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首页> 外文期刊>Hydrobiologia >The importance of environmental variables for submerged macrophyte community assemblage and coverage in shallow lakes: differences between northern and southern Europe
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The importance of environmental variables for submerged macrophyte community assemblage and coverage in shallow lakes: differences between northern and southern Europe

机译:环境变量对于浅水湖泊中大型植物群落淹没和覆盖的重要性:北欧与南欧之间的差异

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摘要

Much information is available on community composition and abundance of submerged macrophytes in North temperate lakes, including their response to variation in environmental variables. Less is known about macrophytes in other climate regions. We studied 98 shallow lakes distributed in three different European latitudinal regions. The lakes were selected along mutually independent gradients of macrophyte coverage and total phosphorus and were sampled monthly from May to October for water chemistry and physical variables. We tested for changes in the impact of selected environmental variables on the macrophyte assemblage, coverage and richness in the three regions. Coverage was measured along transects during July/August and June in the northern/central and southern European lakes, respectively. Correspondence Discriminant Analysis was used to detect for differences in macrophyte composition among different regions, and univariate regression trees were used to detect relationships between environmental variables and macrophyte coverage and richness. In the northern lakes, the coverage was mainly related to chlorophyll a followed by pH, and richness was related to Secchi depth and chlorophyll a. In the southern lakes, pH was the key environmental variable for both coverage and richness. North–south differences may be of relevance for determining management strategies related to global climate change.
机译:关于北温带湖泊中淹没的大型植物的群落组成和丰度,可以获得很多信息,包括它们对环境变量变化的响应。对其他气候区的大型植物了解较少。我们研究了分布在三个欧洲纬度地区的98个浅湖。沿相互独立的大型植物覆盖率和总磷梯度选择湖泊,并于5月至10月每月取样进行水化学和物理变量的采样。我们测试了所选环境变量对这三个区域的大型植物组合,覆盖度和丰富度的影响的变化。在北欧/中部和南部湖泊中,分别在7月/ 8月和6月沿样线测量了覆盖率。对应判别分析用于检测不同区域之间大型植物的组成差异,单变量回归树用于检测环境变量与大型植物覆盖度和丰富度之间的关系。在北部湖泊中,其覆盖率主要与叶绿素a有关,然后与pH有关,而其丰富度与Secchi深度和叶绿素a有关。在南部湖泊中,pH是覆盖度和丰富度的关键环境变量。南北差异可能与确定与全球气候变化有关的管理策略有关。

著录项

  • 来源
    《Hydrobiologia》 |2015年第1期|49-61|共13页
  • 作者单位

    Department of Bioscience Aarhus University">(1);

    Arctic Research Centre">(2);

    Sino-Danish Centre for Education and Research (SDC)">(6);

    Department of Bioscience Aarhus University">(1);

    Arctic Research Centre">(2);

    Sino-Danish Centre for Education and Research (SDC)">(6);

    Department of Aquatic Ecology Netherlands Institute of Ecology (NIOO-KNAW)">(3);

    Laboratory of Aquatic Ecology Evolution and Conservation KU Leuven University of Leuven">(4);

    Laboratory of Aquatic Ecology Evolution and Conservation KU Leuven University of Leuven">(4);

    Institute of Water Research University of Granada">(5);

    Laboratory of Aquatic Ecology Evolution and Conservation KU Leuven University of Leuven">(4);

    Department of Bioscience Aarhus University">(1);

    Arctic Research Centre">(2);

    Department of Environmental Sciences University of Vic">(7);

    Institute for Environment and Sustainability European Commission Joint Research Centre">(8);

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

    Aquatic plants; Richness; Freshwater; Restoration; Climate;

    机译:水生植物;丰富;淡水;恢复;气候;

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