首页> 外文期刊>Frontiers in Plant Science >Ferulic Acid, But Not All Hydroxycinnamic Acids, Is a Novel T3SS Inducer of Ralstonia solanacearum and Promotes Its Infection Process in Host Plants under Hydroponic Condition
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Ferulic Acid, But Not All Hydroxycinnamic Acids, Is a Novel T3SS Inducer of Ralstonia solanacearum and Promotes Its Infection Process in Host Plants under Hydroponic Condition

机译:阿魏酸,但不是所有羟基氨基酸,是一种新的T3SS诱导剂<斜斜氏菌菌蛋白,并在水培条件下促进其在宿主植物中的感染过程

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Hydroxycinnamic acids (HCAs) are typical monocyclic phenylpropanoids, including cinnamic acid (Cin), coumaric acid (Cou), caffeic acid (Caf), ferulic acid (FA) and their isomers, and involved in the interactions between pathogens and host plants. Here, we focused on the impact of HCAs on expression of type III secretion system (T3SS) in Ralstonia solanacearum . FA significantly induced the expression of the T3SS and some type III effectors (T3Es) genes in hrp -inducing medium, while did not the other HCAs. However, exogenously supplemented FA did not affect the T3SS expression in planta and the elicitation of the hypersensitive response (HR) in tobacco leaves. Consistent with its central roles in pathogenicity, the FA-induced expression of the T3SS led to significant promotion on infection process of R. solanacearum in tomato plants under hydroponics cultivation. Moreover, the FA-induced expression of the T3SS was specifically mediated by the well-characterized signaling cascade PrhA-prhI/R-PrhJ-HrpG-HrpB, independent of the other known regulatory pathways. In summary, our results demonstrated that FA, a novel inducer of the T3SS in R. solanacearum , was able to promote its infection process in host plants under hydroponics condition.
机译:羟基氨基酸(HCA)是典型的单环苯丙烷丙醇,包括肉桂酸(CIN),香豆酸(CO),咖啡酸(CAF),阿魏酸(FA)及其异构体,并参与病原体和宿主植物之间的相互作用。在这里,我们专注于HCA对罗斯顿氏菌菌III型分泌系统(T3S)的影响。 Fa显着诱导在HRP诱导培养基中表达T3S和某种类型III型效应器(T3ES)基因,而不是其他HCA。然而,外源补充的Fa不影响Planta中的T3SS表达和烟叶中的过敏反应(HR)的引发。符合其致病性的中央作用,T3S的FA诱导的表达导致了在水培培养下番茄植物中R.Solanacearum的感染过程的显着促进。此外,T3SS的FA诱导的T3S表达由良好表征的信号级联PRHA-PRHI / R-PRHJ-HRPG-HRPB特别介导,与其他已知的调节途径无关。总之,我们的结果表明,FA,R.Solanacearum的T3S的一种新型诱导剂,能够在水培条件下促进其在宿主植物中的感染过程。

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