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首页> 外文期刊>International Journal of Molecular Sciences >Endoplasmic Reticulum Stress Signaling in Plant Immunity—At the Crossroad of Life and Death
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Endoplasmic Reticulum Stress Signaling in Plant Immunity—At the Crossroad of Life and Death

机译:植物免疫中的内质网应激信号—在生死关头

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摘要

Rapid and complex immune responses are induced in plants upon pathogen recognition. One form of plant defense response is a programmed burst in transcription and translation of pathogenesis-related proteins, of which many rely on ER processing. Interestingly, several ER stress marker genes are up-regulated during early stages of immune responses, suggesting that enhanced ER capacity is needed for immunity. Eukaryotic cells respond to ER stress through conserved signaling networks initiated by specific ER stress sensors tethered to the ER membrane. Depending on the nature of ER stress the cell prioritizes either survival or initiates programmed cell death (PCD). At present two plant ER stress sensors, bZIP28 and IRE1, have been described. Both sensor proteins are involved in ER stress-induced signaling, but only IRE1 has been additionally linked to immunity. A second branch of immune responses relies on PCD. In mammals, ER stress sensors are involved in activation of PCD, but it is unclear if plant ER stress sensors play a role in PCD. Nevertheless, some ER resident proteins have been linked to pathogen-induced cell death in plants. In this review, we will discuss the current understanding of plant ER stress signaling and its cross-talk with immune signaling.
机译:病原体识别后,即可在植物中诱导快速而复杂的免疫反应。植物防御反应的一种形式是与病程相关的蛋白质的转录和翻译中的程序性爆发,其中许多依赖于ER加工。有趣的是,在免疫应答的早期阶段,几个内质网应激标记基因被上调,这表明增强内质网容量是免疫所必需的。真核细胞通过保守的信号网络对ER应激作出反应,该信号网络由拴在ER膜上的特定ER应激传感器启动。取决于ER应激的性质,细胞优先考虑存活或引发程序性细胞死亡(PCD)。目前,已经描述了两个工厂ER应力传感器bZIP28和IRE1。两种传感器蛋白都参与内质网应激诱导的信号传导,但是只有IRE1与免疫力相关。免疫应答的第二个分支依赖于PCD。在哺乳动物中,ER应力传感器与PCD的激活有关,但尚不清楚植物ER应力传感器是否在PCD中起作用。然而,一些内质网驻留蛋白与植物中病原体诱导的细胞死亡有关。在这篇综述中,我们将讨论对植物内质网应激信号的当前理解及其与免疫信号的串扰。

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