首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Trait-based approaches to conservation physiology: forecasting environmental change risks from the bottom up
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Trait-based approaches to conservation physiology: forecasting environmental change risks from the bottom up

机译:基于特征的保护生理学方法:从下至上预测环境变化风险

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摘要

Trait-based approaches have long been a feature of physiology and of ecology. While the latter fields drifted apart in the twentieth century, they are converging owing at least partly to growing similarities in their trait-based approaches, which have much to offer conservation biology. The convergence of spatially explicit approaches to understanding trait variation and its ecological implications, such as encapsulated in community assembly and macrophysiology, provides a significant illustration of the similarity of these areas. Both adopt trait-based informatics approaches which are not only providing fundamental biological insights, but are also delivering new information on how environmental change is affecting diversity and how such change may perhaps be mitigated. Such trait-based conservation physiology is illustrated here for each of the major environmental change drivers, specifically: the consequences of overexploitation for body size and physiological variation; the impacts of vegetation change on thermal safety margins; the consequences of changing net primary productivity and human use thereof for physiological variation and ecosystem functioning; the impacts of rising temperatures on water loss in ectotherms; how hemisphere-related variation in traits may affect responses to changing rainfall regimes and pollution; and how trait-based approaches may enable interactions between climate change and biological invasions to be elucidated.
机译:长期以来,基于特质的方法一直是生理学和生态学的特征。尽管后者的领域在20世纪逐渐分散开来,但它们的融合至少部分是由于其基于特征的方法之间的相似性不断提高,这些特征在保护生物学方面大有可为。明确理解性状变异及其生态学意义的空间明确方法的融合,例如封装在社区集会和宏观生理学中,为这些地区的相似性提供了重要例证。两者都采用基于特征的信息学方法,这些方法不仅提供基本的生物学见解,而且还提供有关环境变化如何影响多样性以及如何减轻这种变化的新信息。对于每个主要的环境变化驱动因素,在此都说明了这种基于特征的保护生理,特别是:过度开采对人体大小和生理变异的影响;植被变化对热安全裕度的影响;净初级生产力的变化及其对生理变化和生态系统功能的人类利用的后果;气温升高对等温线失水的影响;与半球有关的性状变化如何影响降雨状况和污染变化的响应;以及基于特征的方法如何使气候变化与生物入侵之间的相互作用得以阐明。

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