Programa de Doctorado en Ciencias de Recursos Naturales, Universidad de La Frontera, Temuco 4780000, Chile.
Departamento de Ciencias Químicas y Recursos Naturales, Universidad de La Frontera, Temuco 4780000, Chile.
Int J Mol Sci. 2024 Sep 28;25(19):10471. doi: 10.3390/ijms251910471.
Iprodione is a pesticide that belongs to the dicarboximide fungicide family. This pesticide was designed to combat various agronomical pests; however, its use has been restricted due to its environmental toxicity and risks to human health. In this study, we explored the proteomic changes in the sp. C9 strain when exposed to iprodione, to gain insights into the affected metabolic pathways and enzymes involved in iprodione tolerance and biodegradation processes. As a result, we identified 1472 differentially expressed proteins in response to iprodione exposure, with 978 proteins showing significant variations. We observed that the C9 strain upregulated the expression of efflux pumps, enhancing its tolerance to iprodione and other harmful compounds. Peptidoglycan-binding proteins LysM, glutamine amidotransferase, and protein Ddl were similarly upregulated, indicating their potential role in altering and preserving bacterial cell wall structure, thereby enhancing tolerance. We also observed the presence of hydrolases and amidohydrolases, essential enzymes for iprodione biodegradation. Furthermore, the exclusive identification of ABC transporters and multidrug efflux complexes among proteins present only during iprodione exposure suggests potential counteraction against the inhibitory effects of iprodione on downregulated proteins. These findings provide new insights into iprodione tolerance and biodegradation by the sp. C9 strain.
异丙定是一种属于二羧酰亚胺类杀菌剂的农药。这种杀虫剂旨在防治各种农业害虫;然而,由于其对环境的毒性和对人类健康的风险,其使用受到限制。在这项研究中,我们研究了 sp. C9 菌株暴露于异丙定时的蛋白质组变化,以深入了解涉及异丙定耐受和生物降解过程的受影响代谢途径和酶。结果,我们在响应异丙定暴露时鉴定了 1472 个差异表达蛋白,其中 978 个蛋白表现出显著变化。我们观察到 C9 菌株上调了外排泵的表达,增强了其对异丙定和其他有害化合物的耐受能力。肽聚糖结合蛋白 LysM、谷氨酰胺氨基转移酶和蛋白 Ddl 也同样上调,表明它们在改变和保护细菌细胞壁结构方面可能发挥作用,从而增强了耐受能力。我们还观察到了水解酶和酰胺水解酶的存在,它们是异丙定生物降解的必需酶。此外,仅在异丙定暴露期间存在的 ABC 转运蛋白和多药外排复合物的特有鉴定表明,它们可能对抗异丙定对下调蛋白的抑制作用。这些发现为 sp. C9 菌株对异丙定的耐受和生物降解提供了新的见解。