EMLSAT00000006900, EMLSAT00000006900-702747 (mRNA) Lepeophtheirus salmonis

Overview
NameEMLSAT00000006900
Unique NameEMLSAT00000006900-702747
TypemRNA
OrganismLepeophtheirus salmonis (salmon louse)
Associated RNAi Experiments

Nothing found

Alignments
The following features are aligned
Aligned FeatureFeature TypeAlignment Location
LSalAtl2s390supercontigLSalAtl2s390:414906..420715 +
Analyses
This mRNA is derived from or has results from the following analyses
Analysis NameDate Performed
ensembl2013-09-26 .965016
Properties
Property NameValue
Logic nameensemblgenomes
Biotypeprotein_coding
EvidenceIEA
Cross References
External references for this mRNA
DatabaseAccession
Ensembl Metazoa (transcript)EMLSAT00000006900 (primary cross-reference)
Relationships

This mRNA is a part of the following gene feature(s):

Feature NameUnique NameSpeciesType
EMLSAG00000006900EMLSAG00000006900-689666Lepeophtheirus salmonisgene


The following exon feature(s) are a part of this mRNA:

Feature NameUnique NameSpeciesType
EMLSAE00000030298EMLSAE00000030298-739226Lepeophtheirus salmonisexon
EMLSAE00000030299EMLSAE00000030299-739227Lepeophtheirus salmonisexon
EMLSAE00000030300EMLSAE00000030300-739228Lepeophtheirus salmonisexon
EMLSAE00000030301EMLSAE00000030301-739229Lepeophtheirus salmonisexon
EMLSAE00000030302EMLSAE00000030302-739230Lepeophtheirus salmonisexon
EMLSAE00000030303EMLSAE00000030303-739231Lepeophtheirus salmonisexon


The following polypeptide feature(s) derives from this mRNA:

Feature NameUnique NameSpeciesType
polypeptide-auto777471auto777471Lepeophtheirus salmonispolypeptide
EMLSAP00000006900EMLSAP00000006900Lepeophtheirus salmonispolypeptide


Sequences
The following sequences are available for this feature:

protein sequence of EMLSAP00000006900

>EMLSAP00000006900 ID=EMLSAP00000006900|Name=EMLSAP00000006900|organism=Lepeophtheirus salmonis|type=polypeptide|length=736bp
MKKNSIEEYXKLEDENRTIKEDFELFKDKAELRIEDFQITLQNAMDTSEA
LLAKNKELKSKISLLESEVSVLGSLSSPCGKERQKDILPDMSVLETKEFE
NVEHKIITEELDNVRKVLEEKDTIIKTNNKSLSERDKEIEKVHARISELK
CGLHKSDKEISSLNNKVEENASYIQQLENIIVDKDYEITLAEEKIANYEK
KENERSSIDEKLSSTSEELKKTIKELDKYKIVNEELEKSLKKIHDERDRK
EKDLNDEIESLRQSKVKIKASDDEKTKLLSDKELEISSLQKEVKHLIQTD
VANRQMIDNQNSELKVLEVQIKKLNEETKDCKVLGKKIGEQQNQIDSLKN
QLNSKEREENMIEILKEELDSKNLEKNKLLDKISQLESKVIDASQLSELQ
LKISHLEEEIHSKNEEIRQARNQREATMFTYSKAFKTKEEEISRLKXEST
RIRDVIIRSSPTKNNVASSLKNELEKKGXTIKILEEQVQQSLDVNVETQE
NSLKSEIDSLKCQISRANNKHSREIEKIKRTNGKVIQEYKDANRELQKQI
GLTSNISDDSLQKSMLEADESLNVSVEISSKIKTKKKGRVRSARKKSRIS
ESSTLSPISSTSAKGNFDNNTEEGTEGDENIPYNTRNSSQITLSVRKPRR
KYVNMEDNFKETPRKGRSTLKNVGNSDISIDNSIPIPTPRRSTRKTLYNP
GKLEVFSPVQDLEESNSSPHTIVKRQLRARKKKLAS
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mRNA from alignment at LSalAtl2s390:414906..420715+

