Department of Microbiology, Faculty of Biology, University of Barcelona, Av. Diagonal 643, 08028 Barcelona, Spain.
Department of Animal Biology, Faculty of Biology, Unversity of Barcelona, Av. Diagonal 643, 08028 Barcelona, Spain.
Sci Total Environ. 2018 Mar 15;618:858-865. doi: 10.1016/j.scitotenv.2017.08.241. Epub 2017 Oct 17.
Biological wastewater treatment processes involve very complex microbial communities. Culture-independent molecular methods are feasible tools used to analyze and control the structure of different microbial communities, such as bacterial communities that remove nutrients. Here, we used the gBlocks gene fragments method, a new real-time PCR approach for the development of DNA standards, to quantify total bacterial cells, AOB, NOB, and Archaeal genes at two different WWTPs. PAOs were also quantified using the FISH technique. Our findings highlight a significant improvement in real-time PCR detection for the microorganisms studied. The qPCR and FISH technique applied allowed characterization of the microbial composition of two WWTPs operated as a conventional WWTP and a biological nutrient-removal WWTP. The results revealed a significant difference in the microbial profiles of the WWTPs, with a higher abundance of nitrifying bacterial communities and PAOs in the nutrient removal plant, which were in accordance with operational performance.
生物污水处理工艺涉及非常复杂的微生物群落。非培养的分子方法是用于分析和控制不同微生物群落结构的可行工具,例如去除营养物质的细菌群落。在这里,我们使用了 gBlocks 基因片段方法,这是一种用于开发 DNA 标准的新实时 PCR 方法,以定量两个不同 WWTP 中的总细菌细胞、AOB、NOB 和古菌基因。还使用 FISH 技术定量了 PAOs。我们的研究结果突出了实时 PCR 检测对所研究微生物的显著改进。应用的 qPCR 和 FISH 技术允许对作为传统 WWTP 和生物营养去除 WWTP 运行的两个 WWTP 的微生物组成进行表征。结果显示 WWTP 的微生物谱存在显著差异,营养去除工厂中的硝化细菌群落和 PAOs 的丰度更高,这与运行性能一致。