水平基因转移
中国
输水
引水
环境科学
基因
生态学
生物
抗性(生态学)
分布(数学)
节点(物理)
水文学(农业)
遗传学
地理
水资源管理
地质学
系统发育学
数学
工程类
数学分析
考古
岩土工程
结构工程
作者
Kejian Chu,Yuanyuan Liu,Zulin Hua,Ying Lü,Fuzhu Ye
标识
DOI:10.1016/j.jenvman.2023.119232
摘要
The distribution and dynamics of antibiotic resistance genes (ARGs) in water-diversion lakes are poorly understood. In this study, two comparative in situ investigations of ARG profiles targeting water diversion (DP) and non-diversion periods (NDP) were conducted in Luoma Lake, a vital transfer node for the eastern route of the South-to-North Water Diversion Project in China. The results demonstrated significant spatiotemporal variations in ARG contamination and notable differences in the co-occurrence patterns of ARGs and bacterial communities between DP and NDP. Correlations among ARGs with the 16 S rRNA, and mobile genetic elements indicate that horizontal gene transfer (HGT) and vertical gene transfer (VGT) in NDP, but only HGT in DP, were the primary mechanisms of ARG proliferation and spread, implying that water diversion could be an essential control of the transfer pattern of ARGs in a lake environment. The null model analysis indicated that stochastic processes, with predominant driver of ecological drift in the lake mainly drove the assembly of ARGs. Partial least squares structural equation modeling was developed to analyze the causal effects of the factors in shaping ARG dynamics and identify the major driving forces in the DP and NDP.
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