Plant Biology Division, Samuel Roberts Noble Foundation, Ardmore, Oklahoma 73402, USA.
Plant Cell. 2012 Jan;24(1):336-52. doi: 10.1105/tpc.111.093245. Epub 2012 Jan 27.
In contrast to gene-for-gene disease resistance, nonhost resistance governs defense responses to a broad range of potential pathogen species. To identify specific genes involved in the signal transduction cascade associated with nonhost disease resistance, we used a virus-induced gene-silencing screen in Nicotiana benthamiana, and identified the peroxisomal enzyme glycolate oxidase (GOX) as an essential component of nonhost resistance. GOX-silenced N. benthamiana and Arabidopsis thaliana GOX T-DNA insertion mutants are compromised for nonhost resistance. Moreover, Arabidopsis gox mutants have lower H(2)O(2) accumulation, reduced callose deposition, and reduced electrolyte leakage upon inoculation with hypersensitive response-causing nonhost pathogens. Arabidopsis gox mutants were not affected in NADPH oxidase activity, and silencing of a gene encoding NADPH oxidase (Respiratory burst oxidase homolog) in the gox mutants did not further increase susceptibility to nonhost pathogens, suggesting that GOX functions independently from NADPH oxidase. In the two gox mutants examined (haox2 and gox3), the expression of several defense-related genes upon nonhost pathogen inoculation was decreased compared with wild-type plants. Here we show that GOX is an alternative source for the production of H(2)O(2) during both gene-for-gene and nonhost resistance responses.
与基因对基因的抗病性相反,非寄主抗性控制着对广泛潜在病原体物种的防御反应。为了鉴定与非寄主抗病性相关的信号转导级联中涉及的特定基因,我们在本氏烟中使用病毒诱导的基因沉默筛选,并鉴定过氧化物酶体酶乙醇酸氧化酶 (GOX) 为非寄主抗性的必需组成部分。GOX 沉默的本氏烟和拟南芥 GOX T-DNA 插入突变体在非寄主抗性方面受损。此外,拟南芥 gox 突变体在接种引起过敏反应的非寄主病原体时,H2O2 积累减少,几丁质沉积减少,电解质泄漏减少。拟南芥 gox 突变体中的 NADPH 氧化酶活性不受影响,并且在 gox 突变体中沉默编码 NADPH 氧化酶(呼吸爆发氧化酶同源物)的基因不会进一步增加对非寄主病原体的敏感性,这表明 GOX 与 NADPH 氧化酶独立发挥作用。在所检查的两个 gox 突变体 (haox2 和 gox3) 中,与野生型植物相比,非寄主病原体接种后几种防御相关基因的表达减少。在这里,我们表明 GOX 是基因对基因和非寄主抗性反应中 H2O2 产生的替代来源。