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首页> 外文期刊>Annales de Limnologie: International journal of limnology >Changes in abundance and community structure of bacteria associated with buoyant Microcystis colonies during the decline of cyanobacterial bloom (autumn-winter transition)
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Changes in abundance and community structure of bacteria associated with buoyant Microcystis colonies during the decline of cyanobacterial bloom (autumn-winter transition)

机译:蓝藻花期减少(秋冬过渡)期间与浮游微囊藻集落相关的细菌的丰度和群落结构的变化

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The structure and composition of the bacterial community associated with buoyant Microcystis colonies were monitored during the decline of a cyanobacterial bloom (from October 13, 2009 to January 27, 2010). When temperature decreased, the ratio between the colony-associated bacteria and the Microcystis gradually decreased as estimated by a quantitative real-time polymerase chain reaction (qRT-PCR)-based approach. Diversity of bacterial communities was determined through denaturing gradient gel electrophoresis (DGGE) of 16S rRNA gene fragments. Cluster analysis of the DGGE profiles showed that most of the bacterial communities associated with Microcystis colonies collected on the nearby dates were clustered together. The bacterial clones from four clone libraries in different months were classified into 5, 12, 6 and 12 operational taxonomic units, most of which were affiliated with Gammaproteobacteria, Alphaproteobacteria and Bacteroidetes. Shift in dominance from pathogenic Aeromonas sp. to Shewanella sp. capable of remineralization of many organic materials was observed, and both species seemed to be associated with Microcystis colonies along with the bloom decline. These results indicated that the potential harmful effects of the Microcystis bloom on the safety of lake water during the decline period should be taken into account.
机译:在蓝藻水华减少期间(2009年10月13日至2010年1月27日),监测了与浮游微囊藻菌落相关的细菌群落的结构和组成。当温度降低时,通过基于定量实时聚合酶链反应(qRT-PCR)的方法估计,菌落相关细菌和微囊藻之间的比例逐渐降低。通过16S rRNA基因片段的变性梯度凝胶电泳(DGGE)确定细菌群落的多样性。 DGGE图谱的聚类分析表明,与附近日期收集的微囊藻菌落相关的大多数细菌群落都聚集在一起。来自不同月份的四个克隆文库的细菌克隆被分为5、12、6和12个操作分类单位,其中大部分与丙型杆菌,丙型杆菌和拟杆菌属有关。致病性气单胞菌种的优势转移。到Shewanella sp。能够观察到许多有机物质的再矿化能力,并且两个物种似乎都与微囊藻的菌落以及水华减少相关。这些结果表明,在下降期应考虑微囊藻开花对湖水安全的潜在有害影响。

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