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Experimental evolution in fluctuating environments: tolerance measurements at constant temperatures incorrectly predict the ability to tolerate fluctuating temperatures

机译:波动环境中的实验演变:在恒定温度下的公差测量错误地预测了承受波动温度的能力

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摘要

The ability to predict the consequences of fluctuating environments on species distribution and extinction often relies on determining the tolerances of species or genotypes in different constant environments (i.e. determining tolerance curves). However, very little is known about the suitability of measurements made in constant environments to predict the level of adaptation to rapidly fluctuating environments. To explore this question, we used bacterial clones adapted to constant or fluctuating temperatures and found that measurements across a range of constant temperatures did not indicate any adaptation to fluctuating temperatures. However, adaptation to fluctuating temperatures was only apparent if growth was measured during thermal fluctuation. Thus, tolerance curves based on measurements in constant environments can be misleading in predicting the ability to tolerate fast environmental fluctuations. Such complications could lead to false estimates of the genetic merits of genotypes and extinction risks of species due to climate change-induced thermal fluctuations.
机译:预测环境变化对物种分布和灭绝的后果的能力通常取决于确定不同恒定环境中物种或基因型的耐受性(即确定耐受性曲线)。但是,对于在恒定环境中进行的测量以预测对快速变化的环境的适应水平的适用性知之甚少。为了探讨这个问题,我们使用了适应于恒定或波动温度的细菌克隆,发现在一定范围的恒定温度范围内进行的测量并未表明对波动温度的任何适应。但是,仅当在热波动期间测量生长时,才能适应波动的温度。因此,基于恒定环境下的测量值的公差曲线可能会误导预测耐受快速环境波动的能力。此类并发症可能导致对基因型遗传价值的错误估计,以及由于气候变化引起的热波动而导致物种灭绝的风险。

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