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功能多样性增强了地中海旱地生态系统多功能性对干旱的抵抗力。

Functional diversity enhances the resistance of ecosystem multifunctionality to aridity in Mediterranean drylands.

作者信息

Valencia Enrique, Maestre Fernando T, Le Bagousse-Pinguet Yoann, Quero José Luis, Tamme Riin, Börger Luca, García-Gómez Miguel, Gross Nicolas

机构信息

Área de Biodiversidad y Conservación, Departamento de Biología y Geología, Física y Química Inorgánica, Escuela Superior de Ciencias Experimentales y Tecnología, Universidad Rey Juan Carlos, C/Tulipán s/n, 28933, Móstoles, Spain.

出版信息

New Phytol. 2015 Apr;206(2):660-71. doi: 10.1111/nph.13268. Epub 2015 Jan 23.

Abstract

We used a functional trait-based approach to assess the impacts of aridity and shrub encroachment on the functional structure of Mediterranean dryland communities (functional diversity (FD) and community-weighted mean trait values (CWM)), and to evaluate how these functional attributes ultimately affect multifunctionality (i.e. the provision of several ecosystem functions simultaneously). Shrub encroachment (the increase in the abundance/cover of shrubs) is a major land cover change that is taking place in grasslands worldwide. Studies conducted on drylands have reported positive or negative impacts of shrub encroachment depending on the functions and the traits of the sprouting or nonsprouting shrub species considered. FD and CWM were equally important as drivers of multifunctionality responses to both aridity and shrub encroachment. Size traits (e.g. vegetative height or lateral spread) and leaf traits (e.g. specific leaf area and leaf dry matter content) captured the effect of shrub encroachment on multifunctionality with a relative high accuracy (r(2)  = 0.63). FD also improved the resistance of multifunctionality along the aridity gradient studied. Maintaining and enhancing FD in plant communities may help to buffer negative effects of ongoing global environmental change on dryland multifunctionality.

摘要

我们采用基于功能性状的方法来评估干旱和灌木入侵对地中海旱地群落功能结构的影响(功能多样性(FD)和群落加权平均性状值(CWM)),并评估这些功能属性最终如何影响多功能性(即同时提供多种生态系统功能)。灌木入侵(灌木丰度/覆盖度增加)是全球草原正在发生的主要土地覆盖变化。在旱地进行的研究报告了灌木入侵的正面或负面影响,这取决于所考虑的萌芽或非萌芽灌木物种的功能和性状。FD和CWM作为干旱和灌木入侵多功能性响应的驱动因素同样重要。大小性状(如营养高度或横向扩展)和叶片性状(如比叶面积和叶片干物质含量)以相对较高的精度(r² = 0.63)捕捉了灌木入侵对多功能性的影响。FD还提高了研究的干旱梯度上多功能性的抗性。维持和增强植物群落中的FD可能有助于缓冲当前全球环境变化对旱地多功能性的负面影响。

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