAAGGAGGCCAGAAACACAGGCCAGAAGACAGACATTTGCCTGTAGAACACAGAAGAGCAGAAAAGG CTTCTGGGGTTCGCCAAGAGCAGTCAGGTAGCCACCCTCAGTCCAAGAGTTCTGGAAGACCAACAGACCT CAGACCAACCAGAGACCAAAGACCACTTTCTCAGCATAGACCTCATGATTCTGGGAGTCAGCCAAGCCAA GCTAGTGTCACAGACTCCAGGTACTCCAAAAGCCTGGATCAGTATCATAAACACAGCCGTGACTCCGTTC CACACAGCTCAGACAGGAAGCAACATTTGGGTCCAGGTGAGCAAGGAAAGGAGCACAAGAGAAATGGCTT TGAGAACAGAGAGCATAGTGCTAACCTCAGACTGCCAGAAGCTCATCAAAGGTTACTTAGTTCAGCTCCA CCAACCAAACCACATGCAACTGCATCCCAAAGGCCTCATACAGAAACTCTAAACGCACACAGTTCTGAAA AAATGCCGACATCAGAATTACATGGAAAGCCACATCCAGAGACACTAAGACCATCAAAATCTGAAATGTA CAGATCTCATCGGCCGGAGCATCAGGGAAACTTAAAGTCTGAGAAGCACAGAACACCCTCATCAGAGACA GTAAAACTTCAAAAGTCCCAGTCACTTAAGCCACACAGATCCGAGATTCCTAAAGGGACCTCAACTGAGA AAGAGAGGACACAGCCAGCTATTCCACCACTTGTTCCTGCAGTTGATACCAAAAGAGAACAACGATCAGC ACCAACTGTTGAGACTCAGAGGGTAGAGCCGCCACAACCAATTTACCAGGAGCTTCCCAGACCTCAAAGA CCTGAACGGGTGTTACTACAACAGCCACAGACTCTAAAGGTTGACAGAAGAGTCACACAAACACCAAATA AACATGATTCATTAAAGGTGCGAAAAACAGAGGACCAGGTTTTGCATAGATCTGACACTGTGATATTGAG CAAAACAGAAGTGCCAAGTACGAAGAGCGCTGGGGTATCCAAAGAAAAAGACCCAGAAGCTACAAAATCG CTTAAATCTGATGTGCTATCAAAACCTCATAAAACTGAGGAGTCAAGATTACCGCGAGCAGAAACTCATA ACACACAACGAGTGGAGATTCCTAAACCACAAACCACTGACATGGCAAGAAGGAAGGAGCCAGAAGTACC TCAGACACAGAAGCCTCAGCAGCTAAAGGTAGTGAAGGCTGAGCCACAGCAACCAGGGAATCCAACAGTA CAAACAAGGACAGAAAAGTTGGACGTTTCAAAAACACAGAAGGTGGTGCAGTCTCAACCCCATAGACCAG AAACACCAAAAAAGCAGAGAGTAAAACAAGAGCAGGGACAACCACAAAAAGCGCCACCACCAAAGTCACA ACCTCCTCAGGCTATTCCTGGCAAGTTGTTGGAAAAGGACAGTGGTATAACTACAACAAAGTTGTTGACC AACAAATCCCAGAAGTTGCAAACTCCAGTTGTACAAAAAACCAGTATTAAGTCAGAAGTACCAGACGTAT CTGTGCCATCAAAACTGGCAACACGTAAGAAACCCCTGACTCCCCCTACTTCAAAACAAGAAGCCCCCAC GCCAGAAAAACCCGTCACAGTTTCATCTCAGAAACTTGTTGCGAATAAATCGAAGCAACCAGAGATGTCT ACCTCTGGCAATCCTGACAAAGCCCCGTCTCAGAGGTCAGAAACAGTAATTCTTCAAAAGACAGACACAC AATCAAAGCCACCAACTCCAAAACCACAGAGATCTACTACACCTAGGTCTCGGGTGTCACCTGGTGCAGC GGCAGAGCAAGTGCCCAAACCGTCAAGGAAAGTCGAAACACCCAAATTACCAAAGGCTGACACAGGTGGA GCCTCAGTGTCAAAAGTTGTTTGGGAACCTGCAAAGCCTCTTGAAGTACTAAAACCTGCGGTATCTGATG AGGTGGCTGATAGTGAGTCAGTAGATGCGGACATTGATAAACTGATTAATGCACATATGGCAGAGCAATC TATAAAGCAGGGTCTTGAAGTTCCTCCAATCTTGGATCTGAAACCGACTTTGCCTCTGCCCAATACCACT GAATCCAGGGAGCAGAAGCGTGAAAGAGATGAAAGTAATCTCCCAAAGAGTTACAGGGAAAAAGAAAGCC ACCACAGAAAGAAGCGAAGTGAGGGTCACAAGTCTAGGGGATCACCTCACAAGCATCGCCATTCGTCTGA CCACAGGAAGGGGTCTCGAGTAGATGCGGAAGGCCAACCCAGCTCTGCCGAAAAGCAAGCCAATGCCTCT GAGGGGATTGATGACAGCCAGCCCCATTCATCCATCCTGACCACATCAAGTGGCATCAGGTTAAAGATAA AAGGTCTGTCCAACTCGATGAACAGCGGGAGTGGCAAACATGAGCCATCACCTGAGCCCAGCCGGCAGAC TAGCTCGCCAGGGTTGGTGATGAAGCTCAACCTGTCCAAGATGCAGGCATCCCATACTAATTCTGACCAC CAACCCGAATCATCAGCAGGGTCAGAGAAGTCCAGTGGCCATCACCGACGCCACCGCCACCACCACCGCC