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利用相互作用功能空间分析营养生态系统功能。

Analyzing trophic ecosystem functions with the interaction functional space.

作者信息

Bello Carolina, Schleuning Matthias, Graham Catherine H

机构信息

Swiss Federal Institute for Forest, Snow and Landscape Research (WSL), Zürcherstrasse 111, 8903 Birmensdorf, Switzerland; Institute of Integrative Biology, ETH Zürich, Universitätstrasse 2, 8092 Zürich, Switzerland.

Senckenberg Biodiversity and Climate Research Centre (SBiK-F), Senckenberganlage 25, 60325 Frankfurt, Germany.

出版信息

Trends Ecol Evol. 2023 May;38(5):424-434. doi: 10.1016/j.tree.2022.12.001. Epub 2023 Jan 2.

Abstract

Quantifying the vulnerability of ecosystems to global change requires a better understanding of how trophic ecosystem functions emerge. So far, trophic ecosystem functions have been studied from the perspective of either functional diversity or network ecology. To integrate these two perspectives, we propose the interaction functional space (IFS) a conceptual framework to simultaneously analyze the effects of traits and interactions on trophic functions. We exemplify the added value of our framework for seed dispersal and wood decomposition and show how species interactions influence the relationship between functional trait diversity and trophic functions. We propose future applications for a range of functions where the IFS can help to elucidate mechanisms underpinning trophic functions and facilitate understanding of functional changes in ecosystems amidst global change.

摘要

量化生态系统对全球变化的脆弱性需要更好地理解营养级生态系统功能是如何产生的。到目前为止,营养级生态系统功能一直是从功能多样性或网络生态学的角度进行研究的。为了整合这两个观点,我们提出了相互作用功能空间(IFS),这是一个概念框架,用于同时分析性状和相互作用对营养级功能的影响。我们举例说明了我们的框架在种子传播和木材分解方面的附加价值,并展示了物种相互作用如何影响功能性状多样性与营养级功能之间的关系。我们提出了IFS在一系列功能中的未来应用,IFS有助于阐明支撑营养级功能的机制,并促进对全球变化背景下生态系统功能变化的理解。

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