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Ammonia- and Nitrite-Oxidizing Bacterial Communities in a Pilot-Scale Chloraminated Drinking Water Distribution System

机译:中试氯化饮用水分配系统中的氨和亚硝酸盐氧化细菌群落

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摘要

Nitrification in drinking water distribution systems is a common operational problem for many utilities that use chloramines for secondary disinfection. The diversity of ammonia-oxidizing bacteria (AOB) and nitrite-oxidizing bacteria (NOB) in the distribution systems of a pilot-scale chloraminated drinking water treatment system was characterized using terminal restriction fragment length polymorphism (T-RFLP) analysis and 16S rRNA gene (ribosomal DNA [rDNA]) cloning and sequencing. For ammonia oxidizers, 16S rDNA-targeted T-RFLP indicated the presence of Nitrosomonas in each of the distribution systems, with a considerably smaller peak attributable to Nitrosospira-like AOB. Sequences of AOB amplification products aligned within the Nitrosomonas oligotropha cluster and were closely related to N. oligotropha and Nitrosomonas ureae. The nitrite-oxidizing communities were comprised primarily of Nitrospira, although Nitrobacter was detected in some samples. These results suggest a possible selection of AOB related to N. oligotropha and N. ureae in chloraminated systems and demonstrate the presence of NOB, indicating a biological mechanism for nitrite loss that contributes to a reduction in nitrite-associated chloramine decay.
机译:对于许多使用氯胺进行二次消毒的公用事业,饮用水分配系统中的硝化是一个常见的操作问题。使用末端限制性片段长度多态性(T-RFLP)分析和16S rRNA基因,对中试规模的氯化饮用水处理系统的分布系统中氨氧化细菌(AOB)和亚硝酸氧化细菌(NOB)的多样性进行了表征。 (核糖体DNA [rDNA])克隆和测序。对于氨氧化剂,以16S rDNA为靶点的T-RFLP表示每个分配系统中均存在亚硝化单胞菌,其峰极小,可归因于亚硝基螺菌样AOB。 AOB扩增产物的序列在亚硝化单胞菌簇内排列,并且与少核硝化杆菌和尿亚硝化杆菌密切相关。尽管在一些样品中检测到硝化细菌,但亚硝酸盐氧化群落主要由硝化螺菌组成。这些结果表明在氯化系统中可能选择了与寡养猪笼草和尿素猪笼草相关的AOB,并证明了NOB的存在,这表明亚硝酸盐损失的生物学机制有助于减少亚硝酸盐相关的氯胺的衰减。

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