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The effect of copper on the structure of the ammonia-oxidizing microbial community in an activated sludge wastewater treatment plant

机译:铜对活性污泥废水处理厂氨氧化微生物群落结构的影响

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Molecular approaches based on both whole-cell and extracted DNA were applied to assess chronic and acute effects of copper on the ammonia oxidizing bacteria (AOB) community in an activated sludge system. The ammonia monooxygenase amoA gene was chosen as the functional marker to evaluate changes in the AOB community. Using in situ polymerase chain reaction, we were able to visualize the peripheric distribution of the amoA gene-possessing bacteria in activated sludge flocs. The AOB biomass content was constant in both chronic and acute toxicity experiments, but the ammonia oxidizing activity, measured as ammonia uptake rate, was different. The AOB community structural changes due to the copper presence were evaluated by multivariate analysis of the DGGE bands profiles. The chronic contamination caused a change in the AOB community compared to the control. In contrast, acute inputs led to a temporary change in the AOB community, after which the community was similar to the control. Recovery after acute intoxication was achieved after 72 h. The present study reports on the effects of chronic and acute copper contamination on the ammonia uptake ability of the AO microorganisms and the structure of the AOB community in a wastewater system and, as a consequence, gives indications on the response of wastewater plants under similar conditions.
机译:基于全细胞和提取的DNA的分子方法已应用于评估铜对活性污泥系统中氨氧化细菌(AOB)群落的慢性和急性影响。选择氨单加氧酶amoA基因作为功能标记,以评估AOB群落的变化。使用原位聚合酶链反应,我们能够可视化在活性污泥絮凝物中具有amoA基因的细菌的周围分布。在慢性和急性毒性实验中,AOB生物量含量都是恒定的,但以氨吸收率衡量的氨氧化活性却不同。通过对DGGE能谱进行多变量分析来评估由于铜的存在而引起的AOB群落结构变化。与对照相比,慢性污染导致AOB群落发生了变化。相反,急性输入导致AOB社区的暂时变化,此后该社区类似于对照组。急性中毒后72小时恢复。本研究报告了慢性和急性铜污染对废水系统中AO微生物的氨吸收能力和AOB群落结构的影响,因此,表明了在相似条件下废水工厂的响应。

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