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The impact of maternal effects on adaptive evolution: Combining quantitative genetics and phenotypic selection in a natural plant population.

机译:母体效应对适应性进化的影响:在自然植物种群中结合定量遗传学和表型选择。

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When a mother influences the phenotypic expression of traits in her offspring, the direction, rate, and duration of adaptive evolution can be modified from standard Mendelian models. To explore the evolutionary implications of trans-generational maternal effects, I quantified two aspects of evolutionary response: the quantitative genetic basis of maternal inheritance and the magnitude of phenotypic selection at the individual and maternal family level for ten traits expressed at four stages in the life cycle in a winter annual plant, Collinsia verna. In a hierarchical quantitative genetic analysis of Mendelian and maternal inheritance, I estimated six additive and environmental causal components of variance: direct (i.e. Mendelian) additive and environmental, maternal additive and environmental and the direct-maternal additive and environmental covariances. The structure of maternal inheritance changed through the life cycle. Early traits were influenced more by maternal additive than by direct effects, direct and maternal additive effects covaried negatively, and direct-maternal environmental covariance was positive. At subsequent stages, some traits displayed strictly Mendelian inheritance, while others displayed direct and maternal additive genetic effects of the same magnitude and negative direct-maternal covariances. Maternal environmental components were negligible beyond emergence. The negative direct-maternal covariances for all maternally inherited traits resulted in near zero or negative realized heritabilities indicating no or reversed response to selection, respectively. In nature, the magnitude of selection on maternally inherited traits will also determine evolutionary response. I examined phenotypic selection at two levels: individual and maternal. An episodic analysis of individual selection across four stages in the life cycle demonstrated that large fall size and later emergence were directly favored across all episodes, although the magnitude and direction of selection varied among episodes. As a result of positive phenotypic correlations among size traits, selection also indirectly favored heavier seeds and larger initial size. Maternal selection may also affect selection response because substantial among maternal family variance in fitness indicated the opportunity for maternal selection. Maternal effects are likely to have dramatic short-term evolutionary consequences by constraining the selection response, influencing correlated response to selection via the phenotypic variance-covariance matrix, and affecting offspring fitness directly via maternal selection.
机译:当母亲影响其后代性状的表型表达时,可以根据标准的孟德尔模型修改适应性进化的方向,速度和持续时间。为了探究跨代母体效应的进化意义,我量化了进化反应的两个方面:母体遗传的定量遗传基础以及在个体和母体家庭层面针对生活中四个阶段表达的十个性状的表型选择幅度在一年生的冬季植物,Collinsia verna中循环。在孟德尔和母系遗传的分层定量遗传分析中,我估计了方差的六个加性和环境因果成分:直接(即孟德尔式)加性和环境,母性加性和环境以及直接母性加性和环境协方差。孕产妇继承的结构在整个生命周期中都发生了变化。早期性状受母体加性的影响大于直接效应的影响,直接和母体加性效应的相关性为负,而直接母体环境的协方性为正。在随后的阶段,一些性状表现出严格的孟德尔遗传,而另一些则表现出相同数量级的直接和母本遗传效应和负的直接母本协方差。孕产妇的环境因素在出现后可以忽略不计。所有母体遗传性状的负母亲协方差分别导致接近零或负的实现遗传力,分别表示对选择无反应或反向反应。在自然界中,对母亲遗传性状的选择程度也将决定进化反应。我在两个层次上检查了表型选择:个人和母亲。对生命周期四个阶段中的个人选择进行的情节分析表明,尽管选择的幅度和方向在各个事件中有所不同,但在所有事件中直接倾向于大跌倒的大小和后来出现。由于大小性状之间存在正表型相关性,选择也间接地偏重了较重的种子和较大的初始大小。孕产妇的选择也可能影响选择反应,因为孕产妇家庭健康状况的差异表明孕产妇选择的机会。通过限制选择反应,通过表型方差-协方差矩阵影响对选择的相关反应,以及通过母亲选择直接影响后代的健康状况,母亲的作用可能会对戏剧性的短期进化产生重大影响。

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