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Abrupt shift from clear to turbid state in a shallow eutrophic, biomanipulated lake

机译:在浅水富营养化,生物操纵的湖泊中从清晰状态转变为浑浊状态

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Monitoring data were used to assess causes behind a recent shift from a clear-water to a turbid-water state in Lake Major, a 10 ha shallow lake in Hungary. In 1999-2000, fish manipulation was conducted in this hypertrophic lake. Reduced fish stock resulted in clearing water and the development of a dense (> 80% coverage) submerged vegetation in 2005. During the recent abrupt shift, which occurred in 2007, submerged vegetation subsequently declined after a two-year period of clear water and abundant vegetation. An intense decay of macrophytes within the lake produced a rapid transition between the clear- and turbid-water states. During the clear-water state in 2005-2006, the most important variables predominantly correlating with macrophyte cover were Secchi transparency, temperature and TN, while TN, temperature, Secchi depth and chlorophyll-a were the most significant variables during the turbid-water state in 2007. Nitrogen may play a significant role in the cover of submerged macrophytes when TP is moderate. We argue that several factors in concert are necessary to initiate a shift. Water temperature likely has contributed to triggering shift through inter-year-dependent changes in cover of macrophytes, with fish recruitment having key roles in the dynamics of shallow lakes.
机译:监测数据被用于评估最近在匈牙利10公顷浅湖梅杰湖从清水状态转变为浑水状态的原因。在1999-2000年,在这个肥厚的湖泊中进行了鱼类操作。减少的鱼类种群导致了清水,并在2005年形成了茂密(覆盖率> 80%)的淹没植被。在2007年发生的最近突然转变期间,经过两年的清水和充沛的淹没植被随后减少了植被。湖中大型植物的强烈腐烂导致了清水和浑水状态之间的快速过渡。在2005-2006年的清水状态下,与大型植物覆盖率相关的最重要变量是Secchi透明度,温度和TN,而TN,温度,Secchi深度和叶绿素-a是混浊水状态下的最显着变量。在2007年。当TP适中时,氮可能在淹没大型植物的覆盖中起重要作用。我们认为,需要几个共同的因素来引发转变。水温可能通过大型植物的年际变化来触发转变,其中鱼类的募集在浅水湖泊的动态中起着关键作用。

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