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Functional and phylogenetic diversity determine woody productivity in a temperate forest

机译:功能和系统发育多样性决定了温带森林的木本生产力

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摘要

Understanding the relationships between biodiversity and ecosystem productivity has become a central issue in ecology and conservation biology studies, particularly when these relationships are connected with global climate change and species extinction. However, which facets of biodiversity (i.e. taxonomic, functional, and phylogenetic diversity) account most for variations in productivity are still not understood very well. This is especially true with regard to temperate forest ecosystems. In this study, we used a dataset from a stem‐mapped permanent forest plot in northeastern China exploring the relationships between biodiversity and productivity at different spatial scales (20 × 20 m; 40 × 40 m; and 60 × 60 m). The influence of specific environmental conditions (topographic conditions) and stand maturity (expressed by initial stand volume and biomass) were taken into account using the multivariate approach known as structural equation models. The variable “Biodiversity” includes taxonomic (Shannon), functional (FDis), and phylogenetic diversity (PD). Biodiversity–productivity relationships varied with the spatial scales. At the scale of 20 × 20 m, PD and FDis significantly affected forest biomass productivity, while Shannon had only indirect effects. At the 40 × 40 m and 60 × 60 m scales, biodiversity and productivity were weakly correlated. The initial stand volume and biomass were the most important drivers of forest productivity. The local environmental conditions significantly influenced the stand volume, biomass, biodiversity, and productivity. The results highlight the scale dependency of the relationships between forest biodiversity and productivity. The positive role of biodiversity in facilitating forest productivity was confirmed at the smaller scales. Our findings emphasize the fundamental role of environmental conditions in determining forest ecosystem performances. The results of this study provide a better understanding of the underlying ecological processes that influence specific forest biodiversity and productivity relationships.
机译:理解生物多样性和生态系统生产力之间的关系已成为生态学和保护生物学研究的中心问题,尤其是当这些关系与全球气候变化和物种灭绝联系在一起时。但是,对于生物多样性的哪些方面(即生物分类,功能和系统发育多样性)最能解释生产力的变化,人们仍然不太了解。对于温带森林生态系统尤其如此。在这项研究中,我们使用了来自中国东北的一个茎干永久性森林地块的数据集,探索了不同空间尺度(20×20m; 40×40m;和60×60m)的生物多样性与生产力之间的关系。使用称为结构方程模型的多元方法,考虑了特定环境条件(地形条件)和林分成熟度(由初始林分体积和生物量表示)的影响。变量“生物多样性”包括生物分类学(Shannon),功能分类学(FDis)和系统发育分类学(PD)。生物多样性与生产力的关系随空间尺度而变化。在20×20 m的规模上,PD和FDis显着影响森林生物量生产力,而Shannon仅具有间接影响。在40×40 m和60×60 m的尺度上,生物多样性和生产力之间存在弱相关性。初始林分数量和生物量是森林生产力的最重要驱动力。当地的环境条件极大地影响了林分数量,生物量,生物多样性和生产力。结果突出了森林生物多样性与生产力之间关系的规模依赖性。在较小规模上确认了生物多样性在促进森林生产力方面的积极作用。我们的研究结果强调了环境条件在确定森林生态系统性能方面的基本作用。这项研究的结果更好地了解了影响特定森林生物多样性和生产力关系的潜在生态过程。

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