Osmotic and pH Stress-Responsive Two-Component System, OmpR/EnvZ, Modulates Type III Secretion, Biofilm Formation, Swimming Motility and Virulence in Acidovorax citrulli xjL12.

IF 4.8 1区 农林科学 Q1 PLANT SCIENCES
Yuanjie Wang, Chenchao Sun, Ling Cai, Shitong Wu, Wenxin Chen, Yanli Tian, Baishi Hu, Ron Walcott
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引用次数: 0

Abstract

Acidovorax citrulli, the causal pathogen of bacterial fruit blotch of cucurbits, relies on a functional type III secretion system (T3SS) for pathogenicity. Two-component systems (TCSs) are primary signal transduction mechanisms for bacteria to detect and adapt to various environmental conditions. However, the role of TCS on regulating T3SS and other virulence factors in response to environmental stimuli is still poorly understood in A. citrulli. Here, we report the identification of a conserved TCS, OmpR/EnvZ, involved in hypersensitive response (HR) induction in Nicotiana benthamiana by screening a transposon-insertion library in the group II strain xjL12 of A. citrulli. Transcription analysis confirmed that OmpRAc/EnvZAc was upregulated in response to elevated osmotic pressure, low and high pH conditions, and host environment. Deletions of envZAc, ompRAc, or both envZAc and ompRAc in A. citrulli attenuated virulence to melon seedlings and mature leaf tissues, and delayed HR in N. benthamiana. OmpRAc was activated by EnvZAc and directly bound to the promoter region of hrpG, a major regulator of T3SS. This binding activated hrpG transcription and promoted T3SS assembly in T3SS-inducing medium, XVM2. Additionally, the OmpRAc/EnvZAc mutants of A. citrulli displayed reduced swimming motility due to impaired flagella formation, but also had enhanced biofilm formation and exopolysaccharide production. OmpRAc/EnvZAc regulation of these virulence factors in A. citrulli depended on its own conserved phosphorylation sites. This work illuminates a signalling pathway for regulating the T3SS and provides insights into the OmpR/EnvZ-mediated virulence regulatory network in A. citrulli.

渗透和pH胁迫响应双组分系统,OmpR/EnvZ,调节瓜酸ovorax xjL12 III型分泌、生物膜形成、游泳运动和毒力。
瓜酸霉(Acidovorax citrulli)是引起瓜细菌性果斑病的病原菌,其致病性依赖于功能性的III型分泌系统(T3SS)。双组分系统(TCSs)是细菌检测和适应各种环境条件的主要信号转导机制。然而,TCS在柑橘响应环境刺激时调节T3SS和其他毒力因子中的作用仍然知之甚少。在此,我们通过筛选a . citrulli II组菌株xjL12的转座子插入文库,发现了一个保守的TCS OmpR/EnvZ,该TCS参与了benthamiana的超敏反应(hypersensitive response, HR)诱导。转录分析证实,OmpRAc/EnvZAc在渗透压升高、低pH和高pH条件下以及宿主环境下表达上调。在瓜螺中缺失envZAc、ompRAc或两者都缺失的瓜螺对甜瓜幼苗和成熟叶组织的毒力减弱,并延迟了benthamiana的HR。OmpRAc被EnvZAc激活,并直接结合到T3SS的主要调节因子hrpG的启动子区域。这种结合激活了hrpG转录,促进了T3SS在诱导T3SS的培养基XVM2中的组装。此外,瓜氨酸OmpRAc/EnvZAc突变体由于鞭毛形成受损而表现出游泳运动能力降低,但也增强了生物膜的形成和胞外多糖的产生。OmpRAc/EnvZAc对瓜氨酸毒力因子的调控依赖于其自身保守的磷酸化位点。这项工作阐明了调控T3SS的信号通路,并提供了对柑橘中OmpR/ envz介导的毒力调控网络的见解。
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来源期刊
Molecular plant pathology
Molecular plant pathology 生物-植物科学
CiteScore
9.40
自引率
4.10%
发文量
120
审稿时长
6-12 weeks
期刊介绍: Molecular Plant Pathology is now an open access journal. Authors pay an article processing charge to publish in the journal and all articles will be freely available to anyone. BSPP members will be granted a 20% discount on article charges. The Editorial focus and policy of the journal has not be changed and the editorial team will continue to apply the same rigorous standards of peer review and acceptance criteria.
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