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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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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_038222315.1 PREDICTED: Patiria miniata polyubiquitin-C (LOC119745745), transcript variant X2, mRNA TTATTAGTTAGCGTTGGAAGCATTTGCTACATCGTCGAAAAAGAGACTGTTTTTTCAACTTATCTTCAAA ACTAAACCTAGATGCAGATCTTCGTCAAGACCCTGACAGGCAAGACCATCACTCTTGAGGTCGAGCCAAG TGACACCATCGAGAATGTCAAAGCCAAGATCCAAGACAAAGAGGGCATCCCACCAGACCAGCAGCGTCTG ATCTTTGCCGGAAAGCAGCTGGAAGATGGCCGCACCCTGTCTGACTACAACATCCAGAAAGAGTCTACAC TCCACTTGGTTCTCCGTCTGCGTGGTGGTATGCAGATCTTCGTCAAGACCTTGACGGGTAAGACCATTAC CCTTGAGGTCGAGCCAAGTGACACCATCGAGAATGTCAAAGCCAAGATCCAAGACAAAGAGGGCATCCCA CCAGACCAGCAGCGTTTGATCTTCGCCGGCAAGCAGCTGGAAGATGGCCGCACCCTGTCTGACTACAACA TCCAGAAAGAGTCTACACTCCACTTGGTTCTCCGTCTGCGTGGTGGTATGCAGATCTTCGTCAAGACCTT GACGGGTAAGACCATTACCCTTGAGGTCGAGCCAAGTGACACCATCGAGAATGTCAAAGCCAAGATCCAA GACAAAGAGGGCATCCCACCAGACCAGCAGCGTTTGATCTTCGCCGGAAAGCAGCTGGAAGATGGCCGCA CCCTGTCTGACTACAACATCCAGAAAGAGTCCACCCTCCACTTGGTTCTCCGTCTGCGTGGTGGAATGCA GATCTTCGTCAAGACCCTGACAGGCAAGACCATCACTCTCGAGGTCGAGCCCAGTGACACCATCGAAAAT GTCAAGGCCAAGATCCAAGACAAAGAGGGCATCCCACCAGACCAGCAGCGTTTGATCTTCGCCGGAAAGC AGCTGGAAGATGGCCGCACCCTGTCTGACTACAACATCCAGAAAGAGTCCACACTCCACTTGGTTCTCCG TCTGCGTGGTGGTATGCAAATCTTCGTCAAGACCCTGACAGGCAAGACCATCACTCTCGAGGTCGAGCCC AGTGACACCATCGAGAATGTCAAAGCCAAGATCCAAGACAAAGAGGGCATCCCACCAGACCAGCAGCGTC TGATCTTCGCCGGAAAGCAGCTGGAAGATGGCCGCACTCTGTCCGACTATAACATCCAGAAAGAGTCCAC ACTCCACTTGGTTCTCCGTCTGCGTGGTGGTATGCAGATCTTCGTCAAGACCTTGACGGGTAAGACCATT ACCCTTGAGGTTGAGCCAAGTGACACCATCGAGAATGTCAAAGCCAAGATCCAAGACAAAGAGGGCATCC CACCAGACCAGCAGCGTCTGATCTTTGCCGGAAAGCAGCTGGAAGATGGCCGCACCCTGTCTGACTACAA CATCCAGAAAGAGTCCACACTCCACCTGGTTCTCCGTCTGCGTGGTGGTATGCAGATCTTCGTCAAGACC CTGACAGGCAAAACCATCACTCTTGAGGTTGAGCCCAGTGACACCATCGAGAATGTCAAGGCCAAGATTC AAGACAAAGAGGGCATCCCACCAGACCAGCAGCGTCTGATCTTCGCCGGAAAGCAGCTGGAAGATGGCCG CACCCTGTCTGACTACAACATCCAGAAAGAGTCCACACTCCACTTGGTTCTCCGTCTGCGTGGTGGTATG CAGATCTTCGTCAAGACCTTGACGGGTAAGACCATTACCCTTGAGGTTGAGCCAAGTGACACCATCGAGA ATGTCAAAGCCAAGATCCAAGACAAAGAGGGCATCCCACCAGACCAGCAGCGTCTGATCTTTGCCGGAAA