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首页> 外文期刊>Restoration ecology >Ecohydrological Source-Sink Interrelationships between Vegetation Patches and Soil Hydrological Properties along a Disturbance Gradient Reveal a Restoration Threshold
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Ecohydrological Source-Sink Interrelationships between Vegetation Patches and Soil Hydrological Properties along a Disturbance Gradient Reveal a Restoration Threshold

机译:沿扰动梯度的植被斑块与土壤水文特性之间的生态水文学源汇之间的相互关系揭示了恢复阈值

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摘要

Vegetation, soil, and hydrology in drylands often collectively exhibit strong ecohydrological interrelationships in which vegetation both influences and is influenced by runoff, particularly on sites with more gradual slopes. These two-way relationships have important implications for ecological restoration of disturbed sites, such as those being reclaimed following mining, yet studies from both ecological and hydrological perspectives specifically evaluating how the strength of ecohydrological interrelationships varies for a range of natural and restored conditions are still missing. We assessed two-way relationships between vegetation and soil hydrological properties by evaluating patterns of both plant community structure and soil hydrological characteristics related to runoff for natural sites and restored sites following mining. At the plot scale, we identified eight ecohydrological units based on interrelationships between vegetation communities and hydrological properties associated with runoff along a progression from source to sink patch types. Similarly, at the hillslope scale, which included patches of different types, we found a correspondence between the proportions of source and sink patches and both vegetation community and hydrological properties. The relative strength of ecohydrological interrelationships in hillslope mosaics decreased with decreasing disturbance except for rilled hillslopes, likely because parts of the hillslope become isolated from the others. Our results highlight, in general, how ecohydrological interrelationships are related with degree of disturbance, and in particular, how rilling alters ecohydrological interrelationships, thereby precluding effective restoration.
机译:干旱地区的植被,土壤和水文学通常共同表现出强烈的生态水文相互关系,其中植被既影响径流又受径流影响,特别是在坡度更大的地点。这些双向关系对于受干扰地点的生态恢复具有重要意义,例如采矿后被回收的生态系统,但是从生态和水文角度进行的研究特别评估了在一系列自然条件和恢复条件下生态水文相互关系的强度如何仍然存在失踪。我们通过评估植物群落结构的模式以及与自然地点和采矿后恢复地点的径流相关的土壤水文特征,评估了植被与土壤水文性质之间的双向关系。在样地尺度上,我们根据植被群落与径流相关的水文特性(从源到汇斑块类型)之间的相互关系,确定了八个生态水文单位。同样,在包括不同类型斑块的山坡尺度上,我们发现了源和汇斑的比例与植被群落和水文特性之间的对应关系。除扰动的山坡外,山坡马赛克中生态水文相互关系的相对强度随着扰动的减小而降低,这很可能是因为山坡的某些部分变得彼此隔离。我们的研究结果总体上强调了生态水文相互关系与扰动程度之间的关系,特别是凿岩如何改变生态水文相互关系,从而排除了有效的恢复。

著录项

  • 来源
    《Restoration ecology》 |2012年第3期|p.360-368|共9页
  • 作者单位

    Departamento de Ecologia, Universidad de Alcala, Alcala de Henares, Madrid,E-28871, Espaiia;

    School of Natural Resources and the Environment, The University of Arizona,Tucson, AZ, U.S.A,Department of Ecology and Evolutionary Biology, The University of Arizona,Tucson, AZ, U.S.A;

    Faculty of Engineering and Built Environment, The University of Newcastle,Callaghan, NSW 2308, Australia;

    Grupo GIGA, Facultad de Ingenien'a, Universidad de Antioquia, MedeUfn,Colombia,School of Natural Resources and the Environment, The University of Arizona,Tucson, AZ, U.S.A;

    Departamento de Ecologia, Universidad de Alcala, Alcala de Henares, Madrid,E-28871, Espaiia;

    Departamento de Ecologia, Universidad de Alcala, Alcala de Henares, Madrid,E-28871, Espaiia;

    Departamento de Agricultura y Economia Agraria, Escuela Politecnica,Universidad de Zaragoza, Huesca, Espana;

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

    disturbance; drylands; ecohydrological inter-relationships; ecohydrology; hillslope; mining; restoration;

    机译:骚乱;旱地生态水文相互关系;生态水文学山坡矿业;恢复;

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