ATAAGCATGGCCACCACAAGCACCACAGATCGGAAAGTCACCATCACGGTGATGACGGCCGAGAGTCTCA CAAAAGGAAAAGGTCTCACAGCCGATCTGACTCTGTGTCCTCAGGAGGGAGGGATGCTTCCCCGGCTATG TCCTCACCAGCAAAGAAGAGGACACACAGTAGGGCAAGTCACTCACATCCCAAATCTATTCTCCCGAGTG AACAGTCCTTACTGAATCTGCCGATGCCACCAGCGGATCCTTCATCTGCATACACAGGCTATGACACTCA CAGTTCTGCTTCCACAGGCCAGTTTTCCTATGGCATGCGTGACTTCTCTCATCACGCACCCCTGACAACT GTGACAGCATTGCCATCGTCTGATGGGTTTGAGTATTACCCTTACAACCAATCATCTGATGGCCATGCTC CCCCTCCTCCACCCCCTCCGAGGGAGGACCTACCACCGCCGCCACCTCCTCCCATGTGAGAATGTTCTTG GCTTATTTTAATATTTTCACACTCTTTGTGTAAAAAAAACAAAACAAAGAAACAAAGAAGTGATCCTGAA TATATGAACATTTCCATGTAATCTGACATATTTTGTGCAGTCTTTTGTTCGACGCTTTTTTTTTACATTT CATGAGAGTGGCCTTCTTTCATTATGTGTACTTTGCAGAAACAGCATTTTGGCTTTTTCTTTTTCCATTG TCTCTTTTACAAAGCACTTTTTTACTTATTATTTACATATATTGGGACATTAAAACAGTGTCCACCACAA ATTGTAAAGGACTTTTAATATACAGGGGAAAGTGGTTGAAGTACAAAAAAAAGTAAGTTTCTTTCGTTTT TTTTTTCAGCATGATAGATTTCCATGTTAATTTGCCTTTTTTTTCAATGTCATAATTTTCATAATTCTTT TTGAAAAACACCCATTGTATCTCCACAAAATAAAATTGCAGCTTCTTTTCTCAGCTGCTAAACGCTCCAT GCCATGTTGGGTAGATTTGAAACTTTGATACAACAGAGGTGAATTTTTAATTATTTTTTTTTTATTAAGT TTTTACTTGAAAACTAGTGTGCTGAGAAAGAGTGTAACATGTTTGCCTGATAACTCAAATGAGATGTGTT TGGTCTTAGTGAAATTTACACAAATTATCCTACCTTCAAACATTCCAATTCCAGCTGTCTAATTTGATTA CAATTTACAAAGTACATCAGGCTTAAGTCCCGTATAAAAAAATTGCACTTTACTGCAACCAGTGCCATGA AGAATTATTTTAATTGGGTTTAAAGTAAACCCCGCAAGCTAGTTAAATGGGTTAAACTGCACTTCTCCAG TGGCTAACCATAACTCAAGAAGTTAACCATAACTGAAGTTATTCTGCAGTGAATACTCCCTGTTATTTGT ATTTCCTGTAATGATTTCTAAAAAGCGTTTCATGCATTTGGCTCCTGGGAAGGATTTTTTTAAACAAGGA AATTGGTTCATGTGGTAAGCTGTGTGACCAGTATTGATGGTGATTTCAAATGCAAAAGAAATTGTATACT GGTCAGTTTCAGTAGTTGTTGAAAGGCCTTCAGCAGTTAAAACTGATATGGGATAATAACTCTTTAAGTT TTGCCAAAGCCATTGCGCATTTGCTTTGATGTGTTTGAAGGATCAAATGTTTTTCTTGGTCAGACTTCTG TTGGCCATTTAACTTTTTGTACTGTCAATCTACAATTGAGCTTCAAGGAGTTCTTGGAATATACGCGTTT AGTGATCGAGGCAGAATATACATGTGTGGATTTTAATAGTTGATGACGCTTGCTGGAGTGTAGCAAATAA GTAGCTGTCAATTTAAAGTCCTATTGATAAGCATTTATGTATTTGCCTTTTTTTTGGTATGTGCTTGAAG TTGAGAAATGACAGTTGATGAAAATTTATTGTAATGTTACCATCAGTTACCAAGTTACTAAAATTTAAAT ACATACCTGTGTAGTTTGAACATGTGTACAGTTCCTTAGTTTTGTATCCAATGATCATTATCTATGTTCT TGAATCTTGATATAAAGGAAGAAAAAAAAGTATTATTGATAGATATACATGTAGTAAAACTCTTTCGTTG GTGAATTTGGTAGATTCAGTGTAAAACCAAATAGAAGTGGTAACATTTTTTGTACATTTCTCAGTAATTA TGTTGACTGTAAATAAGTATAGACATAAAAACAAAACAAAAAAATTGAATGGAATTAAACGTGTACGGTC TCCTACTGGCTGAGTGTGTGATAGCATGGACTTATAAATGGAAGGACGTTGAGATTAAGGTAATTAAATG GATGTTTTGAGAAATAATTTATTCCGAGTAATGTTGACAAACTTTGTATAAAATAACAGTTGTACTCAAG TTTTTCTAA
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???blast.gapedalgin???
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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