首页> 美国卫生研究院文献>Frontiers in Plant Science >Bring in the genes: genetic-ecophysiological modeling of the adaptive response of trees to environmental change. With application to the annual cycle
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Bring in the genes: genetic-ecophysiological modeling of the adaptive response of trees to environmental change. With application to the annual cycle

机译:引入基因:树木对环境变化的适应性反应的遗传生态生理建模。适用于年度周期

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摘要

The observation of strong latitudinal clines in the date of bud burst of tree species indicate that populations of these species are genetically adapted to local environmental conditions. Existing phenological models rarely address this clinal variation, so that adaptive responses of tree populations to changes in environmental conditions are not taken into account, e.g., in models on species distributions that use phenological sub-models. This omission of simulating adaptive response in tree models may over- or underestimate the effects of climate change on tree species distributions, as well as the impacts of climate change on tree growth and productivity. Here, we present an approach to model the adaptive response of traits to environmental change based on an integrated process-based eco-physiological and quantitative genetic model of adaptive traits. Thus, the parameter values of phenological traits are expressed in genetic terms (allele effects and—frequencies, number of loci) for individual trees. These individual trees thereby differ in their ability to acquire resources, grow and reproduce as described by the process-based model, leading to differential survival. Differential survival is thus the consequence of both differences in parameters values and their genetic composition. By simulating recombination and dispersal of pollen, the genetic composition of the offspring will differ from that of their parents. Over time, the distribution of both trait values and the frequency of the underlying alleles in the population change as a consequence of changes in environmental drivers leading to adaptation of trees to local environmental conditions. This approach is applied to an individual-tree growth model that includes a phenological model on the annual cycle of trees whose parameters are allowed to adapt. An example of the adaptive response of the onset of the growing season across Europe is presented.
机译:在树种芽萌发之日观察到强的纬度斜线表明,这些树种的种群在遗传上适应了当地的环境条件。现有的物候模型很少解决这种渐进变化,因此例如在使用物候子模型的物种分布模型中,没有考虑树木种群对环境条件变化的适应性响应。在树木模型中模拟自适应响应的这种遗漏可能会高估或低估了气候变化对树木物种分布的影响以及气候变化对树木生长和生产力的影响。在这里,我们提出了一种基于对适应性状的综合基于过程的生态生理和定量遗传模型的性状对环境变化的适应性响应建模的方法。因此,物候性状的参数值以遗传术语(等位基因效应和-频率,基因座数量)表示。因此,这些单独的树在获取资源,生长和繁殖方面的能力各不相同,如基于过程的模型所描述的那样,从而导致生存差异。因此,差异存活是参数值及其遗传组成差异的结果。通过模拟花粉的重组和散布,后代的遗传组成将与其父母的不同。随着时间的推移,由于环境驱动因素的变化导致树木适应当地环境条件的变化,种群中特征值的分布和基础等位基因的频率都会发生变化。此方法应用于单个树的生长模型,该模型包括有关其参数允许适应的树木的年轮周期的物候模型。举例说明了整个欧洲生长季节开始的适应性反应。

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