Pitchers William, Wolf Jason B, Tregenza Tom, Hunt John, Dworkin Ian
Department of Zoology, Program in Ecology Evolutionary Biology and Behavior, BEACON Center for the Study of Evolution in Action, Michigan State University, East Lansing, MI 48824, USA College of Life and Environmental Sciences, Centre for Ecology and Conservation, University of Exeter, Tremough Campus, Penryn, Cornwall TR10 9EZ, UK.
Department of Biology and Biochemistry, University of Bath, Claverton Down, Bath BA2 7AY, UK.
Philos Trans R Soc Lond B Biol Sci. 2014 Aug 19;369(1649):20130252. doi: 10.1098/rstb.2013.0252.
A fundamental question in evolutionary biology is the relative importance of selection and genetic architecture in determining evolutionary rates. Adaptive evolution can be described by the multivariate breeders' equation (Δz(-)=Gβ), which predicts evolutionary change for a suite of phenotypic traits (Δz(-)) as a product of directional selection acting on them (β) and the genetic variance-covariance matrix for those traits (G ). Despite being empirically challenging to estimate, there are enough published estimates of G and β to allow for synthesis of general patterns across species. We use published estimates to test the hypotheses that there are systematic differences in the rate of evolution among trait types, and that these differences are, in part, due to genetic architecture. We find some evidence that sexually selected traits exhibit faster rates of evolution compared with life-history or morphological traits. This difference does not appear to be related to stronger selection on sexually selected traits. Using numerous proposed approaches to quantifying the shape, size and structure of G, we examine how these parameters relate to one another, and how they vary among taxonomic and trait groupings. Despite considerable variation, they do not explain the observed differences in evolutionary rates.
进化生物学中的一个基本问题是选择和遗传结构在决定进化速率方面的相对重要性。适应性进化可以用多变量育种家方程(Δz(-)=Gβ)来描述,该方程预测一组表型性状(Δz(-))的进化变化是作用于这些性状的定向选择(β)与这些性状的遗传方差 - 协方差矩阵(G)的乘积。尽管对G和β进行估计在经验上具有挑战性,但已有足够多关于G和β的已发表估计值,足以综合出跨物种的一般模式。我们利用已发表的估计值来检验以下假设:不同性状类型之间的进化速率存在系统差异,并且这些差异部分归因于遗传结构。我们发现一些证据表明,与生活史或形态性状相比,性选择性状的进化速率更快。这种差异似乎与针对性选择性状的更强选择无关。我们使用多种提出的方法来量化G的形状、大小和结构,研究这些参数如何相互关联,以及它们在分类和性状分组之间如何变化。尽管存在相当大的差异,但它们并不能解释观察到的进化速率差异。