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Eutrophication increases the similarity of cyanobacterial community features in lakes and reservoirs

富营养化 生态学 生物多样性 群落结构 β多样性 淡水生态系统 环境科学 伽马多样性 生态系统 系统发育多样性 利基 物种多样性 α多样性 水生生态系统 地理 营养物 生物 系统发育树 基因 生物化学
作者
Jun Zuo,Peng Xiao,Jani Heino,Fengjiao Tan,Janne Soininen,Huihuang Chen,Jun Yang
出处
期刊:Water Research [Elsevier]
卷期号:250: 120977-120977 被引量:47
标识
DOI:10.1016/j.watres.2023.120977
摘要

Eutrophication of inland waters is a mostly anthropogenic phenomenon impacting aquatic biodiversity worldwide, and might change biotic community structure and ecosystem functions. However, little is known about the patterns of cyanobacterial community variations and changes both on alpha and beta diversity levels in response to eutrophication. Here, we investigated cyanobacterial communities sampled at 140 sites from 59 lakes and reservoirs along a strong eutrophication gradient in eastern China through using CPC-IGS and 16S rRNA gene amplicon sequencing. We found that taxonomic diversity increased, but phylogenetic diversity decreased significantly along the eutrophication gradient. Both niche width and niche overlap of cyanobacteria significantly decreased from low- to high-nutrient waterbodies. Cyanobacterial community distance-decay relationship became weaker from mesotrophic to hypereutrophic waterbodies, while ecological uniqueness (i.e., local contributions to beta diversity) tended to increase in high-nutrient waterbodies. Latitude and longitude were more important in shaping cyanobacterial community structure than other environmental variables. These findings suggest that eutrophication affects alpha and beta diversity of cyanobacterial communities, leading to increasingly similar community structures in lakes and reservoirs with a higher level of eutrophication. Our work highlights how cyanobacterial communities respond to anthropogenic eutrophication and calls for an urgent need to develop conservation and management strategies to control lake eutrophication and protect freshwater biodiversity.
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