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Echinobase
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Echinoderm mRNA
Echinoderm protein
Echinoderm CDS
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_030978292.1 PREDICTED: Strongylocentrotus purpuratus roundabout homolog 3 (LOC591293), mRNA ACGGCAGGAGAATTTTTTTTTTTCATGTCAAATTTATCGTCATTTTCTCATCCCAGTCATATGGATTCAG TTATGCTGCAGACTGTACGTAAGTGACTTGGGCGGCATGGGGCTCTACATGGCTTGTGAACTGATTTTCC TGTTTCTTGTCTGCGTAACTAGTAAATATGCTCTTGCTGTTTTACAGTTCACCCAAGCCCCATCCAATCA GGCCGTCCTCTTGAACCAGGCCCTCTGGTGGCACTGCATTGCCAGGGCCAGCATCGGCAGTCAGGAGCCA GCCTACACCTGGGTGAGGGGCGGTCAAACGGTGCTCGGTGGCGATGATGGCTTAGCTGTGTTCTCTAACG GTACCCTGTACATTGAGACGGTGACCCAGGAGGTGCTAGGGAACTATCAGTGCTGGGTGCAGAGTGGAGT GCAGAGGATTGAGAGTGATGTGGTGACGTTGGCTTTGGCAAGTCTTGGTGTAAGCTTCCAAACAAGCCCA ACTAGTGTCATTCAAAACCTAGGCTCCGCCCTCACACTCCAGTGCTCCATAGCCAGTGTTCCCATGGCAA CTATCACCTGGCAACTCAGTGGAGATGACATCTCCATGACAACAGATATCACAACATCAGAAACGGGCAG AGTTACAACGAGCACGCTAGAAGTCAAAGAGCTGGAACATCAGCATGGAGGAAGCTACCGTTGCCTAGCA ACCAATCGGCTTCTGATTGGTCTAACGAGGTTCAGCCAGTTGGGAGAAGTGACTCTGATTGGTCGACCAG GCTTCTTTGTTACACCTGAGCCCATAACAGTCATCTTGGGAGGGACTGCAACCTTTCTTTGTGAGGCAAA CGGTAGCCCTGCATCCACAGTGGATTGGCTCAATCCACGAGACAATATCATTACAACCGGCGGTCGGTTA ACATCTACTTCCACCCTCCTGACCATCACCAACACCCAGGAGACCGACGGTGGTTACTACACCTGCAGAG CTACCAACGCCTGGGGCGAGAACACTGCATCAGCTCTGCTAACAGTCACAGACCCTATGGAGCAGATCAT CTTTACGGCTACTCCAACTGACCAGTCGGTGGTGGTGGGGGGTAGGGTGACGTTCCCATGCGGTGCTTCA GGGAGCCCTACACCAGCCATTGAGTGGAGGAAGGAGGTTGGTGATCTACCGACGAATCGGATCCAGGAGC CGGCTGCTGGTTGGTTGAGGATAACGGGTATAGAGGTCCCAGACAGTGGGTTTTACGTCTGTACGGCAAG CAACTCAATTACTACAGTCTCTACAAGAGTCCATCTTATAGTCCAGGTGGCACCAAGTTTTACCAAACTA CCGGAAGATACCACTTTGGAGACGGGGGGTTCAGCTTTATTAGACTGTGAGGCTGATGGTATGCCCACCC CTGCTATAACATGGAACACTCCATTACCTGAACTAGGAGTGCTGGGAGTGTCCAGTGGTCTACAGTTTGG AGTAGAAGTCTTGTCTAACAGCTCTCTAGTGATTCCTGATGTTGAGAATCGTCACGCAGGGACTTTCGTC TGTTCTGCAGCCAACACGGTATCATCTAGATCAACGTCAGCAACACTCACAGTCAGGAGTTCTCCTGTCA TCACGTCCTCCCCGGCTGACCAGACGGCCATAGAAGGCGAACTCGCTCGCTTTGAATGCCGAGCGGCCGC CACGCCCACACCGGTCATCACATGGCTATTCAACGGTCAGCTCCTACTGACCGATCTCAAGTTTGAGGTC CTAGGCAATGGTGATCTAAGGATTAACAACGTGGAAGAGCCACAGGAGGGGGTGTATACATGCAGCGCAG GAAACGAGCTTGGTGTCAGAAACGTGTCAGCGTACCTGACTGTGCATGTTCCTCCCCAGTTCATCGTCCA