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首页> 外文期刊>Plant signaling & behavior >Involvement of the caleosin/peroxygenase RD20 in the control of cell death during Arabidopsisresponses to pathogens
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Involvement of the caleosin/peroxygenase RD20 in the control of cell death during Arabidopsisresponses to pathogens

机译:在拟南芥对病原体的反应过程中,钙黏蛋白/过氧化酶RD20参与控制细胞死亡

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摘要

Caleosins, mostly found in lipid droplets of seeds and leaves, are believed to play physiological roles through their enzymatic capacities to produce oxylipins. We recently identified the caleosin RD20 as a peroxygenase reducing endogenous fatty acidhydroperoxides into their corresponding alcohols. Such oxylipins confer tolerance to oxidative stress by decreasing reactive oxygen species accumulation and by minimizing cell death. RD20 expression being induced by pathogens, we have examined the mode of action of this caleosin in response to biotic stress. Plants overexpressing RD20 exhibited an alteration of their leaf cuticle wax components and an increased resistance to the fungus Alternaria brassicicola. Conversely, silencing RD20 led to an enhanced propagation of the fungus and to reduced severity of the damages caused by the inoculation of the bacteria Pseudomonas syringae pv tomato. We discuss these findings and propose that the major function of RD20 is to generate oxylipins modulating oxidative status and cell death.
机译:Caleosins主要存在于种子和叶子的脂质滴中,据信通过其酶促能力产生oxylipins发挥生理作用。我们最近确定了caleosin RD20是一种过氧化酶,可将内源性脂肪酸氢过氧化物还原成其相应的醇。通过减少活性氧的积累和使细胞死亡最小化,这样的脂蛋白赋予对氧化应激的耐受性。 RD20表达被病原体诱导,我们已经研究了该caleosin响应生物胁迫的作用方式。过量表达RD20的植物表现出其叶片表皮蜡成分的改变,并且对真菌Alternaria braciicicola的抗性增强。相反,沉默RD20导致真菌繁殖增强,并降低了因接种丁香假单胞菌(Pseudomonas syringae)pv番茄而引起的损害的严重程度。我们讨论这些发现,并提出RD20的主要功能是生成调节氧化状态和细胞死亡的脂蛋白。

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