Gauzere Julie, Klein Etienne K, Brendel Oliver, Davi Hendrik, Oddou-Muratorio Sylvie
INRAE, URFM, Avignon, 84000, France.
INRAE, BioSP, Avignon, 84000, France.
New Phytol. 2020 Jul;227(2):641-653. doi: 10.1111/nph.16537. Epub 2020 Apr 23.
In species with long-distance dispersal capacities and inhabiting a large ecological niche, local selection and gene flow are expected to be major evolutionary forces affecting the genetic adaptation of natural populations. Yet, in species such as trees, evidence of microgeographic adaptation and the quantitative assessment of the impact of gene flow on adaptive genetic variation are still limited. Here, we used extensive genetic and phenotypic data from European beech seedlings collected along an elevation gradient, and grown in a common garden, to study the signature of selection on the divergence of eleven potentially adaptive traits, and to assess the role of gene flow in resupplying adaptive genetic variation. We found a significant signal of adaptive differentiation among plots separated by < 1 km, with selection acting on growth and phenological traits. Consistent with theoretical expectations, our results suggest that pollen dispersal contributes to increase genetic diversity for these locally differentiated traits. Our results thus highlight that local selection is an important evolutionary force in natural tree populations and suggest that management interventions to facilitate movement of gametes along short ecological gradients would boost genetic diversity of individual tree populations, and enhance their adaptive potential to rapidly changing environments.
在具有长距离扩散能力且占据较大生态位的物种中,局部选择和基因流预计是影响自然种群遗传适应的主要进化力量。然而,在诸如树木这类物种中,微观地理适应的证据以及基因流对适应性遗传变异影响的定量评估仍然有限。在此,我们利用沿海拔梯度收集并在共同园圃中种植的欧洲山毛榉幼苗的大量遗传和表型数据,来研究对十一个潜在适应性性状分化的选择特征,并评估基因流在补充适应性遗传变异方面的作用。我们在相距小于1公里的样地间发现了适应性分化的显著信号,选择作用于生长和物候性状。与理论预期一致,我们的结果表明花粉扩散有助于增加这些局部分化性状的遗传多样性。因此,我们的结果凸显出局部选择是天然树木种群中的一种重要进化力量,并表明促进配子沿短生态梯度移动的管理干预措施将提高单个树木种群的遗传多样性,并增强其对快速变化环境的适应潜力。