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湖泊大型植物群落构建的全球模式:区域差异及驱动因素

Global patterns in the metacommunity structuring of lake macrophytes: regional variations and driving factors.

作者信息

Alahuhta Janne, Lindholm Marja, Bove Claudia P, Chappuis Eglantine, Clayton John, de Winton Mary, Feldmann Tõnu, Ecke Frauke, Gacia Esperança, Grillas Patrick, Hoyer Mark V, Johnson Lucinda B, Kolada Agnieszka, Kosten Sarian, Lauridsen Torben, Lukács Balázs A, Mjelde Marit, Mormul Roger P, Rhazi Laila, Rhazi Mouhssine, Sass Laura, Søndergaard Martin, Xu Jun, Heino Jani

机构信息

Geography Research Unit, University of Oulu, P.O. Box 3000, 90014, Oulu, Finland.

Finnish Environment Institute, Freshwater Centre, P.O. Box 413, 90014, Oulu, Finland.

出版信息

Oecologia. 2018 Dec;188(4):1167-1182. doi: 10.1007/s00442-018-4294-0. Epub 2018 Oct 29.

Abstract

We studied community-environment relationships of lake macrophytes at two metacommunity scales using data from 16 regions across the world. More specifically, we examined (a) whether the lake macrophyte communities respond similar to key local environmental factors, major climate variables and lake spatial locations in each of the regions (i.e., within-region approach) and (b) how well can explained variability in the community-environment relationships across multiple lake macrophyte metacommunities be accounted for by elevation range, spatial extent, latitude, longitude, and age of the oldest lake within each metacommunity (i.e., across-region approach). In the within-region approach, we employed partial redundancy analyses together with variation partitioning to investigate the relative importance of local variables, climate variables, and spatial location on lake macrophytes among the study regions. In the across-region approach, we used adjusted R values of the variation partitioning to model the community-environment relationships across multiple metacommunities using linear regression and commonality analysis. We found that niche filtering related to local lake-level environmental conditions was the dominant force structuring macrophytes within metacommunities. However, our results also revealed that elevation range associated with climate (increasing temperature amplitude affecting macrophytes) and spatial location (likely due to dispersal limitation) was important for macrophytes based on the findings of the across-metacommunities analysis. These findings suggest that different determinants influence macrophyte metacommunities within different regions, thus showing context dependency. Moreover, our study emphasized that the use of a single metacommunity scale gives incomplete information on the environmental features explaining variation in macrophyte communities.

摘要

我们利用来自全球16个地区的数据,在两个集合群落尺度上研究了湖泊大型植物与群落环境的关系。具体而言,我们考察了:(a)湖泊大型植物群落对各地区关键局部环境因素、主要气候变量和湖泊空间位置的响应是否相似(即区域内方法);(b)每个集合群落内的海拔范围、空间范围、纬度、经度以及最古老湖泊的年龄,能在多大程度上解释多个湖泊大型植物集合群落中群落与环境关系的变异性(即跨区域方法)。在区域内方法中,我们采用偏冗余分析和变异分解,来研究局部变量、气候变量和空间位置在各研究区域的湖泊大型植物中的相对重要性。在跨区域方法中,我们使用变异分解的调整R值,通过线性回归和共性分析,对多个集合群落的群落与环境关系进行建模。我们发现,与局部湖泊水平环境条件相关的生态位筛选,是集合群落内大型植物结构形成的主导力量。然而,基于跨集合群落分析的结果,我们的研究结果还表明,与气候相关的海拔范围(温度幅度增加影响大型植物)和空间位置(可能由于扩散限制)对大型植物也很重要。这些发现表明,不同的决定因素在不同区域影响大型植物集合群落,从而表现出背景依赖性。此外,我们的研究强调,仅使用单一的集合群落尺度,会在解释大型植物群落变异的环境特征方面提供不完整的信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fe8b/6244864/a8a33374de43/442_2018_4294_Fig1_HTML.jpg

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