The effect of long-range linkage disequilibrium on allele-frequency dynamics under stabilizing selection

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The effect of long-range linkage disequilibrium on allele-frequency dynamics under stabilizing selection

Authors

Negm, S.; Veller, C.

Abstract

Stabilizing selection on a polygenic trait reduces the trait\'s genetic variance by (i) generating correlations (linkage disequilibria) between opposite-effect alleles throughout the genome and (ii) selecting against rare alleles at polymorphic loci that affect the trait, eroding heterozygosity at these loci. Here, we characterize the impact of the linkage disequilibria, which stabilizing selection generates on a rapid timescale, on the subsequent allele-frequency dynamics at individual loci, which proceed on a slower timescale. We obtain expressions for the expected per-generation change in minor-allele frequency at individual loci, as functions of the effect sizes at these loci, the strength of selection on the trait, its variance and heritability, and the linkage relations among loci. Using whole-genome simulations, we show that our expressions predict allele-frequency dynamics under stabilizing selection more accurately than the expressions that have previously been used for this purpose. Our results have implications for understanding the genetic architecture of complex traits.

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