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Arabidopsis Chloroplastic Glutathione Peroxidases Play a Role in Cross Talk between Photooxidative Stress and Immune Responses

机译:拟南芥叶绿体谷胱甘肽过氧化物酶在光氧化应激和免疫反应之间的相互影响中发挥作用。

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摘要

Glutathione peroxidases (GPXs; EC 1.11.1.9) are key enzymes of the antioxidant network in plants and animals. In order to investigate the role of antioxidant systems in plant chloroplasts, we generated Arabidopsis (Arabidopsis thaliana) transgenic lines that are depleted specifically in chloroplastic (cp) forms of GPX1 and GPX7. We show that reduced cpGPX expression, either in transgenic lines with lower total cpGPX expression (GPX1 and GPX7) or in a gpx7 insertion mutant, leads to compromised photooxidative stress tolerance but increased basal resistance to virulent bacteria. Depletion of both GPX1 and GPX7 expression also caused alterations in leaf cell and chloroplast morphology. Leaf tissues were characterized by shorter and more rounded palisade cells, irregular spongy mesophyll cells, and larger intercellular air spaces compared with the wild type. Chloroplasts had larger and more abundant starch grains than in wild-type and gpx7 mutant plants. Constitutively reduced cpGPX expression also led to higher foliar ascorbic acid, glutathione, and salicylic acid levels in plants exposed to higher light intensities. Our results suggest partially overlapping functions of GPX1 and GPX7. The data further point to specific changes in the chloroplast ascorbate-glutathione cycle due to reduced cpGPX expression, initiating reactive oxygen species and salicylic acid pathways that affect leaf development, light acclimation, basal defense, and cell death programs. Thus, cpGPXs regulate cellular photooxidative tolerance and immune responses.
机译:谷胱甘肽过氧化物酶(GPXs; EC 1.11.1.9)是动植物抗氧化网络的关键酶。为了研究抗氧化剂系统在植物叶绿体中的作用,我们生成了拟南芥(Arabidopsis thaliana)转基因品系,这些转基因品系特别以GPX1和GPX7的叶绿体(cp)形式消耗。我们显示减少的cpGPX表达,无论是在总cpGPX表达较低的转基因株系中(GPX1和GPX7)还是在gpx7插入突变体中,都导致受损的光氧化胁迫耐受性,但增加了对有毒细菌的基础抗性。 GPX1和GPX7表达的减少也引起了叶细胞和叶绿体形态的改变。与野生型相比,叶组织的特征是栅栏细胞更短,更圆,不规则海绵状叶肉细胞以及更大的细胞间隙。与野生型和gpx7突变植物相比,叶绿体具有更大,更丰富的淀粉粒。组成型降低的cpGPX表达还导致暴露于较高光强度的植物中较高的叶抗坏血酸,谷胱甘肽和水杨酸水平。我们的结果表明GPX1和GPX7的功能部分重叠。数据进一步指出,由于cpGPX表达减少,叶绿体抗坏血酸-谷胱甘肽循环发生特定变化,引发了活性氧和水杨酸途径,从而影响叶片发育,光适应,基础防御和细胞死亡程序。因此,cpGPXs调节细胞的光氧化耐受性和免疫反应。

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  • 来源
    《Plant Physiology》 |2009年第2期|p.670-683|共14页
  • 作者单位

    Department of Botany, Stockholm University, Frescati 10691 Stockholm, Sweden (C.C.C.C., A.S.);

    Institute of Plant Physiology, Polish Academy of Sciences, 30–239 Krakow, Poland (I.., Z.M.);

    Department of Plant-Microbe Interactions, Max-Planck Institute for Plant Breeding Research, D–50829 Cologne, Germany (L.J., J.E.P.);

    Institute of Plant Genetics and Crop Plant Research, D–06466 Gatersleben, Germany (M.M.);

    Department of Biological Sciences, University of Essex, Colchester CO4 3SQ, United Kingdom (P.M.M.);

    and Department of Plants Genetics, Breeding, and Biotechnology, University of Life Sciences, 02–776 Warszawa, Poland (B.K., S.K.);

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  • 入库时间 2022-08-17 23:31:58

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