College of Ecology and Environment, Hebei University, Baoding 071002, China; Institute of Life Science and Green Development, Hebei University, Baoding 071002, China; Hebei Key Laboratory of Close-to-Nature Restoration Technology of Wetlands, Baoding 071002, China.
School of Energy and Environmental Engineering, Hebei University of Technology, Tianjin 300130, China.
J Environ Sci (China). 2023 Feb;124:187-197. doi: 10.1016/j.jes.2021.10.016. Epub 2022 Feb 2.
The temporal and spatial characteristics of urban river bacterial communities help us understand the feedback mechanism of bacteria to changes in the aquatic environment. The Fuhe River plays an important role in determining the water ecological environment of Baiyangdian Lake. 16S rRNA gene sequencing was used to study the microbial distribution characteristics in the Fuhe River in different seasons. The results showed that some environmental factors of the surface water (ammonia nitrogen (NH-N), total nitrogen (TN), and total phosphorus (TP)) were different on the spatial and temporal scales. Moreover, there were no seasonal differences in the contents of TN, TP, total organic carbon (TOC), or heavy metals in the sediments. The distributions of Cyanobacteria, Actinomycetes and Firmicutes in the water and Actinomycetes and Planctomycetes in the sediments differed significantly among seasons (P < 0.05). There were significant spatial differences in bacteria in the surface water, with the highest abundance of Proteobacteria recorded in the river along with the highest nutrient concentration, while the abundance of Bacteroidetes was higher in the upstream than the downstream. Microbial communities in the water were most sensitive to temperature (T) and the TP concentration (P < 0.01). Moreover, differences in the bacterial community were better explained by the content of heavy metals in the sediments than by the chemical characteristics. A PICRUSt metabolic inference analysis showed that the effect of high summer temperatures on the enzyme action led to an increase in the abundances of the metabolic-related genes of the river microorganisms.
城市河流细菌群落的时空特征有助于我们理解细菌对水生态环境变化的反馈机制。府河在决定白洋淀湖的水生态环境方面起着重要作用。本文采用 16S rRNA 基因测序技术,研究了不同季节府河的微生物分布特征。结果表明,一些地表水的环境因素(氨氮(NH-N)、总氮(TN)和总磷(TP))在时空尺度上存在差异。此外,沉积物中 TN、TP、总有机碳(TOC)或重金属的含量在季节上没有差异。水相中蓝细菌、放线菌和厚壁菌的分布以及沉积物中放线菌和浮霉菌的分布在季节间差异显著(P < 0.05)。地表水的细菌存在显著的空间差异,其中河流中变形菌的丰度最高,同时营养浓度也最高,而拟杆菌的丰度在上游高于下游。水中微生物群落对温度(T)和 TP 浓度(P < 0.01)最敏感。此外,沉积物中重金属的含量比化学特性更能解释细菌群落的差异。PICRUSt 代谢推断分析表明,夏季高温对酶作用的影响导致河微生物代谢相关基因的丰度增加。