Zhao Rui-Zhi, Zhang Wei-Jiang, Zhao Zeng-Feng, Qiu Xiao-Cong
School of Civil and Hydraulic Engineering, Ningxia University, Yinchuan 750021, China.
School of Life Science, Ningxia University, Yinchuan 750021, China.
Microorganisms. 2023 Feb 16;11(2):496. doi: 10.3390/microorganisms11020496.
The Yellow River is a valuable resource in the Ningxia Hui Autonomous Region and plays a vital role in local human activities and biodiversity. Bacteria are a crucial component of river ecosystems, but the driving factors and assembly mechanisms of bacterial community structure in this region remain unclear. Herein, we documented the bacterial community composition, determinants, co-occurrence pattern, and assembly mechanism for surface water and sediment. In comparison to sediment, the bacterioplankton community showed significant seasonal variation, as well as less diversity and abundance. The network topology parameters indicated that the sediment bacterial network was more stable than water, but the bacterioplankton network had higher connectivity. In this lotic ecosystem, COD, Chl , and pH affected the structure of the bacterioplankton community, while TP was the primary factor influencing the structure of the sediment bacterial community. The combined results of the neutral community model and the phylogenetic null model indicate that Bacterial communities in both habitats were mainly affected by stochastic processes, with ecological processes dominated by ecological drift for bacterioplankton and dispersal limitation for sediment bacteria. These results provide essential insights into future research on microbial ecology, environmental monitoring, and classified management in the Ningxia section of the Yellow River.
黄河是宁夏回族自治区的宝贵资源,在当地人类活动和生物多样性方面发挥着至关重要的作用。细菌是河流生态系统的重要组成部分,但该地区细菌群落结构的驱动因素和组装机制仍不清楚。在此,我们记录了地表水和沉积物的细菌群落组成、决定因素、共现模式和组装机制。与沉积物相比,浮游细菌群落表现出显著的季节变化,多样性和丰度也较低。网络拓扑参数表明,沉积物细菌网络比水体更稳定,但浮游细菌网络具有更高的连通性。在这个流水生态系统中,化学需氧量、叶绿素和pH值影响浮游细菌群落的结构,而总磷是影响沉积物细菌群落结构的主要因素。中性群落模型和系统发育零模型的综合结果表明,两个生境中的细菌群落主要受随机过程影响,浮游细菌的生态过程以生态漂变为主,沉积物细菌以扩散限制为主。这些结果为黄河宁夏段未来的微生物生态学研究、环境监测和分类管理提供了重要见解。