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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_038191328.1 PREDICTED: Patiria miniata cubilin-like (LOC119721308), mRNA TCCTGGTATAGATAGACACGTGCGTCGTGGGGGCTGCCTCCAGACCACTGGATTTTTTTTACGAGGAACC GCACCGATCGGGAGCTAGCTACCGGGGGCTGATCATGAATTCCCCCGCAGGACTTTCCCCAACCCTGTGG CTGTGTGTGGCAGTTGTCTCGGTCTTTCTCTACCCTGCTGAAGTCGTGTGCCAGACCCACCAATGGAAGA ACAGATACTCATCCTGTACAAAGCAGTGCGGTGAAGGTATCCAGACTCTACAGAAGTATTGTTTTACCAC GGAGCAGATCCCCAAGCCAGCCCTGGAGTCCTTCTGTAGTGGCATTCCCATCCGAGAGAAGGACGTCATC TCCTGCAATACGTTCCCCTGTGGCACCTGTGAACGGACCTACACCAGCCCAAGTGGAACCATCACTTCGC CCCATTACCCGGACAAGTTCTCGATACCGCGGTACTGCCGGTTGTTCATCACCCTACCCCCTGATAACCG GGTCCTGCTGGGTTTCTCGGAGTTTGTTCTGGAGGGATTGAATTTGGCTGCCTTCTCGGACTTGGAGGAG AGTACCGTTTGCCTGTGTGGTACGCTAGTGCAGATTACCGACCAGGAGCAAAATGGACGTTCCAACACGT ACTGTGGCACCAAGCAGACCTTCAGCTGGCTGTCTGACTCCAACTCGGTGCTGCTGGAGTTTGTCACAGA ATCCTCGCATCTCTTCAACCGCTTCAAGGGACACTATGAGGCCATCACTGCAAAGCCCGCTTGTTTTGAG CGCAGGGACCTGTCCGAAGTCGGTAAGGGTTACGTCCGATCGCCCGGCCACCCCAACAAATACGGCAACG GTCTCCATTGTGAGTACGTGCTGCATGCAGACCCGCTACACGCCATTGCCCTGACCCTGCTAGAATTCCA ACTGGAGCCCAGTCCTGATTGTGATCTGGACTATCTCGTGATTGAAGACATGTACAGTCGACGTCAGCAG AAGTTTTGCGGTACGCTGGGCGATGCTTTGTGGACCTCGGATTCCAACGAAGTCCGACTCGTCTTTCATT CCAATGCTTACGACCCGTACAAAGGGTTCGCCATACTGTATGAGTCCGAAGATCGAGCGCCAAAAGGTAG CCAGATTTTCACGGAACCCGAGGGTACGATCACCTCGCCGGGCTACCCGCTTGTCTACCCGCCGGACACC AGCGCCCACTACCGCATCCTTGCCGATCCCGGCCGGATCATCGTGATCAAGTTTACGGAGTTCGAGATGG AACGGGAGGACTCCCAGGGGCAGCCCATCCCGTTGCCGCGACAACGCCGCAGCACACTGGACGTGCTGCA ATACGAGAAGGGAGGCGACTGCGATGAAGTGGATTACATCAATATTTATGACAAACTAGCCGGACTCTCC GATGACTACTGCGGCAAGCTTCCGCCTTTCACCTGGTTCTCTCAGAGCAACGAAGTCATCATACGATTCG TGAGTGACGCGGACGAGAACTACAAGGGATTCAGCGCCGACTACAGAACCGTTGAAAAGCGACCAGCATC AGAATGGGAGCTGGTATTCCGCGCTGCCTCGGTCACAGAGACCGAGCCTGTCCGCAAGTGGCAGGACACC AGCCGAAGCTACGCGGAGTGGGATCCCAACGCCAAGTCTGTCTTTAAGGAGGACTCGCCGCGGACTTTCA AACCCAGGAAAGTGAACGACTGGCAAGCTCTTCAAGTGCGAAAGGTCAAAATCGAGTTGTACAAGGCTGG GAAAGTCGTGGCCGCCTTTCATTTTAAGAATCTGCCGACAGACGACATAGACGACTGGTTTGATTGCGAC CAGCTCATCTATGCATCTTACGAGGACCTCTTGCATATCGACTGTGGGGACTTAGATTTCAGCACCACCG