Literature DB >> 22661323

Dynamics of neutral and selected alleles when the offspring distribution is skewed.

Ricky Der1, Charles Epstein, Joshua B Plotkin.   

Abstract

We analyze the dynamics of two alternative alleles in a simple model of a population that allows for large family sizes in the distribution of offspring number. This population model was first introduced by Eldon and Wakeley, who described the backward-time genealogical relationships among sampled individuals, assuming neutrality. We study the corresponding forward-time dynamics of allele frequencies, with or without selection. We derive a continuum approximation, analogous to Kimura's diffusion approximation, and we describe three distinct regimes of behavior that correspond to distinct regimes in the coalescent processes of Eldon and Wakeley. We demonstrate that the effect of selection is strongly amplified in the Eldon-Wakeley model, compared to the Wright-Fisher model with the same variance effective population size. Remarkably, an advantageous allele can even be guaranteed to fix in the Eldon-Wakeley model, despite the presence of genetic drift. We compute the selection coefficient required for such behavior in populations of Pacific oysters, based on estimates of their family sizes. Our analysis underscores that populations with the same effective population size may nevertheless experience radically different forms of genetic drift, depending on the reproductive mechanism, with significant consequences for the resulting allele dynamics.

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Year:  2012        PMID: 22661323      PMCID: PMC3416011          DOI: 10.1534/genetics.112.140038

Source DB:  PubMed          Journal:  Genetics        ISSN: 0016-6731            Impact factor:   4.562


  19 in total

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3.  Linkage disequilibrium under skewed offspring distribution among individuals in a population.

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6.  The sampling theory of selectively neutral alleles.

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  17 in total

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7.  The equilibrium allele frequency distribution for a population with reproductive skew.

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Review 8.  Coalescent inferences in conservation genetics: should the exception become the rule?

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10.  Malaria life cycle intensifies both natural selection and random genetic drift.

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