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受稳定选择、突变和漂变影响的多基因系统的分歧。

The divergence of a polygenic system subject to stabilizing selection, mutation and drift.

作者信息

Barton N

出版信息

Genet Res. 1989 Aug;54(1):59-77. doi: 10.1017/s0016672300028378.

Abstract

Polygenic variation can be maintained by a balance between mutation and stabilizing selection. When the alleles responsible for variation are rare, many classes of equilibria may be stable. The rate at which drift causes shifts between equilibria is investigated by integrating the gene frequency distribution W2N II (pq)4N mu-1. This integral can be found exactly, by numerical integration, or can be approximated by assuming that the full distribution of allele frequencies is approximately Gaussian. These methods are checked against simulations. Over a wide range of population sizes, drift will keep the population near an equilibrium which minimizes the genetic variance and the deviation from the selective optimum. Shifts between equilibria in this class occur at an appreciable rate if the product of population size and selection on each locus is small (Ns alpha 2 less than 10). The Gaussian approximation is accurate even when the underlying distribution is strongly skewed. Reproductive isolation evolves as populations shift to new combinations of alleles: however, this process is slow, approaching the neutral rate (approximately mu) in small populations.

摘要

多基因变异可通过突变与稳定选择之间的平衡得以维持。当导致变异的等位基因罕见时,许多类别的平衡可能是稳定的。通过对基因频率分布W2N II (pq)4N mu - 1进行积分,研究了漂变导致平衡间转移的速率。这个积分可以精确求解、通过数值积分得到,或者通过假设等位基因频率的完整分布近似为高斯分布来近似。这些方法通过模拟进行检验。在广泛的种群大小范围内,漂变会使种群保持在一个使遗传方差和与选择最优值的偏差最小化的平衡附近。如果种群大小与每个位点上的选择的乘积较小(Nsα2小于10),这类平衡间的转移会以可观的速率发生。即使基础分布严重偏斜,高斯近似也是准确的。随着种群转向新的等位基因组合,生殖隔离会逐渐演化:然而,这个过程很缓慢,在小种群中接近中性速率(约为mu)。

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