自行车
污染物
温室
环境科学
温室气体
农业
环境化学
土壤水分
杀虫剂
生态学
硫黄
土壤碳
农业生产力
营养循环
环境保护
环境工程
抗性(生态学)
微生物群
土壤微生物学
生态系统
土壤污染物
农业土壤学
微生物种群生物学
温室效应
丰度(生态学)
抗生素耐药性
细菌
农学
作者
Shanying He,Pu Feng,Xiaoyue Shao,Hainan Lu,Zikun Gao,Feihong Yu,Jie Chen,Zhenli He,Shuzhao Pei,Zhiheng Li
标识
DOI:10.1021/acs.jafc.6c08091
摘要
Greenhouse farming expansion worsens soil antimicrobial resistance. Environmental impacts of antibiotics are well-documented, yet nonantibiotic organic pollutants (NAOPs) remain vastly understudied. A nationwide soil comparison examined four common NAOP effects on elemental cycling genes (ECGs) and antibiotic resistance genes (ARGs) in paired greenhouse and open-field samples. Greenhouse soils held far richer nitrogen, phosphorus, and sulfur cycling genes and markedly higher ARG loads. Their microbiome featured more complex, tightly synergistic ecological interaction networks. Structural equation modeling revealed NAOPs regulate ARGs directly and indirectly via ECG-microbe cascades while suppressing native microbiota. Organophosphorus pesticides (OPPs) directly altered ARG profiles, dominating ARG abundance variation at 46.1%. The P═S functional group of OPPs was the key structural motif driving ARG accumulation. This study clarified NAOPs' resistance-fueling molecular mechanisms and offered valuable references for ecological risk evaluation in intensive agricultural production systems.
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