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Beta diversity determinants in Badagongshan a subtropical forest in central China

机译:中国中部亚热带森林八达贡山的Beta多样性决定因素

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摘要

Niche and neutral theories emphasize different processes contributing to the maintenance of species diversity. In this study, we calculated the local contribution to beta diversity (LCBD) of every cell, using variation partitioning in combination with spatial distance and environmental variables of the 25-ha Badagongshan plot (BDGS), to determine the contribution of environmentally-related variation versus pure spatial variation. We used topography and soil characteristics as environmental variables, distance-based Moran’s eigenvectors maps (dbMEM) to describe spatial relationships among cells and redundancy analysis (RDA) to apportion the variation in beta diversity into three components: pure environmental, spatially-structured environmental, and pure spatial. Results showed LCBD values were negatively related to number of common species and positively related to number of rare species. Environment and space jointly explained ~60% of the variation in species composition; soil variables alone explained 21.6%, slightly more than the topographic variables that explained 15.7%; topography and soil together explained 27%, slightly inferior to spatial variables that explained 34%. The BDGS forest was controlled both by the spatial and environmental variables, and the results were consistent across different life forms and life stages.
机译:生态位和中性理论强调了有助于维持物种多样性的不同过程。在这项研究中,我们使用变异分区结合空间距离和25公顷Badagongshan图(BDGS)的环境变量,计算了每个细胞对β多样性(LCBD)的局部贡献,以确定与环境有关的变异的贡献相对于纯空间变化。我们使用地形和土壤特征作为环境变量,基于距离的Moran特征向量图(dbMEM)描述了细胞之间的空间关系,而冗余分析(RDA)则将β多样性的变化分配为三个部分:纯环境,空间结构化环境,和纯粹的空间。结果表明,LCBD值与常见物种数量呈负相关,与稀有物种数量呈正相关。环境和空间共同解释了物种组成中约60%的变化;仅土壤变量可解释21.6%,略高于解释15.7%的地形变量。地形和土壤总共解释了27%,略逊于空间变量(解释了34%)。 BDGS森林受到空间和环境变量的控制,其结果在不同的生命形式和生命阶段均保持一致。

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