Soularue J-P, Kremer A
1] UMR 1202 BIOGECO, INRA, Cestas, France [2] UMR 1202 BIOGECO, University Bordeaux, Talence, France.
Heredity (Edinb). 2014 Dec;113(6):485-94. doi: 10.1038/hdy.2014.51. Epub 2014 Jun 11.
The timing of bud burst (TBB) in temperate trees is a key adaptive trait, the expression of which is triggered by temperature gradients across the landscape. TBB is strongly correlated with flowering time and is therefore probably mediated by assortative mating. We derived theoretical predictions and realized numerical simulations of evolutionary changes in TBB in response to divergent selection and gene flow in a metapopulation. We showed that the combination of the environmental gradient of TBB and assortative mating creates contrasting genetic clines, depending on the direction of divergent selection. If divergent selection acts in the same direction as the environmental gradient (cogradient settings), genetic clines are established and inflated by assortative mating. Conversely, under divergent selection of the same strength but acting in the opposite direction (countergradient selection), genetic clines are slightly constrained. We explored the consequences of these dynamics for population maladaptation, by monitoring pollen swamping. Depending on the direction of divergent selection with respect to the environmental gradient, pollen filtering owing to assortative mating either facilitates or impedes adaptation in peripheral populations.
温带树木的芽萌发时间(TBB)是一个关键的适应性性状,其表达由整个景观中的温度梯度触发。TBB与开花时间密切相关,因此可能由选型交配介导。我们推导了理论预测,并实现了在集合种群中响应分歧选择和基因流时TBB进化变化的数值模拟。我们表明,TBB的环境梯度和选型交配的组合会产生对比鲜明的遗传梯度,这取决于分歧选择的方向。如果分歧选择与环境梯度的方向相同(共梯度设置),遗传梯度会通过选型交配建立并扩大。相反,在相同强度但方向相反的分歧选择下(反梯度选择),遗传梯度会受到轻微限制。我们通过监测花粉淹没来探究这些动态变化对种群适应不良的影响。根据相对于环境梯度的分歧选择方向,由于选型交配导致的花粉过滤要么促进要么阻碍边缘种群的适应。