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首页> 外文期刊>Knowledge and Management of Aquatic Ecosystems >Phytoplankton functional group classifications as a tool for biomonitoring shallow lakes: a case study
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Phytoplankton functional group classifications as a tool for biomonitoring shallow lakes: a case study

机译:浮游植物功能群分类作为生物监测浅湖的工具:一个案例研究

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摘要

We assessed changes in phytoplankton community structure in relation to environmental variables in an urban eutrophic shallow lake (Lake Lugano, Argentina) throughout one year following two classification systems according to the morpho-functional groups (MFG) approach and morphologically based functional groups (MBFG). We aimed to compare the different approaches and find a simple tool to biomonitor urban freshwaters regarding their phytoplankton structure. Values of transparency, nutrients and chlorophyll a concentrations confirmed the eutrophic/hypertrophic conditions of the lake. The potentially toxic Cyanobacteria Planktothrix agardhii representing MFG 5a and MBFG III was generally dominant and reached bloom densities (>62,000 ind ml~(?1)). The multivariate analyses performed showed similar and overlapping results considering both approaches. Nutrients and transparency were the main environmental variables explaining the variance encountered. We conclude that MBFG classification was an adequate, easy-to-handle method for monitoring Lake Lugano. The functional approaches applied enabled the follow-up of potentially toxic Cyanobacteria in Lake Lugano. Further studies should include the estimation of cyanobacteria-derived toxin concentrations in water. We consider that the applicability of the MBFG approach deserves to be further explored as a promising tool for biomonitoring different types of urban water bodies.
机译:根据形态功能组(MFG)方法和基于形态学的功能组(MBFG),我们根据两种分类系统,评估了城市富营养化浅水湖(阿根廷卢加诺湖)整年中浮游植物群落结构与环境变量的关系。我们旨在比较不同的方法,并找到一种简单的工具来对城市淡水的浮游植物结构进行生物监测。透明度,养分和叶绿素a浓度的值证实了该湖的富营养/肥大状况。代表MFG 5a和MBFG III的潜在毒性蓝藻蓝藻通常占主导地位,并达到水华密度(> 62,000 ind ml〜(?1))。考虑到两种方法,进行的多元分析显示相似和重叠的结果。营养和透明度是解释遇到的差异的主要环境变量。我们得出的结论是,MBFG分类是监视卢加诺湖的一种适当且易于操作的方法。所应用的功能性方法使得对卢加诺湖中潜在有毒蓝细菌的随访成为可能。进一步的研究应包括对水中蓝细菌衍生毒素浓度的估计。我们认为,MBFG方法的适用性应作为生物监测不同类型城市水体的有前途的工具而进一步加以探讨。

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