Wei Lei, Wu Qingping, Zhang Jumei, Guo Weipeng, Gu Qihui, Wu Huiqing, Wang Juan, Lei Tao, Chen Moutong, Wu Musheng, Li Aimei
School of Bioscience and Bioengineering, South China University of Technology, Guangzhou, China.
State Key Laboratory of Applied Microbiology Southern China, Guangdong Provincial Key Laboratory of Microbial Culture Collection and Application, Guangdong Open Laboratory of Applied Microbiology, Guangdong Institute of Microbiology, Guangdong Academy of Science, Guangzhou, China.
Front Microbiol. 2019 Jul 24;10:1542. doi: 10.3389/fmicb.2019.01542. eCollection 2019.
The aim of this study was to gain insight into the bacterial composition and dynamics in a mineral water treatment system (MWTS). The bacterial community of a full-scale mineral water treatment plant in the Maofeng Mountain, South China, was studied using high-throughput sequencing combined with cultivation-based techniques in both the dry and wet season. Overall, adenosine tri-phosphate (ATP) concentration (6.47 × 10 - 3.32 × 10 M) and heterotrophic plate counts (HPC) (3 - 1.29 × 10 CFU/mL) of water samples in the wet season were lower than those (ATP concentration 5.10 × 10 - 6.96 × 10 M, HPC 2 - 1.97 × 10 CFU/mL) in the dry season throughout the whole MWTS. The microbial activity and biomass of water samples obviously changed along with treatment process. All 300 isolates obtained using cultivation-based techniques were distributed in 5 phyla, 7 classes, and 19 genera. accounted for 55.7% (167) of the total isolates, among which predominant genus was (19.3%). Illumina sequencing analysis of 16s rRNA genes revealed 15 bacterial phyla (relative abundance >0.1%) as being identified in all water samples. Among these, constituted the dominant bacteria microbiota in all water samples. A large shift in the proportion of , and was obtained during the treatment process, with the proportion of decreasing sharply, whereas that of increased and predominated in the final water product. The core microbiome, which was still present in whole MWTS comprised several genera including , , , and , that contain species that are opportunistic pathogens, suggesting a potential threat for mineral water microbiology safety. This study is the first to investigate the bacterial community of a full-scale mineral water treatment plant in China. The results provided data regarding the bacteria composition and dynamics in an MWTS, which will contribute to the beneficial manipulation of the mineral water microbiome.
本研究旨在深入了解矿泉水处理系统(MWTS)中的细菌组成和动态变化。采用高通量测序结合基于培养的技术,对中国南方帽峰山一家全规模矿泉水处理厂在旱季和雨季的细菌群落进行了研究。总体而言,整个MWTS中,雨季水样的三磷酸腺苷(ATP)浓度(6.47×10 - 3.32×10 M)和异养平板计数(HPC)(3 - 1.29×10 CFU/mL)低于旱季(ATP浓度5.10×10 - 6.96×10 M,HPC 2 - 1.97×10 CFU/mL)。水样的微生物活性和生物量随处理过程明显变化。使用基于培养的技术获得的所有300株分离菌分布在5个门、7个纲和19个属中。 占分离菌总数的55.7%(167株),其中优势属为 (19.3%)。对16s rRNA基因的Illumina测序分析显示,在所有水样中鉴定出15个细菌门(相对丰度>0.1%)。其中, 在所有水样中构成主要细菌微生物群。在处理过程中, 、 和 的比例发生了很大变化, 的比例急剧下降,而 的比例增加并在最终水产品中占主导地位。整个MWTS中仍然存在的核心微生物组包括几个属,如 、 、 和 ,其中包含机会致病菌,这表明对矿泉水微生物安全存在潜在威胁。本研究首次对中国一家全规模矿泉水处理厂的细菌群落进行了调查。研究结果提供了关于MWTS中细菌组成和动态变化的数据,这将有助于对矿泉水微生物组进行有益的调控。