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首页> 外文期刊>Plant and cell physiology >Disease Resistance against Magnaporthe grisea is Enhanced in Transgenic Rice with Suppression of {omega}-3 Fatty Acid Desaturases
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Disease Resistance against Magnaporthe grisea is Enhanced in Transgenic Rice with Suppression of {omega}-3 Fatty Acid Desaturases

机译:抑制{omega} -3脂肪酸去饱和酶的转基因水稻增强了对稻瘟病的抗病性

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Linolenic acid (18:3) is the most abundant fatty acid in plant membrane lipids and is a source for various oxidized metabolites, called oxylipins. 18:3 and oxylipins play important roles in the induction of defense responses to pathogen infection and wound stress in Arabidopsis. However, in rice, endogenous roles for 18:3 and oxylipins in disease resistance have not been confirmed. We generated 18:3-deficient transgenic rice plants (F78Ri) with co-suppression of two omega-3 fatty acid desaturases, OsFAD7 and OsFAD8. that synthesize 18:3. The F78Ri plants showed enhanced resistance to the phytopathogenic fungus Magnaporthe grisea. A typical 18:3-derived oxylipin, jasmonic acid (JA), acts as a signaling molecule in defense responses to fungal infection in Arabidopsis. However, in F78Ri plants, the expression of JA-responsive pathogenesis-related genes, PBZ1 and PR1b, was induced after inoculation with M. grisea, although the JA-mediated wound response was suppressed. Furthermore, the application of JA methyl ester had no significant effect on the enhanced resistance in F78Ri plants. Taken together, our results indicate that, although suppression of fatty acid desaturases involves the concerted action of varied oxylipins via diverse metabolic pathways, 18:3 or 18:3-derived oxylipins, except for JA, may contribute to signaling on defense responses of rice to M. grisea infection.
机译:亚麻酸(18:3)是植物膜脂质中含量最高的脂肪酸,并且是各种氧化代谢产物(称为脂蛋白)的来源。 18:3和脂蛋白在诱导拟南芥对病原体感染和伤口压力的防御反应中起重要作用。然而,在水稻中,尚未确认18:3和脂蛋白在抗病性中的内源作用。我们产生了18:3缺失的转基因水稻植物(F78Ri),同时抑制了两种Omega-3脂肪酸去饱和酶OsFAD7和OsFAD8。合成18:3。 F78Ri植物对稻瘟病菌Magnaporthe grisea的抵抗力增强。典型的18:3脂蛋白,茉莉酸(JA)在拟南芥中对真菌感染的防御反应中充当信号分子。然而,在F78Ri植物中,接种JA病原体相关基因PBZ1和PR1b在接种稻瘟病菌后被诱导,尽管JA介导的伤口反应受到抑制。此外,JA甲酯的施用对F78Ri植物的抗性增强没有明显影响。两者合计,我们的结果表明,尽管脂肪酸去饱和酶的抑制涉及通过各种代谢途径的多种脂蛋白的协同作用,但除了JA以外,源自18:3或18:3的脂蛋白可能有助于水稻防御反应的信号传递。到稻瘟病菌感染。

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