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Autophagy in plants

机译:植物自噬

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摘要

Autophagy is a highly conserved processing mechanism in eukaryotes whereby cytoplasmic components are engulfed in double-membrane vesicles called autophagosomes and are delivered into organelles such as lysosomes (mammal) or vacuoles (yeast/plant) for degradation and recycling of the resulting molecules. Isolation of yeastAUTOPHAGY (ATG) genes has facilitated the identification of correspondingArabidopsis ATG genes based on sequence similarity. Genetic and molecular analyses using knockout and/or knockdown mutants of those genes have unraveled the biological functions of autophagy during plant development, nutrient recycling, and environmental stress responses. Additional roles for autophagy have been suggested in the degradation of oxidized proteins during oxidative stress and the regulation of hypersensitive response (HR)-programmed cell death (PCD) during innate immunity. Our review summarizes knowledge about the structure and function of autophagic pathways andATG components, and the biological roles of autophagy in plants.
机译:自噬是真核生物中高度保守的加工机制,胞质成分被吞噬在称为自噬体的双膜囊泡中,并被输送到细胞器中,如溶酶体(哺乳动物)或液泡(酵母/植物),以降解和循环利用所得分子。酵母AUTOPHAGY(ATG)基因的分离促进了基于序列相似性的相应拟南芥ATG基因的鉴定。使用这些基因的敲除和/或敲除突变体进行的遗传和分子分析已揭示了植物发育,养分循环利用和环境胁迫反应期间自噬的生物学功能。自噬的其他作用已被建议在氧化应激期间氧化蛋白的降解以及先天免疫过程中对超敏反应(HR)程序性细胞死亡(PCD)的调节。我们的综述总结了有关自噬途径和ATG组分的结构和功能的知识,以及自噬在植物中的生物学作用。

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