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Echinobase
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Echinobase Accession
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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
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>XM_038201916.1 PREDICTED: Patiria miniata sodium-coupled monocarboxylate transporter 1-like (LOC119729297), transcript variant X5, mRNA GTTCTCCACTCCAGTCACTTGGCAGTTGGACCGCTTGTTGCTGGAACTGTCGTCAAGATTTGCCTCGCCT GTTAGCAGTGCTGCATGTAAGTGATTCATCAATCTATATCGCGCCATCCGCGTCACCTTTCACCGTTTGG TACGCCATATTGTGTCCAGCATCAGCAGTTACAATATGGCTAAGGTGAACACCACTTTTCAGACAGCAGA CTACCTGGTCTGCGCAAGCACCCTGCTGGTGGCATGTGGGATAGGGGTCTTCCACGCCTGCACGGGCGGC AGGCAGCGAACCTCGGCCGAGTTCCTGCTAGCCGACCGCAACATGAGCCCCTTCCCCGTGGCCGTCTCAC TAGTGGCTAGCTTCATCTCTGCCATCACCTTCCTCGGCACACCTGCTGAGAACTACACCCAGGGATGCAT GTATTGGCTCTACGCCATCAGCTACATCTTCGTCGGGCTCTGGACATCTCGCTGCTTCATCCCTATCTTC TATCGTCTTCACGTGACCAGCGCCTTTGAGTACTTGGAGCTTCGCTTCAACAAGGTCCTGCGAATTTGCG GCATGCTGACGTTTTTCCTTCAAATGATCATCTACATGGGTATAGTGATCTACGCTCCAGCACTTGCCCT CAGTGCAGTCACCGGCCTTCACCTTTGGGGTTCTGTCGTAGCCATCGGACTTGTGTGCACCTTTTACACA ACAATTGGTGGGATGAAGGCGGTGCTGTGGACCGATGTCTTCCAGGTCACCATCATGATCAGCGGCTTCT TGGCTCTCATCATCGCAGGGAGCATGCGCATGGGAGGCATCGGCAAAGTCTGGGAAGTGGCAGAGGCCGG CGGTCGAATTGACTTCTTTAACTTCGACCCGGACCCAACCGTTCGCCATACATTCTGGTCGGTGGTTATC GGCGGCACTTTCACCTGGTCTGCCGTCTACTGTGTAAACCAGGCGCAGGTGCAACGCTACCTGACCTGTG GCAGGGAACCAGTGGCCCAGTTTGCTTTGTTCCTTGCCGTGGTGGGCATGGTGATTGTGGTCTCTCTGGC TTGCTTGGCTGGCCTCGTGATGTACGCCAATTATGCCGGATGCGACCCCTTCACGCTGGGATACGTGGAT TCTAGCGATCAGCTTGTCCCATATTTCCTGATGGACCTATTCCACGAGAGCCCAGGACTGCCTGGCCTGC TAGTATCGGCTGTCTTCAGTGCTGCGCTGAGCACCGTGTCGTCCGGTTTGAACTCGCTGGCCGCTGTGAC TGGAGAGGACATTGTCAAGACCATCTCGCCTGATATTGAGGAGGAGAAGTATACTAAAATTACCAAGGCC TTGGCTGCTGGATACGGGATACTATGTATTGGCATGGCATTCGTTGCATCTCTGCTAGGAGATGTGCTGC AGGCTGCCCTGAGTATCTTTGGCATGATTGGTGGCCCCCTTCTTGGTCTCTTCAGCTTGGGGATATTTTT CCCATGGGCCAACTCAAAGGGCGCATTGACTGGACTCATCTGTGGCCTAGTCTTCTCCTTCTGGATCGGA ATTGGAGCCCAGTTCTACCCACCCCCCAACCCAAACAAACCGCTCCTGTCTATCGACAATTGTCCGAACG TCACCGAGGCGTCTTTGAACGCGACCTTCTACATGACCACTGAGCTGCCTTACACAATGGCTAAGGAACC TGAAAGGCCGCACGTAGCTCAACTGTATGCCGTGTCCTACGCCTGGTACAGCGCCATCGCTTGGCTGACG GTGATCGGTACTGGACTAATTGCCAGTTTTGCCACAGGCTACACCGAGCCGTCGGAGGTTGACCCCCGCT