相对物种丰度
丰度(生态学)
群落结构
富营养化
生态系统
地理
多样性指数
生物多样性
生态位
生态学
营养物
物种丰富度
生物
栖息地
作者
Binhao Wang,Kaiming Hu,Chuqiao Li,Yinan Zhang,Chao Hu,Zhiquan Liu,Jiafeng Ding,Chen Lin,Wei Zhang,Jing Fang,Hangjun Zhang
标识
DOI:10.1016/j.envres.2024.118337
摘要
Microorganisms are integral to freshwater ecological functions and, reciprocally, their activity and diversity are shaped by the ecosystem state. Yet, the diversity of bacterial community and the factors that control it at a large scale remain elusive. To bridge this knowledge gap, we delved into an analysis of 16S RNA gene sequences extracted from 929 water samples across China. Our analyses revealed that inland water bacterial communities showed a weak latitudinal diversity gradient. We found 530 bacterial genera with high relative abundance of hgcI clade. Among them, 29 core bacterial genera were identified, that is strongly linked to mean annual temperature and nutrient loadings. We also detected a non-linear response of bacterial network complexity to the increasing of human pressure. Mantel analysis suggested that MAT, HPI and P loading were the major factors driving bacterial communities in inland water. The map of taxa abundance showed that the abundant CL500-29 marine group in eastern and southern China indicated high eutrophication risk. Our findings enhance our understanding of the diversity and large-scale biogeographic pattern of bacterial communities of inland water and have important implications for microbial ecology.
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