Tian Wang, Zhang Huayong, Guo Yuhao, Wang Zhongyu, Huang Tousheng
Research Center for Engineering Ecology and Nonlinear Science, North China Electric Power University, Beijing 102206, China.
Microorganisms. 2022 Apr 14;10(4):816. doi: 10.3390/microorganisms10040816.
Microbial communities in sediment play an important role in the circulation of nutrients in aquatic ecosystems. In this study, the main environmental factors and sediment microbial communities were investigated bimonthly from August 2018 to June 2020 at River Taizicheng, a shallow temperate mountain river at the core area of the 2022 Winter Olympics. Microbial community structure was analyzed using 16S rRNA genes (bacteria 16S V3 + V4 and archaea 16S V4 + V5) and high-throughput sequencing technologies. Structure equation model (SEM) and canonical correspondence analysis (CCA) were used to explore the driving environmental factors of the microbial community. Our results showed that the diversity indices of the microbial community were positively influenced by sediment nutrients but negatively affected by water nutrients. Bacteroidetes and Proteobacteria were the most dominant phyla. The best-fitted SEM model indicated that environmental variables not only affected community abundance directly, but also indirectly through influencing their diversity. , and were the dominant genera as a result of enriched nutrients. The microbial community had high spatial-temporal autocorrelation. CCA showed that DO, WT and various forms of phosphorus were the main variables affecting the temporal and spatial patterns of the microbial community in the river. The results will be helpful in understanding the driving factors of microbial communities in temperate monsoon areas.
沉积物中的微生物群落对水生生态系统中营养物质的循环起着重要作用。本研究于2018年8月至2020年6月,对位于2022年冬奥会核心区的温带山区浅水河流太子城河,每两个月调查一次主要环境因子和沉积物微生物群落。利用16S rRNA基因(细菌16S V3 + V4和古菌16S V4 + V5)和高通量测序技术分析微生物群落结构。采用结构方程模型(SEM)和典范对应分析(CCA)探讨微生物群落的驱动环境因子。我们的结果表明,微生物群落的多样性指数受到沉积物养分的正向影响,但受到水体养分的负向影响。拟杆菌门和变形菌门是最主要的门类。拟合度最佳的SEM模型表明,环境变量不仅直接影响群落丰度,还通过影响其多样性间接影响群落丰度。由于养分富集,[此处原文缺失具体属名]、[此处原文缺失具体属名]和[此处原文缺失具体属名]是优势属。微生物群落具有较高的时空自相关性。CCA分析表明,溶解氧(DO)、水温(WT)和各种形态的磷是影响河流中微生物群落时空格局的主要变量。这些结果将有助于理解温带季风区微生物群落的驱动因素。