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在赤拟谷盗中,基因表达对多种胁迫的附加和主要适应性可塑性反应。

Additive and mostly adaptive plastic responses of gene expression to multiple stress in Tribolium castaneum.

机构信息

Department of Evolutionary Biology and Environmental Studies, University of Zürich, Zürich, Switzerland.

Department of Animal and Plant Science, University of Sheffield, Western Bank, Sheffield, United Kingdom.

出版信息

PLoS Genet. 2020 May 7;16(5):e1008768. doi: 10.1371/journal.pgen.1008768. eCollection 2020 May.

Abstract

Gene expression is known to be highly responsive to the environment and important for adjustment of metabolism but there is also growing evidence that differences in gene regulation contribute to species divergence and differences among locally adapted populations. However, most studies so far investigated populations when divergence had already occurred. Selection acting on expression levels at the onset of adaptation to an environmental change has not been characterized. Understanding the mechanisms is further complicated by the fact that environmental change is often multivariate, meaning that organisms are exposed to multiple stressors simultaneously with potentially interactive effects. Here we use a novel approach by combining fitness and whole-transcriptome data in a large-scale experiment to investigate responses to drought, heat and their combination in Tribolium castaneum. We found that fitness was reduced by both stressors and their combined effect was almost additive. Expression data showed that stressor responses were acting independently and did not interfere physiologically. Since we measured expression and fitness within the same individuals, we were able to estimate selection on gene expression levels. We found that variation in fitness can be attributed to gene expression variation and that selection pressures were environment dependent and opposite between control and stress conditions. We could further show that plastic responses of expression were largely adaptive, i.e. in the direction that should increase fitness.

摘要

基因表达对环境高度敏感,对新陈代谢的调节很重要,但越来越多的证据表明,基因调控的差异有助于物种的分化和局部适应种群之间的差异。然而,到目前为止,大多数研究都是在已经发生分化的种群中进行的。对于适应环境变化时表达水平的选择作用还没有被描述。由于环境变化通常是多变量的,这意味着生物体同时受到多种胁迫的影响,并且可能存在相互作用,这使得理解这些机制变得更加复杂。在这里,我们使用一种新的方法,将适应性试验中的表型和全转录组数据相结合,研究了在大量的实验中,干旱、高温及其组合对赤拟谷盗的影响。我们发现,两种胁迫都会降低适应度,而且它们的联合作用几乎是相加的。表达数据表明,胁迫反应是独立作用的,在生理上没有相互干扰。由于我们在同一个个体中测量了表达和适应度,因此我们能够估计基因表达水平的选择压力。我们发现,适应度的变化可以归因于基因表达的变化,并且选择压力在控制和胁迫条件下是环境依赖的和相反的。我们还可以进一步表明,表达的可塑性反应在很大程度上是适应性的,即朝着应该增加适应度的方向发展。

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