Legend: exonpolypeptide
Hold the cursor over a type above to highlight its positions in the sequence below.
>EMLSAT00000006900-702747 ID=EMLSAT00000006900-702747|Name=EMLSAT00000006900|organism=Lepeophtheirus salmonis|type=mRNA|length=5810bp|location=Sequence derived from alignment at LSalAtl2s390:414906..420715+ (Lepeophtheirus salmonis)
AAGTGAATGAAAAGATTTGAATGAAAAAGGAGGGATTTGATTCGACTTGG AGTTGCTACACAGTTCTTAGTTGAGAGTTGGTGGTTGTCGCTTGTGGGAG TTCTCTTGGAGTGAGTGGATAAAGAGGAAAAAATATGGAGAAGGGATCGC CKCCATCCATTTCTTCAGAGACTGGAGTGGAGAAGAAGCCGAGGGGCCTC CGGGTCTACGCGCGCCTCAAACCCCGACTGGAAGAGGAGGAGGAAGAAGA ATTCCGGAATGTGAAGACCCGTTTTACTTATATGAAGAATGAGATCTTGA CGGATCCCCAAGGAGGAGTGGATTTCAGTCAACACTTTGAATTTACCCGG ATTTTCGCTCCGAACGTGGACCAGTCCTCTTTTTTCCGTGAGATGGTCCT TGAGAGACTGGAGGCCTTTTTGTCGGGGGAGAACCAGTTGATCTTCACGT ATGGAGCCACGTCCMCGGGAAAGKCTTTCACTGTGCAAGGCKCTCCTGCC AGTCCTGGGATTTTGCCGCGCTCTCTGGATCTCATCTTTAATTCCCTTGG AGTAGAGCGCTTTCTGGATCGGAGTCCCCTTCTGCCCCACGGCTTCGACT CCGTCCAGATTTCCGCGTGTCATGATAAGTTGGAGCGAGAGAAGAAGGAA GTGCTGAGCCTGGGGCGGTTTCTGAATACTCAAGTGGAGGCGGAGYGMGA ATCCGGGCTGAGTGAGTGCGACAGCATCTGTACGGACGTGAGMGCTCAGA GTCTGGCCACCATGTTTCCGAGTCTTGGACATCGAGAAAGAGAAAATACT AAAGTGAGTAAGGTGGATCGAGAAGGAGTCTACTATTCATTATGGGTTTC CTTTGCGGAAATATATAACGAAAACATTTATGATCTTTTCCAAAAAATAC CTTTGCCATCCAATAAAGAAAAGGTGAGAAGATTACCTCTAAAATTAGCT GAAGATCGGAAGGGAAGTATATATATAAAAGGTCTGAAAGAAGTTCAAGT CTCCTCTGCGGACGAGGCCTACCAACTTCTCTTAATTGGTAGAAAGAATC TGCAATTTGCTGCCACGAAACTCAATCATAACTCCTCAAGAAGTCATTGT ATTTTTACCATTAAAATGATGAAATTTTGTGATAGCAATGAACCAAAATA TGGTCGTGTTAGTATTTTATCTTTTTGTGACTTGGCAGGSTCTGAGCGTA WTTAAAAAAACTCAAAATGATTTAAAAAGACAGAAAGAAACTGGGAACAT AAATACTTCACTTCTCGTGTTGGGACGTGTCATGAAGGCGTTGAGAGATA ATCAATACATAAAGGATTTGAAAAAACATTCTGTCGTTCCCTTTCGAGAC TCAAAGCTTACTCGTTTACTACAGGTTTTCTTCAAAGGACTGGGACAGGC ATCTATGATAGTGAACATAAGTCAAGCTCCATATCTATTTGATGAAACTC TTCAGGCTCTTAAATTCGCTGCGATTACCAGTAAAATTAAGTATGTTAGA GAATTTAAAACACCGAAGTCTAAGAGAAGGTCAACATTTTCTTCCATTTT ATTTGAGCATAAGAGAACATCTAATTTATTTGGAAGAGGCTCTATTGCTT GGGAAAATCCTATAATAAGTTCAACAATACAACATCCACAGATATTAAAT GAAGAAACAGAAGAACATGAACAAGAGGATGAATCATCCCTGATAAGCAA TTCTTGCCCAGATCAGTTTGAAGCACTTACTGATCTAGTCACTCAGCTAA