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degQ 与 degS/degU 双组分系统相关,调节韦氏芽孢杆菌 DMW1 生物膜形成、抗菌代谢产物产生和生物防治活性。

degQ associated with the degS/degU two-component system regulates biofilm formation, antimicrobial metabolite production, and biocontrol activity in Bacillus velezensis DMW1.

机构信息

College of Plant Protection, Key Laboratory of Integrated Management of Crop Diseases and Pests, Ministry of Education, Sanya Institute of Nanjing Agricultural University, Nanjing Agricultural University, Nanjing, China.

Jiangsu Academy of Agricultural Sciences, Institute of Plant Protection, Nanjing, China.

出版信息

Mol Plant Pathol. 2023 Dec;24(12):1510-1521. doi: 10.1111/mpp.13389. Epub 2023 Sep 20.

Abstract

The gram-positive bacterium Bacillus velezensis strain DMW1 produces a high level of antimicrobial metabolites that can suppress the growth of phytopathogens. We investigated the mechanism used by degQ and the degS/degU two-component system to regulate the biocontrol characteristics of DMW1. When degQ and degU were deleted, the biofilm formation, cell motility, colonization activities, and antifungal abilities of ΔdegQ and ΔdegU were significantly reduced compared to wild-type DMW1. The expression levels of biofilm-related genes (epsA, epsB, epsC, and tasA) and swarming-related genes (swrA and swrB) were all down-regulated. We also evaluated the impact on secondary metabolites of these two genes. The degQ and degU genes reduced surfactin and macrolactin production and up-regulated the production of fengycin, iturin, bacillaene, and difficidin metabolites. The reverse transcription-quantitative PCR results were consistent with these observations. Electrophoretic mobility shift assay and microscale thermophoresis revealed that DegU can bind to the promoter regions of these six antimicrobial metabolite genes and regulate their synthesis. In conclusion, we provided systematic evidence to demonstrate that the degQ and degU genes are important regulators of multicellular behaviour and antimicrobial metabolic processes in B. velezensis DMW1 and suggested novel amenable strains to be used for the industrial production of antimicrobial metabolites.

摘要

革兰氏阳性细菌解淀粉芽孢杆菌 DMW1 产生高水平的抗菌代谢物,可抑制植物病原菌的生长。我们研究了 degQ 和 degS/degU 双组分系统用于调节 DMW1 生物防治特性的机制。当 degQ 和 degU 缺失时,与野生型 DMW1 相比,ΔdegQ 和 ΔdegU 的生物膜形成、细胞运动性、定殖活性和抗真菌能力显著降低。生物膜相关基因(epsA、epsB、epsC 和 tasA)和群集相关基因(swrA 和 swrB)的表达水平均下调。我们还评估了这两个基因对次级代谢物的影响。degQ 和 degU 基因减少了表面活性剂和大环内酯的产生,增加了丰原素、伊枯草菌素、杆菌肽和 difficidin 代谢物的产生。逆转录定量 PCR 结果与这些观察结果一致。电泳迁移率变动分析和微尺度热泳分析表明,DegU 可以结合这六个抗菌代谢物基因的启动子区域,并调节它们的合成。总之,我们提供了系统的证据,证明 degQ 和 degU 基因是解淀粉芽孢杆菌 DMW1 中多细胞行为和抗菌代谢过程的重要调节剂,并提出了新的可利用菌株,可用于抗菌代谢物的工业生产。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9b29/10632791/6f0e1d03ab13/MPP-24-1510-g007.jpg

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