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在植物定殖过程中异质性表达鞭毛蛋白。

Heterogeneously Expresses Flagellin during Colonization of Plants.

作者信息

Zarkani Azhar A, López-Pagán Nieves, Grimm Maja, Sánchez-Romero María Antonia, Ruiz-Albert Javier, Beuzón Carmen R, Schikora Adam

机构信息

Julius Kühn-Institut Federal Research Centre for Cultivated Plants (JKI), Institute for Epidemiology and Pathogen Diagnostics, Messeweg 11/12, 38104 Braunschweig, Germany.

Department of Biotechnology, College of Science, University of Baghdad, 10071 Baghdad, Iraq.

出版信息

Microorganisms. 2020 May 29;8(6):815. doi: 10.3390/microorganisms8060815.

Abstract

Minimally processed or fresh fruits and vegetables are unfortunately linked to an increasing number of food-borne diseases, such as salmonellosis. One of the relevant virulence factors during the initial phases of the infection process is the bacterial flagellum. Although its function is well studied in animal systems, contradictory results have been published regarding its role during plant colonization. In this study, we tested the hypothesis that flagellin plays a versatile function during the colonization of tomato plants. We have assessed the persistence in plant tissues of a wild type strain, and of a strain lacking the two flagellins, FljB and FliC. We detected no differences between these strains concerning their respective abilities to reach distal, non-inoculated parts of the plant. Analysis of flagellin expression inside the plant, at both the population and single cell levels, shows that the majority of bacteria down-regulate flagellin production, however, a small fraction of the population continues to express flagellin at a very high level inside the plant. This heterogeneous expression of flagellin might be an adaptive strategy to the plant environment. In summary, our study provides new insights on adaption to the plant environment through the regulation of flagellin expression.

摘要

不幸的是,最少加工的或新鲜的水果和蔬菜与越来越多的食源性疾病有关,比如沙门氏菌病。在感染过程初始阶段的相关毒力因子之一是细菌鞭毛。尽管其功能在动物系统中已得到充分研究,但关于其在植物定殖过程中的作用却发表了相互矛盾的结果。在本研究中,我们检验了鞭毛蛋白在番茄植株定殖过程中发挥多种功能的假设。我们评估了野生型菌株以及缺失两种鞭毛蛋白FljB和FliC的菌株在植物组织中的持久性。我们检测到这些菌株在到达植物远端未接种部位的各自能力方面没有差异。在群体和单细胞水平上对植物体内鞭毛蛋白表达的分析表明,大多数细菌下调鞭毛蛋白的产生,然而,一小部分细菌群体在植物体内继续以非常高的水平表达鞭毛蛋白。鞭毛蛋白的这种异质性表达可能是对植物环境的一种适应性策略。总之,我们的研究通过鞭毛蛋白表达的调控为适应植物环境提供了新的见解。

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