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确定生物效应的环境原因:保护生物学中需要机械生理学维度。

Determining environmental causes of biological effects: the need for a mechanistic physiological dimension in conservation biology.

机构信息

School of Biological Sciences A08, University of Sydney, Sydney, New South Wales 2006, Australia.

出版信息

Philos Trans R Soc Lond B Biol Sci. 2012 Jun 19;367(1596):1607-14. doi: 10.1098/rstb.2012.0036.

Abstract

The emerging field of Conservation Physiology links environmental change and ecological success by the application of physiological theory, approaches and tools to elucidate and address conservation problems. Human activity has changed the natural environment to a point where the viability of many ecosystems is now under threat. There are already many descriptions of how changes in biological patterns are correlated with environmental changes. The next important step is to determine the causative relationship between environmental variability and biological systems. Physiology provides the mechanistic link between environmental change and ecological patterns. Physiological research, therefore, should be integrated into conservation to predict the biological consequences of human activity, and to identify those species or populations that are most vulnerable.

摘要

保护生理学是一个新兴领域,它通过应用生理学理论、方法和工具来阐明和解决保护问题,将环境变化与生态成功联系起来。人类活动已经改变了自然环境,使得许多生态系统的生存能力现在受到威胁。已经有很多描述生物模式的变化如何与环境变化相关联的。下一步的重要步骤是确定环境变异性与生物系统之间的因果关系。生理学为环境变化与生态模式之间提供了机制联系。因此,生理学研究应该整合到保护中,以预测人类活动对生物的影响,并确定那些最脆弱的物种或种群。

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6
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7
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