Hospital F, Chevalet C
Station de Génétique Végétale, INRA/UPS/INA-PG, Gif sur Yvette, France.
Genet Res. 1996 Feb;67(1):77-87. doi: 10.1017/s0016672300033498.
We study the dynamics under directional truncation selection of the genetic variability of a quantitative character controlled by a finite number of possibly linked loci with additive effects. After the first generation of selection, the build-up of linkage disequilibria (Bulmer effect) is analytically demonstrated from a genetical point of view in an infinite population. In the following generations, the dynamics of the system in a finite population are predicted using analytic recurrences under a multi-normal approximation, and computer simulations. The effects of recombination on the dynamics of linkage disequilibria induced by selection and drift, and the consequences for the additive genetic variance are then analysed and discussed from the simulation results. Compared to the rapid exploitation of genetic variability promoted by high recombination rates, low recombination rates promote an early storage of genetic variability in repulsion associations of alleles and a possible late release of genetic variance in the population, so that the variability of the character may be maintained over a longer period of time. In some cases, favourable recombination events in tightly linked systems induce an increase of the additive variance of the character, which may explain some results observed in long-term selection experiments. Our results emphasize that the joint effects of selection, linkage and drift must not be neglected in theoretical quantitative genetics, and require further investigation.
我们研究了在定向截尾选择下,由有限数量的可能连锁且具有加性效应的位点所控制的数量性状的遗传变异性的动态变化。在第一代选择之后,从遗传学角度在无限群体中解析证明了连锁不平衡的积累(布尔默效应)。在接下来的世代中,使用多元正态近似下的解析递归和计算机模拟来预测有限群体中系统的动态变化。然后根据模拟结果分析和讨论重组对由选择和漂变引起的连锁不平衡动态变化的影响,以及对加性遗传方差的影响。与高重组率促进遗传变异性的快速利用相比,低重组率促进了等位基因排斥关联中遗传变异性的早期储存以及群体中遗传方差可能的后期释放,从而使性状的变异性可以在更长时间内得以维持。在某些情况下,紧密连锁系统中的有利重组事件会导致性状加性方差增加,这可能解释了长期选择实验中观察到的一些结果。我们的结果强调,在理论数量遗传学中,选择、连锁和漂变的联合效应不可忽视,需要进一步研究。