GGCAAAGACTAAATGAAGAGATGGATAAAAATATGACTCTAGAGACTGAA ATTCGATCTGAATTATGTAGTAAATTTGATACAATGATGCTTCAAAATGA ACAACAATGGCAAAAACGTCTCCAAGAATCAACGGATCGTATTGAAAATC TTAGCTCATGGAGAATTACTCAGTTAGAGAATGCCTACAATGAGTGTCGC AAACGTAAAAGGTATGAACAAACGGATGAAGATAATTCAAATCGTATTGC CACATTAGAAACTGCACTTGATGTTAAAATTACTGAACTTGGAGAAAGTG ATAAACAGTTTAAGGCAATGAAAGAAACGTATAATTCTCTACTTAGCGTA AAACAAAAACTTCAAGAAGACCTTACGTTTTTTAAATTTGAAAATCAAAG CTTCAAAACGAGAATACAGCGTTTAGAAGATAAAAATATTGCACTTTCTC AAGAGAATAAGAGTAAAGACTTAGCAATTGAGTCTATGTCCACGAAACCC ATACTAATTGATTTGAGAAACCAGTTAAGTGATACTAAAAATAAACTCTC AAAAAAGAATGAGGAGGTGTCTTACTTTAAAAAGCTTTTAGATGAAGCTG GGGAAGAATTTATAGCTAAGGATGATGAATTGCAGAAGATGACTTTGGAT ATAAGCTCGTTAAGGGTAATATTAATAAAAATTTCACTTGTAAATTTATT ATATTTGTTTTATTTTTAGACTGAATGCACTAAGTTAACACTGGCATTAA GAGACGCACAGCACGAATACTCTATTCTTATTTCTGAGTCTAATCATCGT CAAGAAGAGAAAGAAAATTTAGAAGAACAAGTGATAAACTTTCGTACGGA GGTTACGGAGTTACTTGCTGAAAAATCTAACTTGATTTTGGAGCTAAGTA ATCTTAAAAAAGAAAAATTAACTAGTGGTCAGAAACTTGAACGTAATGTG ATATTAAAAGATTCTGAAGAGAATGAAAAAGAACTCAATCGAAGAATATT GNAAACTTGAGGATGAAAATCGTACTATCAAAGAGGATTTTGAACTTTTC AAAGATAAAGCAGAATTGAGAATTGAAGATTTTCAAATAACGTTACAAAA CGCTATGGACACTTCAGAAGCTCTTCTAGCAAAGAACAARGAATTGAAGT CCAAAATTAGTCTACTGGAGTCTGAAGTTAGTGTCTTGGGTTCACTCTCC TCTCCTTGTGGCAAAGAGAGACAAAAAGATATTTTACCGGACATGTCTGT TCTTGAAACTAAAGAATTTGAGAATGTTGAACACAAGATAATAACTGAGG AACTCGACAATGTTAGAAAAGTACTTGAAGAGAAGGATACAATAATTAAG ACAAATAATAAATCTTTATCTGAAAGAGATAAAGAAATTGAAAAGGTACA TGCAAGAATTTCTGAATTAAAATGTGGTCTGCATAAATCAGATAAGGAAA TTAGCTCATTAAATAATAAAGTGGAAGAAAATGCATCGTATATTCAACAA TTAGAAAATATAATCGTAGACAAGGACTATGAAATAACTTTAGCTGAAGA AAAAATCGCAAACTACGAGAAAAAAGAAAATGAGAGGAGTAGCATCGATG AAAAACTGTCTTCTACATCGGAAGAACTGAAGAAAACTATCAAAGAGCTT GATAAATACAAAATAGTTAATGAGGAGCTCGAAAAAAGTTTAAAGAAGAT ACATGATGAAAGAGACAGGAAAGAAAAGGATTTAAATGATGAAATCGAGA GTTTAAGGCAATCCAAAGTTAAAATCAAAGCCTCAGATGATGAAAAAACT AAGCTTTTGTCTGATAAAGAACTTGAAATTAGTAGCCTTCAAAAAGAAGT TAAGCATTTAATTCAAACAGATGTGGCAAACCGTCAAATGATAGACAATC AAAATTCAGAACTCAAAGTACTAGAAGTTCAAATTAAAAAGTTGAATGAA GAAACAAAAGACTGTAAGGTTCTTGGTAAAAAAATTGGAGAGCAACAAAA TCAAATCGACTCTCTCAAGAATCAGGTAATTTATTAATTTAGGTATTGAC