International audienceLong non-coding RNAs (lncRNAs) appear as key regulators of gene expression through numerous mechanisms. Yet, particularly in domesticated species like chicken, their annotation is incomplete and their expression in different tissues poorly characterized. Here, we used data from 4 public databases (Ensembl, NONCODE, NCBI, ALDB), a recent lncRNA catalogue, and genes models from 364 RNA-seq samples from our lab to generate an extensive annotation of the chicken genome aggregating most of the currently known lncRNAs, plus robust models of newly discovered lncRNA from our dataset. Our extended lncRNAs annotation comprises 30084 lncRNA loci versus 4640 in the Ensembl reference. These lncRNAs follow the same trends as those i...
International audienceAbstractBackgroundImproving functional annotation of the chicken genome is a k...
Abstract Background Improving ...
Vertebrate genomes encode thousands of non-coding RNAs including short non-coding RNAs (such as micr...
Long non-coding RNAs (lncRNAs) appear as key regulators of gene expression through numerous mechanis...
International audienceLong non-coding RNAs (LNC) regulate numerous biological processes. In contrast...
International audienceLong non-coding RNAs (LNC) regulate numerous biological processes. In contrast...
International audienceLong non-coding RNAs (LNC) regulate numerous biological processes. In contrast...
International audienceLong non-coding RNAs (LNC) regulate numerous biological processes. In contrast...
International audienceBackground - Improving functional annotation of the chicken genome is a key ch...
International audienceBackground - Improving functional annotation of the chicken genome is a key ch...
International audienceBackground - Improving functional annotation of the chicken genome is a key ch...
International audienceBackground - Improving functional annotation of the chicken genome is a key ch...
Improving functional annotation of the chicken genome is a key challenge in bridging the gap between...
AbstractVertebrate genomes encode thousands of non-coding RNAs including short non-coding RNAs (such...
International audienceImproving the functional annotation of the chicken genome is a key challenge i...
International audienceAbstractBackgroundImproving functional annotation of the chicken genome is a k...
Abstract Background Improving ...
Vertebrate genomes encode thousands of non-coding RNAs including short non-coding RNAs (such as micr...
Long non-coding RNAs (lncRNAs) appear as key regulators of gene expression through numerous mechanis...
International audienceLong non-coding RNAs (LNC) regulate numerous biological processes. In contrast...
International audienceLong non-coding RNAs (LNC) regulate numerous biological processes. In contrast...
International audienceLong non-coding RNAs (LNC) regulate numerous biological processes. In contrast...
International audienceLong non-coding RNAs (LNC) regulate numerous biological processes. In contrast...
International audienceBackground - Improving functional annotation of the chicken genome is a key ch...
International audienceBackground - Improving functional annotation of the chicken genome is a key ch...
International audienceBackground - Improving functional annotation of the chicken genome is a key ch...
International audienceBackground - Improving functional annotation of the chicken genome is a key ch...
Improving functional annotation of the chicken genome is a key challenge in bridging the gap between...
AbstractVertebrate genomes encode thousands of non-coding RNAs including short non-coding RNAs (such...
International audienceImproving the functional annotation of the chicken genome is a key challenge i...
International audienceAbstractBackgroundImproving functional annotation of the chicken genome is a k...
Abstract Background Improving ...
Vertebrate genomes encode thousands of non-coding RNAs including short non-coding RNAs (such as micr...