Department of Agronomy, Iowa State University, Ames, 50011, USA.
Plant J. 2021 Sep;107(5):1432-1446. doi: 10.1111/tpj.15392. Epub 2021 Aug 15.
Non-host resistance (NHR), which protects all members of a plant species from non-adapted or non-host plant pathogens, is the most common form of plant immunity. NHR provides the most durable and robust form of broad-spectrum immunity against non-adaptive pathogens pathogenic to other crop species. In a mutant screen for loss of Arabidopsis (Arabidopsis thaliana) NHR against the soybean (Glycine max (L.) Merr.) pathogen Phytophthora sojae, the Phytophthora sojae-susceptible 30 (pss30) mutant was identified. The pss30 mutant is also susceptible to the soybean pathogen Fusarium virguliforme. PSS30 encodes a folate transporter, AtFOLT1, which was previously localized to chloroplasts and implicated in the transport of folate from the cytosol to plastids. We show that two Arabidopsis folate biosynthesis mutants with reduced folate levels exhibit a loss of non-host immunity against P. sojae. As compared to the wild-type Col-0 ecotype, the steady-state folate levels are reduced in the pss1, atfolt1 and two folate biosynthesis mutants, suggesting that folate is required for non-host immunity. Overexpression of AtFOLT1 enhances immunity of transgenic soybean lines against two serious soybean pathogens, the fungal pathogen F. virguliforme and the soybean cyst nematode (SCN) Heterodera glycines. Transgenic lines showing enhanced SCN resistance also showed increased levels of folate accumulation. This study thus suggests that folate contributes to non-host plant immunity and that overexpression of a non-host resistance gene could be a suitable strategy for generating broad-spectrum disease resistance in crop plants.
非寄主抗性(NHR),即保护一个植物物种的所有成员免受非适应性或非寄主植物病原体的侵害,是植物免疫的最常见形式。NHR 提供了针对其他作物物种致病的非适应性病原体的最持久和最强大的广谱免疫形式。在针对大豆(Glycine max (L.) Merr.)病原体大豆疫霉(Phytophthora sojae)丧失拟南芥(Arabidopsis thaliana)NHR 的突变体筛选中,鉴定出了对大豆疫霉敏感的 30 号突变体(pss30)。该 pss30 突变体也易受大豆病原体尖孢镰刀菌(Fusarium virguliforme)的感染。PSS30 编码叶酸转运蛋白 AtFOLT1,它以前被定位在线粒体中,并被牵连到叶酸从细胞质到质体的转运中。我们表明,两个叶酸生物合成突变体的叶酸水平降低,表现出对 P. sojae 的非寄主免疫丧失。与野生型 Col-0 生态型相比,pss1、atfolt1 和两个叶酸生物合成突变体的稳态叶酸水平降低,表明叶酸是非寄主免疫所必需的。AtFOLT1 的过表达增强了转基因大豆品系对两种严重的大豆病原体真菌病原体尖孢镰刀菌和大豆胞囊线虫(SCN) Heterodera glycines 的非寄主免疫。表现出增强的 SCN 抗性的转基因系也显示出叶酸积累水平的增加。因此,本研究表明叶酸有助于非寄主植物免疫,并且过表达非寄主抗性基因可能是在作物植物中产生广谱抗病性的合适策略。