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2025年5月11日 星期日
  2017, Vol. 25 Issue (11): 1838-1850    
  研究论文与报告 本期目录 | 过刊浏览 | 高级检索 |
西瓜噬酸菌趋化性及鞭毛素基因ΔcheAΔfliC双突变体构建及功能
张爱萍1,张晓晓1,吴林娜1,于畅1,乔培2,杨玉文1,关巍1,赵廷昌1
1. 中国农业科学院植物保护研究所
2. 吉林农业大学
Construction of Chemotaxis and Flagella Gene Double Mutant ΔcheAΔfliC and Its Functional Analysis in Acidovorax citrulli
1, 1, 1, 1, 2, 1, 1, 1
1.
2. College of agriculture, Jilin Agricultural University,
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摘要 鞭毛是细菌的主要运动器官,也是一种重要的致病因子。趋化性是有运动能力的细菌趋向有益刺激,逃避有害刺激的反应。前期研究表明,缺乏趋化性核心基因cheA的西瓜噬酸菌(Acidovorax citrulli)致病力下降;为明确鞭毛素基因和趋化性核心基因同时缺失对西瓜噬酸菌的影响以及趋化性与鞭毛基因间的关系,本研究构建了西瓜噬酸菌双缺失突变菌株ΔcheAΔfliC及其互补菌株ΔcheAΔfliC::cheA::fliC、突变菌株ΔfliC及互补菌株ΔfliC::fliC,并对致病力与生物学特性进行测定。结果显示,双缺失突变菌株ΔcheAΔfliC 致病力、运动能力、生长能力、种子粘附能力均显著降低,生物膜形成能力显著增强;与ΔfliC和ΔcheA单缺失突变株相比,双缺失突变菌株ΔcheAΔfliC致病力显著下降,生物膜形成能力显著提升,说明fliC和cheA同时缺失对西瓜噬酸菌致病力和生物膜形成能力影响更为显著;三者运动能力基本保持一致,说明fliC缺失与cheA缺失同样影响西瓜噬酸菌的运动能力,进一步说明了西瓜噬酸菌趋化性核心基因cheA通过调控鞭毛的运动从而影响西瓜噬酸菌的运动能力。ΔfliC、ΔcheAΔfliC突变株种子上粘附能力显著下降,且均低于ΔcheA,说明鞭毛素基因fliC对西瓜噬酸菌粘附能力起着重要作用, 这将对瓜类细菌性果斑病的防控和有效防治药剂的研制提供了基础。
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张爱萍
张晓晓
吴林娜
于畅
乔培
杨玉文
关巍
赵廷昌
关键词 西瓜噬酸菌, 鞭毛素, 趋化性, 致病性    
Abstract:Flagella is the major organelles for motility, is also an important pathogenic factor. Chemotaxis is the movement of an organism in response to a chemical stimulus, bacteria direct their movements according to certain chemicals in their environment. The chemotaxis gene (cheA) mutants caused significant reduction in virulence. In order to study the roles of cheA and flagellin gene (fliC) double mutant in Acidovorax citrulli, The double mutant strain ΔcheAΔfliC and his complemented strain were constructed by homologous recombination approach. Meanwhile, ΔfliC for control and his complemented strain were constructed. The influence of ΔcheAΔfliC illustrated by testing the biological characteristics. The results showed that the pathogenicity, motility, growth ability and seed adhesion of ΔcheAΔfliC were significantly decreased and the biofilm formation ability was significantly enhanced. Compared with ΔfliC and ΔcheA, the virulence of ΔcheAΔfliC was dropped significantly, biofilm formation ability significantly increased. The effect of fliC and cheA on the ability of the pathogenic and biofilm formation of watermelon were even more significant. The movement ability of ΔcheAΔfliC, ΔcheA, ΔfliC were basically consistent, indicating that fliC deletion and cheA deficiency also affect the athletic ability of A. citrulli, and further explain the chemotaxis core gene cheA of A. citrulli by regulating the movement of flagellum and thus affect the movement of A. citrulli ability. The adhesion ability of ΔfliC and ΔcheAΔfliC were significantly lower than that of ΔcheA, indicating that fliC played an important role in adhesion, and it would provide a basis for the prevention and control of the disease and its effective control agents' development.
Key wordsAcidovorax citrulli , Flagellin , Chemotaxis , Virulence
收稿日期: 2017-03-09      出版日期: 2017-11-01
ZTFLH:  S432.1  
基金资助:国家西甜瓜产业技术体系;北京市自然科学基金;中国农业科学院科技创新工程项目和公益性行业(农业)科研专项
通讯作者: 赵廷昌     E-mail: tingchangzhao@gmail.com
引用本文:   
张爱萍 张晓晓 吴林娜 于畅 乔培 杨玉文 关巍 赵廷昌. 西瓜噬酸菌趋化性及鞭毛素基因ΔcheAΔfliC双突变体构建及功能[J]. , 2017, 25(11): 1838-1850.
链接本文:  
http://journal05.magtech.org.cn/Jwk_ny/CN/     或     http://journal05.magtech.org.cn/Jwk_ny/CN/Y2017/V25/I11/1838
 
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