首页> 外文期刊>BMC Microbiology >The gpsX gene encoding a glycosyltransferase is important for polysaccharide production and required for full virulence in Xanthomonas citri subsp. citri
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The gpsX gene encoding a glycosyltransferase is important for polysaccharide production and required for full virulence in Xanthomonas citri subsp. citri

机译:编码糖基转移酶的gpsX基因对于多糖的生产很重要,并且对于柠檬酸小单胞菌亚种的完全毒力也是必需的。柠檬

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Background The Gram-negative bacterium Xanthomonas citri subsp. citri (Xac) causes citrus canker, one of the most destructive diseases of citrus worldwide. In our previous work, a transposon mutant of Xac strain 306 with an insertion in the XAC3110 locus was isolated in a screening that aimed at identifying genes related to biofilm formation. The XAC3110 locus was named as bdp24 for biofilm-defective phenotype and the mutant was observed to be affected in extracellular polysaccharide (EPS) and lipopolysaccharide (LPS) biosynthesis and cell motility. In this study, we further characterized the bdp24 (XAC3110) gene (designated as gpsX) using genetic complementation assays and expanded the knowledge about the function of the gpsX gene in Xac pathogenesis by investigating the roles of gpsX in EPS and LPS production, cell motility, biofilm formation on host leaves, stress tolerance, growth in planta, and host virulence of the citrus canker bacterium. Results The gpsX gene encodes a putative glycosyltransferase, which is highly conserved in the sequenced strains of Xanthomonas. Mutation of gpsX resulted in a significant reduction of the amount of EPS and loss of two LPS bands visualized on sodium dodecylsulphate- polyacrylamide gels. Biofilm assays revealed that the gpsX mutation affected biofilm formation by Xac on abiotic and biotic surfaces. The gpsX mutant showed delayed bacterial growth and caused reduced development of disease symptoms in susceptible citrus leaves. The gpsX mutant was more sensitive than the wild-type strain to various stresses, including the H2O2 oxidative stress. The mutant also showed attenuated ability in cell motility but not in flagellar formation. Quantitative reverse transcription-PCR assays indicated that mutation of gpsX did not affect the expression of virulence genes such as pthA in Xac strain 306. The affected phenotypes of the gpsX mutant could be complemented to wild-type levels by the intact gpsX gene. Conclusions Taken together, our data confirm that the gpsX gene is involved in EPS and LPS synthesis and biofilm formation in Xac and suggest that the gpsX gene contributes to the adaptation of Xac to the host microenvironments at early stage of infection and thus is required for full virulence on host plants.
机译:背景革兰氏阴性细菌柠檬黄单胞菌。柠檬酸(Xac)引起柑橘溃疡病,这是全世界柑橘最具破坏性的疾病之一。在我们以前的工作中,在旨在鉴定与生物膜形成相关的基因的筛选中,分离了Xac菌株306的转座子突变体并插入XAC3110基因座。 XAC3110基因座因生物膜缺陷型而被命名为bdp24,并且观察到该突变体在细胞外多糖(EPS)和脂多糖(LPS)的生物合成和细胞运动中受到影响。在这项研究中,我们通过遗传互补分析进一步鉴定了bdp24(XAC3110)基因(称为gpsX),并通过研究gpsX在EPS和LPS产生,细胞运动中的作用,扩展了有关gpsX基因在Xac发病机理中的知识。 ,宿主叶片上的生物膜形成,胁迫耐受性,植物生长以及柑橘溃疡病细菌的宿主毒力。结果gpsX基因编码一个假定的糖基转移酶,该序列在黄单胞菌的测序菌株中高度保守。 gpsX的突变导致EPS量显着减少,并且在十二烷基硫酸钠-聚丙烯酰胺凝胶上可见的两条LPS条带丢失。生物膜测定表明,gpsX突变影响Xac在非生物和生物表面上生物膜的形成。 gpsX突变体显示细菌生长延迟,并导致易感柑橘叶片疾病症状的发展减少。 gpsX突变体比野生型菌株对各种应激(包括H 2 O 2 氧化应激)的敏感性更高。该突变体还显示出减弱的细胞运动能力,但未显示鞭毛形成。定量逆转录-PCR分析表明,gpsX的突变不会影响Xac菌株306中毒力基因(如pthA)的表达。完整的gpsX基因可将受影响的gpsX突变体表型与野生型水平互补。结论综上所述,我们的数据证实gpsX基因参与了Xac中EPS和LPS的合成以及生物膜的形成,并表明gpsX基因有助于Xac在感染早期适应宿主微环境,因此是完整感染所必需的。对寄主植物的毒力。

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