首页> 外文OA文献 >Exposure to Umbelliferone Reduces Ralstonia solanacearum Biofilm Formation, Transcription of Type III Secretion System Regulators and Effectors and Virulence on Tobacco
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Exposure to Umbelliferone Reduces Ralstonia solanacearum Biofilm Formation, Transcription of Type III Secretion System Regulators and Effectors and Virulence on Tobacco

机译:暴露于伞形酮可减少青枯菌(Ralstonia solanacearum)生物膜形成,III型分泌系统调节剂和效应子的转录以及烟草上的毒力。

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摘要

Ralstonia solanacearum is one of the most devastating phytopathogens and causes bacterial wilt, which leads to severe economic loss due to its worldwide distribution and broad host range. Certain plant-derived compounds (PDCs) can impair bacterial virulence by suppressing pathogenic factors of R. solanacearum. However, the inhibitory mechanisms of PDCs in bacterial virulence remain largely unknown. In this study, we screened a library of coumarins and derivatives, natural PDCs with fused benzene and alpha-pyrone rings, for their effects on expression of the type III secretion system (T3SS) of R. solanacearum. Here, we show that umbelliferone (UM), a 7-hydroxycoumarin, suppressed T3SS regulator gene expression through HrpG-HrpB and PrhG-HrpB pathways. UM decreased gene expression of six type III effectors (RipX, RipD, RipP1, RipR, RipTAL, and RipW) of 10 representative effector genes but did not alter T2SS expression. In addition, biofilm formation of R. solanacearum was significantly reduced by UM, though swimming activity was not affected. We then observed that UM suppressed the wilting disease process by reducing colonization and proliferation in tobacco roots and stems. In summary, the findings reveal that UM may serve as a plant-derived inhibitor to manipulate R. solanacearum T3SS and biofilm formation, providing proof of concept that these key virulence factors are potential targets for the integrated control of bacterial wilt.
机译:青枯雷尔氏菌是最具破坏性的植物病原体之一,并引起细菌枯萎,由于其全球分布和广泛的寄主范围,导致严重的经济损失。某些植物来源的化合物(PDC)可通过抑制青枯菌的致病因子来削弱细菌的毒力。但是,PDCs在细菌毒力中的抑制机制仍然未知。在这项研究中,我们筛选了香豆素及其衍生物,具有稠合苯和α-吡喃酮环的天然PDC的文库,以了解它们对茄形青枯菌III型分泌系统(T3SS)表达的影响。在这里,我们显示伞形酮(UM),一种7-羟基香豆素,通过HrpG-HrpB和PrhG-HrpB途径抑制T3SS调节基因的表达。 UM降低了10个代表性效应基因的六个III型效应子(RipX,RipD,RipP1,RipR,RipTAL和RipW)的基因表达,但没有改变T2SS的表达。此外,尽管游泳活动没有受到影响,但UM显着减少了青枯菌的生物膜形成。然后,我们观察到UM通过减少烟草根和茎中的定植和增殖来抑制枯萎病过程。总之,研究结果表明,UM可以作为植物来源的抑制剂来操纵青枯菌T3SS和生物膜的形成,为这些关键毒力因子是潜在控制细菌枯萎病的潜在目标提供了概念证明。

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