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香芹酚抑制机会致病菌的群体感应

Carvacrol Inhibits Quorum Sensing in Opportunistic Bacterium .

作者信息

Lu Liushen, Wang Junwei, Qin Ting, Chen Kai, Xie Jun, Xi Bingwen

机构信息

Key Laboratory of Aquatic Animal Nutrition and Health, Freshwater Fisheries Research Center, Chinese Academy of Fishery Science, Wuxi 214081, China.

Wuxi Fisheries College, Nanjing Agricultural University, Wuxi 214128, China.

出版信息

Microorganisms. 2023 Aug 7;11(8):2027. doi: 10.3390/microorganisms11082027.

Abstract

Bacterial quorum sensing (QS) plays a crucial role in chemical communication between bacteria involving autoinducers and receptors and controls the production of virulence factors in bacteria. Therefore, reducing the concentration of signaling molecules in QS is an effective strategy for mitigating the virulence of pathogenic bacteria. In this study, we demonstrated that carvacrol at 15.625 μg/mL (1/4 MIC), a natural compound found in plants, exhibits potent inhibitory activity against QS in , as evidenced by a significant reduction (62.46%) in violacein production. Based on its impressive performance, carvacrol was employed as a natural QS inhibitor to suppress the pathogenicity of NJ-35. This study revealed a significant reduction (36.01%) in the concentration of N-acyl-homoserine lactones (AHLs), a QS signal molecular secreted by NJ-35, after 1/4 MIC carvacrol treatment. Moreover, carvacrol was found to down-regulate the expression of , two key genes in the QS system, which further inhibited the QS system of NJ-35. Finally, based on the above results and molecular docking, we proposed that carvacrol alleviate the pathogenicity of NJ-35 through QS inhibition. These results suggest that carvacrol could serve as a potential strategy for reducing the virulence of pathogenic bacteria and minimizing the reliance on antibiotics in aquaculture.

摘要

细菌群体感应(QS)在涉及自诱导物和受体的细菌间化学通讯中起着关键作用,并控制细菌中致病因子的产生。因此,降低群体感应中信号分子的浓度是减轻病原菌毒力的有效策略。在本研究中,我们证明了15.625μg/mL(1/4 MIC)的香芹酚(一种植物中的天然化合物)对紫色杆菌素的产生有显著抑制作用(降低62.46%),从而对紫色杆菌的群体感应表现出强大的抑制活性。基于其出色的表现,香芹酚被用作天然群体感应抑制剂来抑制NJ-35的致病性。本研究表明,用1/4 MIC香芹酚处理后,NJ-35分泌的群体感应信号分子N-酰基高丝氨酸内酯(AHLs)的浓度显著降低(36.01%)。此外,发现香芹酚可下调群体感应系统中的两个关键基因的表达,这进一步抑制了NJ-35的群体感应系统。最后,基于上述结果和分子对接,我们提出香芹酚通过抑制群体感应来减轻NJ-35的致病性。这些结果表明,香芹酚可作为一种潜在策略,用于降低病原菌的毒力,并减少水产养殖中对抗生素的依赖。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/928e/10459158/e7aca308393f/microorganisms-11-02027-g001.jpg

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