TCCCGTTGACCTTACTGTTGATCCTGGGTCAAAGGTCACATTAGACTGTGAGGCTTCAGGAGATCCCATA CCATCAATTCAGTGGCAAAAGGATGGCAGCCTTCTGGTTCTCGAAACCAATATTGAGGTTCTGAGTAACT CCAGCATTGTAATAGATGGTTTACTGGAGACCAATACGGGGGAATATACTTGCATCGCTACTAACGCAGC CGGGATCAACCAAGTCACTGCAACACTCTCCACTCCAGATGTCCCTAAATTCGCGTCTGTCCCTTCTAAC ACCACCGGCAACGAGACACACCCAGTCAGCATCATCTGTCAGGCCGACGCCCGTGAGACACCTGTCATCT CCTGGTACTTGAGTGATGCGGACGGTAACCAAGGCAACCGCATCGGTCTGGGCATCAATCCTCCTGCGAC GAGAGCCTCACTAAGCTTCGTGTCGGTGGACGGTGACCTCGAGTTCACCCAAGTCACGCAGAGAGATGAA GGATGGTATCTATGCGTAGCAGAGAACAGCGCTGGTAGCGTCAGCGGGGTGGCATATCTCTCAGTCAATG TCCCTCCTCAGATAACCAGCACTAACACCCCTGTGAGTGCAATGGAAGAGTCTCCCTTTGCCCTACTGAG TTGTGAGATCGAAGGTCAACCTACCCCTGACCTGACCTGGCTCCAACCTAGTGGGGAGCCTGTTCCCATG ATCGCTACACAGTACAGCAGCAGCATACAGGATAACACTGCCTTCTTGGTGGTGTACAGCCCTAATGTGT CAGAGCACGATGGTGACTTTGTGTGCGTCCTATCTAACTTCCTGGGCAGTGTGAATGCAAGCGTTCAAGT GTCTGTACAAGGTGTCCCTGTGCTCACCAATGCAGAGGCCTTCCCATCCGGCCCTACCAGCGTCACCCTC CGATGTAACACCAAGGGATCCCCTGCCCCTACCACCACCTGGCAGAGGGGGACCACGCCCCTCCCGCACA CCTCAGTGACCGGTCATTCAGTATCCCCCGGTGGGTCATTGGTCATCACTGGCCAGAGTGTAGGGATGGA CGATGTCTACTCCTGTACAGCTTCCAACCCCTATGGCTCTCTGACAGCAACACTACAAGCTCCAGGCCAG GTAGCTACACCCACCATCTCTGACATCACATCTACCAGTCTTCGTCTCACCTGGGCCACTCCCACTCCTA CCAGTGACCTGCCAATTACAACATACACTGTCCAATACCAGGCTGAGTTCAGTGATGAATATTCATTAGC AGGAGAGACTGGTGACCCTTTTTACACAGTTGAAGGTCTGCAGCCTTTCACAGGGTACCAATACAGAGTG CAAGCAGTGAATGGACTGGGAGCGGGGTCGTTCAGTCCAGCGACCAGTCTTGTTTATACATCATCAGGAG CTCCAAGCAGGCCTCAGGGTGTTGCTGTAACAGCAGTAGGGAACCTCCTCACAGTGACGTGGTCAGCGCC CTCTATGCTGAACGGAAACCCAGATGATATTATGTATGAGATCCTCTCTTATCCTGCTGAGGACGAATCA GCTGTCACCACGGTTACCGTATCCCACTATGCCAATCAACTCAACACCCTCGTCGATAACCTGGAGTATG TTACGGACTATGAGGTCAAAGTTCGTGCAGGCAACGTTGCCGTAAGAGAATGGAGTCGTTATGTGACTGT TCAGGTTACAACAGGCTTTCAAGCACCAGCATCAGCTGTAGAAGACTTCAGTGCCACAGCAAATAGCTCG TCTTCAATCTGGCTTACTTGGGAGCCCACAAACGATGAGACCTTTGAGGCATATCTCATCTCGTTTCGCA TCCTCAACTCATCGGACATGTCACCTGATGTGGCCCTCTCTGCCCAGGAGGCGTCGTCCTATCTCATCGT TGGTCTCCCTAGCAACACACCCCATGGAGTACGCATGGCGTATCAGAATGCAGGAGGGCTCAGTCCATTC ACGCAAGAGTTGGTTGTGACTACGCTATTGGATGACCCAACTGTTGGACGAGTCCAAGGCGGAAACATAG GTGGCGGTATAATTGCGGCCATCGTGTGCGGTATCTTAGCTGTCCTTCTCGTCCTCGTTCTACTCACGTT TGGTCTTCTGTACTGGAAGAGAAAGAACGATGATTGGTCGGGACAGAGTCACTTCAACGGGGATTCACTC