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Successional changes in bacterial community assemblages following anoxia in the hypolimnion of a eutrophic lake

机译:在富营养化湖泊的下层缺氧之后,细菌群落组合的连续变化

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摘要

Dynamics of bacterial assemblages following anoxia in the hypolimnion of a eutrophic lake (Lake Aydat) were characterized. The sampling started in spring before complete anoxia and was continued weekly until complete mixing of the water column occurred in autumn. Bacterial community patterns at 3 sampled depths (10, 12 and 14 m) were investigated using temporal temperature gradient gel electrophoresis (TTGE) and terminal restriction fragment length polymorphism (T-RFLP) analyses. Results revealed changes in the structure of the bacterial communities as conditions changed from oxic to anoxic. Once anoxia had been reached, anaerobic bacterial communities continued to change and exhibited gradual successional patterns at the 3 depths. During the anoxic period, bacterial communities at 10 and 12 m were split into 2 groups corresponding to the steps 'until' and 'after' maximum stratification, which occurred on 19 August 2004. While the succession of the bacterial community in the hypolimnion was dynamic and exhibited gradual patterns at the 3 depths, a 'sensitivity gradient' to O-2 depletion was suggested: communities at 10 m appeared to be more affected by the shift in O-2 concentrations than those in deeper water layers.
机译:表征了富营养化湖泊(艾达特湖)的低层缺氧后细菌群落的动力学。采样从春季开始,直到完全缺氧,然后每周进行一次,直到秋天水柱完全混合为止。使用时间温度梯度凝胶电泳(TTGE)和末端限制性片段长度多态性(T-RFLP)分析研究了3个采样深度(10、12和14 m)的细菌群落模式。结果显示,随着条件从有氧变为无氧,细菌群落的结构也发生了变化。一旦达到缺氧状态,厌氧细菌群落将继续变化,并在3个深度处表现出逐步的演替模式。在缺氧期,将10和12 m的细菌群落分为两组,分别对应于“最大”分层直到“分层”和“之后”,这是在2004年8月19日发生的。并在3个深度处显示出逐渐变化的模式,这表明对O-2耗竭有一个“敏感性梯度”:10 m处的群落似乎比深水层受到O-2浓度变化的影响更大。

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