bioRxiv · 10.1101/2022.07.31.502179
Frequent non-genic adaptation and gene birth through the interplay of functionality and expression in a population model
Abstract
BackgroundOver evolutionary timescales, genomic loci can switch between functional and non-functional states through processes such as pseudogenization and de novo gene birth. Particularly, de novo gene birth is a widespread process, and many examples continue to be discovered across diverse evolutionary lineages. However, the general mechanisms that lead to functionalization are poorly understood, and estimated rates of de novo gene birth remain contentious. Here, we address this problem within a model that takes into account mutations and structural variation, allowing us to estimate the likelihood of emergence of new functions at non-functional loci. ResultsAssuming biologically reasonable mutation rates and mutational effects, we find that functionalization of non-genic loci requires the realization of strict conditions. This is in line with the observation that most de novo genes are localized to the vicinity of established genes. Our model also provides an explanation for the empirical observation that emerging proto-genes are often lost despite showing signs of adaptation. ConclusionsOur work elucidates the properties of non-genic loci that make them fertile for adaptation, and our results offer mechanistic insights into the process of de novo gene birth.
Source connections
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Mani, S., Tlusty, T.. 2022-08-02. Frequent non-genic adaptation and gene birth through the interplay of functionality and expression in a population model. https://doi.org/10.1101/2022.07.31.502179
Cite the original work for its findings. Save a collection to share your selection of sources.