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OsATG7 is required for autophagy-dependent lipid metabolism in rice postmeiotic anther development

机译:OsATG7是水稻减数分裂后花药发育中自噬依赖性脂质代谢所必需的

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摘要

In flowering plants, the tapetum, the innermost layer of the anther, provides both nutrient and lipid components to developing microspores, pollen grains, and the pollen coat. Though the programmed cell death of the tapetum is one of the most critical and sensitive steps for fertility and is affected by various environmental stresses, its regulatory mechanisms remain mostly unknown. Here we show that autophagy is required for the metabolic regulation and nutrient supply in anthers and that autophagic degradation within tapetum cells is essential for postmeiotic anther development in rice. Autophagosome-like structures and several vacuole-enclosed lipid bodies were observed in postmeiotic tapetum cells specifically at the uninucleate stage during pollen development, which were completely abolished in a retrotransposon-insertional OsATG7 (autophagy-related 7)-knockout mutant defective in autophagy, suggesting that autophagy is induced in tapetum cells. Surprisingly, the mutant showed complete sporophytic male sterility, failed to accumulate lipidic and starch components in pollen grains at the flowering stage, showed reduced pollen germination activity, and had limited anther dehiscence. Lipidomic analyses suggested impairment of editing of phosphatidylcholines and lipid desaturation in the mutant during pollen maturation. These results indicate a critical involvement of autophagy in a reproductive developmental process of rice, and shed light on the novel autophagy-mediated regulation of lipid metabolism in eukaryotic cells.
机译:在开花植物中,绒毡层是花药的最内层,为发育中的小孢子,花粉粒和花粉皮层提供营养和脂质成分。尽管绒毡层的程序性细胞死亡是生育的最关键和最敏感的步骤之一,并受各种环境压力的影响,但其调控机制仍是未知的。在这里,我们表明自噬是花药代谢调节和养分供应所必需的,绒毡层细胞内的自噬降解对于水稻减数分裂后的花药发育至关重要。在减数分裂的绒毡层细胞中,特别是在花粉发育过程中的单核阶段,观察到自噬体样结构和几个液泡封闭的脂质体,这些蛋白在逆转转座子插入的OsATG7(自噬相关7)-敲除突变体中被完全消除,提示自噬缺陷。在绒毡层细胞中诱导自噬。令人惊讶的是,该突变体表现出完全的孢子性雄性不育,在开花期未能在花粉粒中积累脂质和淀粉成分,显示出降低的花粉发芽活性,并且限制了花药开裂。脂质组学分析表明,在花粉成熟过程中,突变体中磷脂酰胆碱的编辑受损和脂质去饱和作用降低。这些结果表明自噬在水稻生殖发育过程中的关键参与,并为真核细胞中脂质代谢的新型自噬介导的调控提供了启示。

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