生物
丰度(生态学)
浸出(土壤学)
微生物种群生物学
硝酸盐
土壤水分
基因
氮气
抗性(生态学)
土壤微生物学
相对物种丰度
抗生素
抗生素耐药性
环境化学
生态系统
微生物遗传学
微生物生态学
细菌
生态学
氮气循环
原位
微生物学
微生物代谢
基因组
微生物
农学
作者
Wei Song,Jinzhi Yao,Timothy J. Clough,Yingdong Fu,Hanpeng Liao,Chunsheng Hu,C. C. Wang,Shuping Qin
标识
DOI:10.1111/1462-2920.70246
摘要
ABSTRACT Antibiotic resistance genes (ARGs) represent a threat to human health. Factors impacting ARGs have been well studied in surface soils, but how such factors affect ARGs in deep soils (> 2 m) remains unknown. This in situ study investigated how long‐term excessive nitrogen (N) fertilisation, specifically leached nitrate (NO 3 − ), influenced ARGs up to 10 m depth. Under replicated 26‐year fertilisation (600 kg N ha −1 ) plots, significant reductions (10%–65%) were observed across multiple ARG classes, including beta‐lactam, fluoroquinolone, glycopeptide, macrolide‐lincosamide‐streptogramin (MLS), multidrug, and rifamycin resistance genes, correlating with elevated NO 3 − concentrations. KEGG pathways related to antibiotic biosynthesis and the relative abundance of S‐strategy ARG hosts, such as Achromobacter , were both reduced. Additionally, network analysis revealed more positive and fewer negative microbial associations under N treatment. These findings suggest that NO 3 − leaching alleviates microbial N limitation, modulates ecological strategies and microbial interaction networks, and ultimately contributes to lower ARG abundance in deep soil layers.
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