Song Yang, Mhuantong Wuttichai, Liu Shuang-Yuan, Pisutpaisal Nipon, Wongwilaiwalin Sarunyou, Kanokratana Pattanop, Wang Ai-Jie, Jiang Cheng-Ying, Champreda Verawat, Qiu Dong-Ru, Liu Shuang-Jiang
IMCAS-RCEES joint lab at CAS Key Laboratory of Environmental Biotechnology, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing, 100085, China.
State Key Laboratory of Microbial Resources and Environmental Microbiology Research Center at Institute of Microbiology, Chinese Academy of Sciences, Beijing, 100101, China.
Appl Microbiol Biotechnol. 2021 Jan;105(2):853-867. doi: 10.1007/s00253-020-11082-0. Epub 2021 Jan 6.
The diversity and assembly of activated sludge microbiomes play a key role in the performances of municipal wastewater treatment plants (WWTPs), which are the most widely applied biotechnological process systems. In this study, we investigated the microbiomes of municipal WWTPs in Bangkok, Wuhan, and Beijing that respectively represent tropical, subtropical, and temperate climate regions, and also explored how microbiomes assembled in these municipal WWTPs. Our results showed that the microbiomes from these municipal WWTPs were significantly different. The assembly of microbiomes in municipal WWTPs followed deterministic and stochastic processes governed by geographical location, temperature, and nutrients. We found that both taxonomic and phylogenetic α-diversities of tropical Bangkok municipal WWTPs were the highest and were rich in yet-to-be-identified microbial taxa. Nitrospirae and β-Proteobacteria were more abundant in tropical municipal WWTPs, but did not result in better removal efficiencies of ammonium and total nitrogen. Overall, these results suggest that tropical and temperate municipal WWTPs harbored diverse and unique microbial resources, and the municipal WWTP microbiomes were assembled with different processes. Implications of these findings for designing and running tropical municipal WWTPs were discussed. KEY POINTS: • Six WWTPs of tropical Thailand and subtropical and temperate China were investigated. • Tropical Bangkok WWTPs had more diverse and yet-to-be-identified microbial taxa. • Microbiome assembly processes were associated with geographical location.
活性污泥微生物群落的多样性和组装在城市污水处理厂(WWTPs)的性能中起着关键作用,城市污水处理厂是应用最广泛的生物技术过程系统。在本研究中,我们调查了分别代表热带、亚热带和温带气候区域的曼谷、武汉和北京的城市污水处理厂的微生物群落,并探讨了这些城市污水处理厂中微生物群落是如何组装的。我们的结果表明,这些城市污水处理厂的微生物群落存在显著差异。城市污水处理厂中微生物群落的组装遵循由地理位置、温度和养分控制的确定性和随机性过程。我们发现,热带曼谷城市污水处理厂的分类学和系统发育α-多样性最高,并且富含尚未鉴定的微生物分类群。硝化螺旋菌和β-变形菌在热带城市污水处理厂中更为丰富,但并未导致更好的铵和总氮去除效率。总体而言,这些结果表明,热带和温带城市污水处理厂拥有多样且独特的微生物资源,并且城市污水处理厂的微生物群落是通过不同过程组装而成的。讨论了这些发现对设计和运行热带城市污水处理厂的意义。要点:• 对泰国热带地区以及中国亚热带和温带地区的六个污水处理厂进行了调查。• 热带曼谷的污水处理厂拥有更多样化且尚未鉴定的微生物分类群。• 微生物群落组装过程与地理位置相关。