Yuan Ling, Ju Feng
Environmental Science and Engineering Department, Zhejiang University, Hangzhou 310012, Zhejiang, China.
Key Laboratory of Coastal Environment and Resources of Zhejiang Province, School of Engineering, Westlake University, Hangzhou 310030, Zhejiang, China.
Environ Sci Technol. 2023 Apr 4;57(13):5485-5498. doi: 10.1021/acs.est.2c07800. Epub 2023 Mar 22.
Viruses influence biogeochemical cycles in oceans, freshwater, soil, and human gut through infection and by modulating virocell metabolism through virus-encoded auxiliary metabolic genes (vAMGs). However, the geographical distribution, potential metabolic function, and engineering significance of vAMGs in wastewater treatment plants (WWTPs) remain to be explored. Here, 752 single-contig viral genomes with high confidence, 510 of which belonged to , were recovered from the activated sludge metagenomes of 32 geographically distributed WWTPs. A total of 101 vAMGs involved in various metabolic pathways were identified, the most common of which were the queuosine biosynthesis genes , , and and the sulfur metabolism gene . Phylogenetic analysis and virus-host relationship prediction revealed the probable evolutionary histories of vAMGs involved in carbon (P and A), nitrogen (C), sulfur (H), and phosphate (H) metabolism, which potentially mediate microbial carbon and nutrient cycling. Notably, 11 of the 38 (28.3%) vAMGs identified in the metagenomes with corresponding metatranscriptomes were transcriptionally expressed, implying an active functional state. This meta-analysis provides the first broad catalog of vAMGs in municipal WWTPs and how they may assist in the basic physiological reactions of their microbial hosts or nutrient cycling in the WWTPs, and therefore, may have important effects on the engineering of wastewater treatment processes.
病毒通过感染以及通过病毒编码的辅助代谢基因(vAMGs)调节病毒细胞代谢,从而影响海洋、淡水、土壤和人类肠道中的生物地球化学循环。然而,vAMGs在污水处理厂(WWTPs)中的地理分布、潜在代谢功能和工程意义仍有待探索。在此,从32个地理分布的污水处理厂的活性污泥宏基因组中,获得了752个高可信度的单重叠群病毒基因组,其中510个属于 。共鉴定出101个参与各种代谢途径的vAMGs,其中最常见的是queuosine生物合成基因 、 和 以及硫代谢基因 。系统发育分析和病毒-宿主关系预测揭示了参与碳(P和A)、氮(C)、硫(H)和磷酸盐(H)代谢的vAMGs可能的进化历史,这些vAMGs可能介导微生物碳和养分循环。值得注意的是,在具有相应宏转录组的宏基因组中鉴定出的38个vAMGs中有11个(28.3%)转录表达,这意味着其处于活跃的功能状态。这项荟萃分析提供了城市污水处理厂中vAMGs的首个广泛目录,以及它们如何协助其微生物宿主的基本生理反应或污水处理厂中的养分循环,因此,可能对废水处理工艺的工程设计产生重要影响。