ACAACTTTGCGATTACTGACAATTGGGGTTCATCCGGCATGACCTGCAACAATGAGACCGCCAGACTTTG GTTGGATATCCAAGACCGTATTCCTAACCCTGCCATTCCCACGGCGTGTCCCTACGAACGCTCCGCGAGG AGCGTCGCCAAGTTCTTCTACAGCATGGGGCGTGAGGCCGGCCTTACAGAGAAAGGAACTAACATAGCAA CTGCCGATGTGGTGACGATATGGATTCAAAGAGATTGCGACCAGATATTCACAAACATCCCTTCTAAAGT AGAGATTGAGTCCGAGGGGTACGGCGTTAGTGCGGGCTACCCGAACAACGAGTATTGCGACTACTACTTC TTGAATCAACCCTACGATCGTTTCTTTCTACACTTCAGCGAGTTCTCCCTGGAATACGACGAAAACTGCA GCAAGGATTATGTTGAGATAGAGGACCTGACTACCGGACGCACAGACCGGTTTTGCGGCAACCAGCACCA CCCGTTGTTCACCACGGACGGCAACGCGGCCATCATGAGGTTCCGGACCGACAGCTACTCCACTTTCCCT GGCTGGAAGGGGGAAGCTAGCCTAGAGGGAAGAAACAATGAAGATTGTTCGTCCATTGTGACAGACACCT CAGGGAACCTGACCAATGCGGATTATCCATTGCCGTTGACCCACTTCAGACTGCAGGGCTGCGAGACCCT CCTCCACGGTCACATTGCTCACCGTGTGACCGCATCTTTCACCAAAGTCATGGTTGATCTGGAGGACTGC CCCGAATTGACTATTATTGATCATGTGTCATCTACCCCCGTCGTTGAAGTCTCCGGCAGGATCCTGCCGT TTTCCTGGACGTCCGTATCCAACGAGCTGATTCTGTGGTACTGCGCCAGCCTGCCGTATCGCTCCTATCT CTACTACGAGGGCAACTTCCGAGCCACCATCAGCCCTTCTCCAGCAACATGCGTTCAGTATTTCGATGCG GAGTTCCCCGGCACCTTTGATTGGCCGTCGACGTCCCTGACAACGGGCGCGGAGAATTGCTACATCGTCA TACGCACCCATCCGGTGCTGAACTACCGAATCATCTTGACCATCAAGAATCTCGTCCTGAAGGACAAAGA TTGCAATAGCTACATCAAGATGACGGATACCACTACACAGCGCAGCGACACCACGTGCACGACAGCACGG CAACCGTTTACGTGGACGTCTGATGCTAATGAGGTGATAGTGCAGTTCCTCAGTGGTTCCTCGGTCAGCG TACACACAGTGGATGGGTACTTCTCCAGCGGTCCCCGTCCCAGACTCAGTGAAAGCCAGACGTTCACTGG TACCCAGGGCTCATTTACCAGCCCCAACTACCCTAAGGACTACCCCTCCAACCTAAGGATGGACTACCTG TTCCACGGCAAGGCCCATGAGATTGTCTTTCTCAACTTCCAGGAACTGAACCTGGAGTTGCCAAGCACTA CGCCTGTCGGCAGCCCGCGCGACAAGCGACACCTCCCTCGCCACATACTGTACAAACGACAGGCCATAAC CACCACCAAGACGGCATGCGAGTACGACTACATTGAGATTAAAGATAACTTGGACACCTCCAGGAACGTC AAGTATTGTGGCAACCAGTTACCCTTCAGCTGGGTTTCATCTGCCAATGAGGCGTTGGTGACGTTCATCA CGGACGGCAGCGTCGTCAAGAAGGGTTTTAAGGCAGAATACATATTCCAACAGCGGCCGGATCCAACCGG ATGCGGAGGGATCTATGAGACCTCCAGTGGGGGCTTTAACTCACCCGGCTACCCCGGGATTTACCCACGC AACTCGGAGTGCACCTACTCCATCCTGGCGTTGGCCAATCAGCGTGTCAGGCTCACGTTCAACAGCTTCA ACACAGAGTCGGACGACACGTGCGAAAAGGACAGTGTGGAGGTCACAGACAAACTGAGTTCCAAGGCGGA CCGTTACTGCGGCAACCAACAGACTCCATTCAGCTGGACGTCAGACTCCAATCTGGTGTTTGTCATCTTC CAAAGCGACGGTCAGAGACAGTATGGGGGATTCACCGCCAAGTACGAATTTGAAGACCGACCTGAAAATA