Department 18/Section of Environmental Engineering, Aalborg University Aalborg, Denmark ; Aalborg Zoo Aalborg, Denmark.
Department of Bioscience, Aarhus University Aarhus C, Denmark.
Ecol Evol. 2014 Nov;4(22):4230-6. doi: 10.1002/ece3.1298. Epub 2014 Oct 20.
Evolutionary ecologists commonly use reaction norms, which show the range of phenotypes produced by a set of genotypes exposed to different environments, to quantify the degree of phenotypic variance and the magnitude of plasticity of morphometric and life-history traits. Significant differences among the values of the slopes of the reaction norms are interpreted as significant differences in phenotypic plasticity, whereas significant differences among phenotypic variances (variance or coefficient of variation) are interpreted as differences in the degree of developmental instability or canalization. We highlight some potential problems with this approach to quantifying phenotypic variance and suggest a novel and more informative way to plot reaction norms: namely "a plot of log (variance) on the y-axis versus log (mean) on the x-axis, with a reference line added". This approach gives an immediate impression of how the degree of phenotypic variance varies across an environmental gradient, taking into account the consequences of the scaling effect of the variance with the mean. The evolutionary implications of the variation in the degree of phenotypic variance, which we call a "phenotypic variance gradient", are discussed together with its potential interactions with variation in the degree of phenotypic plasticity and canalization.
进化生态学家通常使用反应规范,它显示了一组暴露在不同环境中的基因型所产生的表型范围,以量化形态和生活史特征的表型方差程度和可塑性大小。反应规范斜率值之间的显著差异被解释为表型可塑性的显著差异,而表型方差(方差或变异系数)之间的显著差异被解释为发育不稳定性或管化程度的差异。我们强调了这种量化表型方差的方法存在的一些潜在问题,并提出了一种新颖且更具信息量的绘制反应规范的方法:即在 y 轴上绘制对数(方差)与 x 轴上的对数(均值),并添加参考线。这种方法可以立即了解表型方差的程度如何在环境梯度上变化,同时考虑到方差与均值的缩放效应的后果。我们将讨论表型方差程度变化的进化意义,我们称之为“表型方差梯度”,并讨论其与表型可塑性和管化程度变化的潜在相互作用。