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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Predicting organismal vulnerability to climate warming: roles of behaviour, physiology and adaptation
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Predicting organismal vulnerability to climate warming: roles of behaviour, physiology and adaptation

机译:预测有机体对气候变暖的脆弱性:行为,生理和适应的作用

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A recently developed integrative framework proposes that the vulnerability of a species to environmental change depends on the species' exposure and sensitivity to environmental change, its resilience to perturbations and its potential to adapt to change. These vulnerability criteria require behavioural, physiological and genetic data. With this information in hand, biologists can predict organisms most at risk from environmental change. Biologists and managers can then target organisms and habitats most at risk. Unfortunately, the required data (e.g. optimal physiological temperatures) are rarely available. Here, we evaluate the reliability of potential proxies (e.g. critical temperatures) that are often available for some groups. Several proxies for ectotherms are promising, but analogous ones for endotherms are lacking. We also develop a simple graphical model of how behavioural thermoregulation, acclimation and adaptation may interact to influence vulnerability over time. After considering this model together with the proxies available for physiological sensitivity to climate change, we conclude that ectotherms sharing vulnerability traits seem concentrated in lowland tropical forests. Their vulnerability may be exacerbated by negative biotic interactions. Whether tropical forest (or other) species can adapt to warming environments is unclear, as genetic and selective data are scant. Nevertheless, the prospects for tropical forest ectotherms appear grim.
机译:最近开发的整合框架提出,物种对环境变化的脆弱性取决于该物种对环境变化的承受力和敏感性,其对摄动的适应力以及其适应变化的潜力。这些脆弱性标准需要行为,生理和遗传数据。利用这些信息,生物学家可以预测受环境变化威胁最大的生物。然后,生物学家和管理人员可以针对最容易受到威胁的生物和栖息地。不幸的是,所需数据(例如最佳生理温度)很少可用。在这里,我们评估了某些群体通常可以使用的潜在代理(例如临界温度)的可靠性。有几种关于等温线的代理是有前途的,但缺乏类似的等温线。我们还开发了一个简单的图形模型,说明行为温度调节,适应和适应如何相互作用以随着时间影响脆弱性。在考虑了该模型以及对气候变化的生理敏感性可用的代理之后,我们得出结论,具有脆弱性特征的外积似乎集中在低地热带森林中。负面的生物相互作用可能加剧它们的脆弱性。由于缺乏遗传和选择性数据,因此尚不清楚热带森林(或其他)物种是否能适应变暖环境。然而,热带森林外温的前景似乎很严峻。

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