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水文干扰增强了随机组装过程,并降低了高地洪泛平原系统中藻类群落的网络稳定性。

Hydrological disturbances enhance stochastic assembly processes and decrease network stability of algae communities in a highland floodplain system.

作者信息

Huang Zhenyu, Pan Baozhu, Zhao Xiaohui, Liu Xing, Liu Xinyuan, Zhao Gengnan

机构信息

State Key Laboratory of Eco-hydraulic in Northwest Arid Region of China, Xi'an University of Technology, Xi'an, Shaanxi 710048, PR China.

出版信息

Sci Total Environ. 2023 Dec 10;903:166207. doi: 10.1016/j.scitotenv.2023.166207. Epub 2023 Aug 9.

Abstract

Floodplains are hotspots for biodiversity research and conservation worldwide. Hydrological disturbances can profoundly influence the ecological processes and functions of floodplain systems by altering key biological groups such as algae communities. However, the impacts of flood disturbance on the assembly processes and co-occurrence patterns of algae communities in floodplain ecosystems are still unclear. To ascertain the response patterns of algae communities to flood disturbance, we characterized planktonic and benthic algae communities in 144 water and sediment samples collected from the Tibetan floodplain during non-flood and flood periods based on 23S ribosomal RNA gene sequencing. Results showed that planktonic algae exhibited higher diversity and greater compositional variations compared with benthic communities after flood disturbance. Flooding promoted algae community homogenization at horizontal (rivers vs. oxbow lakes) and vertical levels (water vs. sediment). Stochastic processes governed the assembly of distinct algae communities, and their ecological impacts were enhanced in response to flooding. In the non-flood period, dispersal limitation (81.78 %) was the primary ecological process driving algae community assembly. In the flood period, the relative contribution of ecological drift (72.91 %) to algae community assembly markedly increased, with dispersal limitation (22.61 %) being less important. Flooding reduced the interactions among algae taxa, resulting in lower network complexity and stability. Compared with the planktonic algae subnetworks, the benthic subnetworks showed greater stability in the face of flooding. Findings of this study broaden our understanding of how algae communities respond to hydrological disturbances from an ecological perspective and could be useful for the management of highland floodplain ecosystems.

摘要

洪泛平原是全球生物多样性研究和保护的热点地区。水文干扰可通过改变关键生物群落(如藻类群落),深刻影响洪泛平原系统的生态过程和功能。然而,洪水干扰对洪泛平原生态系统中藻类群落的组装过程和共存模式的影响仍不清楚。为了确定藻类群落对洪水干扰的响应模式,我们基于23S核糖体RNA基因测序,对从青藏高原洪泛平原在非洪水期和洪水期采集的144份水和沉积物样本中的浮游藻类和底栖藻类群落进行了特征分析。结果表明,洪水干扰后,浮游藻类与底栖群落相比表现出更高的多样性和更大的组成变化。洪水促进了藻类群落在水平(河流与牛轭湖)和垂直水平(水与沉积物)上的同质化。随机过程控制着不同藻类群落的组装,并且它们的生态影响在洪水响应中增强。在非洪水期,扩散限制(81.78%)是驱动藻类群落组装的主要生态过程。在洪水期,生态漂变(72.91%)对藻类群落组装的相对贡献显著增加,而扩散限制(22.61%)则不那么重要。洪水减少了藻类分类群之间的相互作用,导致网络复杂性和稳定性降低。与浮游藻类子网相比,底栖子网在面对洪水时表现出更大的稳定性。本研究结果从生态学角度拓宽了我们对藻类群落如何响应水文干扰的理解,并且可能有助于高原洪泛平原生态系统的管理。

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