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精细调节活性氧稳态调节拟南芥的初始免疫反应。

Fine tuning of reactive oxygen species homeostasis regulates primed immune responses in Arabidopsis.

出版信息

Mol Plant Microbe Interact. 2013 Nov;26(11):1334-44. doi: 10.1094/MPMI-04-13-0117-R.

DOI:10.1094/MPMI-04-13-0117-R
PMID:24088017
Abstract

Selected stimuli can prime the plant immune system for a faster and stronger defense reaction to pathogen attack. Pretreatment of Arabidopsis with the chemical agent β-aminobutyric acid (BABA) augmented H2O2 and callose production after induction with the pathogen-associated molecular pattern (PAMP) chitosan, or inoculation with the necrotrophic fungus Plectosphaerella cucumerina. However, BABA failed to prime H2O2 and callose production after challenge with the bacterial PAMP Flg22. Analysis of Arabidopsis mutants in reactive oxygen species (ROS) production (rbohD) or ROS scavenging (pad2, vtc1, and cat2) suggested a regulatory role for ROS homeostasis in priming of chitosan- and P. cucumerina-inducible callose and ROS. Moreover, rbohD and pad2 were both impaired in BABA-induced resistance against P. cucumerina. Gene expression analysis revealed direct induction of NADPH/respiratory burst oxidase protein D (RBOHD), γ-glutamylcysteine synthetase 1 (GSH1), and vitamin C defective 1 (VTC1) genes after BABA treatment. Conversely, ascorbate peroxidase 1 (APX1) transcription was repressed by BABA after challenge with chitosan or P. cucumerina, probably to provide a more oxidized environment in the cell and facilitate augmented ROS accumulation. Measuring ratios between reduced and oxidized glutathione confirmed that augmented defense expression in primed plants is associated with a more oxidized cellular status. Together, our data indicate that an altered ROS equilibrium is required for augmented defense expression in primed plants.

摘要

选定的刺激物可以使植物的免疫系统更快、更强地对病原体攻击做出防御反应。用化学物质β-氨基丁酸(BABA)预处理拟南芥后,用病原体相关分子模式(PAMP)几丁质或坏死真菌棒孢霉(Plectosphaerella cucumerina)诱导后,H2O2 和几丁质的产生得到增强。然而,在用细菌 PAMP Flg22 挑战后,BABA 未能引发 H2O2 和几丁质的产生。活性氧(ROS)产生(rbohD)或 ROS 清除(pad2、vtc1 和 cat2)突变体的拟南芥分析表明,ROS 稳态在几丁质和 P. cucumerina 诱导的几丁质和 ROS 的引发中起调节作用。此外,rbohD 和 pad2 都在 BABA 诱导的对 P. cucumerina 的抗性中受损。基因表达分析显示,BABA 处理后 NADPH/呼吸爆发氧化酶蛋白 D(RBOHD)、γ-谷氨酰半胱氨酸合成酶 1(GSH1)和维生素 C 缺陷 1(VTC1)基因直接诱导。相反,在用几丁质或 P. cucumerina 处理后,BABA 抑制了抗坏血酸过氧化物酶 1(APX1)的转录,这可能是为了在细胞中提供更氧化的环境,并促进增强的 ROS 积累。测量还原型和氧化型谷胱甘肽的比值证实,引发植物中增强的防御表达与更氧化的细胞状态有关。总之,我们的数据表明,改变 ROS 平衡是引发植物中增强防御表达所必需的。

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