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Long-term changes in physical and chemical conditions of nutrient-poor lakes along a latitudinal gradient: is there a coherent phytoplankton community response?

机译:营养盐缺乏湖泊的物理和化学条件沿纬度梯度的长期变化:浮游植物群落反应是否一致?

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摘要

To evaluate climate and atmospheric deposition induced physical and water chemical changes and their effects on phytoplankton communities, we used complete time series (14 years, monthly measurements during the growing season) of 18 physical and chemical variables and phytoplankton data from 13 nutrient-poor Swedish reference lakes along a latitudinal gradient. We found numerous strong significant changes over time that were most coherent among lakes for sulfate concentrations, conductivity, calcium, magnesium, chloride, potassium, water color, surface water temperature and the intensity of thermal stratification. Despite these pronounced coherent physical and water chemical changes over Sweden, the phytoplankton biomass and species richness of six phytoplankton groups, measured at the same time as the water chemical variables, showed only few and weak significant changes over time. The only coherent significant change over Sweden, occurring in seven lakes, was observed in the species richness of chlorophytes. The number of chlorophyte taxa significantly declined over Sweden. Using a partial least square model for each lake, we attributed the decline primarily to an increase in water temperatures and water color, which were among the most important variables for the model performance of each lake. All other taxonomic groups were driven primarily by non-coherent changes in nutrient concentrations, pH and probably also non-coherent grazing pressure. We concluded that coherent phytoplankton responses can only be achieved for taxonomic groups that are driven primarily by coherent physical/chemical changes. According to our study, chlorophytes belong to such a group, making them possible global change indicators. Our findings give new insights into global change effects on different phytoplankton taxonomic groups in nutrient-poor lakes.
机译:为了评估气候和大气沉积物诱发的物理和水化学变化及其对浮游植物群落的影响,我们使用了完整的时间序列(14年,生长季节每月测量)18个物理和化学变量以及来自13个营养不良的瑞典人的浮游植物数据参考湖沿纬度梯度。我们发现,随着时间的推移,在湖泊中,硫酸盐浓度,电导率,钙,镁,氯化物,钾,水的颜色,地表水温和热分层强度之间的变化最为紧密,且变化密切。尽管在瑞典发生了这些明显的物理和水化学变化,但六个浮游植物组的浮游生物量和物种丰富度(与水化学变量同时测量)随时间变化仅显示很少且较弱的显着变化。在整个瑞典,唯一一致的重大变化发生在七个湖泊中,这是因为其植物种类丰富。在瑞典,叶绿素类群的数量明显减少。使用每个湖泊的偏最小二乘模型,我们将下降的主要原因归因于水温和水色的增加,这是每个湖泊的模型性能最重要的变量之一。所有其他分类学组主要是由养分浓度,pH值和/或放牧压力的不连贯变化引起的。我们得出的结论是,仅对于主要由一致的物理/化学变化驱动的生物分类群,才能实现一致的浮游植物反应。根据我们的研究,叶绿素属于这一类,使其成为全球变化指标。我们的发现为营养缺乏的湖泊中不同浮游植物分类学类别的全球变化影响提供了新见解。

著录项

  • 来源
    《Aquatic Sciences》 |2012年第1期|p.77-85|共9页
  • 作者

    Ina Bloch; Gesa A. Weyhenmeyer;

  • 作者单位

    Department of Aquatic Sciences and Assessment, Swedish University of Agricultural Sciences, P. O. Box 7050, 75007 Uppsala, Sweden;

    Department of Aquatic Sciences and Assessment, Swedish University of Agricultural Sciences, P. O. Box 7050, 75007 Uppsala, Sweden,Department of Ecology and Genetics/Limnology, Uppsala University, Norbyvagen 18 D, 75236 Uppsala, Sweden;

  • 收录信息 美国《科学引文索引》(SCI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    algae; biodiversity; climate impact; freshwater; global change;

    机译:藻类生物多样性;气候影响;淡水;全球变化;

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