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Autophagy Negatively Regulates Cell Death by Controlling NPR1-Dependent Salicylic Acid Signaling during Senescence and the Innate Immune Response in Arabidopsis[W][OA]

机译:自噬通过控制拟南芥衰老过程中的NPR1依赖性水杨酸信号转导来调控细胞死亡[W] [OA]

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摘要

Autophagy is an evolutionarily conserved intracellular process for vacuolar degradation of cytoplasmic components. In higher plants, autophagy defects result in early senescence and excessive immunity-related programmed cell death (PCD) irrespective of nutrient conditions; however, the mechanisms by which cells die in the absence of autophagy have been unclear. Here, we demonstrate a conserved requirement for salicylic acid (SA) signaling for these phenomena in autophagy-defective mutants (atg mutants). The atg mutant phenotypes of accelerated PCD in senescence and immunity are SA signaling dependent but do not require intact jasmonic acid or ethylene signaling pathways. Application of an SA agonist induces the senescence/cell death phenotype in SA-deficient atg mutants but not in atg npr1 plants, suggesting that the cell death phenotypes in the atg mutants are dependent on the SA signal transducer NONEXPRESSOR OF PATHOGENESIS-RELATED GENES1. We also show that autophagy is induced by the SA agonist. These findings imply that plant autophagy operates a novel negative feedback loop modulating SA signaling to negatively regulate senescence and immunity-related PCD.
机译:自噬是细胞质组件液泡降解的进化上保守的细胞内过程。在高等植物中,无论营养状况如何,自噬缺陷都会导致早期衰老和与免疫相关的过度程序性细胞死亡(PCD)。但是,尚不清楚细胞在没有自噬的情况下死亡的机制。在这里,我们证明了自噬缺陷突变体(atg突变体)中这些现象对水杨酸(SA)信号的保守要求。加速的PCD在衰老和免疫中的atg突变表型是SA信号依赖性的,但不需要完整的茉莉酸或乙烯信号通路。 SA激动剂的应用在SA缺陷型atg突变体中诱导衰老/细胞死亡表型,但在atg npr1植物中不诱导衰老/细胞死亡表型,这表明atg突变体中的细胞死亡表型依赖于SA信号转导子。我们还表明,自噬是由SA激动剂诱导的。这些发现暗示植物自噬操作一个新颖的负反馈回路,该回路调节SA信号传导,从而负调控衰老和免疫相关的PCD。

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