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Evolutionary adaptation to environmental stressors: a common response at the proteomic level

机译:进化适应环境压力:蛋白质组学水平的共同反应

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Mechanistic trade-offs between traits under selection can shape and constrain evolutionary adaptation to environmental stressors. However, our knowledge of the quantitative and qualitative overlap in the molecular machinery among stress tolerance traits is highly restricted by the challenges of comparing and interpreting data between separate studies and laboratories, as well as to extrapolating between different levels of biological organization. We investigated the expression of the constitutive proteome (833 proteins) of 35 Drosophila melanogaster replicate populations artificially selected for increased resistance to six different environmental stressors. The evolved proteomes were significantly differentiated from replicated control lines. A targeted analysis of the constitutive proteomes revealed a regime-specific selection response among heat-shock proteins, which provides evidence that selection also adjusts the constitutive expression of these molecular chaperones. Although the selection response in some proteins was regime specific, the results were dominated by evidence for a “common stress response.” With the exception of high temperature survival, we found no evidence for negative correlations between environmental stress resistance traits, meaning that evolutionary adaptation is not constrained by mechanistic trade-offs in regulation of functional important proteins. Instead, standing genetic variation and genetic trade-offs outside regulatory domains likely constrain the evolutionary responses in natural populations.
机译:选择性的特征之间的机械权衡可以塑造和限制进化适应环境压力。然而,我们对应力公差特征的分子机械中定量和定性重叠的知识受到在单独研究和实验室之间进行比较和解释数据的挑战,以及在不同层次的生物组织之间推断。我们研究了35种果蝇的三种果蝇复制群的组成蛋白组(833蛋白)的表达,用于增加对六种不同环境压力的抗性增加。进化的蛋白质蛋白从复制的控制线显着差异。本组成型蛋白质组的靶向分析揭示了热冲击蛋白质中的细胞特异性选择响应,这提供了选择的证据,即选择也调节这些分子伴侣的组成型表达。虽然一些蛋白质中的选择响应是制度的特异性,但结果是通过证据占“常见压力反应”的证据。除了高温生存期外,我们发现了环境胁迫性抗性特征之间的负相关性的证据,这意味着进化适应性不受动力折衷的影响,在功能性重要蛋白的调节中不受限制。相反,监管领域的站立遗传变异和遗传折衷可能会限制自然群体中的进化反应。

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