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Seasonal modulation of bacterioplankton community at a temperate eutrophic shallow lake

机译:温带富营养浅湖中浮游细菌群落的季节性调节

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At the present time, there is still a lack of information about environmental parameters modulating variations on bacterial diversity in temperate lakes, particularly from Portugal. Fermentelos Lake (Central Portugal) is a shallow water body that sustains an important wetland area. The strong nutrient inputs from agriculture and industrial runoffs have led to its current eutrophic status. The present work aimed to understand which factors modulate the seasonal bacterioplankton diversity at this lake using 16S rRNA PCR-denaturing gradient gel electrophoresis (DGGE) and multivariate analysis. Environmental data demonstrated eutrophic features throughout all samples with nitrate concentrations reaching 12.0 mg N (NO3 (-)) l(-1) in March 2006, while the highest conductivity (609 mu S cm(-1)), soluble reactive phosphorus (0.37 mg l(-1)), total suspended solids (87.2 mg l(-1)) and chlorophyll a (286.6 mu g l(-1)) levels were recorded in August 2007. Over the past two decades there was a general increase in nitrate, pH and conductivity levels at this lake, suggesting the eutrophication process is still in progress. Multivariate analysis showed that summer versus winter DGGE patterns could be established for bacterial assemblages and were mainly defined by water temperature and chlorophyll a. Actinobacteria were dominant throughout the study period although a general preference for higher temperature, pH, total suspended solids, conductivity, soluble reactive phosphorus (SRP) and chlorophyll a levels was observed. The highest concentrations of nitrogen sources were related to Bacteroidetes and phototrophic eukaryote (cryptophycean) dominance. The expansion of Betaproteobacteria, Alphaproteobacteria and Cyanobacteria phylotypes was generally associated to high temperature, pH, conductivity and SRP values.
机译:目前,仍然缺乏有关调节温带湖泊中细菌多样性变化的环境参数信息,特别是来自葡萄牙的信息。 Fermentelos湖(葡萄牙中部)是一个浅水区,维持着重要的湿地面积。来自农业和工业径流的大量养分投入导致其目前处于富营养化状态。本工作旨在通过16S rRNA PCR变性梯度凝胶电泳(DGGE)和多变量分析来了解哪些因素调节了该湖季节性浮游细菌的多样性。环境数据显示所有样品的富营养化特征,2006年3月硝酸盐浓度达到12.0 mg N(NO3(-))l(-1),而电导率最高(609μS cm(-1)),可溶性活性磷(0.37)于2007年8月记录了总l(-1)mg,总悬浮固体(87.2 mg l(-1))和叶绿素a(286.6 mu gl(-1))的水平。在过去的20年中,该湖的硝酸盐,pH和电导率水平,表明富营养化过程仍在进行中。多变量分析表明,可以确定夏季与冬季DGGE模式的细菌组合,并且主要由水温和叶绿素a决定。虽然在较高的温度,pH,总悬浮固体,电导率,可溶性反应性磷(SRP)和叶绿素a水平方面普遍偏爱放线菌,但在整个研究期间仍占主导地位。氮源的最高浓度与拟杆菌和光养真核生物(隐藻类)的优势有关。 Betaproteobacteria,Alphaproteobacteria和Cyanobacteria系统型的扩展通常与高温,pH,电导率和SRP值相关。

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