Daims H, Maixner F, Lücker S, Stoecker K, Hace K, Wagner M
Department für Mikrobielle Okologie, Universität Wien, Althanstrasse 14, A-1090 Wien, Austria.
Water Sci Technol. 2006;54(1):21-7. doi: 10.2166/wst.2006.367.
Nitrite-oxidizing bacteria of the genus Nitrospira are key nitrifiers in wastewater treatment plants. Pure cultures of these organisms are unavailable, but cultivation-independent molecular methods make it possible to detect Nitrospira-like bacteria in environmental samples and to investigate their ecophysiology. Comprehensive screening of natural and engineered habitats and of public databases for 16S rRNA sequences of Nitrospira-like bacteria revealed a surprisingly high biodiversity in the genus Nitrospira, which comprises at least four phylogenetic sublineages. All Nitrospira-like bacteria detected in wastewater treatment plants belonged to the sublineages I and II. Subsequently, the population dynamics of different Nitrospira-like bacteria were monitored, by quantitative fluorescence in situ hybridization with rRNA-targeted probes, confocal laser scanning microscopy and digital image analysis, during incubation of nitrifying activated sludge in media containing different nitrite concentrations. These experiments showed that Nitrospira-like bacteria, which were affiliated with the phylogenetic sublineages I or II of the genus Nitrospira, responded differently to nitrite concentration shifts. Previously unknown properties of Nitrospira-like bacteria were discovered in the course of an environmental genomics project. Implications of the obtained results for fundamental understanding of the microbial ecology of nitrite oxidizers as well as for future improvement of nutrient removal in wastewater treatment plants are discussed.
硝化螺菌属的亚硝酸盐氧化细菌是污水处理厂中的关键硝化菌。目前无法获得这些微生物的纯培养物,但不依赖培养的分子方法使得在环境样品中检测类硝化螺菌并研究其生态生理学成为可能。对自然和工程生境以及公共数据库中类硝化螺菌16S rRNA序列进行全面筛选后发现,硝化螺菌属具有惊人的高生物多样性,该属至少包含四个系统发育亚谱系。在污水处理厂中检测到的所有类硝化螺菌均属于亚谱系I和II。随后,在含有不同亚硝酸盐浓度的培养基中培养硝化活性污泥期间,通过使用rRNA靶向探针进行定量荧光原位杂交、共聚焦激光扫描显微镜和数字图像分析,监测了不同类硝化螺菌的种群动态。这些实验表明,与硝化螺菌属系统发育亚谱系I或II相关的类硝化螺菌对亚硝酸盐浓度变化的反应不同。在一个环境基因组学项目过程中发现了类硝化螺菌以前未知的特性。本文讨论了所得结果对深入理解亚硝酸盐氧化菌的微生物生态学以及对未来改善污水处理厂营养物去除的意义。