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Testing for biases in selection on avian reproductive traits and partitioning direct and indirect selection using quantitative genetic models

机译:使用定量遗传模型测试禽类繁殖性状选择的偏倚以及对直接和间接选择进行划分

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摘要

Key life history traits such as breeding time and clutch size are frequently both heritable and under directional selection, yet many studies fail to document micro-evolutionary responses. One general explanation is that selection estimates are biased by the omission of correlated traits that have causal effects on fitness, but few valid tests of this exist. Here we show, using a quantitative genetic framework and six decades of life-history data on two free-living populations of great tits Parus major, that selection estimates for egg-laying date and clutch size are relatively unbiased. Predicted responses to selection based on the Robertson-Price Identity were similar to those based on the multivariate breeder’s equation, indicating that unmeasured covarying traits were not missing from the analysis. Changing patterns of phenotypic selection on these traits (for laying date, linked to climate change) therefore reflect changing selection on breeding values, and genetic constraints appear not to limit their independent evolution. Quantitative genetic analysis of correlational data from pedigreed populations can be a valuable complement to experimental approaches to help identify whether apparent associations between traits and fitness are biased by missing traits, and to parse the roles of direct versus indirect selection across a range of environments.
机译:关键的生命史特征,例如繁殖时间和离合器大小通常都是可遗传的,而且是在方向选择下进行的,但是许多研究未能证明微观进化的反应。一种普遍的解释是,选择估计值因对适应性具有因果关系的相关性状的遗漏而有偏差,但对此的有效检验很少。在这里,我们显示,使用定量遗传框架和六个大山雀Parus major的两个自由生活种群的六十年生命历史数据,对产蛋日期和离合器大小的选择估计相对无偏。基于罗伯逊-普莱斯身份的对选择的预测反应与基于多元育种者方程的预测反应相似,这表明分析中没有缺失未测量的可变性状。因此,这些性状的表型选择模式的改变(定居日期,与气候变化有关)反映了育种值选择的改变,遗传限制似乎并不限制它们的独立进化。来自纯血统种群的相关数据的定量遗传分析可以作为实验方法的宝贵补充,以帮助鉴定特质与适应性之间的明显关联是否因缺失的特质而产生偏见,并分析直接选择与间接选择在各种环境中的作用。

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