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短期变暖期间山地草原的功能性状变化、生产力转移与植被稳定性

Functional Trait Changes, Productivity Shifts and Vegetation Stability in Mountain Grasslands during a Short-Term Warming.

作者信息

Debouk Haifa, de Bello Francesco, Sebastià Maria-Teresa

机构信息

Laboratory of functional ecology and global change (ECOFUN), Forest Sciences Centre of Catalonia (CTFC), Solsona, Spain; Group GAMES and department of Horticulture, Botany and Gardening, School of Agrifood and Forestry Science and Engineering, University of Lleida, Lleida, Spain.

Department of Botany, Faculty of Sciences, University of South Bohemia, České Budějovice, Czech Republic; Institute of Botany, Czech Academy of Sciences, Třeboň, Czech Republic.

出版信息

PLoS One. 2015 Oct 29;10(10):e0141899. doi: 10.1371/journal.pone.0141899. eCollection 2015.

Abstract

Plant functional traits underlie vegetation responses to environmental changes such as global warming, and consequently influence ecosystem processes. While most of the existing studies focus on the effect of warming only on species diversity and productivity, we further investigated (i) how the structure of community plant functional traits in temperate grasslands respond to experimental warming, and (ii) whether species and functional diversity contribute to a greater stability of grasslands, in terms of vegetation composition and productivity. Intact vegetation turves were extracted from temperate subalpine grassland (highland) in the Eastern Pyrenees and transplanted into a warm continental, experimental site in Lleida, in Western Catalonia (lowland). The impacts of simulated warming on plant production and diversity, functional trait structure, and vegetation compositional stability were assessed. We observed an increase in biomass and a reduction in species and functional diversity under short-term warming. The functional structure of the grassland communities changed significantly, in terms of functional diversity and community-weighted means (CWM) for several traits. Acquisitive and fast-growing species with higher SLA, early flowering, erect growth habit, and rhizomatous strategy became dominant in the lowland. Productivity was significantly positively related to species, and to a lower extent, functional diversity, but productivity and stability after warming were more dependent on trait composition (CWM) than on diversity. The turves with more acquisitive species before warming changed less in composition after warming. Results suggest that (i) the short-term warming can lead to the dominance of acquisitive fast growing species over conservative species, thus reducing species richness, and (ii) the functional traits structure in grassland communities had a greater influence on the productivity and stability of the community under short-term warming, compared to diversity effects. In summary, short-term climate warming can greatly alter vegetation functional structure and its relation to productivity.

摘要

植物功能性状是植被对全球变暖等环境变化作出响应的基础,进而影响生态系统过程。虽然现有的大多数研究仅关注变暖对物种多样性和生产力的影响,但我们进一步研究了:(i)温带草原群落植物功能性状结构如何响应实验性变暖;(ii)就植被组成和生产力而言,物种和功能多样性是否有助于提高草原的稳定性。完整的植被草皮取自东比利牛斯山脉的温带亚高山草原(高地),并移植到加泰罗尼亚西部莱里达的一个温暖大陆性实验地点(低地)。评估了模拟变暖对植物产量、多样性、功能性状结构和植被组成稳定性的影响。我们观察到短期变暖下生物量增加,物种和功能多样性降低。草原群落的功能结构在功能多样性和几个性状的群落加权平均值(CWM)方面发生了显著变化。具有较高比叶面积、早花、直立生长习性和根茎策略的获取性和快速生长物种在低地占主导地位。生产力与物种显著正相关,在较低程度上与功能多样性也显著正相关,但变暖后的生产力和稳定性更多地取决于性状组成(CWM)而非多样性。变暖前具有更多获取性物种的草皮在变暖后的组成变化较小。结果表明:(i)短期变暖可导致获取性快速生长物种比保守物种占优势,从而降低物种丰富度;(ii)与多样性效应相比,短期变暖下草原群落的功能性状结构对群落生产力和稳定性的影响更大。总之,短期气候变暖可极大地改变植被功能结构及其与生产力的关系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8b4d/4626038/798ce7f31204/pone.0141899.g001.jpg

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