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塑料物种果蝇模拟种的最佳温度范围。

Optimal temperature range of a plastic species, Drosophila simulans.

机构信息

Department of Biology, The University of Western Ontario, London, N6A 5B7, ON, Canada.

出版信息

J Anim Ecol. 2013 May;82(3):663-72. doi: 10.1111/1365-2656.12041. Epub 2013 Jan 29.

Abstract
  1. When a species experiences a new climate, it can adapt in two main ways: become genetically adapted to the new temperature, or adopt a plastic approach that allows it to survive at a range of temperatures. 2. The constraint on fitness for genetically adapted populations that are exposed to a new temperature has been well studied, but the range of optimal temperatures and their effect on fitness has never been examined across the worldwide distribution of a plastic species. 3. Here, we determined the optimum temperature range of 11 populations of the phenotypically plastic species Drosophila simulans. We measured the influence of temperature on eggs, larvae and adults at six temperatures that span the natural range the flies experience during their primary breeding season. We found no correlation between optimum temperature and native temperature, an effect that is not likely due to laboratory maintenance, suggesting that the species has not locally adapted to temperature. 4. We also found that this species had equal survival and reproductive success at most of the temperatures and life stages that we tested, regardless of the native temperature where the flies originated. 5. Thus, this genetically plastic species has an optimum fitness at a surprisingly wide range of temperatures, and is the first example of a cosmopolitan species exhibiting this large amount of plasticity across its sampling distribution.
摘要
  1. 当一个物种经历新的气候时,它可以通过两种主要方式进行适应:通过遗传适应新的温度,或采取一种允许其在一系列温度下生存的可塑性方法。

  2. 已经对暴露于新温度的遗传适应种群的适应性限制进行了很好的研究,但从未在全球范围内研究过可塑性物种的最佳温度范围及其对适应性的影响。

  3. 在这里,我们确定了表型可塑性物种 Drosophila simulans 的 11 个种群的最佳温度范围。我们测量了在跨越苍蝇在其主要繁殖季节经历的自然范围的六个温度下对卵,幼虫和成虫的温度影响。我们发现最佳温度与原生温度之间没有相关性,这种效果不太可能是由于实验室维持造成的,这表明该物种没有对温度进行本地适应。

  4. 我们还发现,无论苍蝇起源的原生温度如何,该物种在我们测试的大多数温度和生命阶段都具有相同的生存和繁殖成功率。

  5. 因此,这种具有遗传可塑性的物种在令人惊讶的广泛温度范围内具有最佳的适应性,并且是第一个在整个采样分布中表现出这种大量可塑性的世界性物种的例子。

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