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行为进化的限制:在定向选择下复杂性状的数量遗传学。

Limits to behavioral evolution: the quantitative genetics of a complex trait under directional selection.

机构信息

Department of Biology, University of California, Riverside, California, 92521.

出版信息

Evolution. 2013 Nov;67(11):3102-19. doi: 10.1111/evo.12200. Epub 2013 Jul 23.

Abstract

Replicated selection experiments provide a powerful way to study how "multiple adaptive solutions" may lead to differences in the quantitative-genetic architecture of selected traits and whether this may translate into differences in the timing at which evolutionary limits are reached. We analyze data from 31 generations (n=17,988) of selection on voluntary wheel running in house mice. The rate of initial response, timing of selection limit, and height of the plateau varied significantly between sexes and among the four selected lines. Analyses of litter size and realized selection differentials seem to rule out counterposing natural selection as a cause of the selection limits. Animal-model analyses showed that although the additive genetic variance was significantly lower in selected than control lines, both before and after the limits, the decrease was not sufficient to explain the limits. Moreover, directional selection promoted a negative covariance between additive and maternal genetic variance over the first 10 generations. These results stress the importance of replication in selection studies of higher-level traits and highlight the fact that long-term predictions of response to selection are not necessarily expected to be linear because of the variable effects of selection on additive genetic variance and maternal effects.

摘要

复制选择实验提供了一种强大的方法来研究“多种适应性解决方案”如何导致所选特征的数量遗传结构的差异,以及这是否可能转化为达到进化极限的时间差异。我们分析了 31 代(n=17988)对家鼠自愿轮跑的选择数据。初始反应速度、选择极限的时间和高原的高度在性别之间和四个选择系之间差异显著。对窝仔数和实现选择差异的分析似乎排除了自然选择作为选择极限的原因。动物模型分析表明,尽管选择系的加性遗传方差明显低于对照系,但在达到选择极限之前和之后,这种下降都不足以解释选择极限。此外,定向选择在最初的 10 代中促进了加性和母体遗传方差之间的负协方差。这些结果强调了在高级特征的选择研究中进行复制的重要性,并突出了这样一个事实,即由于选择对加性遗传方差和母体效应的影响不同,对选择反应的长期预测不一定是线性的。

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