TGCTGTGTCCGGTGGTCGACGCCATGTATTGCTGCCTCCCGGAAAAGTGGAAGGGACCATTACGTTGTGG GGCAAAGAAGTATGAACCAGGGGATGACCAGGAAAAAGTCGTGACCATGAAGGAGACAGAGGAGTACAAG TCTGAGCAGGACGGGCAAGGAGCATTCTCCCAGGTCGTCACTGATGGAGATCCGCCAGCTTACGATGAAG CCGTGGACCAGCTTACCAAGCTGTAGACGAAGGGAATTGTGTCTTAAACTCTGATCGGATAGGTTACACC CTTGATTGAAGTCTTATTAAGACATGTCTGTATTTGTCACACTCAACATTTTACATGCTTACCCACAATC TGTCCCTTGTTTGAATACCACAATACTGGCTTTTATAGTTGTTGCATTGAACGTTGACTTTTACGTGTCA ATTGTGCTGGTATCCGCTAAGACATTGATGCGTAGTCCGTTCATGCATTCATCTTGGAACCAGTTGCATA CAGGGGTCGTGCACTGGTAGAATGATTGTTATATAACACCTGAATAAATCCCCGTCATCTGATTGGTGGA TCGTTGATCACATGTAGTTGTATTTTTTGTCCCAACCATAGATATAGAATAGAAATAATAGATCGGCAGC GCGTACATACGCCCCCATTCACTGCGCGATAAATGTGCACCATTTTTATGGTCTCTCGTGGACGTGCAAA AAAATAACATAAAGTCATACAGCTAAATGTATCTGTCCTCCAGCACGTGACCTAGCTCAACGCGCGCGAA GCTAGAAATGCGCACCGAGTATGTCCACGCTGTGCACAGACGTGCCGCTTTCCATTTCGGTAACGATAGT TTTATTTTCTGCAAACTTATAAACCTGTAAAACCTTATATTGTGCAGGTCATTTACTCCAGAGCAAATGG CTTTTAGTAAAAGCGTTTGCTTAATTTTTATTCATGCAGATGCGAGTAAATACTTACAAATTGGTAGTAA ATGCAAATGCTAGTTTTTATTCATACGAACTTTGGTATTATTTGTACTGTATGAACTTTATTTTTTCGCG ATTAACAATAATTGCTGTAATTTTTGCGCATAATTATGTGTTTTTATATTGTTATGGTAGCCCCTACCCA GCCTTGAAATTATGACAAGTAAATATTTGAAATCTGAAGCATTTACTCCTTTTTATTCATATTATGCAAC GAAGAAACCGCTTATAGTGTAGCAAAAGCTAAAAGGTAAAAAGTAATTATTTTCAGATTTTAGCAAATGG TTTTTAATGAAAGCTTTTGCTTAATTTTTATTCATACAGATGCGAGTAAATCCGCAGTAAAATTTGTAGT ATTAAGCAAATGCCATTTTTTATTCATACGACCATGGTATCGATTCTACTTTATGAACTTTATTAATATC AATTTTTTGGCATTAATAAATGCAGTAAATTTTGCGCAGAATTATTTGCTTTATAATTTCAAGGTTGCCC CAGATTTGAGATCTGAAGCATGTATGCCTTTTTATTCCTACGAAACGAAGTAAACGATTATTAAATAATT AATATATTTCTGGTATTCAAACCAAGGATTCCTCAAAAGTGCAAGCCCAAGGCACTGTAGCTCCCAAGTT TGAAAAAAGAAAACTGTAGAGAAGAGGAAATGGGACGAAATTACAGTTTTATAGTTGGGAAGAAAAACCC CAGAAGAATTATTCTGGGGAAAACCCACTCATCCACATGTAGACTAGGGTGCCGATGCACAGCGCTTTGT GCGCGTCAATGGTATTGCGTTCGTCACATTTGGCTCGCGGGTTTTTGTATCTGTCCTCCATCACGTGACC CTCCAGATAAGGCCGCGCGTATGCACGCGCTGCTGATCTAGTCTTTTAATTTTATATCTATGGTCCCAAT AGATATAGAATAAAAAGACGCAGGGCGCGCGCGCGGCGCGCAGCGCACAGTGCAATGGAAGTTCTATTGC ACGGTGAATGGAACTTCCATTACACGGTTTCAGTGCTGCCGATGGTGGCGCTGTGACACGAATCTATTTC ACAAAATACGGACGTTACGCGAGACTGAAACACCGTTTGTTCCCCTAACAGAAGAGG
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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