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沿海拔梯度的灌木生长和植物多样性:气候对高山生态系统间接影响的证据。

Shrub growth and plant diversity along an elevation gradient: Evidence of indirect effects of climate on alpine ecosystems.

机构信息

Department of Agricultural, Food, Environmental and Animal Sciences, Plant Biology Unit, University of Udine, Udine, Italy.

WSL Institute for Forest, Snow and Landscape Research SLF, Unit Ecosystem Boundaries, Alpine Ecosystems, Davos, Switzerland.

出版信息

PLoS One. 2018 Apr 26;13(4):e0196653. doi: 10.1371/journal.pone.0196653. eCollection 2018.

Abstract

Enhanced shrub growth and expansion are widespread responses to climate warming in many arctic and alpine ecosystems. Warmer temperatures and shrub expansion could cause major changes in plant community structure, affecting both species composition and diversity. To improve our understanding of the ongoing changes in plant communities in alpine tundra, we studied interrelations among climate, shrub growth, shrub cover and plant diversity, using an elevation gradient as a proxy for climate conditions. Specifically, we analyzed growth of bilberry (Vaccinium myrtillus L.) and its associated plant communities along an elevation gradient of ca. 600 vertical meters in the eastern European Alps. We assessed the ramet age, ring width and shoot length of V. myrtillus, and the shrub cover and plant diversity of the community. At higher elevation, ramets of V. myrtillus were younger, with shorter shoots and narrower growth rings. Shoot length was positively related to shrub cover, but shrub cover did not show a direct relationship with elevation. A greater shrub cover had a negative effect on species richness, also affecting species composition (beta-diversity), but these variables were not influenced by elevation. Our findings suggest that changes in plant diversity are driven directly by shrub cover and only indirectly by climate, here represented by changes in elevation.

摘要

在许多北极和高山生态系统中,灌木生长和扩张增强是对气候变暖的广泛响应。温暖的温度和灌木的扩张可能会导致植物群落结构发生重大变化,影响物种组成和多样性。为了更好地了解高山冻原植物群落的持续变化,我们利用海拔梯度作为气候条件的替代指标,研究了气候、灌木生长、灌木覆盖和植物多样性之间的相互关系。具体来说,我们分析了欧洲东部阿尔卑斯山约 600 米海拔梯度上越橘( Vaccinium myrtillus L. )及其相关植物群落的生长情况。我们评估了越橘的克隆年龄、年轮宽度和新梢长度,以及群落的灌木覆盖和植物多样性。在较高的海拔处,越橘的克隆体较年轻,新梢较短,年轮较窄。新梢长度与灌木覆盖呈正相关,但灌木覆盖与海拔没有直接关系。较大的灌木覆盖对物种丰富度有负面影响,也会影响物种组成(β多样性),但这些变量不受海拔的影响。我们的研究结果表明,植物多样性的变化是由灌木覆盖直接驱动的,而气候仅通过海拔变化间接驱动。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5233/5919657/6b3ffd9a7b93/pone.0196653.g001.jpg

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