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拟南芥原叶绿素酸氧化还原酶 A(PORA)可恢复大量叶绿素的合成和 porB porC 双突变体的正常发育。

Arabidopsis protochlorophyllide oxidoreductase A (PORA) restores bulk chlorophyll synthesis and normal development to a porB porC double mutant.

机构信息

Department of Plant Cellular and Molecular Biology, The Ohio State University, 500 Aronoff Laboratory, Columbus, OH, USA.

出版信息

Plant Mol Biol. 2010 Mar;72(4-5):445-57. doi: 10.1007/s11103-009-9582-y. Epub 2009 Dec 12.

Abstract

In angiosperms the strictly light-dependent reduction of protochlorophyllide to chlorophyllide is catalyzed by NADPH:protochlorophyllide oxidoreductase (POR). The Arabidopsis thaliana genome encodes three structurally related but differentially regulated POR genes, PORA, PORB and PORC. PORA is expressed primarily early in development-during etiolation, germination and greening. In contrast, PORB and PORC are not only expressed during seedling development but also throughout the later life of the plant, during which they are responsible for bulk chlorophyll synthesis. The Arabidopsis porB-1 porC-1 mutant displays a severe xantha (highly chlorophyll-deficient) phenotype characterized by smaller prolamellar bodies in etioplasts and decreased thylakoid stacking in chloroplasts. Here we have demonstrated the ability of an ectopic PORA overexpression construct to restore prolamellar body formation in the porB-1 porC-1 double mutant background. In response to illumination, light-dependent chlorophyll production, thylakoid stacking and photomorphogenesis are also restored in PORA-overexpressing porB-1 porC-1 seedlings and adult plants. An Arabidopsis porB-1 porC-1 double mutant can therefore be functionally rescued by the addition of ectopically expressed PORA, which suffices in the absence of either PORB or PORC to direct bulk chlorophyll synthesis and normal plant development.

摘要

在被子植物中,原叶绿素酸酯到叶绿素酸酯的严格依赖光的还原是由 NADPH:原叶绿素酸酯氧化还原酶(POR)催化的。拟南芥基因组编码三个结构上相关但受差异调控的 POR 基因,PORA、PORB 和 PORC。PORA 主要在发育早期表达 - 在黄化、萌发和变绿过程中。相比之下,PORB 和 PORC 不仅在幼苗发育期间表达,而且在植物的后期生命中也表达,在此期间它们负责大量叶绿素的合成。拟南芥 porB-1 porC-1 突变体表现出严重的黄化(高度叶绿素缺乏)表型,其特征是前质体体中的前质体体更小,叶绿体中的类囊体堆叠减少。在这里,我们已经证明了异位 PORA 过表达构建体在 porB-1 porC-1 双突变体背景下恢复前质体体形成的能力。在光照下,在 PORA 过表达的 porB-1 porC-1 幼苗和成年植物中,光依赖性叶绿素产生、类囊体堆叠和光形态建成也得到恢复。因此,拟南芥 porB-1 porC-1 双突变体可以通过添加异位表达的 PORA 来进行功能拯救,在缺乏 PORB 或 PORC 的情况下,PORA 足以指导大量叶绿素的合成和正常的植物发育。

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