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首页> 外文期刊>Science of the total environment >Seasonal and long-term trends in the spatial heterogeneity of lake phytoplankton communities over two decades of restoration and climate change
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Seasonal and long-term trends in the spatial heterogeneity of lake phytoplankton communities over two decades of restoration and climate change

机译:百洛斯普兰湖社区空间异质性的季节性和长期趋势超过二十年的恢复和气候变化

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摘要

World-wide, reducing the external nutrient loading to lakes has been the primary priority of lake management in the restoration of eutrophic lakes over the past decades, and as expected this has resulted in an increase in the local environmental heterogeneity, and thus biotic heterogeneity, within lakes. However, little is known about how the regional spatial heterogeneity of lake biotic communities changes with restoration across a landscape. Using a long-term monitoring dataset from 20 Danish lakes, we elucidated the seasonal and long-term trends in the spatial heterogeneity of climate, local abiotic variables and phytoplankton communities over two decades of restoration and climate change at landscape level. We found significant seasonality in the spatial heterogeneity of most climatic and local drivers as well as in the total beta diversity (Sorensen coefficient) and its turnover components (Simpson coefficient) of phytoplankton communities among the lakes. The seasonality tended to be less marked in deep than in shallow lakes. We found significant spatial homogenisation of most local drivers (except for alkalinity) and phytoplankton communities after two decades of restoration and that turnover dominated the temporal responses of the total beta diversity of phytoplankton communities. Path analyses showed that the homogenisation of phytoplankton communities was mainly due to a decrease in spatial heterogeneity of total phosphorus and Schmidt stability in shallow lakes and to a decrease in spatial total phosphorus and total nitrogen heterogeneity in deep lakes. However, albeit weakly, the spatial heterogeneity of the phytoplankton communities was affected indirectly by climatic warming in both shallow and deep lakes and directly by wind speed in shallow lakes. We conclude that restoration of eutrophic lakes may lead to an increase in the local heterogeneity of phytoplankton communities at lake scale and an increase in homogeneity at landscape scale.
机译:全世界,降低湖泊的外部营养加载是湖泊管理在过去几十年中恢复Eut培养湖的主要优先权,并且正如预期的那样,这导致了当地环境异质性的增加,因此产生了生物异质性,在湖泊内。然而,关于如何在景观中恢复的恢复变化的区域空间异质性毫无疑问。使用20丹麦湖的长期监测数据集,我们阐述了在景观水平的恢复和气候变化的二十几十年中,阐述了气候的空间异质性,局部非生物变量和浮游植物的空间异质性季节性和长期趋势。我们在最活跃和局部司机的空间异质性以及湖泊之间的浮游植物群群中的总β多样性(Sorensen系数)以及浮游植物群落中的总葡萄干多样性(Simpson系数)中发现了显着的季节性。季节性往往比在浅湖泊深处的较低。我们发现大多数当地司机(碱土除外)和浮游植物社区的大量空间均匀化,并在植物博士群社区的总β多样性的临时反应中占据了浮游植物。路径分析表明,浮游植物群落的均质化主要是由于浅湖泊总磷的空间异质性和施密特稳定性的降低,并在深湖中减少了空间总磷和总氮异质性。然而,尽管弱,浮游植物社区的空间异质性受到浅层和深湖中的气候变暖的间接影响,并且直接受浅湖中的风速。我们得出结论,养殖湖泊的恢复可能导致湖规模浮游植物群落的局部异质性,并在景观量表中增加均匀性。

著录项

  • 来源
    《Science of the total environment》 |2020年第15期|141106.1-141106.11|共11页
  • 作者单位

    Ecology Department College of Resources & Environments Hunan Provincial Key Laboratory of Rural Ecosystem Health in Dongting Lake Area Hunan Agricultural University Changsha 410128 PR China;

    Ecology Department College of Resources & Environments Hunan Provincial Key Laboratory of Rural Ecosystem Health in Dongting Lake Area Hunan Agricultural University Changsha 410128 PR China;

    Institute of Marine Sciences Middle East Technical University Mersin Turkey;

    Department of Bioscience Aarhus University Vejlsovej 25 8600 Silkeborg Denmark;

    Department of Bioscience Aarhus University Vejlsovej 25 8600 Silkeborg Denmark Sino-Danish Centre for Education and Research (SDC) University of Chinese Academy of Sciences Beijing China;

    Department of Bioscience Aarhus University Vejlsovej 25 8600 Silkeborg Denmark Sino-Danish Centre for Education and Research (SDC) University of Chinese Academy of Sciences Beijing China;

    Department of Bioscience Aarhus University Vejlsovej 25 8600 Silkeborg Denmark Sino-Danish Centre for Education and Research (SDC) University of Chinese Academy of Sciences Beijing China Limnology Laboratory Department of Biological Sciences Centre for Ecosystem Research and Implementation Middle East Technical University Ankara Turkey;

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

    Beta diversity; Spatial homogenisation; Nutrient loading; Seasonality; Homogenisation;

    机译:β多样性;空间均质化;营养加载;季节性;均质化;

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