Gentile M E, Jessup C M, Nyman J L, Criddle C S
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Appl Environ Microbiol. 2007 Feb;73(3):680-90. doi: 10.1128/AEM.01519-06. Epub 2006 Dec 1.
Understanding the relationship between microbial community dynamics and functional instability is an important step towards designing reliable biological water treatment systems. In this study, the community dynamics of two dispersed-growth denitrifying reactors were examined during periods of functional stability and instability. In both reactors during the period of functional instability, the effluent chemistry changed over time, with periods of high nitrate concentrations followed by periods of fluctuating nitrite concentrations. Community structure was examined by clone library analysis of the 16S rRNA gene. Community dynamics were investigated with terminal restriction fragment (T-RF) length polymorphism, and the functional diversity represented by T-RFs was assessed through nitrate reduction assays of representative isolates. During the period of functional instability, the community structure changed considerably, and the dynamics correlated significantly with effluent chemistry. The nitrite concentration was significantly correlated with the relative abundances of the nitrate-reducing Delftia- and Achromobacter-like T-RFs. The isolate representing the Acidovorax-like T-RF reduced nitrate directly to nitrogen in batch assays without the accumulation of any intermediates. The Acidovorax-like T-RF relative abundance was significantly negatively correlated with nitrite concentration, indicating that it was associated with good functional performance. The results of this study reveal a clear relationship between community dynamics and functional instability and the importance of diversity among nitrate-reducing populations within a denitrifying community.
了解微生物群落动态与功能不稳定性之间的关系是设计可靠的生物水处理系统的重要一步。在本研究中,考察了两个分散生长反硝化反应器在功能稳定和不稳定期间的群落动态。在功能不稳定期间,两个反应器的出水化学性质均随时间变化,先是硝酸盐浓度较高,随后是亚硝酸盐浓度波动。通过对16S rRNA基因进行克隆文库分析来检测群落结构。利用末端限制性片段(T-RF)长度多态性研究群落动态,并通过对代表性分离株的硝酸盐还原试验评估由T-RF代表的功能多样性。在功能不稳定期间,群落结构发生了显著变化,且动态变化与出水化学性质显著相关。亚硝酸盐浓度与还原硝酸盐的代尔夫特菌属和无色杆菌属样T-RF的相对丰度显著相关。在分批试验中,代表嗜酸菌属样T-RF的分离株可将硝酸盐直接还原为氮气,且无任何中间产物积累。嗜酸菌属样T-RF的相对丰度与亚硝酸盐浓度显著负相关,表明其与良好的功能性能相关。本研究结果揭示了群落动态与功能不稳定性之间的明确关系,以及反硝化群落中硝酸盐还原菌群多样性的重要性。