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首页> 外文期刊>The Science of the Total Environment >Effects of tree species richness on fine root production varied with stand density and soil nutrients in subtropical forests
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Effects of tree species richness on fine root production varied with stand density and soil nutrients in subtropical forests

机译:树种丰富性对细根生产的影响随着亚热带森林中的立体密度和土壤养分而变化

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摘要

Fine root production accounts for a large proportion of net primary production (NPP) in forest ecosystems that is highly responsive to environmental and biotic changes. The underlying mechanisms of the relationship between tree species richness and fine root production have not been fully examined. Here we hypothesized that: (ⅰ) the relationship between aboveground species richness and fine root production could be attributable to below-ground spatial resource partitioning; (ⅱ) either symmetrical or asymmetrical root proliferation to obtain nutrients leads to increased fine root production; and (ⅲ) stand density affects the relationship between species richness and fine root production. We used an ingrowth core method to estimate fine root production coupled to molecular approaches for identifying the tree species of sampled fine roots within each ingrowth core. There was a significant and positive relationship between aboveground species richness and fine root production. The increase in fine root production might partially be attributed to asymmetrical root proliferation rather than belowground spatial resource partitioning. A piecewise structural equation model (SEM) linking stand density and soil nutrients revealed that both factors play dominant roles in mediating the effects of aboveground species richness on fine root production. Moreover, fine root production and relative abundance of fine root distribution within-layers both depended on the effects of aboveground species richness × stand density × soil phosphorus (P) interactions. Therefore, soil P concentration and stand density partially explained the positive aboveground species richness-fine root production relationship.
机译:细根生产占森林生态系统中的大部分净初级生产(NPP),对环境和生物改变具有高度敏感性。树种丰富性和细根生产之间关系的潜在机制尚未得到完全检查。在这里,我们假设:(Ⅰ)地上物种丰富性和细根生产之间的关系可归因于地下空间资源分区; (Ⅱ)对称或不对称的根增殖,以获得营养素导致细根生产增加; (Ⅲ)立体密度影响物种丰富性和细根生产之间的关系。我们使用了一种核心核心方法来估计细根部产生,耦合到鉴定每个发光核心内采样细根的树种的分子方法。地上物种丰富性和细根生产之间存在显着且积极的关系。细根生产的增加可能部分归因于不对称的根增殖,而不是在地下空间资源分区。分段结构方程模型(SEM)连接立体和土壤营养素透露,两种因素在介导对细根生产上的地上物种丰富性的影响方面发挥着主导作用。此外,依赖于地上物种丰富度×稳定性×土壤磷(P)相互作用的效果的细根生产和细根分布的相对丰度。因此,土壤P浓度和立体密度部分地解释了正交地上物种丰富性 - 细根生产关系。

著录项

  • 来源
    《The Science of the Total Environment 》 |2020年第1期| 139344.1-139344.9| 共9页
  • 作者单位

    Faculty of Life Science and Technology Central South University of Forestry and Technology Changsha 410004 Hunan Province China;

    Faculty of Life Science and Technology Central South University of Forestry and Technology Changsha 410004 Hunan Province China Huitong National Station for Scientific Observation and Research of Chinese Fir Plantation Ecosystem in Hunan Province Huitong 438107 China;

    Faculty of Life Science and Technology Central South University of Forestry and Technology Changsha 410004 Hunan Province China;

    Faculty of Life Science and Technology Central South University of Forestry and Technology Changsha 410004 Hunan Province China Huitong National Station for Scientific Observation and Research of Chinese Fir Plantation Ecosystem in Hunan Province Huitong 438107 China;

    Faculty of Life Science and Technology Central South University of Forestry and Technology Changsha 410004 Hunan Province China Huitong National Station for Scientific Observation and Research of Chinese Fir Plantation Ecosystem in Hunan Province Huitong 438107 China;

    Faculty of Life Science and Technology Central South University of Forestry and Technology Changsha 410004 Hunan Province China Huitong National Station for Scientific Observation and Research of Chinese Fir Plantation Ecosystem in Hunan Province Huitong 438107 China;

    Faculty of Life Science and Technology Central South University of Forestry and Technology Changsha 410004 Hunan Province China;

    International Center of Tropical Botany Florida International University Miami FL 33199 USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Tree species richness; Fine root production; Niche complementary; Asymmetric root proliferation; Stand density; Soil phosphorus;

    机译:树种丰富;细根生产;利基互补;不对称的根增殖;立体密度;土壤磷;

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