Henan Key Laboratory of Water Pollution Control and Rehabilitation Technology, Henan University of Urban Construction, Pingdingshan, 467036, China.
School of Resources and Environmental Engineering, Jiangxi University of Science and Technology, Ganzhou, 341000, China.
Environ Sci Pollut Res Int. 2023 Nov;30(51):111244-111255. doi: 10.1007/s11356-023-30166-8. Epub 2023 Oct 9.
A combined temporal and spatial research approach helps us to evaluate the ecological status of a river scientifically and comprehensively. To understand the response mechanisms of bacteria in the Li River to different environments, we conducted a 1-year study (2020-2021) and collected water samples from 18 sections of the river in October, January, April, and August. 16S sequencing was used to study the composition and structure of bacterial communities in Li River at different temporal and spatial scales. The results showed that NO-N, TP, T, pH, and DO were significantly different on spatial and temporal scales. Alpha diversity of planktonic bacteria in Li River fluctuated significantly with the season, reaching its highest in summer. Proteobacteria remained the most dominant phylum in all seasons, but the differential microorganisms varied between seasons. Although the abundance of metabolic functions of planktonic bacteria did not show significant differences between seasons, we found that DO, TP, T, and COD were the key environmental factors affecting bacterial metabolism. In addition, the co-occurrence network analysis showed that the autumn network had a higher number of nodes and edges and exhibited a high degree of complexity, while the summer network had the highest degree of modularity and exhibited greater stability. These results deepen our knowledge of the response mechanisms of river microorganisms to temporal and spatial changes and provide a scientific reference for the study of river ecosystems.
综合时空研究方法有助于我们科学、全面地评估河流的生态状况。为了了解漓江细菌对不同环境的响应机制,我们进行了为期一年的研究(2020-2021 年),并于 10 月、1 月、4 月和 8 月从漓江的 18 个河段采集水样。16S 测序用于研究漓江在不同时空尺度上细菌群落的组成和结构。结果表明,NO-N、TP、T、pH 和 DO 在时空尺度上有显著差异。漓江浮游细菌的α多样性随季节波动明显,夏季最高。变形菌门在所有季节都是最主要的门,但不同季节的差异微生物不同。尽管浮游细菌代谢功能的丰度在季节之间没有显著差异,但我们发现 DO、TP、T 和 COD 是影响细菌代谢的关键环境因素。此外,共现网络分析表明,秋季网络的节点和边数较多,呈现出较高的复杂性,而夏季网络的模块度较高,表现出更大的稳定性。这些结果加深了我们对河流微生物对时空变化响应机制的认识,为河流生态系统的研究提供了科学参考。