Pennekamp Frank, Mitchell Katherine A, Chaine Alexis, Schtickzelle Nicolas
Earth and Life Institute & Biodiversity Research Centre, Université Catholique de Louvain, Croix du Sud 4, L7-07-04, 1348 Louvain-la-Neuve, Belgium.
Evolution. 2014 Aug;68(8):2319-30. doi: 10.1111/evo.12428. Epub 2014 May 22.
Dispersal and phenotypic plasticity are two main ways for species to deal with rapid changes of their environments. Understanding how genotypes (G), environments (E), and their interaction (genotype and environment; G × E) each affects dispersal propensity is therefore instrumental for predicting the ecological and evolutionary responses of species under global change. Here we used an actively dispersing ciliate to quantify the contributions of G, E, and G × E on dispersal propensity, exposing 44 different genotypes to three different environmental contexts (densities in isogenotype populations). Moreover, we assessed the condition dependence of dispersal, that is, whether dispersal is related to morphological, physiological, or behavioral traits. We found that genotypes showed marked differences in dispersal propensity and that dispersal is plastically adjusted to density, with the overall trend for genotypes to exhibit negative density-dependent dispersal. A small, but significant G × E interaction indicates genetic variability in plasticity and therefore some potential for dispersal plasticity to evolve. We also show evidence consistent with condition-dependent dispersal suggesting that genotypes also vary in how individual condition is linked to dispersal under different environmental contexts thereby generating complex dispersal behavior due to only three variables (genes, environment, and individual condition).
扩散和表型可塑性是物种应对环境快速变化的两种主要方式。因此,了解基因型(G)、环境(E)及其相互作用(基因型与环境;G×E)如何各自影响扩散倾向,对于预测全球变化下物种的生态和进化响应至关重要。在这里,我们使用一种积极扩散的纤毛虫来量化G、E和G×E对扩散倾向的贡献,将44种不同基因型暴露于三种不同的环境背景(同基因型种群中的密度)下。此外,我们评估了扩散的条件依赖性,即扩散是否与形态、生理或行为特征相关。我们发现基因型在扩散倾向方面表现出显著差异,并且扩散会根据密度进行可塑性调整,基因型总体上呈现出负密度依赖性扩散的趋势。一个小但显著的G×E相互作用表明可塑性存在遗传变异性,因此扩散可塑性有一定的进化潜力。我们还展示了与条件依赖性扩散一致的证据,表明在不同环境背景下,基因型在个体状态与扩散的关联方式上也存在差异,从而仅由三个变量(基因、环境和个体状态)就产生了复杂的扩散行为。