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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_776235.5 PREDICTED: Strongylocentrotus purpuratus rab-like protein 6 (LOC575861), transcript variant X1, mRNA AGTCCCCCAAAATCAGCTGTCGCGCGCGCCGTACCGGTAGTCTCACAGTCAAACGTTACACCAATTTGCA CCTTACAATCCAGTCTTTTTAGGGTTATTGCTTCATCGGAATATCATGAAGTATTAAATGTACGTGCATT CCTAGCCTGCATCATGCCTGATTCTACCTGAAATACATTAATTGTAAATTTATCAACAAGTTAACCGTAC TATCAGGATTCAGGGAGCAGTCAGGAGCAGCCAGCAGACTTCGACTGCAGCTTAGCCAAGGCTAGAGACT GAGTTCTGTTCGTCGACGTTGTCATCAGTGCAGCGCATCTAGCTAGGCCTACTACATATACAGTAGCACT GCACTGTAGGAGTATGTAGCTTGCATGTATTGCACGTCTATGAATCATCTGCACTATACTATACTTGACA GTTGACACATCACAACATTGCACAGCTGATTGGGATACCACGACAAGGAGCTGATCCAATCTAGTTGCGT GTTGAATTCTTGGTGTCATTCATTGATGTGCCGATCAGAGCGCAATCAGGATGTTTTCGGCATTGAAGAA GCTGGTTACCAATGAACAAGGGGACACCAGACCCAACATCCCCTCGGGGATGCAGGCCATGGGGGTCAGT CTACAGCGCAAGTTTGCCAGAGGAGTACAATACAACATGAGAGTGATCATAAAAGGGGACAGGAACACAG GGAAGACAACACTCTTTCATCGGCTACAGGGAGGCAAGTTCTCAGAAAGTTATCTTCCAACAGCAGAGAT TCAAGTAGCCAGTATACAGTGGAACTACAAAGCTACCGATGATGTCGTCAAAGTGGAAGTCTGGGATGTG GTTGACAAGGGGAAGCCCCGGAAACGAGAGAGAAACACCCTGAAGATAGACAACAAAGAGACCGATGAAG ATGACCCAGACAACCCCTGCCTGGACGCGTCGTTCCTTGATGTCTACAAGGGAACTAATGGTGTGGTGAT GATGCTGGACATCTCTAAGAAATGGACATGGCAATACGTTGAGAAAGAGCTTCCCAAGGTTCCTACACAT ATACCGGTATTAGTCATGGCCAGCTTCAAAGACCTGCATGAAGAGCAGGCAGTCTACAGAGAAGAAATTG AGTACTTCATCAAAGAACTAGACAGACCTCCAGGTTCAGCCCACATTCGAGTAGCGGAATCTTCCATGAA AAACGGTTTTGGCCTAAAATATCTGCATTCTTTCTTCAACATCCCGTTCTTACAGTTACAGAGGGAAACA CTACTACAACAGCTGCAGAGGAATCAGTTAGAAACTGATGCGACGCTAGAAGAACTAGATGCAAGAATAG AGTCAGAAGATCAGGATTATGATATGTATTTGTCAAGTCTTTCCCACAAGCAAACGGATAAGTCTAAAGG TTCTTCATCGTCTCTCAACGTACCCAATGGCCAGACACCGAGGAGAGCTTCAGATACAAGCAGTAATCGA AGCTCATCTGCATCTGCTACTCCTGCCAAAGTAAGCCCTGCCCACTCACCAAGCCAGCTCACCCCTAGCT CAACTCCGCCCACAACCAGGCATATACAGCAGCTACAGCCAATCAAACAGCAGCAGCAGCAGCAGGCCCC TCCCCCAAGGCCTGCTCCCTCCCCCGTCGTCACCCAGGAGGGGGAGGAGGATCAGACTACGCTAGGCAAC AGGTTCAGCAAGTGGTTTGCTCCGAGCGAGTCCAAGGTCCAACAAGGAACAAGAGTGGAGGATGAGAAAT CAGCAGTCATTGAAACTCCGGCTGAGATCCACCATTCCCGTCAGCAGAAGCAGGCCCAGGGCAAGATCAG CAACGTCGATGAGTTCATTCCTGACGATGGTATCGACAAGGGATTCTTCGATGAGACGGACTCCAGACCC