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The importance of phylogeny to the study of phenological response to global climate change

机译:系统发育对全球气候变化的物候响应研究的重要性

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摘要

Climate change has resulted in major changes in the phenology—i.e. the timing of seasonal activities, such as flowering and bird migration—of some species but not others. These differential responses have been shown to result in ecological mismatches that can have negative fitness consequences. However, the ways in which climate change has shaped changes in biodiversity within and across communities are not well understood. Here, we build on our previous results that established a link between plant species’ phenological response to climate change and a phylogenetic bias in species’ decline in the eastern United States. We extend a similar approach to plant and bird communities in the United States and the UK that further demonstrates that climate change has differentially impacted species based on their phylogenetic relatedness and shared phenological responses. In plants, phenological responses to climate change are often shared among closely related species (i.e. clades), even between geographically disjunct communities. And in some cases, this has resulted in a phylogenetically biased pattern of non-native species success. In birds, the pattern of decline is phylogenetically biased but is not solely explained by phenological response, which suggests that other traits may better explain this pattern. These results illustrate the ways in which phylogenetic thinking can aid in making generalizations of practical importance and enhance efforts to predict species’ responses to future climate change.
机译:气候变化导致物候学发生了重大变化,即一些物种的季节性活动(例如开花和鸟类迁徙)的时间,而其他物种则没有。这些差异反应已被证明会导致生态失配,从而产生不利的适应性后果。但是,人们对气候变化如何影响社区内部和社区之间生物多样性变化的方式知之甚少。在此,我们以之前的结果为基础,该结果建立了植物物种对气候变化的物候响应与美国东部物种下降的系统发育偏见之间的联系。我们将类似的方法扩展到美国和英国的植物和鸟类群落,进一步证明气候变化已基于物种的系统发育相关性和共同的物候响应对物种产生了不同的影响。在植物中,即使在地理上相互分离的群落之间,对气候变化的物候响应也经常在密切相关的物种(进化枝)之间共享。在某些情况下,这导致了非本地物种成功的系统发育偏见模式。在鸟类中,下降的模式在系统发育上是有偏见的,但并非仅通过物候响应来解释,这表明其他性状可能更好地解释了这种模式。这些结果说明了系统发育思想可以帮助进行具有实际重要性的概括,并加强了预测物种对未来气候变化反应的努力。

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