戊唑醇加剧了抗生素耐药性基因的共存和水平转移

IF 4.2 1区 农林科学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Pesticide Biochemistry and Physiology Pub Date : 2024-07-15 DOI:10.1016/j.pestbp.2024.106026
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引用次数: 0

摘要

作为全球杀真菌剂市场上使用最广泛的杀虫剂之一,戊唑醇已经与抗生素抗性基因(ARGs)一起大量嵌入土壤中。然而,目前还不清楚戊唑醇产生的选择性压力是否会影响 ARGs 及其水平转移。在本实验中,我们模拟了一个受戊唑醇污染的土壤生态系统,观察了由于暴露于戊唑醇而导致的ARGs和移动遗传因子(MGEs)的丰度变化。我们还建立了一个由质粒RP4介导的共轭转移系统,深入研究戊唑醇对ARGs水平转移的影响及其作用机制。结果表明,在0至10 mg/L浓度的戊唑醇处理下,质粒共轭转移的频率逐渐增加,在10 mg/L时达到峰值,是对照组的7.93倍,显著促进了ARGs的水平转移。进一步分析发现,戊唑醇胁迫下的共轭转移系统具有很强的形成生物膜的能力,生物膜与浮游菌的共轭转移频率比随生物膜的生长周期而变化。此外,扫描电子显微镜和流式细胞术表明,在戊唑醇胁迫下,供体菌和受体菌的细胞膜通透性都会增加,同时控制细胞膜通透性的 ompA 基因表达也会上调。此外,酶活性测定显示,在戊唑醇胁迫下,受体细菌的 CAT、SOD 活性和 GSH 含量均显著增加。此外,还发现跨膜转运体基因 trfAp 以及参与氧化应激和 SOS 反应的基因的表达水平与质粒共轭转移的频率相关。
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Tebuconazole exacerbates co-occurrence and horizontal transfer of antibiotic resistance genes

As one of the most widely used pesticides in the global fungicide market, tebuconazole has become heavily embedded in soil along with antibiotic resistance genes (ARGs). However, it remains unclear whether the selective pressure produced by tebuconazole affects ARGs and their horizontal transfer. In this experiment, we simulated a tebuconazole-contaminated soil ecosystem and observed changes in the abundance of ARGs and mobile genetic element (MGEs) due to tebuconazole exposure. We also established a plasmid RP4-mediated conjugative transfer system to investigate in depth the impact of tebuconazole on the horizontal transfer of ARGs and its mechanism of action. The results showed that under tebuconazole treatment at concentrations ranging from 0 to 10 mg/L, there was a gradual increase in the frequency of plasmid conjugative transfer, peaking at 10 mg/L which was 7.93 times higher than that of the control group, significantly promoting horizontal transfer of ARGs. Further analysis revealed that the conjugative transfer system under tebuconazole stress exhibited strong ability to form biofilm, and the conjugative transfer frequency ratio of biofilm to planktonic bacteria varied with the growth cycle of biofilm. Additionally, scanning electron microscopy and flow cytometry demonstrated increased cell membrane permeability in both donor and recipient bacteria under tebuconazole stress, accompanied by upregulation of ompA gene expression controlling cell membrane permeability. Furthermore, enzyme activity assays indicated significant increases in CAT, SOD activity, and GSH content in recipient bacteria under tebuconazole stress. Moreover, expression levels of transmembrane transporter gene trfAp as well as genes involved in oxidative stress and SOS response were found to be correlated with the frequency of plasmid conjugative transfer.

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来源期刊
CiteScore
7.00
自引率
8.50%
发文量
238
审稿时长
4.2 months
期刊介绍: Pesticide Biochemistry and Physiology publishes original scientific articles pertaining to the mode of action of plant protection agents such as insecticides, fungicides, herbicides, and similar compounds, including nonlethal pest control agents, biosynthesis of pheromones, hormones, and plant resistance agents. Manuscripts may include a biochemical, physiological, or molecular study for an understanding of comparative toxicology or selective toxicity of both target and nontarget organisms. Particular interest will be given to studies on the molecular biology of pest control, toxicology, and pesticide resistance. Research Areas Emphasized Include the Biochemistry and Physiology of: • Comparative toxicity • Mode of action • Pathophysiology • Plant growth regulators • Resistance • Other effects of pesticides on both parasites and hosts.
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