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The role of fine and coarse roots in shallow slope stability and soil erosion control with a focus on root system architecture: a review

机译:细根和粗根在浅层边坡稳定性和土壤侵蚀控制中的作用,重点是根系体系结构:综述

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摘要

The contribution of plant root systems to slope stability and soil erosion control has received a lot of attention in recent years. The plant root system is an intricate and adaptive object, and understanding the details of soil–root interaction is a difficult task. Although the morphology of a root system greatly influences its soil-fixing efficiency, limited architectural work has been done in the context of slope stabilization and erosion control, and hence it remains unknown exactly which characteristics are important. Many of the published research methods are tedious and time-consuming. This review deals with the underlying mechanisms of shallow slope stabilization and erosion control by roots, especially as determined by their architectural characteristics. The effect of soil properties as well as the relative importance of different root sizes and of woody versus non-woody species are briefly discussed. Empirically and intuitively, architectural features seem to determine the effect of root systems on erosion phenomena and an effort is therefore made here to link both aspects. Still, the research to underpin this relationship is poorly developed. A variety of methods are available for detailed root system architectural measurement and analysis. Although, generally time-consuming, a full 3D architectural description followed by analysis in software such as AMAPmod offers the possibility to extract relevant information on almost any root system architectural characteristic. Combining several methods of measurement and analysis in a complementary way may be a useful option, especially in a context of modelling.
机译:近年来,植物根系对边坡稳定性和土壤侵蚀控制的贡献受到了广泛关注。植物的根系是一个复杂而适应性强的对象,了解土壤与根系相互作用的细节是一项艰巨的任务。尽管根系的形态极大地影响了其固土效率,但在边坡稳定和侵蚀控制的背景下完成了有限的建筑工作,因此仍然不清楚确切的特征是什么。许多已发表的研究方法既繁琐又费时。这项审查处理浅层边坡稳定和根部控制侵蚀的潜在机制,尤其是由其建筑特征决定的机制。简要讨论了土壤特性的影响以及不同根系大小以及木质和非木质物种的相对重要性。从经验上和直观上来看,建筑特征似乎决定了根系对侵蚀现象的影响,因此在此努力将这两个方面联系起来。尽管如此,支持这种关系的研究仍不完善。有多种方法可用于详细的根系统体系结构度量和分析。尽管通常很耗时,但是完整的3D架构描述以及随后在诸如AMAPmod之类的软件中进行分析提供了提取几乎任何根系统架构特征的相关信息的可能性。以互补的方式组合几种测量和分析方法可能是一个有用的选择,尤其是在建模的情况下。

著录项

  • 来源
    《Trees》 |2007年第4期|385-402|共18页
  • 作者单位

    K.U. Leuven Division Forest Nature and Landscape Celestijnenlaan 200E box 2411 3001 Leuven Belgium;

    K.U. Leuven Physical and Regional Geography Research Group Celestijnenlaan 200E box 2409 3001 Leuven Belgium;

    INRA UR1263 EPHYSE 69 route d’Arcachon 33612 Cestas France;

    Laboratory of Forestry Ghent University Geraardsbergsesteenweg 267 9090 Melle-Gontrode Belgium;

    K.U. Leuven Division Forest Nature and Landscape Celestijnenlaan 200E box 2411 3001 Leuven Belgium;

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

    Ecosystem engineering; Fractals; Root architecture; Soil fixation; Root system topology;

    机译:生态系统工程;分形;根系结构;土壤固定;根系拓扑;

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