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Adaptive patterns of phenotypic plasticity in laboratory and field environments in Drosophila melanogaster

机译:果蝇果冻基炉实验室环境中表型可塑性的自适应模式

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Identifying mechanisms of adaptation to variable environments is essential in developing a comprehensive understanding of evolutionary dynamics in natural populations. Phenotypic plasticity allows for phenotypic change in response to changes in the environment, and as such may play a major role in adaptation to environmental heterogeneity. Here, the plasticity of stress response in Drosophila melanogaster originating from two distinct geographic regions and ecological habitats was examined. Adults were given a short-term, 5-day exposure to combinations of temperature and photoperiod to elicit a plastic response for three fundamental aspects of stress tolerance that vary adaptively with geography. This was replicated both in the laboratory and in outdoor enclosures in the field. In the laboratory, geographic origin was the primary determinant of the stress response. Temperature and the interaction between temperature and photoperiod also significantly affected stress resistance. In the outdoor enclosures, plasticity was distinct among traits and between geographic regions. These results demonstrate that short-term exposure of adults to ecologically relevant environmental cues results in predictable effects on multiple aspects of fitness. These patterns of plasticity vary among traits and are highly distinct between the two examined geographic regions, consistent with patterns of local adaptation to climate and associated environmental parameters.
机译:确定适应变量环境的机制对于在自然群体中对进化动态的全面了解来说是必不可少的。表型可塑性允许对环境变化的变化进行表型变化,因此可能在适应环境异质性方面发挥重要作用。这里,研究了源自两个不同地理区域和生态栖息地的果蝇的应激反应的可塑性。成年人的短期为5天暴露于温度和光周期的组合,以引发塑料响应,以与地理适应自适应地改变的压力耐受性的三个基本方面。这在实验室和户外外壳中都被复制。在实验室中,地理来源是压力反应的主要决定因素。温度和温度和光周之间的相互作用也显着影响应力阻力。在室外外壳中,可塑性在特征和地理区域之间存在不同。这些结果表明,成年人对生态相关环境提示的短期暴露导致对健身的多个方面的可预测影响。这些可塑性模式在特征之间变化,两种检查的地理区域之间具有高度不同,与局部适应的模式一致,与气候和相关的环境参数一致。

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