Eutrophication increases deterministic processes and heterogeneity of co-occurrence networks of bacterioplankton metacommunity assembly at a regional scale in tropical coastal reservoirs

富营养化 元社区 水生生态系统 湖泊生态系统 环境科学 生态学 营养水平 浮游细菌 生态系统 浮游植物 生物 浮游生物 营养物 生物扩散 社会学 人口 人口学
作者
Jiexiang Zhang,Ye Chen,Yong Huo,Jia Guo,Linglin Wan,Zhe Lü,Qinglong L. Wu,Erik Jeppesen,Bo‐Ping Han,Lijuan Ren
出处
期刊:Water Research [Elsevier BV]
卷期号:202: 117460-117460 被引量:35
标识
DOI:10.1016/j.watres.2021.117460
摘要

• Applied a metacommunity framework to study reservoir bacterioplankton communities. • The bacterioplankton spatial patterns were dominantly shaped by species sorting. • Eutrophication increased heterogeneity of co-occurrence bacterioplankton networks. • Larger phytoplankton community variation contributed to deterministic processes. Understanding microbial metacommunity assembly and the underlying methanisms are fundamental objectives of aquatic ecology. However, little is known about how eutrophication, the primary water quality issue of aquatic ecosystems, regulates bacterioplankton metacommunity assembly at a regional scale in reservoirs. In this study, we applied a metacommunity framework to study bacterioplankton communities in 210 samples collected from 42 tropical coastal reservoirs in the wet summer season. We found that the spatial pattern of bacterioplankton community compositions (BCCs) at a regional scale was shaped mainly by species sorting. The reservoir trophic state index (TSI) was the key determinant of bacterioplankton metacommunity assembly. BCC turnover increased significantly with the TSI differences between sites (∆TSI) when ∆TSI was < 20, but remained at a level of about 80% when ∆TSI was > 20. Compared to oligo-mesotrophic and mesotrophic reservoirs, increased heterogeneity of co-occurrence bacterioplankton networks and bacterioplankton β-diversity were observed across eutrophic reservoirs. We propose that larger variation in phytoplankton community assembly may play directly or indirectly deterministic processes in controlling the bacterioplankton metacommunity assembly and became the potential mechanisms behind the observed higher BCC heterogeneity across the eutrophic reservoirs. Our research contributes to a broader understanding of the ecological effects of eutrophication on reservoir ecosystems and provides clues to the management of the tropical coastal reservoirs.
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