Zhang Hongteng, Chen Huihuang, Grossart Hans-Peter, Jin Lei, Yan Xue, Gao Xiaofei, Zhang Haihan, Xue Yuanyuan, Yang Jun
Aquatic EcoHealth Group, Fujian Key Laboratory of Watershed Ecology, Key Laboratory of Urban Environment and Health, Institute of Urban Environment, Chinese Academy of Sciences, Xiamen 361021, China; University of Chinese Academy of Sciences, Beijing 100049, China.
Leibniz-Institute of Freshwater Ecology and Inland Fisheries (IGB), Stechlin 16775, Germany; University of Potsdam, Institute of Biochemistry and Biology, Potsdam 14469, Germany.
Sci Total Environ. 2023 Oct 28:168069. doi: 10.1016/j.scitotenv.2023.168069.
Typhoon-induced perturbations can result in long-lasting effects on aquatic communities in subtropical lakes or reservoirs. However, the responses of bacterial communities and their related nutrient cycling to episodic typhoon events throughout the water column in deep waters remain largely unknown. Here, we conducted a four-year field study to reveal the depth-specific responses of both free-living (FL) and particle-attached (PA) bacteria to typhoon events in a subtropical deep reservoir from 2015 to 2018. By comparing the depth-specific responses of FL and PA bacteria, we found that typhoon-induced inputs of organic matter and microorganisms significantly increased FL bacterial diversity and changed FL bacterial community composition in bottom waters perhaps through the density current or undercurrent. Typhoon events had a more persistent effect on FL than PA bacterial communities, especially in bottom waters of the reservoir. Free-living bacteria were more associated with nutrient cycling in bottom waters than particle-attached bacteria. These findings provide deep understanding of how FL and PA bacteria respond to typhoon events at community level in subtropical deep reservoir and thus help us to improve reservoir management in a rapidly changing world.
台风引发的扰动会对亚热带湖泊或水库中的水生群落产生持久影响。然而,在深水区域的整个水柱中,细菌群落及其相关养分循环对突发性台风事件的响应仍 largely 未知。在此,我们进行了一项为期四年的实地研究,以揭示 2015 年至 2018 年期间亚热带深水水库中自由生活(FL)和附着于颗粒(PA)的细菌对台风事件的深度特异性响应。通过比较 FL 和 PA 细菌的深度特异性响应,我们发现台风引发的有机物和微生物输入显著增加了 FL 细菌的多样性,并可能通过密度流或暗流改变了底层水体中 FL 细菌的群落组成。台风事件对 FL 细菌群落的影响比对 PA 细菌群落的影响更持久,尤其是在水库的底层水体中。自由生活细菌在底层水体中比附着于颗粒的细菌与养分循环的关联更强。这些发现为深入理解亚热带深水水库中 FL 和 PA 细菌在群落水平上对台风事件的响应提供了帮助,从而有助于我们在快速变化的世界中改善水库管理。