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Disease resistance of Arabidopsis to Phytophthora brassicae is established by the sequential action of indole glucosinolates and camalexin

机译:拟南芥对芸苔疫霉的抗病性是通过吲哚芥子油苷和camalexin的顺序作用建立的

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摘要

We have analysed the role of tryptophan-derived secondary metabolites in disease resistance of Arabidopsis to the oomycete pathogen Phytophthora brassicae. Transcript analysis revealed that genes encoding enzymes involved in tryptophan, camalexin and indole glucosinolate (iGS) biosynthesis are coordinately induced in response to P. brassicae. However, a deficiency in either camalexin or iGS accumulation has only a minor effect on the disease resistance of Arabidopsis mutants. In contrast, the double mutant cyp79B2 cyp79B3, which has a blockage in the production of indole-3-aldoxime (IAOx), the common precursor of tryptophan-derived metabolites including camalexin and iGS, is highly susceptible to P. brassicae. Because cyp79B2 cyp79B3 shows no deficiencies in other tested disease resistance responses, we concluded that the lack of IAOx-derived compounds renders Arabidopsis susceptible despite wild-type-like pathogen-induced hypersensitive cell death, stress hormone signaling and callose deposition. The susceptibility of the double mutant pen2-1 pad3-1, which has a combined defect in camalexin synthesis and PEN2-catalysed hydrolysis of iGS compounds, demonstrates that both camalexin and products of iGS hydrolysis are important for disease resistance to P. brassicae. Products of iGS hydrolysis play an early defensive role, as indicated by enhanced epidermal penetration rates of Arabidopsis mutants affected in iGS synthesis or degradation. Our results show that disease resistance of Arabidopsis to P. brassicae is established by the sequential activity of the phytoanticipin iGS and the phytoalexin camalexin.
机译:我们已经分析了色氨酸衍生的次级代谢产物在拟南芥对卵菌病原体疫霉菌的抗病性中的作用。转录本分析表明,编码参与色氨酸,甘蓝毒素和吲哚芥子油苷(iGS)生物合成的酶的基因被协调诱导。然而,camalexin或iGS积累的不足对拟南芥突变体的抗病性影响很小。相反,双重突变体cyp79B2 cyp79B3在吲哚-3-醛肟(IAOx)的生产中受到阻滞,吲哚-3-醛肟(色氨酸衍生的代谢物包括camalexin和iGS的常见前体)极易受到芸苔假单胞菌的侵害。由于cyp79B2 cyp79B3在其他测试的疾病抗性反应中未显示缺陷,因此我们得出结论,尽管野生型样病原体诱导的超敏细胞死亡,应激激素信号传导和call质沉积,缺乏IAOx的化合物仍使拟南芥易感。双重突变体pen2-1 pad3-1的敏感性在camalexin合成和PEN2催化的iGS化合物水解中综合存在缺陷,证明camalexin和iGS水解产物对于芸苔假单胞菌的抗病性都很重要。 iGS水解产物起着早期防御作用,正如受iGS合成或降解影响的拟南芥突变体的表皮渗透率提高所表明的。我们的结果表明,拟南芥对芸苔假单胞菌的抗病性是通过植物抗毒素蛋白iGS和植物抗毒素camalexin的顺序活性建立的。

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