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Involvement of putative glutamate receptors in plant defence signaling and NO production

机译:推测的谷氨酸受体参与植物防御信号和NO的产生

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摘要

Ionotropic glutamate receptors (iGluRs) are non-selective cation channels permeable to calcium, present in animals and plants. In mammals, glutamate is a well-known neurotransmitter and recently has been recognized as an immunomodulator. As animals and plants share common mechanisms that govern innate immunity with calcium playing a key role in plant defence activation, we have checked the involvement of putative iGluRs in plant defence signaling. Using tobacco cells, we first provide evidence supporting the activity of iGluRs as calcium channels and their involvement in NO production as reported in animals. Thereafter, iGluRs were shown to be activated in response to cryptogein, a well studied elicitor of defence response, and partly responsible for cryptogein-induced NO production. However, other cryptogein-induced calcium-dependent events including anion efflux, H_2O_2 production, MAPK activation and hypersensitive response (HR) did not depend on iGluRs indicating that different calcium channels regulate different processes at the cell level. We have also demonstrated that cryptogein induces efflux of glutamate in the apoplast by exocytosis. Taken together, our results demonstrate for the first time, an involvement of a putative iGluR in plant defence signaling and NO production, by mechanisms that show homology with glutamate mode of action in mammals.
机译:离子型谷氨酸受体(iGluRs)是动植物中存在的钙可渗透的非选择性阳离子通道。在哺乳动物中,谷氨酸是众所周知的神经递质,最近被认为是免疫调节剂。由于动植物共有共同的机制来控制先天免疫,而钙在植物防御激活中起着关键作用,因此我们检查了假定的iGluR在植物防御信号中的参与。我们首先使用烟草细胞提供证据,证明iGluRs作为钙通道的活性及其在动物中报道的参与NO产生。此后,显示出iGluRs响应于隐血球蛋白而被激活,隐血球蛋白是一种经过深入研究的防御反应引发剂,部分负责隐血球蛋白诱导的一氧化氮的产生。然而,其他隐血球蛋白诱导的钙依赖性事件包括阴离子外排,H_2O_2产生,MAPK活化和超敏反应(HR)不依赖于iGluR,这表明不同的钙通道在细胞水平上调节了不同的过程。我们还证明隐血球蛋白通过胞吐作用诱导质外体中的谷氨酸外排。综上所述,我们的研究结果首次证明了推定的iGluR通过与哺乳动物的谷氨酸作用方式具有同源性的机制参与了植物防御信号和NO的产生。

著录项

  • 来源
    《Biochimie》 |2011年第12期|p.2095-2101|共7页
  • 作者单位

    UMR INRA 1088, CNRS 5184, Universite de Bourgogne, Plante-Microbe-Environnement, 17 Rue Sully, BP 86510, 21065 Dijon, France;

    UMR INRA 1088, CNRS 5184, Universite de Bourgogne, Plante-Microbe-Environnement, 17 Rue Sully, BP 86510, 21065 Dijon, France;

    UMR INRA 1088, CNRS 5184, Universite de Bourgogne, Plante-Microbe-Environnement, 17 Rue Sully, BP 86510, 21065 Dijon, France;

    UMR INRA 1088, CNRS 5184, Universite de Bourgogne, Plante-Microbe-Environnement, 17 Rue Sully, BP 86510, 21065 Dijon, France;

    UMR INRA 1088, CNRS 5184, Universite de Bourgogne, Plante-Microbe-Environnement, 17 Rue Sully, BP 86510, 21065 Dijon, France;

    UMR INRA 1088, CNRS 5184, Universite de Bourgogne, Plante-Microbe-Environnement, 17 Rue Sully, BP 86510, 21065 Dijon, France;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    glutamate receptor; calcium signaling; nitric oxide; plant defence; tobacco; elicitors;

    机译:谷氨酸受体;钙信号;一氧化氮;植物防御烟草;激发子;
  • 入库时间 2022-08-18 01:23:58

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