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Coordinated Activation of Programmed Cell Death and Defense Mechanisms in Transgenic Tobacco Plants Expressing a Bacterial Proton Pump.

机译:表达细菌质子泵的转基因烟草植物中程序性细胞死亡和防御机制的协调激活。

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摘要

In plants, programmed cell death is thought to be activated during the hypersensitive response to certain avirulent pathogens and in the course of several differentiation processes. We describe a transgenic model system that mimics the activation of programmed cell death in higher plants. In this system, expression of a bacterial proton pump in transgenic tobacco plants activates a cell death pathway that may be similar to that triggered by recognition of an incompatible pathogen. Thus, spontaneous lesions that resemble hypersensitive response lesions are formed, multiple defense mechanisms are apparently activated, and systemic resistance is induced in the absence of a pathogen. Interestingly, mutation of a single amino acid in the putative channel of this proton pump renders it inactive with respect to lesion formation and induction of resistance to pathogen challenge. This transgenic model system may provide insights into the mechanisms involved in mediating cell death in higher plants. In addition, it may also be used as a general agronomic tool to enhance disease protection.
机译:在植物中,程序性细胞死亡被认为是在对某些无毒病原体的超敏反应期间以及在几种分化过程中被激活的。我们描述了一种模仿高等植物中程序化细胞死亡激活的转基因模型系统。在该系统中,转基因烟草植物中细菌质子泵的表达激活了细胞死亡途径,该途径可能与识别不相容病原体触发的途径相似。因此,形成了类似于超敏反应病变的自发性病变,明显激活了多种防御机制,并且在没有病原体的情况下诱导了全身抵抗力。有趣的是,在该质子泵的推定通道中单个氨基酸的突变使其在病变形成和诱导对病原体攻击的抵抗力方面失活。该转基因模型系统可以提供有关介导高等植物细胞死亡的机制的见解。此外,它也可以用作增强疾病防护的一般农艺工具。

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