Last updated: 2020-10-25
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Knit directory: Comparative_eQTL/analysis/
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Rmd | aae75ef | Benjmain Fair | 2020-10-26 | update site |
Rmd | 7fc5e9c | Benjmain Fair | 2020-09-09 | update site, address reviewers |
html | 7fc5e9c | Benjmain Fair | 2020-09-09 | update site, address reviewers |
Rmd | bfa790a | Benjmain Fair | 2019-10-10 | update site |
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This site contains exploratory analysis notebook and R code to make most of the figures for DOI: 10.7554/eLife.59929. This site only contains R code (Rmarkdowns), including code to make most all of the figures from the paper. Many of these Rmarkdowns read data included in the associated repository in the data
and output
directories. To run through R code on this site, clone the repository, and run Rmarkdowns from the analysis
directory. Besides the figure source data and supplemental tables in the publication, other processed or semi-processed data (eg count tables) is available in the associated repository. Reproducible code for other aspects of this project is in a snakemake pipeline in code
. See the code/snakemake_workflow/README
for more info on how to run that.
Inter-individual variation in gene expression has been shown to be heritable and is often associated with differences in disease susceptibility between individuals. Many studies focused on mapping associations between genetic and gene regulatory variation, yet much less attention has been paid to the evolutionary processes that shape the observed differences in gene regulation between individuals in humans or any other primate. To begin addressing this gap, we performed a comparative analysis of gene expression variability and expression quantitative trait loci (eQTLs) in humans and chimpanzees, using gene expression data from primary heart samples. We found that expression variability in both species is often determined by non-genetic sources, such as cell-type heterogeneity. However, we also provide evidence that inter-individual variation in gene regulation can be genetically controlled, and that the degree of such variability is generally conserved in humans and chimpanzees. In particular, we found a significant overlap of orthologous genes associated with eQTLs in both species. We conclude that gene expression variability in humans and chimpanzees often evolves under similar evolutionary pressures.
Raw data for this project includes post mortem heart-tissues: