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Stress Tolerance and Virulence-Related Roles of Lipopolysaccharide in Burkholderia glumae

机译:脂膜伯克霍尔德氏菌中脂多糖的胁迫耐受性和毒力相关作用

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摘要

The lipopolysaccharide (LPS) composed of lipid A, core, and O-antigen is the fundamental constituent of the outer membrane in gram-negative bacteria. This study was conducted to investigate the roles of LPS in Burkholderia glumae, the phytopathogen causing bacterial panicle blight and seedling rot in rice. To study the roles of the core oligosaccharide (OS) and the O-antigen region, mutant strains targeting the waaC and the wbiFGHI genes were generated. The LPS profile was greatly affected by disruption of the waaC gene and slight reductions were observed in the O-antigen region following wbiFGHI deletions. The results indicated that disruption in the core OS biosynthesis-related gene, waaC, was associated with increased sensitivity to environmental stress conditions including acidic, osmotic, saline, and detergent stress, and to polymyxin B. Moreover, significant impairment in the swimming and swarming motility and attenuation of bacterial virulence to rice were also observed in the waaC-defective mutant. The motility and virulence of O-antigen mutants defective in any gene of the wbiFGHI operon, were not significantly different from the wild-type except in slight decrease in swimming and swarming motility with wbiH deletion. Altogether, the results of present study indicated that the LPS, particularly the core OS region, is required for tolerance to environmental stress and full virulence in B. glumae. To our knowledge, this is the first functional study of LPS in a plant pathogenic Burkholderia sp. and presents a step forward toward full understanding of B. glumae pathogenesis.
机译:由脂质A,核心和O抗原组成的脂多糖(LPS)是革兰氏阴性细菌外膜的基本组成部分。本研究旨在研究脂多糖在水稻伯克霍尔德氏菌中的作用,伯克霍尔德氏菌是引起稻穗枯萎病和水稻幼苗腐烂的植物病原体。为了研究核心寡糖(OS)和O-抗原区域的作用,产生了针对waaC和wbiFGHI基因的突变菌株。 LPS谱受waaC基因破坏的影响很大,并且在wbiFGHI缺失后,在O抗原区域观察到了轻微的降低。结果表明,与核心操作系统生物合成相关的基因waaC的破坏与对环境胁迫条件(包括酸性,渗透压,盐溶液和去污剂胁迫)以及对多粘菌素B的敏感性增加有关。此外,游泳和蜂群的显着损害在waaC缺陷型突变体中也观察到了水稻的活力和细菌毒力减弱。在wbiFGHI操纵子的任何基因中有缺陷的O抗原突变体的运动性和毒力与野生型没有显着差异,只是随着wbiH缺失,游泳和群运动略有减少。总而言之,本研究的结果表明,LPS,特别是核心OS区域,是忍受芽孢杆菌环境压力和充分毒力所必需的。据我们所知,这是植物致病性伯克霍尔德氏菌属植物中脂多糖的首次功能研究。并向全面了解B. glumae的发病机理迈出了一步。

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