首页> 美国卫生研究院文献>Proceedings of the Royal Society B: Biological Sciences >Plasticity for desiccation tolerance across Drosophila species is affected by phylogeny and climate in complex ways
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Plasticity for desiccation tolerance across Drosophila species is affected by phylogeny and climate in complex ways

机译:果蝇物种的耐干燥性的可塑性受系统发育和气候的复杂影响

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摘要

Comparative analyses of ectotherm susceptibility to climate change often focus on thermal extremes, yet responses to aridity may be equally important. Here we focus on plasticity in desiccation resistance, a key trait shaping distributions of Drosophila species and other small ectotherms. We examined the extent to which 32 Drosophila species, varying in their distribution, could increase their desiccation resistance via phenotypic plasticity involving hardening, linking these responses to environment, phylogeny and basal resistance. We found no evidence to support the seasonality hypothesis; species with higher hardening plasticity did not occupy environments with higher and more seasonal precipitation. As basal resistance increased, the capacity of species to respond via phenotypic plasticity decreased, suggesting plastic responses involving hardening may be constrained by basal resistance. Trade-offs between basal desiccation resistance and plasticity were not universal across the phylogeny and tended to occur within specific clades. Phylogeny, environment and trade-offs all helped to explain variation in plasticity for desiccation resistance but in complex ways. These findings suggest some species have the ability to counter dry periods through plastic responses, whereas others do not; and this ability will depend to some extent on a species' placement within a phylogeny, along with its basal level of resistance.
机译:对等温线对气候变化敏感性的比较分析通常侧重于极端温度,但是对干旱的反应可能同样重要。在这里,我们着重于抗干燥性的可塑性,果蝇物种和其他小的外温的关键性状塑造分布。我们研究了32种果蝇物种分布不同的程度,这些现象可通过涉及硬化的表型可塑性提高其抗干旱能力,并将这些响应与环境,系统发育和基础抗性联系起来。我们发现没有证据支持季节性假说。具有较高可塑性的物种没有占据具有越来越多的季节性降水的环境。随着基础抗性的增加,物种通过表型可塑性响应的能力降低,这表明涉及抗性的塑性响应可能受到基础抗性的限制。在整个系统发育中,基础抗干燥性和可塑性之间的权衡并不普遍,并且倾向于在特定进化枝中发生。系统发育,环境和权衡因素均有助于以复杂的方式解释抗干燥性的可塑性变化。这些发现表明,某些物种具有通过塑性响应抵抗干旱时期的能力,而另一些则没有。而且这种能力在某种程度上取决于物种在系统进化树中的位置以及其基础抗性水平。

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