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细胞质 APX2 是一种多效蛋白,参与 HO 平衡、叶绿体保护、植物结构和育性维持。

Cytosolic APX2 is a pleiotropic protein involved in HO homeostasis, chloroplast protection, plant architecture and fertility maintenance.

机构信息

College of Life Sciences, Capital Normal University, Beijing, 100048, China.

出版信息

Plant Cell Rep. 2018 Jun;37(6):833-848. doi: 10.1007/s00299-018-2272-y. Epub 2018 Mar 16.

Abstract

Rice cytoplasmic APX2 is a pleiotropic protein, densely distributed around chloroplasts. It plays key roles in HO homeostasis and chloroplast protection, and is related to plant architecture and fertility regulation. Ascorbate peroxidases (APXs) catalyze the conversion of HO into HO. In this report, we systematically investigated the function of cytosolic APX2 using a T-DNA knockout mutant. Loss of OsAPX2 altered rice architecture including shoot height and leaf inclination, resulting in shoot dwarfing, leaf dispersion and fertility decline. Sixty-five differentially expressed proteins were identified in flag leaves of the milk-ripe stage, mainly involved in photosynthesis, glycolysis and TCA cycle, redox homeostasis, and defense. The absence of APX2 severely impacted the stability of chloroplast proteins, and dramatically reduced their expression levels. Subcellular localization showed that APX2 was enriched around each chloroplast to form a high concentration sphere, highlighting chloroplasts as key targets protected by the protein. Accumulation of HO was suppressed in the KO-APX2 mutant, which may benefit from increased CAT activity and functional complementation of APX family members. Unexpectedly, the accumulation of soluble sugar, especially sucrose increased significantly, suggesting that APX2 was involved in regulation of sugar metabolism. Obviously, roles of the cytosolic APX2 are very profound and complex in rice. It can be concluded that the cytosolic APX2 is a pleiotropic protein and an important regulator in ROS homeostasis, chloroplast protection, carbohydrate metabolism as well as plant architecture and fertility maintenance.

摘要

水稻细胞质 APX2 是一种多效蛋白,在叶绿体周围密集分布。它在 HO 稳态和叶绿体保护中发挥关键作用,与植物结构和育性调节有关。抗坏血酸过氧化物酶 (APXs) 催化 HO 转化为 HO。在本报告中,我们使用 T-DNA 敲除突变体系统地研究了细胞质 APX2 的功能。OsAPX2 的缺失改变了水稻的结构,包括株高和叶倾角,导致株高变矮、叶片分散和育性下降。在乳熟期的旗叶中鉴定出 65 种差异表达的蛋白质,主要涉及光合作用、糖酵解和 TCA 循环、氧化还原稳态和防御。APX2 的缺失严重影响了叶绿体蛋白的稳定性,并显著降低了它们的表达水平。亚细胞定位表明 APX2 富集在每个叶绿体周围形成一个高浓度球体,突出了叶绿体是该蛋白保护的关键靶标。HO 的积累在 KO-APX2 突变体中受到抑制,这可能得益于 CAT 活性的增加和 APX 家族成员的功能互补。出乎意料的是,可溶性糖,特别是蔗糖的积累显著增加,表明 APX2 参与了糖代谢的调节。显然,细胞质 APX2 在水稻中的作用非常深远和复杂。可以得出结论,细胞质 APX2 是一种多效蛋白,是 ROS 稳态、叶绿体保护、碳水化合物代谢以及植物结构和育性维持的重要调节剂。

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