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Colder environments did not select for a faster metabolism during experimental evolution of Drosophila melanogaster

机译:在Drosophila Melanogaster的实验演变期间,较冷的环境没有选择更快的新陈代谢

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The effect of temperature on the evolution of metabolism has been the subject of debate for a century; however, no consistent patterns have emerged from comparisons of metabolic rate within and among species living at different temperatures. We used experimental evolution to determine how metabolism evolves in populations of Drosophila melanogaster exposed to one of three selective treatments: a constant 16°C, a constant 25°C, or temporal fluctuations between 16 and 25°C. We tested August Krogh's controversial hypothesis that colder environments select for a faster metabolism. Given that colder environments also experience greater seasonality, we also tested the hypothesis that temporal variation in temperature may be the factor that selects for a faster metabolism.We measured the metabolic rate of flies from each selective treatment at 16, 20.5, and 25°C. Although metabolism was faster at higher temperatures, flies from the selective treatments had similar metabolic rates at each measurement temperature. Based on variation among genotypes within populations, heritable variation in metabolism was likely sufficient for adaptation to occur. We conclude that colder or seasonal environments do not necessarily select for a faster metabolism. Rather, other factors besides temperature likely contribute to patterns of metabolic rate over thermal clines in nature.
机译:温度对新陈代谢演化的影响是一个世纪辩论的主题;然而,没有从生活在不同温度下的物种内部和物种中的代谢率的比较没有一致的模式。我们使用实验进化来确定新陈代谢在三种选择性治疗中的一种果蝇的雌雄同体中的种植方式:恒定的16℃,恒定25℃或16至25℃之间的时间波动。我们测试了8月Krogh的争议假设,即更冷的环境选择更快的新陈代谢。鉴于较冷的环境也经历了更高的季节性,我们还测试了温度的时间变化可能是选择更快的代谢的因素。我们测量了从16,20.5和25°C的每种选择治疗的苍蝇的代谢率。尽管在较高温度下新陈代谢更快,但选择性处理的苍蝇在每个测量温度下具有相似的代谢速率。基于群体内基因型的变化,代谢的遗传变化可能足以进行适应。我们得出结论,较冷或季节性环境不一定选择更快的新陈代谢。相反,除温度之外的其他因素可能有助于在自然中对热裂纹的代谢率模式。

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