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C4植物中丙酮酸磷酸双激酶基因:结构、调控与进化

The gene for pyruvate, orthophosphate dikinase in C4 plants: structure, regulation and evolution.

作者信息

Matsuoka M

机构信息

BioScience Center, Nagoya University, Aichi, Japan.

出版信息

Plant Cell Physiol. 1995 Sep;36(6):937-43. doi: 10.1093/oxfordjournals.pcp.a078864.

DOI:10.1093/oxfordjournals.pcp.a078864
PMID:8528609
Abstract

Pyruvate, orthophosphate dikinase (PPDK; EC 2.7.9.1) is a key enzyme in photosynthesis in plants that exploit the C4 photosynthetic pathway for the fixation of CO2. This review focuses on the structure, regulation and evolution of the C4-type ppdk gene in the maize genome. The C4-ppdk gene in maize consists of 19 exons spanning about 12 kbp. The gene is transcribed from two different initiation sites under the control of two promoters to produce two mRNAs of different sizes. The larger one contains the exon 1 sequence that encodes the chloroplast transit peptide and its product acts as C4-PPDK in chloroplasts, while the smaller one does not contain the sequence and its product may function as a C3-enzyme in the cytosol. This unusual dual promoter system is not unique to the maize C4-type ppdk gene since the same organization is also observed in the rice (C3 plant) ppdk gene and in Flaveria. Thus, the two-promoter system is common to plant ppdk genes from C3 and C4, monocot and dicot plants. A discussion is also presented of the generation of a system for regulation of the expression of the C4-type ppdk gene. A chimeric gene consisting of a reporter gene under the control of the promoter of maize C4-ppdk is exclusively expressed in photosynthetic tissues and not in roots or stems of transgenic rice. The expression of the introduced gene is also regulated by light: it is low in etiolated leaves and is enhanced by illumination. These results indicate that the regulatory system that controls ppdk expression in maize is not unique to C4 plants.

摘要

丙酮酸,磷酸双激酶(PPDK;EC 2.7.9.1)是利用C4光合途径固定二氧化碳的植物光合作用中的关键酶。本综述聚焦于玉米基因组中C4型ppdk基因的结构、调控和进化。玉米中的C4-ppdk基因由19个外显子组成,跨度约12千碱基对。该基因在两个启动子的控制下从两个不同的起始位点转录,产生两种不同大小的mRNA。较大的一种包含编码叶绿体转运肽的外显子1序列,其产物在叶绿体中作为C4-PPDK发挥作用,而较小的一种不包含该序列,其产物可能在细胞质中作为C3酶发挥作用。这种不寻常的双启动子系统并非玉米C4型ppdk基因所独有,因为在水稻(C3植物)ppdk基因和黄顶菊属植物中也观察到了相同的结构。因此,双启动子系统在C3和C4植物、单子叶和双子叶植物的ppdk基因中普遍存在。本文还讨论了C4型ppdk基因表达调控系统的产生。由玉米C4-ppdk启动子控制的报告基因组成的嵌合基因仅在光合组织中表达,而不在转基因水稻的根或茎中表达。导入基因的表达也受光调控:在黄化叶片中表达较低,光照可增强其表达。这些结果表明,控制玉米中ppdk表达的调控系统并非C4植物所独有。

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