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Associated RNAi Experiments
Table of all RNA interference experiments conducted using this feature, grouped by Phenotype CV: -Missing-
Gallery Image |
Title |
Gene or target symbol |
Sex/Stage |
Phenotype |
Date |
|
NAK F226+F227+F205 |
LsPGES2, LsPGES3, LsPGES1 |
both |
-Missing- -Missing- |
27.01.2016 - 14:00 04.02.2016 - 00:00 |
|
NAK F226+F227 |
|
both |
-Missing- -Missing- |
27.01.2016 - 14:00 04.02.2016 - 00:00 |
Alignments
The following features are aligned
Aligned Feature | Feature Type | Alignment Location |
LSalAtl2s1068 | supercontig | LSalAtl2s1068:94054..97506 + |
Analyses
This mRNA is derived from or has results from the following analyses
Analysis Name | Date Performed |
ensembl | 2013-09-26 .965016 |
Properties
Property Name | Value |
Logic name | ensemblgenomes |
Biotype | protein_coding |
Evidence | IEA |
Cross References
External references for this mRNA
Relationships
This mRNA is a part of the following gene feature(s):
The following exon feature(s) are a part of this mRNA:
The following polypeptide feature(s) derives from this mRNA:
Sequences
The following sequences are available for this feature:
protein sequence of EMLSAP00000000441 >EMLSAP00000000441 ID=EMLSAP00000000441|Name=EMLSAP00000000441|organism=Lepeophtheirus salmonis|type=polypeptide|length=162bp
MNHKLSKFLGRISSAYSPPSPLASTSPRCYASSSSPSKMSTSPRLALGGV SVAGGLYALYNFWPTQSQSSQIVQMNPDSEPIPHILPEAPPYNDKCIKIR YPEDKTKLKLTLYQYTTCPFCCKVRAFLDYFGISYDIVEVNSVFRKEIKW SPNYKKVPILVI back to topmRNA from alignment at LSalAtl2s1068:94054..97506+ Legend: exonpolypeptide Hold the cursor over a type above to highlight its positions in the sequence below. >EMLSAT00000000441-696288 ID=EMLSAT00000000441-696288|Name=EMLSAT00000000441|organism=Lepeophtheirus salmonis|type=mRNA|length=3453bp|location=Sequence derived from alignment at LSalAtl2s1068:94054..97506+ (Lepeophtheirus salmonis) CAATAACATAAGTCGAAGATTAATAATAATTAAAGGACCCTAGAGTCCTT
TAATAACGCAAGTACATAATATATGTTCAGCTGATTCCTGTGAAAACAGT
AGCTGGACACTTATGTAAACAAGTACGTTACAAAATTTATTTTTTTATAA
GTAATATTCTCGTGACGTCACTCTGGTTCTAGTCAGTCTCGCTACATTTT
TTTGGTGTATCGATTTATTTTTAAAAATTAGAAATAAATATTATTTTGGA
TTATCAAATAAACAGCCGGATAAAGTAAGGAAATTCTAACTTCTGCATAT
AATTATTTCTACAATTTAATTAACAGTATTTTATTTATTTTAGTGGATAA
TTTATGGTAATGAGGCTTACATAATCAGTTGAATGAAATTAAGTACAACT
ATTATTACATAAGCAGTAAAAAGAAGTAATGAATCACAAGCTATCCAAAT
TTCTTGGTCGGATATCCTCCGCATACTCGCCGCCATCACCGCTTGCTTCA
ACATCCCCCAGATGCTATGCATCTTCCTCTTCGCCATCGAAAATGAGTAC
CTCACCTCGACTAGCCCTTGGGGGTGTGAGTGTTGCGGGAGGACTCTATG
CTCTATACAACTTTTGGCCAACTCAAAGTCAATCATCACAGATCGTTCAA
ATGAATCCTGACTCAGAGCCTATCCCTCATATCCTGCCGGAGGCTCCTCC
CTATAATGATAAATGTATAAAGATTCGCTATCCGGAGGATAAAACAAAAT
TAAAGCTCACATTATATCAAGTGAATTTAGTTTGGAGAAATTAGACTAAT
