College of Bioscience and Engineering, Hebei University of Economics and Business , Shijiazhuang City, China.
College of Animal Science and Veterinary Medicine, Shandong Agricultural University , Tai'an City, China.
Bioengineered. 2021 Dec;12(1):63-69. doi: 10.1080/21655979.2020.1862995.
Glyphosate has been frequently detected in water environments because of the wide use for controlling weed in farm lands and urban areas. Presently, the focus of the majority of studies is placed on the toxicity of glyphosate on humans and animals. However, the effects of glyphosate on horizontal transfer of conjugative plasmid carrying antibiotic resistance gene (ARG) are largely unknown. Here, we explored the ability and potential mechanism of glyphosate for accelerating horizontal transfer of conjugative plasmid-mediated ARG. The results showed that glyphosate can effectively boost horizontal transfer rate of conjugative plasmid carrying ARG. The possible mechanism analysis demonstrated that over-production of reactive oxygen species and reactive nitrogen species effectively regulated expression levels of bacterial outer membrane protein and conjugative transfer-related genes, thereby resulting into elevated horizontal transfer rate of plasmid-mediated ARG. In conclusion, this study casts new understanding into the biological effects of glyphosate on ARG.
由于草甘膦在农田和城市地区除草中的广泛应用,它经常在水环境中被检测到。目前,大多数研究的重点都放在草甘膦对人类和动物的毒性上。然而,草甘膦对携带抗生素抗性基因(ARG)的可移动质粒水平转移的影响在很大程度上尚不清楚。在这里,我们探索了草甘膦促进携带抗生素抗性基因的可移动质粒水平转移的能力和潜在机制。结果表明,草甘膦可以有效地提高携带 ARG 的可移动质粒的水平转移率。可能的机制分析表明,活性氧和活性氮的过度产生有效地调节了细菌外膜蛋白和可移动质粒转移相关基因的表达水平,从而导致质粒介导的 ARG 的水平转移率升高。总之,这项研究为草甘膦对 ARG 的生物学效应提供了新的认识。