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自噬、植物衰老与养分循环。

Autophagy, plant senescence, and nutrient recycling.

作者信息

Avila-Ospina Liliana, Moison Michael, Yoshimoto Kohki, Masclaux-Daubresse Céline

机构信息

Institut Jean-Pierre Bourgin (IJPB), bat2, UMR 1318, INRA, RD10, 78026 Versailles Cedex AgroParisTech, Institut Jean-Pierre Bourgin, RD10, F-78000 Versailles, France.

Institut Jean-Pierre Bourgin (IJPB), bat2, UMR 1318, INRA, RD10, 78026 Versailles Cedex AgroParisTech, Institut Jean-Pierre Bourgin, RD10, F-78000 Versailles, France

出版信息

J Exp Bot. 2014 Jul;65(14):3799-811. doi: 10.1093/jxb/eru039. Epub 2014 Mar 31.

DOI:10.1093/jxb/eru039
PMID:24687977
Abstract

Large numbers of publications have appeared over the last few years, dealing with the molecular details of the regulation and process of the autophagy machinery in animals, plants, and unicellular eukaryotic organisms. This strong interest is caused by the fact that the autophagic process is involved in the adaptation of organisms to their environment and to stressful conditions, thereby contributing to cell and organism survival and longevity. In plants, as in other eukaryotes, autophagy is associated with longevity as mutants display early and strong leaf senescence symptoms, however, the exact role of autophagy as a pro-survival or pro-death process is unclear. Recently, evidence that autophagy participates in nitrogen remobilization has been provided, but the duality of the role of autophagy in leaf longevity and/or nutrient recycling through cell component catabolism remains. This review aims to give an overview of leaf senescence-associated processes from the physiological point of view and to discuss relationships between nutrient recycling, proteolysis, and autophagy. The dual role of autophagy as a pro-survival or pro-death process is discussed.

摘要

在过去几年里出现了大量的出版物,涉及动物、植物和单细胞真核生物中自噬机制的调控及过程的分子细节。这种浓厚的兴趣源于自噬过程参与生物体对其环境和应激条件的适应,从而有助于细胞和生物体的存活及长寿这一事实。在植物中,与其他真核生物一样,自噬与长寿相关,因为突变体表现出早期且强烈的叶片衰老症状,然而,自噬作为一种促生存或促死亡过程的确切作用尚不清楚。最近,已有证据表明自噬参与氮素再利用,但自噬在叶片寿命和/或通过细胞成分分解代谢进行养分循环中的双重作用仍然存在。本综述旨在从生理学角度概述与叶片衰老相关的过程,并讨论养分循环、蛋白质水解和自噬之间的关系。还讨论了自噬作为促生存或促死亡过程的双重作用。

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Autophagy, plant senescence, and nutrient recycling.自噬、植物衰老与养分循环。
J Exp Bot. 2014 Jul;65(14):3799-811. doi: 10.1093/jxb/eru039. Epub 2014 Mar 31.
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[Autophagic processes in plants: mechanisms, regulation and function].[植物中的自噬过程:机制、调控与功能]
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The changes of leaf carbohydrate contents as a regulator of autophagic degradation of chloroplasts via Rubisco-containing bodies during leaf senescence.叶片衰老过程中通过 Rubisco 包含体调节叶绿体自噬降解的叶片碳水化合物含量的变化。
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Autophagy machinery controls nitrogen remobilization at the whole-plant level under both limiting and ample nitrate conditions in Arabidopsis.在拟南芥中,自噬机制在硝酸盐供应有限和充足的条件下,均能在全株水平上控制氮的再分配。
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Nitrogen remobilization during leaf senescence: lessons from Arabidopsis to crops.叶片衰老过程中的氮再转移:从拟南芥到作物的经验教训。
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The autophagic degradation of chloroplasts via rubisco-containing bodies is specifically linked to leaf carbon status but not nitrogen status in Arabidopsis.叶绿体通过含有 Rubisco 的小体进行自噬降解与拟南芥叶片的碳状态而非氮状态特异性相关联。
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From Arabidopsis to cereal crops: Conservation of chloroplast protein degradation by autophagy indicates its fundamental role in plant productivity.从拟南芥到谷类作物:自噬对叶绿体蛋白降解的保守性表明其在植物生产力中的重要作用。
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Senescence-associated proteases in plants.植物中的衰老相关蛋白酶。
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Arabidopsis MACP2 contributes to autophagy induction by modulating starvation-induced reactive oxygen species homeostasis.拟南芥MACP2通过调节饥饿诱导的活性氧稳态来促进自噬诱导。
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Condition-dependent effects of knockdown of autophagy on longevity.
自噬敲低对寿命的条件依赖性影响。
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Autophagy in plants.植物中的自噬作用。
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A fungal pathogen suppresses host leaf senescence to increase infection.一种真菌病原体抑制宿主叶片衰老以增加感染。
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Physiol Plant. 2025 Jan-Feb;177(1):e70022. doi: 10.1111/ppl.70022.
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