Laboratory of Antimicrobial Resistance, Institute of Environmental and Agricultural Biology (X-BIO), Tyumen State University, Volodarskogo Street, 6, Tyumen, Russia, 625003.
Institute of Ecology and Genetics of Microorganisms, Ural Branch of the Russian Academy of Sciences, Goleva Street 13, Perm, Russia, 614081.
World J Microbiol Biotechnol. 2022 Aug 16;38(11):184. doi: 10.1007/s11274-022-03366-6.
Bacterial intercellular communication mediated by small diffusible molecules, known as quorum sensing (QS), is a common mechanism for regulating bacterial colonisation strategies and survival. Influence on QS by plant-derived molecules is proposed as a strategy for combating phytopathogens by modulating their virulence. This work builds upon other studies that have revealed plant-derived QS inhibitors extracted from oak bark (Quercus sp.). It was found that co-incubation of Pectobacterium carotovorum VKM-B-1247 with oak bark extract (OBE) reduced the production of acyl-HSL. This was accompanied by a dose-dependent decrease in the bacterial cellulolytic and protease activity. At the transcriptomic level, the OBE treatment suppressed the main QS-related genes expR/expI. Potato tubers pre-treated with OBE showed resistance to a manifestation of soft-rot symptoms. Analysis of the component composition of the OBE identified several biologically active molecules, such as n-hexadecanoic acid, 2,6-di-tert-butyl-4-methylphenol, butylated hydroxytoluene (BHT), gamma-sitosterol, lupeol, and others. Molecular docking of the binding energy between identified molecules and homology models of LuxR-LuxI type proteins allow to identify potential inhibitors. Collectively, obtained results figure out great potential of widely distributed oak-derived plant material for bacterial control during storage of potato.
细菌通过小的可扩散分子进行细胞间通讯,称为群体感应(QS),这是调节细菌定植策略和生存的常见机制。植物来源的分子对 QS 的影响被提议作为通过调节其毒力来对抗植物病原体的策略。这项工作是基于其他研究的,这些研究揭示了从橡木树皮(栎属)中提取的植物源性 QS 抑制剂。结果发现,与橡木树皮提取物(OBE)共孵育时,果胶杆菌(Pectobacterium carotovorum)VKM-B-1247 的酰基-HSL 产量降低。这伴随着细菌纤维素酶和蛋白酶活性的剂量依赖性下降。在转录组水平上,OBE 处理抑制了主要的 QS 相关基因 expR/expI。用 OBE 预处理的土豆块茎表现出对软腐症状表现的抗性。对 OBE 的成分组成进行分析,确定了几种具有生物活性的分子,如正十六烷酸、2,6-二叔丁基-4-甲基苯酚、丁基化羟基甲苯(BHT)、γ-谷甾醇、羽扇豆醇等。鉴定出的分子与 LuxR-LuxI 型蛋白同源模型之间的结合能的分子对接允许识别潜在的抑制剂。总的来说,获得的结果表明广泛分布的橡木衍生植物材料在土豆储存期间对细菌控制具有巨大潜力。