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首页> 外文期刊>Knowledge and Management of Aquatic Ecosystems >Long-term changes in phytoplankton in a humic lake in response to the water level rising: the effects of beaver engineering on a freshwater ecosystem
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Long-term changes in phytoplankton in a humic lake in response to the water level rising: the effects of beaver engineering on a freshwater ecosystem

机译:响应水位上升,腐殖湖中浮游植物的长期变化:海狸工程对淡水生态系统的影响

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Although water level changes are supposed to be a key factor affecting the functioning of lake ecosystems, knowledge on this topic is scarce, particularly for humic lakes. This paper presents the results of 18 years’ research on a small humic lake exposed to hydrological change (rising of the water level), which was induced by spontaneous colonization of the lake by the European beaver (Castor fiber L.). We put forward a hypothesis that this change will be reflected in the quantity and structure of summer phytoplankton due to expected changes in the water chemistry. We noted a statistically significant decrease in total phosphorus and calcium concentrations, electrolytic conductivity, and Secchi disc transparency, and an increase in water color. The phytoplankton structure changed, with cyanoprocaryota and greens decreasing and flagellates increasing. The alteration was observed in a lake which had previously been drained by ditches, so beaver damming appeared to cause the return of the lake to its original endorheic conditions as well as to a water chemistry and phytoplankton structure more typical of undisturbed humic lakes.
机译:尽管水位的变化被认为是影响湖泊生态系统功能的关键因素,但是关于这一主题的知识却很少,尤其是对于腐殖质湖泊。本文介绍了一个18年的研究结果,该研究是对一个小型的腐殖质湖泊的暴露,该湖泊暴露于水文变化(水位上升),这是由欧洲海狸(Castor fiber L.)自发定居该湖而引起的。我们提出一个假设,即由于水化学的预期变化,这种变化将反映在夏季浮游植物的数量和结构中。我们注意到,总磷和钙浓度,电解电导率和Secchi圆盘透明度在统计学上显着降低,并且水彩增加。浮游植物的结构发生了变化,蓝原色和绿色减少,鞭毛增加。在先前被沟渠排水的湖泊中观察到了这种变化,因此,河狸的筑坝似乎使湖泊恢复了其原始的内吸性条件,并使水化学和浮游植物结构恢复为原状腐殖质湖所特有的特征。

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