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首页> 外文期刊>River Research and Applications >ECOSYSTEM ENGINEERS MODULATE EXOTIC INVASIONS IN RIPARIAN PLANT COMMUNITIES BY MODIFYING HYDROGEOMORPHIC CONNECTIVITY
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ECOSYSTEM ENGINEERS MODULATE EXOTIC INVASIONS IN RIPARIAN PLANT COMMUNITIES BY MODIFYING HYDROGEOMORPHIC CONNECTIVITY

机译:生态系统工程师通过修改水文地貌连通性来调节RIPARIAN植物群落的外来入侵

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摘要

Patterns of native and exotic plant species richness and cover were examined in relation with ecosystem engineer effects of pioneer vegetation within the Mediterranean gravel bed river Tech, South France. The floristic composition was characterized according to two distinct vegetation types corresponding to two habitats with contrasted conditions: (ⅰ) open and exposed alluvial bars dominated by herbaceous communities; and (ⅱ) islands and river margins disconnected from annual hydrogeomorphic disturbances and covered by woody vegetation. A significant positive correlation between exotic and native plant species richness and cover was observed for both vegetation types. However, significant differences in native and exotic species richness and cover were found between these two vegetation types. Higher values of total species richness and Shannon diversity were attained within the herbaceous vegetation type than within the woody type. These differences are most likely related to changes in local exposure to hydrogeomorphic disturbances driven by woody engineer plant species and to vegetation succession. A lower exotic species cover within the woody vegetation type than within the herbaceous type suggested an increase of resistance to invasion by exotic species during the biogeomorphic succession. The engineer effects of woody vegetation through landform construction resulted in a decrease of alpha (a) diversity at the patch scale but, in parallel, caused an increase in gamma (γ) diversity at the scale of the studied river segment Our study corroborates recent investigations that support the theory of biotic acceptance of exotic species by native species at the local scale (generally < 10 m~2) within heterogeneous and disturbed environments. Furthermore, we suggest that in riparian contexts such as the River Tech exotic species trapp sediment at the same time as native species and thus contribute to the increase in ecosystem resistance during the biogeomorphic succession.
机译:研究了法国南部地中海沙砾河床Tech的先驱植被对原生和外来植物物种丰富度和覆盖度的影响。根据两种不同的植被类型(分别对应两个生境,条件相反)来表征植物区系:(ⅰ)以草本群落为主的开放和裸露冲积带; (ⅱ)岛屿和河流边缘不受年度水文地貌干扰的影响,并被木本植被覆盖。两种植被类型的外来和本地植物物种丰富度和覆盖率之间都存在显着的正相关关系。然而,在这两种植被类型之间发现了本地和外来物种丰富度和覆盖率的显着差异。与草木相比,草本植物类型的总物种丰富度和香农多样性更高。这些差异很可能与当地受木本工程植物物种驱动的水文地貌干扰的变化以及植被的演替有关。木本植被类型中外来物种的覆盖率低于草本类型,这表明在生物地貌演替过程中,外来物种对入侵的抵抗力增强。工程师通过地形建设对木本植被的影响导致斑块规模的α(a)多样性降低,但与此同时,导致研究河段规模的gamma(γ)多样性增加。我们的研究证实了最近的研究在异质和受干扰的环境中,支持本地物种(通常<10 m〜2)对本地物种对外来物种的生物接受的理论。此外,我们建议在河岸环境中,例如River Tech外来物种与本地物种同时捕获沉积物,从而有助于在生物地貌演替过程中增加生态系统的抵抗力。

著录项

  • 来源
    《River Research and Applications》 |2014年第1期|45-59|共15页
  • 作者单位

    Clermont Universite, Maison des Sciences de I'Homme, Clermont-Ferrand, France,CNRS, UMR 6042, GEOLAB- Laboratoire de Geographic Physique el Environnementale, F-63057, Clermont Ferrand, France;

    Clermont Universite, Maison des Sciences de I'Homme, Clermont-Ferrand, France,CNRS, UMR 6042, GEOLAB-Laboratoire de Geographie Physique et Environnementale, Clermont-Ferrand, France;

    CNRS, UMR 5245, ECOLAB-Laboratoire d'ecologie fonctionnelle, Universite Toulouse HI, Toulouse, France;

    Peatland Ecology Research Group, Universite Laval, Quebec, Canada;

    CNRS, UMR 5245, ECOLAB-Laboratoire d'ecologie fonctionnelle, Universite Toulouse HI, Toulouse, France;

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

    ecosystem engineer; exotic species; Mediterranean riparian system; species richness; invasibility; hydrogeomorphic disturbance;

    机译:生态系统工程师;外来物种地中海河岸系统;物种丰富度;入侵性水文地貌扰动;

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