AI Article Synopsis

  • Ratios of effective population size (N(e)) to census population size (N) are important for measuring genetic drift in populations and can be influenced by factors like mating systems and age at sexual maturation.
  • Different levels of persistent individual differences in male mating success lower the N(e)/N ratio compared to situations where mating is independent across seasons.
  • The impact of age at maturity on the N(e)/N ratio varies based on juvenile survival rates, with delayed maturation and low survival leading to increased genetic drift.

Article Abstract

Ratios of effective populations size, N(e), to census population size, N, are used as a measure of genetic drift in populations. Several life-history parameters have been shown to affect these ratios, including mating system and age at sexual maturation. Using a stochastic matrix model, we examine how different levels of persistent individual differences in mating success among males may affect N(e)/N, and how this relates to generation time. Individual differences of this type are shown to cause a lower N(e)/N ratio than would be expected when mating is independent among seasons. Examining the way in which age at maturity affects N(e)/N, we find that both the direction and magnitude of the effect depends on the survival rate of juveniles in the population. In particular, when maturation is delayed, lowered juvenile survival causes higher levels of genetic drift. In addition, predicted shifts in N(e)/N with changing age at maturity are shown to be dependent on which of the commonly used definitions of census population size, N, is employed. Our results demonstrate that patterns of mating success, as well as juvenile survival probabilities, have substantial effects on rates of genetic drift.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3169030PMC
http://dx.doi.org/10.1098/rspb.2011.0283DOI Listing

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