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Land use and drought interactively affect interspecific competition and species diversity at the local scale in a semiarid steppe ecosystem

机译:在半干旱草原生态系统中,土地利用和干旱交互影响地方尺度上的种间竞争和物种多样性

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摘要

Few studies have considered interactive effects of grazing and drought on species composition and the relative contribution of species to total biomass, although it is important to understand the short-term dynamics and community succession in grazed ecosystems. We monitored species diversity and relative biomass contribution at one site protected from grazing since 1979 (UG79), and at winter grazing (WG) and heavily grazed (HG) sites. Continuous heavy grazing resulted in lower plant height and more but small individuals (tillers or stolons). Drought significantly reducedrntotal plant density on all sites. Grazing affected species diversity more than drought. Species richness at site UG79 was significantly higher than at sites WG and HG, while drought only tended to reduce species diversity. Drought stress and grazing disturbance interactively controlled species competition and functional groups. Both perennial grasses and forbs had greater contribution to total biomass at site UG79, and perennial grasses contributed more than 97% of total biomass at site WG. The contribution to total biomass of annual forbs and semi-shrubs significantly increased at site HG after two dry years. The significant decrease in Potentilla acaulis and a substantial increase in annual species at this site indicate that the perennial vegetation of this ecosystem is in great danger of extinction under conditions of prolonged drought.
机译:尽管重要的是要了解放牧生态系统的短期动态和群落演替,但很少有研究考虑过放牧和干旱对物种组成和物种对总生物量的相对贡献的相互作用。我们监测了自1979年以来没有放牧的站点(UG79)以及冬季放牧(WG)和重度放牧(HG)站点的物种多样性和相对生物量贡献。持续的大量放牧导致植株高度降低,个体更多(分or或sto茎)。干旱显着降低了所有地点的植物总密度。放牧对物​​种多样性的影响大于干旱。 UG79站点的物种丰富度显着高于WG和HG站点,而干旱仅倾向于减少物种多样性。干旱胁迫和放牧干扰以交互方式控制物种竞争和功能群体。 UG79处的多年生草和禾本科植物对总生物量的贡献更大,WG处的多年生草占总生物量的97%以上。经过两年的干旱,HG站点一年生灌木和半灌木对总生物量的贡献显着增加。该地点的委陵菜委陵菜显着减少和一年生物种的大量增加表明,在长期干旱的条件下,该生态系统的多年生植被极有灭绝的危险。

著录项

  • 来源
    《Ecological research》 |2009年第3期|627-635|共9页
  • 作者单位

    Key Laboratory of Vegetation Ecology, Northeast Normal University, Changchun 130024, China Institute of Crop Science and Plant Breeding, Section Grass and Forage Science/Organic Farming, Christian-Albrechts University of Kiel, 24118 Kiel, Germany;

    Institute of Crop Science and Plant Breeding, Section Grass and Forage Science/Organic Farming, Christian-Albrechts University of Kiel, 24118 Kiel, Germany Institute for Plant Production and Agroecology in the Tropics and Subtropics, Section Crop Water Stress Management, Garbenstr, 13, 70599 Stuttgart, Germany;

    Laboratory of Quantitative Vegetation Ecology, Institute of Botany. Chinese Academy of Sciences, 100093 Beijing, China;

    Key Laboratory of Vegetation Ecology, Northeast Normal University, Changchun 130024, China;

    Key Laboratory for Silviculture and Conservation of Ministry of Education, College of Forest Science, Beijing Forestry University, Beijing 100083, China;

    Institute of Crop Science and Plant Breeding, Section Grass and Forage Science/Organic Farming, Christian-Albrechts University of Kiel, 24118 Kiel, Germany Institute for Plant Production and Agroecology in the Tropics and Subtropics, Section Crop Water Stress Management, Garbenstr, 13, 70599 Stuttgart, Germany;

    Department of Plant Nutrition, China Agricultural University, Yuanmingyuan West Road 2, Beijing 100094, China;

    Institute of Crop Science and Plant Breeding, Section Grass and Forage Science/Organic Farming, Christian-Albrechts University of Kiel, 24118 Kiel, Germany;

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  • 原文格式 PDF
  • 正文语种 eng
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  • 关键词

    heavy grazing; functional group; inner mongolian steppe; relative biomass;

    机译:放牧功能小组;内蒙古草原相对生物量;

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