GCAGCAGAGGCGCCAAAGAAGAGCAGTGTATTCAGCTTTGGAAGGAAAGCAAAGCCTAAACCCAAACCAG AGCCCCCGGCTCCGGCACCGGTCGTAGCTCAAGCTCCAAATCCGGACTCAGACAGTGATGATGGAATGAA TCCAATGGTTGCTGGATTCCAAGAGGAGCTGGACTCCGAAGACGAGGTGGTAGGAGGGGAAGTCCAGGCA GTTACCCTCGTGACCCCCGACACCGAGGGACCCGATTCACCATTCGATACATTCTCAAGGATGCCTCCCA GGCTTGCAAGTATGGACATGTCCAGCGACGAATCCGCTGATGATAGGCCAGTCGTCGCAATGGATGGAGT CGATGACGATTCGGATGACGACGCAACGACGTCAACGCGGTCAAAGCTATCGAGTGGGAACATGGGGTGG AGCTTCGAAAAGAAACTGCCGTCGACGAAAGAGTCGAGCAGGAATTCAGCGACCTCTAGCACGCCGTCCA AACCGAATGTTGAAACGAAAAGACAACCAAAGGTCTCCACATCATCGTCCTCATCGTTACCAGACACCCA AGAGGTGATGTCCTCAAGAACACAAGGGGCTTCAAAGACACAGGGGGCTTCAGGATCTCAGGTGACTTCC AACCAGGACATTGTCTCTTCAGAAGAAGACGAAGGGGAAGGGATCAAGGTTTTACAGGATTGTGAGGACA TTTCAGAGGACGAAGCAGTGGTGAGACCAACATCTTTAAGAACTGGTGATGGTGGATTTAACGCTGATGT AAGACCGTCCAAGGTTGTCCTAGAGGATAGTGATGAAGAGGGAACAGAACCTGTAGAGGTACCAACTACC CCAAGTCAAGAAGTATCGTCACCAACAACTCTTGGTCTGACGTTACAATTAGAAGACCTCAATTTCCTAG AGAGTGTAACTTCAAAACCTGCCAAACAAACAGTCTCAAGGAACCTATCACGAGCCAGTGATGAGTTTGA TGTCCTTGTCTCCGTGGTCCAGGATGAAGACATCAGTGATTGTGAGACCAACACCAGTACTAGCACCAGC AGCTCAGCCAAGAAGAAGAAGAAACACAGGAGCAAAGACAAGGAAGAGGATGATGAGGAGAGGATACACA AGAAACACAAGCACAAGAAGCATAAAGAAAAGGACAGAGAGGACCGACACTCCAGGAGAGACTCCAACCA AGACGGCGGCGAAGAAACACGCAAGAAGAAGAAGAAGAGCAGCTCCACGTCCGGCTCCAAGAAAAAGTCC TCCTCAGGAGAAAAGCGAGAGAAGAAGCGGGATGGAGCCTCTGGAGGAGGTGGTGGAGCAGGATCCACAG GAGGAGGAGGAGGGGGAGGAGATGCGATGGATGATGATGCAGCTTTGGAGGCATTTCTGGAAGGTATGGA TGCTCCTACGTCCAGTGGTGGAAAATATGAAGCAATATAACATTGTGGGGCTTATTATGTATTCAAAAAT AGCTTGTGATCGCATTATCTTGAGAACCGATAGACAGATTACAATCAATCTCAAGACATGTTTATGTATC TTGCAGAGCCAATGAACTGATTAGATTTTAGGGTCATGTCATCGAGAGAGAGAAACGAGAGAAGAAACAG GATGGAGCCTTTGGAGGAGGTGGAACAGAATCCACATACATACCATGTTAAAATACCTTCACCTAACCCG AAAAACATAACATTTTTGTTGTTCTTGTGGGAGGTGACTCCATAGCAAGCTTGTTTTAGGTTTCTCATAC CATAATGATTATTATAATCCTGTAAATTTCCAAATTGAAGTGATTTTAAATGATTGTTATAGATATTATA AAACTGTTTGATATCATAAAATGACCACAAGCCATTGAGCTCTGTGTTAAAGGCCTCCTCAAGAATAATA ATGTAAAGCCATGTGTGTGCTATCTTCTGTTAACAGTGAAGTTGCAGTGTAGTATTCCACCAGTGAAGAA ATCTTATATTAACACCAATCTTTGATGTTTTCTCTTCCCTTGTTTAATTTTTTTTTGTCTCA
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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