TAATTATATAATGAATATCCTTCTTTCAGTATACAACATGCCCATTCTGC
TGTAAAGTGAGGGCTTTTCTGGATTACTTTGGCATCAGCTATGATATTGT
AGAGGTGAATTCCGTTTTTAGAAAAGAGATTAAATGGTCACCTAACTATA
AAAAGGTTCCTATTTTAGTGGTAAAAACTCCACAAGGGGACTTTTTGCAG
CTCAATGATTCAACTATGATTATTTCTGCACTTATGACCTATTTGAAGGA
GCCTTCTAAAAGTAAGTAAAAAGATATACTGGGATCAAATGAGTATACAC
ATTTCATTACTTTTCCCTTTCAAAAATGTATATCATTTACATTTAAATGT
AGACCACAGTATGGGCCATTAAACTGTATAAATTTCATTCAATTTATTTA
CTACTAGATGAATGACTAAGTGTATACCTCATTCAACGACAGAGATGTCA
TTTTGACGTATAAAATTACCGAATTTATTATTGCCAAATCGAGGAAGTTA
TAAAACACTTGTATTGGCCAAAGTCACAAACTAACTTTAGTAMTATATAG
CCTAGCCATTGTTATTTACTACATTTTTTGTTATATTATAATATATTAAT
AAGTCATGTAATTTCTTAATCATATTGTCAATTTGTAAGTTTCTGTGAAT
AGTGTGTGAATTTATGGATTTTAAAAAGGTTTTCTTTGATGAACTGTAGG
AGTCATGTCTTCTTCTTTTTTTTGATTTTTTTAACCTCTCCGTATCTTCA
AGCAGAATTGTGCATTGTAACTCATTGATAAACCTAGCCATATAATTTTG
AGTATTAATAAGTCTAATAGTTTCAATATATTAAATCAAATTTGTGGCTT
ATATTTAAAAATCAAAATTGTGAATGGGTTAAAAGAACATCTTAGCCTTT
CTAGTGTTAAGGGATTCTATGTTTTTGGGGGGCAATTTATGCTTTAAAAA
AGATACAAGGAAAAAAACATTCAAATTAAAGTTCCTGGAGCTTAAATAAA
TAAAATAAAAAATATATGGTTAACTTTTTATATTAAAATAGATGAAATAA
TAACTCTTTTTTTTAAATAAACTTATATAGGAAAGGGTAAATTTAAAGAT
AATTAACTTTAGTATAAATATAAAGCAAAGATTTTTTAGATGAAGATAAA
CTATAATTTTGTTTTTAATTCATTATTCATTTTTTGTAGTAGTCAACGAA
AAACTGTAGTAGAACCATTTCATCCCAGGGTTGCACACTGACTTTTTGCA
TTTAATTGTAATTTTCAAGGTTTTATTTCTTCTTAAATGAATGCTGCCTG
GGTGGATATCTTAAGACCTGTAATGCTATCAAGCAAACATGAAACATTTT
AAAAGTTTACACAATTTCTTTGGATAAATCTCTAACCCAAAAGTTAGCCN
GCCTAGGGTGGATATCTTAAGACCTGTAATGCTATCAAGCAAACATGAAA
CATTTTAAAAGTTTACACAATTTCTTTGGATAAATCTCTAACCCAAAAGT
TAGCCCGTTTAACCCCATCGTGCCCTACSTAMTMACTTCKTATAGYATAC
RTTGTTTAATATTCAAAAATTTCATTTTCTTCGTGGTTTTTTTTTTTCAG
ATCTGAAAGATATAGTCGAATGCTATCCACAAGTTACAAATACTGACCCA
AGTAGTGGTAAATCCACTATTGAAATTCGCAATAAGTATTTTATTATGCA
TCAAAATGACTCTGTTAATGATAAAAATCTGAAAGAAGAACTAAAGTGGA
GAAAATGGGTTGATAGTGTTTTGTACATCGTATTAGCCCCAACGTGTATC
GAAGTTTATCCGAGTCCATAGAGGCATTTCATTGGTTTGACACTGCGGGT
AATTGGAAGAATGTTTTTAATACATTTGAACGTCAAGTTGTTATATACTT
GGGAGCTTCCGTTATGTGGATTCTGGGAAAAGTGCTTAAGAAAAGACATG
GMCTTCCGGATGACGTGAGGGAAGCCATATATCACGAAGTGAATAACTAT
CTATCTCATGTGAAGAAAAAAGGTGGATCATTTGGTGGCGGAGAAGTCCC
GGATTTAGCGGATATTTCTTTTTACGGTACTTTAAACTCATTTGAGGGAT
GCGCTGCCTTTCAAGATGTACTAAGTCATACTGAACTTAGACAATGGTTT
ACGAAGATGAAATGGGCTGTGAGCTCTCGAGCTGGCGGKTCTAGTATTTA
ATTCATTATAATTAGACAAATTGTATGTATCATACAGTTTTTATTTGGGT
AAATGCACATTTGAGCAATAAAATAGTTAACGATGGGACTTTTCACCACA
GTCCTTTATTTCTTTAAGTGAATGTCTGACCAATGTTTTAGCAGACTTTA
TCACATTTTGATGTTTCTGATTTGTGATAAAACATAATATTTTACCTATT
TTAAGTAGTAAAGTATTATTTCATAAGTTAAGTTATAACTGCATAGATGA
AATAAAATTGCGCTCATCTGTTAATTTCATATTTGGATAATGTATTACGT
ATGATTTTCTAGTCAATTATAATTGAATTATTAAAACATGGTTTTACCGT
TTAATCGACAATTGGTTAATTCACAAATTTCTTGTCTCATTATGAAAATG
TATATAATAAGTGCATAATCTCATTATTTTCCAATAGATTGATACTTTCC
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