Yang Wei, Yan Haixia, Dong Guanghui, Li Zhengpeng, Jiang Chunhao, Gu Dalu, Niu Dongdong, Zhou Danni, Luo Yuming
Jiangsu Key Laboratory for Eco-Agricultural Biotechnology Around Hongze Lake, School of Life Science, Huaiyin Normal University, Huai'an, China.
Jiangsu Collaborative Innovation Center of Regional Modern Agriculture & Environmental Protection, Huai'an, China.
Front Microbiol. 2022 Oct 4;13:1002482. doi: 10.3389/fmicb.2022.1002482. eCollection 2022.
Biofilm plays important roles in the life cycle of species, such as promoting host and object surface colonization and resisting heavy metal stress. This study utilized transcriptomics to evaluate the impacts of cadmium on the components, morphology, and function of biofilms of strain 1JN2. Under cadmium ion stress, the morphology of the 1JN2 biofilm was flattened, and its mobility increased. Moreover, differential gene expression analysis showed that the main regulator of biofilm formation, Spo0A, decreased in expression under cadmium ion stress, thereby inhibiting extracellular polysaccharide synthesis through the SinI/SinR two-component regulatory system and the AbrB pathway. Cadmium ion treatment also increased the SigD content significantly, thereby increasing the expression of the flagella encoding and assembly genes in the strain. This promoted poly-γ-glutamic acid production the DegS/DegU two-component regulatory system and the conversion of biofilm extracellular polysaccharide to poly-γ-glutamic acid. This conferred cadmium stress tolerance in the strain. Additionally, the cadmium ion-mediated changes in the biofilm composition affected the colonization of the strain on the host plant root surface. Cadmium ions also induced surfactin synthesis. These findings illustrate the potential of species as biocontrol strains that can mitigate plant pathogenic infections and heavy metal stress. The results also provide a basis for the screening of multifunctional biocontrol strains.
生物膜在物种的生命周期中发挥着重要作用,例如促进在宿主和物体表面的定殖以及抵抗重金属胁迫。本研究利用转录组学来评估镉对1JN2菌株生物膜的组成、形态和功能的影响。在镉离子胁迫下,1JN2生物膜的形态变扁平,其流动性增加。此外,差异基因表达分析表明,生物膜形成的主要调节因子Spo0A在镉离子胁迫下表达下降,从而通过SinI/SinR双组分调节系统和AbrB途径抑制细胞外多糖的合成。镉离子处理还显著增加了SigD的含量,从而增加了该菌株中鞭毛编码和组装基因的表达。这通过DegS/DegU双组分调节系统促进了聚γ-谷氨酸的产生以及生物膜细胞外多糖向聚γ-谷氨酸的转化;这赋予了该菌株对镉胁迫的耐受性。此外,镉离子介导的生物膜组成变化影响了该菌株在宿主植物根表面的定殖。镉离子还诱导了表面活性素的合成。这些发现说明了该物种作为生物防治菌株减轻植物病原感染和重金属胁迫的潜力。这些结果也为筛选多功能生物防治菌株提供了依据。