GCAGCTGGAAGATGGCCGCACCCTGTCTGACTACAACATCCAGAAAGAGTCCACACTCCACCTGGTTCTC CGTCTGCGTGGTGGTATGCAGATCTTCGTCAAGACCCTGACAGGCAAAACCATCACTCTTGAGGTTGAGC CCAGTGACACCATCGAGAATGTCAAGGCCAAGATTCAAGACAAAGAGGGCATCCCACCAGACCAGCAGCG TCTGATCTTCGCTGGAAAGCAGCTGGAAGATGGCCGCACCCTGTCTGACTACAACATCCAGAAAGAGTCC ACACTCCACTTGGTTCTCCGTCTGCGTGGTGGTATGCAAATCTTCGTCAAGACCCTGACAGGCAAGACCA TCACTCTCGAGGTCGAGCCCAGTGACACCATCGAGAATGTCAAAGCCAAGATCCAAGACAAAGAGGGCAT CCCACCAGACCAGCAGCGTCTGATCTTCGCCGGAAAGCAGCTGGAAGATGGCCGCACCCTGTCTGACTAC AACATCCAGAAAGAGTCCACACTTCACTTGGTTCTCCGTCTGCGTGGTGGTATGCAGATCTTCGTCAAGA CCTTGACGGGTAAGACCATTACCCTTGAGGTTGAGCCAAGTGACACCATCGAGAATGTCAAAGCCAAGAT CCAAGACAAAGAGGGCATCCCACCAGACCAGCAGCGTCTGATCTTTGCCGGAAAGCAGCTGGAAGATGGC CGCACCCTGTCTGACTACAACATCCAGAAAGAGTCCACACTTCACTTGGTTCTCCGTCTGCGTGGTGGTA TGCAAATCTTCGTCAAGACCTTGACGGGTAAGACCATTACCCTTGAGGTTGAGCCCAGTGACACCATTGA GAATGTCAAGGCCAAGATCCAAGACAAAGAGGGCATCCCACCAGACCAGCAGCGTTTGATCTTCGCCGGA AAGCAGCTGGAAGATGGCCGCACCCTGTCTGACTACAACATCCAGAAAGAGTCCACACTCCACTTGGTTC TCCGTCTGCGTGGTGGTATGCAGATCTTCGTCAAGACCCTGACTGGCAAAACCATCACCCTTGAGGTCGA GCCCAGTGACACCATCGAGAATGTCAAGGCCAAGATCCAAGACAAAGAGGGCATCCCACCAGACCAGCAG CGTCTGATCTTCGCCGGAAAGCAGCTAGAAGATGGCCGCACCCTGTCTGACTACAATATCCAGAAAGAGT CCACCCTCCACCTGGTTCTCCGTCTGCGTGGAGGGCAGTAAATCATGCCATGCGTTACACATCAGTAGCT TTATTATTGAATTATGCTTTGGAGACTTGATTTAAAATTTGATCTTTTGAGCCACACAACACATCTTAAA AAAAAAAATTTGTGCAGTCGTTAAAAAAAAACAAATAAACAAGATACAGAAGGGCAAATTCTTAAATTCG GACATGCATGTCCGACAGTTTAATGAGCTTCTGTTGGTAGAGTGAATGTGACACTTCACTTATATGTGAC ATCTAATGAAAAGAAAATGTTTAAAGGCCAGGCAAATGTAGTACATGTACCACCTTAACAATCTTACAAA TCATGTTGTTGGACATACAAAAAGAAATGGAATTAACAGAATTGCGAAGTGGGTGTTTGAAAATGGGTAC ATCCTTTTAAACAAGTCAACAGTTTTAACCCTAACTCCCTAGGGGGTGTGCCTAATCATATTGAAATTGG AGGATTCAGGACTGTTCAGGATCTATAGATGAGTAAAAACTATGTAAAACAAATTTGGTATTCCAGTCGC TTTTAAGTGGATCTAGGTTGCTTCACAAAACGTATTGTGTCCACAAGCAAACTATTATTCATAATGTTTC GCATAGATCACAAAATAGTGCAAAACTGACGTTTGCTTTTGATGTGTTAACTTGACTACTGCGCTGGATG CTAAGGCAAAAGACAAATTACATGTACTTGACAAACCAACCTATAGCCAAGCAGTTTCATCTCAATTAAT CAACTCTAATTGAAGCTTGTTGGGCAACTAATATACATGTACATGAAAAACATAACATTTGACGACACTT AAAAATGAGTAACAAATTGGGGAAGTGCATTAAAACGTAAAATTGAAAA
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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