4.8 Article

Tracing the Origin and Evolutionary Fate of Recent Gene Retrocopies in Natural Populations of the House Mouse

期刊

MOLECULAR BIOLOGY AND EVOLUTION
卷 39, 期 2, 页码 -

出版社

OXFORD UNIV PRESS
DOI: 10.1093/molbev/msab360

关键词

gene retroposition; house mouse; natural populations; adaptation; population divergence

资金

  1. Max Planck Society

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This study investigates the origin and evolutionary fate of retrogenes in house mouse populations. The findings suggest that ancient house-keeping genes are more likely to generate retrogenes, and their generation depends on the gene's expression level in germline cells. Most retrogenes are detrimental and quickly eliminated, but a subset appears to be neutral or even beneficial.
Although the contribution of retrogenes to the evolution of genes and genomes has long been recognized, the evolutionary patterns of very recently derived retrocopies that are still polymorphic within natural populations have not been much studied so far. We use here a set of 2,025 such retrocopies in nine house mouse populations from three subspecies (Mus musculus domesticus, M. m. musculus, and M. m. castaneus) to trace their origin and evolutionary fate. We find that ancient house-keeping genes are significantly more likely to generate retrocopies than younger genes and that the propensity to generate a retrocopy depends on its level of expression in the germline. Although most retrocopies are detrimental and quickly purged, we focus here on the subset that appears to be neutral or even adaptive. We show that retrocopies from X-chromosomal parental genes have a higher likelihood to reach elevated frequencies in the populations, confirming the notion of adaptive effects for out-of-X retrogenes. Also, retrocopies in intergenic regions are more likely to reach higher population frequencies than those in introns of genes, implying a more detrimental effect when they land within transcribed regions. For a small subset of retrocopies, we find signatures of positive selection, indicating they were involved in a recent adaptation process. We show that the population-specific distribution pattern of retrocopies is phylogenetically informative and can be used to infer population history with a better resolution than with SNP markers.

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