bioRxiv · 10.1101/2022.10.03.510711
Evolutionary and biomedical implications of sex differences in the primate brain transcriptome
Abstract
Humans exhibit sex differences in the prevalence of many neurodevelopmental and neurodegenerative conditions. To better understand the translatability of a critical nonhuman primate model, the rhesus macaque, we generated one of the largest multibrain region bulk transcriptional datasets for this species and characterized sex-biased gene expression patterns. We demonstrate that these patterns are similar to those in humans and are associated with overlapping regulatory mechanisms, biological processes, and genes implicated in sex-biased human disorders, including autism. We also show that sex-biased genes exhibit greater genetic variance for expression and more tissue-specific expression patterns, which may facilitate the rapid evolution of sex-biased genes. Our findings provide insights into the biological mechanisms underlying sex-biased disease and validate the rhesus macaque model for the study of these conditions.
Source connections
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
DeCasien, A. R., Chiou, K. L., Testard, C., Mercer, A., Negron-Del Valle, J. E., Surratt, S. E. B., Gonzalez, O., Stock, M. K., Ruiz-Lambides, A. V., Martinez, M. I., Cayo Biobank Research Unit,, Anton, S., Walker, C. S., Sallet, J., Wilson, M. A., Brent, L. J. N., Montague, M. J. N., Sherwood, C. C., Platt, M. L., Higham, J. P., Snyder-Mackler, N.. 2022-10-04. Evolutionary and biomedical implications of sex differences in the primate brain transcriptome. https://doi.org/10.1101/2022.10.03.510711
Cite the original work for its findings. Save a collection to share your selection of sources.