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Nitric oxide functions as a signal in plant disease resistance (see comments)

机译:一氧化氮是植物抗病性的信号(见评论)

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Recognition of an avirulent pathogen triggers the rapid production of the reactive oxygen intermediates superoxide (O2-) and hydrogen peroxide (H2O2). This oxidative burst drives crosslinking of the cell wall, induces several plant genes involved in cellular protection and defence, and is necessary for the initiation of host cell death in the hypersensitive disease-resistance response. However, this burst is not enough to support a strong disease-resistance response. Here we show that nitric oxide, which acts as a signal in the immune, nervous and vascular systems, potentiates the induction of hypersensitive cell death in soybean cells by reactive oxygen intermediates and functions independently of such intermediates to induce genes for the synthesis of protective natural products. Moreover, inhibitors of nitric oxide synthesis compromise the hypersensitive disease-resistance response of Arabidopsis leaves to Pseudomonas syringae, promoting disease and bacterial growth. We conclude that nitric oxide plays a key role in disease resistance in plants.
机译:对无毒病原体的识别触发了活性氧中间体超氧化物(O2-)和过氧化氢(H2O2)的快速产生。该氧化爆发驱动细胞壁的交联,诱导参与细胞保护和防御的几种植物基因,并且对于超敏疾病抗性应答中宿主细胞死亡的引发是必需的。但是,这种爆发不足以支持强烈的抗病反应。在这里,我们显示一氧化氮在免疫,神经和血管系统中起信号作用,可通过活性氧中间体增强大豆细胞中超敏细胞死亡的诱导作用,并且独立于此类中间体而发挥功能,从而诱导基因合成保护性天然产品。此外,一氧化氮合成的抑制剂损害了拟南芥叶片对丁香假单胞菌的过敏反应,从而促进了疾病和细菌的生长。我们得出结论,一氧化氮在植物抗病性中起关键作用。

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