CAGTCTGCCAGTACAACTTTGACGATCAATCCGGTGAGATCCAGAGCCCCATGTCATCGGGCGAATACCC GAACCTCAGAGAGTGCAACTACGTTGTTACCGTGGAGTCCGGTTTCGGTATCCACCTGACATTTGTAGAG TTCAACCTGGAGGGTCCGGCACCAAACGGAGAATGCGAGTACGACTACCTTCAGATTGAAGATGCCGTTT CCGGCTCTTCGGACAAGCTGTGCGGCATCAAGGATCCCTTTGAGCGCGTCATCGGGACCAACCAGGTCCA GTTGATCTTCAAGAGTGACCTCATTGTCTTCTACAAGGGATTCAGGGCCGTCTACGAGCAAGTAGACCTC AGCGCTCCCTCAGATTGCGATAAGGATTTCAAGACTCCATCTGGTATCTTCACAAGTCCCAACTATCCCG CCAACTACCCGAACAGCAAGGAGTGTCGCTACCGCATTGTTGTGGCGCAGGACCAGCGCGTCAAGATCAC GTTTTCCGCCTTTGGTCTCGAGAGCTCTTCAAACTGCCTGTTTGACTACGTTGAGGTTTCGGACGTCGGG CGAAATAACGAGGAGAAATTCTGCGGCAGGAAGGTGAACCCCTTCAGCTGGTCGTCTGAGACCAACGACG TCATGGTGCTGTTCCACAGCAACGATAGGACGCCCTCTACCGGCTTCAACGCAAAGTACGAGTCCGAGGC CTTACCAGTGCAGGCTGCTGTCAACACAGGTTGTGGGAATGACTACAACATCATCCTGAGGGACAGCACA GGCAAAATGACGTCACCAGGCTACCCCCGCGATTACCCCCTCAACATCGAATGCAAGATGCGCATCGAGC TACCAGACGGCATGCTGTGCGAAATCACCTTCACGGACTTCCAATTGGAGGATTATTACCAAGGCAACTG GTGTTATGACTATGTGCAGCTGACGAGCATTCCCGATGGCGACACCGTGTCGTACTGTGGCACCATGTCC ACCCCCTCCACTTGGCGCTCCAAATCCAAGTCCTGCGAGATCCTGTTCTACAGCGACTCTGTTCAACCCG CCGAGGGCTACAAGGCCACCTACGAAGCGGTGGGCGCCTCCCCGACGCCTACCTCTGGCCCCGCCCAGAC CGCACCCCCCTCCTCGGCATGCATGCAGGATCTCGGGGGTCCGGCGGGGACCTTCACGTCCCCCAACTTC CCAAATAACTACCCCAAGAACGTGGACTGTGTCACCACAATCACGGTGGCCACTGGCAAGAGAGTGAAGA TCGTGTTCGATAAGTTTGACGTCGAGTACGAAGATCAATGCGGGTGGGACTGGGTTCAGATTACGGACTT GGGCACCAACGAAGCGATCAAGTACTGCGGCGTGTACAGCAGTGGCCTGGACTACCAATCGACGACCGAC GCAGTCAGAGTAACCCTGCACAGCGACAACTTTGTACCCCGACCAGGTTACTCTGCCGAGTTTACCGCCG TCCCGTAGTTTATTCAACATAATCCAATACACGCATTTGCAAAAGGGCAATTTCCAGCGTTATGTGTGTG ACCGAGCTTTTAAGAGCTCAGTGAATAAACCCGAAAATGAATTTTTCAAATCGTCTACACCCATTATCTA GTAATGGTCAAGGAGATTACAGACTAGGAGTTTGGGATCATTTCTCTGAATCGTTAATTAGATATCATGG TTCATTGGCTCTGTCACGGACATTACAACTCCCTTGCATAACTCCAGAATATCCCGTAATCTAATTTGTG TGTACCTAATGTACTTATTTATTTGCAGGAGAGCATAAAACAAATTGAAATTGAAAAATGAACTTCCATG ATTTATTTTAATACAGATATTTATTTAACATAATTCAGTACGAACATTTTGCATAATCTAATTTATTGAA TGATGTTTACGTATTTATTGGCAGGATTGAATAATAAAAAAAACCTAAATTGAGAAATTCGAA
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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