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Pathogen-induced elicitin production in transgenic tobacco generates a hypersensitive response and nonspecific disease resistance.

机译:转基因烟草中病原体诱导的激肽产生会产生过敏反应和非特异性疾病抗性。

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摘要

The rapid and effective activation of disease resistance responses is essential for plant defense against pathogen attack. These responses are initiated when pathogen-derived molecules (elicitors) are recognized by the host. We have developed a strategy for creating novel disease resistance traits whereby transgenic plants respond to infection by a virulent pathogen with the production of an elicitor. To this end, we generated transgenic tobacco plants harboring a fusion between the pathogen-inducible tobacco hsr 203J gene promoter and a Phytophthora cryptogea gene encoding the highly active elicitor cryptogein. Under noninduced conditions, the transgene was silent, and no cryptogein could be detected in the transgenic plants. In contrast, infection by the virulent fungus P. parasitica var nicotianae stimulated cryptogein production that coincided with the fast induction of several defense genes at and around the infection sites. Induced elicitor production resulted in a localized necrosis that resembled a P. cryptogea-induced hypersensitive response and that restricted further growth of the pathogen. The transgenic plants displayed enhanced resistance to fungal pathogens that were unrelated to Phytophthora species, such as Thielaviopsis basicola, Erysiphe cichoracearum, and Botrytis cinerea. Thus, broad-spectrum disease resistance of a plant can be generated without the constitutive synthesis of a transgene product.
机译:抗病反应的快速有效激活对于植物防御病原体侵袭至关重要。当病原体衍生的分子(引发子)被宿主识别时,就会启动这些反应。我们已经开发出一种创建新的抗病性状的策略,使转基因植物对强毒病原体的感染作出反应,并产生激发子。为此,我们生成了转基因烟草植株,其在病原体可诱导的烟草hsr 203J基因启动子与编码高活性激发子cryptogein的Phytophthora cryptogea基因之间融合。在非诱导条件下,转基因是沉默的,在转基因植物中未检测到隐蛋白。相比之下,有毒真菌寄生性烟草尼古拉球菌的感染刺激了隐藻蛋白的产生,这与在感染部位及其周围快速诱导几个防御基因相吻合。诱导的激发子产生导致局部坏死,类似于坏死隐孢子虫引起的过敏反应,并限制了病原体的进一步生长。转基因植物对与疫霉菌种类无关的真菌病原体表现出增强的抗性,例如基本的疫霉菌,短孢子虫和灰葡萄孢。因此,无需转基因产物的组成性合成即可产生植物的广谱抗病性。

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