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接纳海洋酸化研究中的相互作用:应对多重压力源情景和背景依赖性。

Embracing interactions in ocean acidification research: confronting multiple stressor scenarios and context dependence.

作者信息

Kroeker Kristy J, Kordas Rebecca L, Harley Christopher D G

机构信息

Ecology and Evolutionary Biology, University of California Santa Cruz, Santa Cruz, CA 95060, USA

Life Sciences, Imperial College London, London SL5 7PY, UK.

出版信息

Biol Lett. 2017 Mar;13(3). doi: 10.1098/rsbl.2016.0802.

Abstract

Changes in the Earth's environment are now sufficiently complex that our ability to forecast the emergent ecological consequences of ocean acidification (OA) is limited. Such projections are challenging because the effects of OA may be enhanced, reduced or even reversed by other environmental stressors or interactions among species. Despite an increasing emphasis on multifactor and multispecies studies in global change biology, our ability to forecast outcomes at higher levels of organization remains low. Much of our failure lies in a poor mechanistic understanding of nonlinear responses, a lack of specificity regarding the levels of organization at which interactions can arise, and an incomplete appreciation for linkages across these levels. To move forward, we need to fully embrace interactions. Mechanistic studies on physiological processes and individual performance in response to OA must be complemented by work on population and community dynamics. We must also increase our understanding of how linkages and feedback among multiple environmental stressors and levels of organization can generate nonlinear responses to OA. This will not be a simple undertaking, but advances are of the utmost importance as we attempt to mitigate the effects of ongoing global change.

摘要

地球环境的变化如今已足够复杂,以至于我们预测海洋酸化(OA)所产生的生态后果的能力有限。此类预测颇具挑战性,因为OA的影响可能会因其他环境压力因素或物种间的相互作用而增强、减弱甚至逆转。尽管全球变化生物学越来越重视多因素和多物种研究,但我们预测更高组织层面结果的能力仍然很低。我们的许多失败在于对非线性反应的机制理解不足,对于可能产生相互作用的组织层面缺乏明确性,以及对这些层面之间联系的认识不完整。为了取得进展,我们需要充分接受相互作用。关于生理过程和个体对OA反应的机制研究,必须辅以关于种群和群落动态的研究。我们还必须加深对多种环境压力因素与组织层面之间的联系和反馈如何能够产生对OA的非线性反应的理解。这并非易事,但随着我们试图减轻当前全球变化的影响,取得进展至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ee0b/5377028/36b7c527e091/rsbl20160802-g1.jpg

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