ATATAAATTGACTGGTCCATATTTTATTTATTTCGCAGCTAAATTCAAAA GAAAGAGAAGAAAATATGATTGAGATCTTAAAAGAAGAGTTGGATTCCAA AAACTTGGAGAAGAACAAGTTATTAGATAAAATATCCCAATTAGAAAGTA AAGTCATTGATGCATCTCAGTTGTCTGAATTGCAATTGAAAATATCGCAC CTTGAGGAAGAAATCCACTCAAAAAATGAAGAAATACGTCAAGCACGTAA TCAAAGGGAGGCTACTATGTTCACTTACTCAAAGGCATTTAAAACCAAAG AAGAAGAAATATCTAGATTAAAGKAAGAATCTACTAGGATACGAGACGTT ATTATTAGATCCTCTCCCACAAAAAATAATGTGGCTTCATCATTGAAAAA TGAATTGGAGAAAAAAGGGGMAACCATTAAGATATTGGAAGAGCAAGTCC AGCAATCATTGTAAGATCGCTTTTGTGCTTGATTACTATTTTTCTCATCG AATTATTCATTGATCCTTCTTTTCTCTCTTTCTTTTTTAAGGGATGTCAA TGTAGAAACTCAGGAAAATTCTCTAAAAAGTGAGATTGACAGTCTTAAGT GTCAGATTTCAAGAGCCAACAATAAGCATTCACGTGAAATTGAAAAGATA AAAAGAACAAATGGTAAAGTTATTCAAGAGTATAAGGATGCCAATCGCGA ACTACAGAAGCAAATAGGATTAACATCTAACATATCCGATGATTCATTGC AAAAGAGCATGCTTGAAGCTGACGAGTCACTAAATGTTTCAGTTGAAATA TCGAGTAAAATCAAAACGAAAAAAAAAGGTCGAGTTCGTAGTGCTCGTAA AAAATCAAGGATTAGTGAATCATCAACCCTTTCTCCAATATCTTCTACTT CGGCGAAGGGCAATTTTGATAATAATACTGAGGAGGGCACTGAAGGAGAT GAAAATATTCCTTACAACACGCGCAATTCTAGTCAAATTACTCTGTCAGT TCGGAAACCTAGAAGAAAGTACGTTAATATGGAGGACAATTTTAAGGAGA CGCCACGTAAAGGACGAAGTACTTTGAAAAATGTTGGTAATTCTGACATA AGTATAGACAATTCCATTCCTATTCCTACACCGCGCAGATCAACTCGAAA GACGCTTTATAACCCTGGAAAACTAGAGGTACCTTTTTATTCTTTTAAAT GTTATTTTATGAAGTAGGAATTACTATTCTCTATTTTAGGTTTTTAGTCC TGTCCAGGATTTAGAAGAAAGTAATTCATCTCCTCACACGATAGTTAAAC GTCAGTTAAGAGCACGAAAAAAGAAGTTAGCTAGTTAAATATTTATTCCT GTTTGCCATACTTACATCAAATAAAAATGTACAAATATAAGTCAACGGAC ACGTCCACACAACGGGGTAATTGTGCTACTACAGCAGATTCTTAAACCTA GTTTACATTAAAATTTTGTTCAATGATATTTTACATTTCATAAATTTTAA AATACGAATTTGTTCGTTTTCCTCATTCATGGCTTAATGTCTCTCGTAAG ATAGGGTGGAGCNNTCCTGTTTGCCATACTTACATCAAATAAAAATGTAC AAATATAAGTCAACGGACACGTCCACACAACGGGGTAATTGTGCTACTAC AGCAGATTCTTAAACCTAGTTTACATTAAAATTTTGTTCAATGATATTTT ACATTTCATAAATTTTAAAATACGAATTTGTTCGTTTTCCTCATTCATGG CTTAATGTCTCTCGTAAGATAGGGTGGAGCATCTATTGATAAGATGGTCT GCACTTTGCAATTCTACCATACACACATTGGACGTTGAGCTTATGTACTT CAACTTGCTTGGGCGGGCTTGAAAAGGGCCATGCCCAGTGTATGCTTGAA CAATGAGTCCCAATTTTTCTCTTCCAAGCTTCATACACTTCCACTTAGGC TTATTAAGTATAGTATGTGTATGTTTCATACTTTGATATTTTCTATATCT GTCACACCAA
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