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Physiological roles of autophagy in plants: Does plant autophagy have a pro-death function?

机译:自噬在植物中的生理作用:植物自噬是否具有促死功能?

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摘要

Autophagy is an evolutionarily conserved intracellular process for vacuolar degradation of cytoplasmic components. Early morphological studies suggested that autophagy occurs in plant cells and predicted that autophagy has a variety of functions in plant growth and development. However, it is only since the identification of autophagy genes that the physiological roles of autophagy in plants have become apparent. Recent reverse genetic studies indicate that autophagy defects in higher plants result in early senescence and excessive immunity-related programmed cell death (PCD), irrespective of nutrient conditions, suggesting that plant autophagy has an important pro-survival function during these types of cell death. Further biochemical and pharmacological studies in combination with double mutant analyses revealed that excessive salicylic acid (SA) signaling is a major factor in autophagy-defective plant-dependent cell death and that the SA signal can induce autophagy. These results demonstrate a novel physiological function for plant autophagy that operates a negative feedback loop to modulate SA signaling.
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。早期的形态学研究表明自噬发生在植物细胞中,并预测自噬在植物生长和发育中具有多种功能。然而,仅由于自噬基因的鉴定,自噬在植物中的生理作用才变得明显。最近的逆向遗传研究表明,高等植物中的自噬缺陷会导致早期衰老和与免疫相关的过度程序性细胞死亡(PCD),无论营养条件如何,都表明植物自噬在这些类型的细胞死亡中具有重要的促存活功能。结合双突变分析的进一步生化和药理研究表明,过量的水杨酸(SA)信号传导是自噬缺陷性植物依赖性细胞死亡的主要因素,并且SA信号可以诱导自噬。这些结果证明了植物自噬的一种新的生理功能,该功能通过负反馈回路调节SA信号传导。

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