Jiang Xufei, Liu Yan, Zhou Rixiu, Sun Tianyi, Cao Jingdan, An Shuqing, Shen Jiachen, Leng Xin
School of Life Science and Institute of Wetland Ecology, Nanjing University, Nanjing, China.
Key Laboratory for Information System of Mountainous Area and Protection of Ecological Environment of Guizhou Province, Guizhou Normal University, Guiyang, China.
Front Microbiol. 2023 Oct 25;14:1291464. doi: 10.3389/fmicb.2023.1291464. eCollection 2023.
Dams are increasingly disrupting natural river systems, yet studies investigating their impact on microbial communities at regional scale are limited. Given the indispensable role of bacterioplankton in aquatic ecosystems, 16S rRNA gene sequencing was performed to explore how these communities respond to dam-influenced environmental changes at the regional scale in the Shaying River Basin. Our findings revealed that cascade dams create distinct environments, shaping bacterioplankton communities near the dams differently from those in natural rivers. In the upstream of the cascade dams, water quality was superior, while bacterioplankton community structure was simple with weak community interactions. In the midstream, nutrient and heavy metal content were increased, making bacterioplankton structures more susceptible to environmental changes. In the downstream of the cascade dams, water quality had a significant impact on the community and the bacterioplankton structures were highly complex. Additionally, environmental variables significantly influenced bacterioplankton functional groups. However, the response to these factors, as well as the interplay between functional and taxonomic diversity, varied markedly depending on the specific region of the cascade dams. We here delved into the effects of cascade dams on the taxonomic diversity and functional groups of bacterioplankton to provide a theoretical basis for segmentally regulating these dams.
大坝对自然河流系统的干扰日益加剧,但在区域尺度上研究其对微生物群落影响的相关研究却很有限。鉴于浮游细菌在水生生态系统中不可或缺的作用,本研究采用16S rRNA基因测序技术,探究沙颍河流域浮游细菌群落在区域尺度上对大坝影响下的环境变化的响应。研究结果表明,梯级大坝营造了独特的环境,塑造了与天然河流不同的大坝附近浮游细菌群落。在梯级大坝上游,水质优良,但浮游细菌群落结构简单,群落间相互作用较弱。在中游,营养物质和重金属含量增加,使得浮游细菌结构对环境变化更为敏感。在梯级大坝下游,水质对群落有显著影响,浮游细菌结构高度复杂。此外,环境变量对浮游细菌功能群有显著影响。然而,这些因素的影响以及功能多样性与分类多样性之间的相互作用,在梯级大坝的不同区域差异显著。本研究深入探讨了梯级大坝对浮游细菌分类多样性和功能群的影响,为这些大坝的分段调控提供理论依据。