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Two overlapping two-component systems in Xanthomonas oryzae pv. oryzae contribute to full fitness in rice by regulating virulence factors expression

机译:Xanthomonas oryzae pv中两个重叠的两组分系统。稻米通过调节毒力因子的表达促进水稻的完全健康

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摘要

Two-component signal transduction systems (TCSs) are widely used by bacteria to adapt to the environment. In the present study, StoS (stress tolerance-related oxygen sensor) and SreKRS (salt response kinase, regulator, and sensor) were found to positively regulate extracellular polysaccharide (EPS) production and swarming in the rice pathogen Xanthomonas oryzae pv. oryzae (Xoo). Surprisingly, the absence of stoS or sreKRS did not attenuate virulence. To better understand the intrinsic functions of StoS and SreKRS, quantitative proteomics isobaric tags for relative and absolute quantitation (iTRAQ) was employed. Consistent with stoS and sreK mutants exhibiting a similar phenotype, the signalling circuits of StoS and SreKRS overlapped. Carbohydrate metabolism proteins and chemotaxis proteins, which could be responsible for EPS and swarming regulation, respectively, were reprogrammed in stoS and sreK mutants. Moreover, StoS and SreKRS demonstrated moderate expression of the major virulence factor, hypersensitive response and pathogenicity (Hrp) proteins through the HrpG-HrpX circuit. Most importantly, Xoo equipped with StoS and SreKRS outcompetes strains without StoS or SreKRS in co-infected rice and grows outside the host. Therefore, we propose that StoS and SreKRS adopt a novel strategy involving the moderation of Hrp protein expression and the promotion of EPS and motility to adapt to the environment.
机译:细菌广泛使用两组分信号转导系统(TCS)来适应环境。在本研究中,StoS(与压力耐受性相关的氧气传感器)和SreKRS(盐反应激酶,调节剂和传感器)被发现正调控水稻病原体Xanthomonas oryzae pv中的细胞外多糖(EPS)的产生和成群。稻(Xoo)。令人惊讶的是,没有stoS或sreKRS不会减弱毒力。为了更好地了解StoS和SreKRS的内在功能,采用了用于相对和绝对定量(iTRAQ)的定量蛋白质组学等压标签。与显示相似表型的stoS和sreK突变体一致,StoS和SreKRS的信号传导电路重叠。在stoS和sreK突变体中重新编程了分别负责EPS和聚集调节的碳水化合物代谢蛋白和趋化蛋白。此外,StoS和SreKRS通过HrpG-HrpX回路证明了主要毒力因子,过敏反应和致病性(Hrp)蛋白的中等表达。最重要的是,配备StoS和SreKRS的Xoo在共感染的大米中胜过没有StoS或SreKRS的菌株,并在宿主外部生长。因此,我们建议StoS和SreKRS采用一种新颖的策略,该策略涉及适度Hrp蛋白表达以及促进EPS和动力以适应环境。

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