TGGATTAATAGACGATTTTCGTACGGTGATTCCATTTCCGTTGCTTCCACTGTGGATGACAGCGGTGGCT CGCAGAAAGGCGTCTACGACCTCTCCATGGTCAACGAGAACTTCTCGCCGGACGAGACCGGGCTGTCGTC CGACTCTGCATACGATCTGGGCGGGGCACGGGGAGGAGGTCAGAGGGGAGACTCCCTGGAGGTGTCGCCA AGGTCAGATGCGTCCGACCTCGGTGAAGAGAAGAAGAAGAAAAGGAGAAGATGGAAAGGCCTGTCTGATG TCATCTATAAAAACCCTGATAATCCTGGCGTAGTGCTGGTCAGTCAGGCGATGATTGGAGATGCATACCC TCCTCCAGTACCAGTCAACAAAGATGAAGTCCTTTCAGAAGATGAGGGGGAACACAGCGAACCAAGACCC TTGAGTCTCGCAGTGGACCCTCCTCCACTCAGTCCAGACTCTACATTTGATATGTCAGGAGGAGCTGAGG AAAACATTTATGTTGAGGTCGGAGAAGCCCCCGCCGAGGTTGCTAACAACTCAAATCCCCATAGCAACGG AGACGACTCTAGGGGCATGTCTCCCCAGTTCCCGGTCTTCCCAAATGCAGACGACAGCATCAAGCTCTCA GACGACCTGCACGTCGATCGCAAACTGATGAGGAGGATGGAGAGGAAAGCGGAGAGAGAACAGGAGAAGA AGGCTAGAAAGAAGGAGAGGGAAGAGGAGAGGGCGAGACAGAGAGAGATGGAGAGAGAGGAGATGGAAAG GGAAAGGATGTTTGGAGGGAGGAAGATGTCTGGTGGACTTGGAAAGATTTTTAAGAAGAAGAAATCAGAT GAAATCCCTTACCCTGAGACGAACTTTGGTGTAGCGACGGAGCGACAGGTCGAAAATGCTGGAATGTTTT AGACATATGACAGTAATGTTTTAATAGTTTGTTGATCTAAAATATAATGCTTTTTCCTCACAATGTTACC TCCCTGTTTTCAATACCAATTTAGGAAGGATTGTGAACTTCACCTTTTACAAGCGTTTACTACAGTGGGT TCTACATTATTCACATGAGACAAGATCACAATGCTTATTCTGTCTAATTTTTCATTAGCCACCTGGTTCA CAAAGTCGTAATTGTTTATGTGGGCTAACAGGAATAATAGATGATCAATTGCATTTGGAGAACAATTACT CATTCAGTCGCTGTTTAGTATTTTCCTACTTCTTTTCAACATAACAGTATAGCTGAAAAATAAAGTAAAC ACTCATACTCTGTGTCACTCATTAGTGCATGTATCATTGTATAGAGTTTCTTGTGACATGGTGTAAGGAT CTCAACTTTATTTCGAGCAGTACTGCATTATAATAAATTGCCAAATTTAGGATTAAATATTTTTGCTTTA AAGGGAATGTTTCATGGCAAATACTGGTTAATGCCATCTACGTCTTCTTTTGGACAACTGCACATAAACA AATGGACTTGATTAACTGGGTCAGCGTGCGCAGTAGCGTTCGCACAACAGACCCAAGTTCTCCTCACGCT CCGGTTTCGCGTATGTTGCACGCACGTGAAAGCTGCGGTCGCGTCGTCCGTAGTCATTATACCTGATTGG CCCCAGGTAGAGCCACGAGAAAGACACAGTCTTTTCATGACACACTCCCTTTAATATTACCAAAGAATTT GTTTGATATTTGAGTGTAGGGAATTCCCTGTTACCTATTGGTGCTTGACTCATTCAATATGACATGTTAC TTATTAGTATATTACTCAACTCTCAAAATTTTAAGAGCAGTATGAAGAACGTTAATGTTGTGCGACTGTG TAGGATATAGATGAAGATCATGCTTAGTCGAATTGTCACTGTACCAACTGCATGTTCATAGTGTAAATTT GTATGCATTTGTACATTACATATCATCTCAAATTATCACAGTATTATATATGGCTATCTGTGATACTGAT ACACCTTGGGGAAGTTTCACAAAGATCCTAACTTGAACTTATCTCTAAGTTAGACTTAACCATTATGGAA AGCCGTCAGCATCTATGATATATTTTGTAAAAGTTTTTTTGA
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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