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Natural and human‐induced environmental changes and their effects on adaptive potential of wild animal populations

机译:自然和人为环境变化及其对野生动物种群适应潜力的影响

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摘要

A major challenge of evolutionary ecology over the next decades is to understand and predict the consequences of the current rapid and important environmental changes on wild populations. Extinction risk of species is linked to populations’ evolutionary potential and to their ability to express adaptive phenotypic plasticity. There is thus a vital need to quantify how selective pressures, quantitative genetics parameters, and phenotypic plasticity, for multiple traits in wild animal populations, may vary with changes in the environment. Here I review our previous research that integrated ecological and evolutionary theories with molecular ecology, quantitative genetics, and long‐term monitoring of individually marked wild animals. Our results showed that assessing evolutionary and plastic changes over time and space, using multi‐trait approaches, under a realistic range of environmental conditions are crucial steps toward improving our understanding of the evolution and adaptation of natural populations. Our current and future work focusses on assessing the limits of adaptive potential by determining the factors constraining the evolvability of plasticity, those generating covariation among genetic variance and selection, as well as indirect genetic effects, which can affect population's capacity to adjust to environmental changes. In doing so, we aim to provide an improved assessment of the spatial and temporal scale of evolutionary processes in wild animal populations.
机译:在接下来的几十年中,进化生态学的主要挑战是了解和预测当前快速而重要的环境变化对野生种群的影响。物种的灭绝风险与种群的进化潜力及其表达适应性表型可塑性的能力有关。因此,迫切需要量化野生动物种群中多个特征的选择性压力,定量遗传学参数和表型可塑性如何随环境变化而变化。在这里,我回顾了我们先前的研究,该研究将生态学和进化论与分子生态学,定量遗传学以及对单个标记的野生动物的长期监测相结合。我们的结果表明,在现实的环境条件下,使用多特征方法评估随时间和空间的演化和塑性变化,是增进我们对自然种群的进化和适应的理解的关键步骤。我们当前和未来的工作重点是通过确定限制可塑性演化的因素,在遗传变异和选择之间产生协变的因素以及间接遗传效应来评估适应潜力的极限,这些因素可能会影响人口适应环境变化的能力。在此过程中,我们旨在提供对野生动物种群进化过程的时空尺度的改进评估。

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