Yang Yingying, Ci Fangfang, Xu Ailing, Zhang Xijian, Ding Ning, Wan Nianxin, Lv Yuanyuan, Song Zhiwen
School of Environmental and Municipal Engineering, Qingdao University of Technology, Qingdao 266520, China.
Qingdao Branch of Shandong Water Transfer Project Operation and Maintenance Center, Qingdao 266525, China.
Microorganisms. 2024 Sep 11;12(9):1873. doi: 10.3390/microorganisms12091873.
Inter-basin water transfer projects, such as the Yellow River to Qingdao Water Diversion Project (YQWD), are essential for addressing water scarcity, but impact local aquatic ecosystems. This study investigates the seasonal characteristics of eukaryotic microbial communities in the Jihongtan Reservoir, the main water-receiving body of YQWD, over a one-year period using 18S rDNA amplicon sequencing. The results showed that the eukaryotic microbial diversity did not exhibit significant seasonal variation ( > 0.05), but there was a notable variance in the community structure ( < 0.05). Arthropoda and , representing the most dominant phylum and the most dominant genus, respectively, both exhibited the lowest abundance during the winter. The Chlorophyta, as the second-dominant phylum, demonstrates its higher abundance in the spring and winter. The Mantel test and PLS-PM (Partial Least Squares Path Modeling) revealed that water temperature (WT), dissolved oxygen (DO), and pH influenced the seasonal dynamic of eukaryotic microbial communities significantly, of which WT was the primary driving factor. In addition to environmental factors, water diversion is likely to be an important influencing factor. The results of the co-occurrence network and robustness suggested that the spring network is the most complex and exhibits the highest stability. Moreover, keystone taxa within networks have been identified, revealing that these key groups encompass both abundant and rare species, with specificity to different seasons. These insights are vital for understanding the seasonal variation of microbial communities in the Jihongtan Reservoir during ongoing water diversions.
跨流域调水工程,如引黄济青工程(YQWD),对于解决水资源短缺至关重要,但会影响当地水生生态系统。本研究采用18S rDNA扩增子测序技术,对YQWD的主要受水体棘洪滩水库一年中的真核微生物群落季节特征进行了调查。结果表明,真核微生物多样性未表现出显著的季节变化(>0.05),但群落结构存在显著差异(<0.05)。节肢动物门和分别作为最优势的门和最优势的属,在冬季均表现出最低丰度。绿藻门作为第二优势门,在春季和冬季表现出较高丰度。Mantel检验和偏最小二乘路径模型(PLS-PM)表明,水温(WT)、溶解氧(DO)和pH值对真核微生物群落的季节动态有显著影响,其中WT是主要驱动因素。除环境因素外,调水可能也是一个重要影响因素。共现网络和稳健性结果表明,春季网络最为复杂,稳定性最高。此外,已识别出网络中的关键类群,表明这些关键类群包括丰富和稀有的物种,且对不同季节具有特异性。这些见解对于理解调水过程中棘洪滩水库微生物群落的季节变化至关重要。