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玉米磷酸烯醇式丙酮酸羧化酶在转基因水稻植株中的高水平表达。

High-level expression of maize phosphoenolpyruvate carboxylase in transgenic rice plants.

作者信息

Ku M S, Agarie S, Nomura M, Fukayama H, Tsuchida H, Ono K, Hirose S, Toki S, Miyao M, Matsuoka M

机构信息

Botany Department, Washington State University, Pullman 99164-4238, USA.

出版信息

Nat Biotechnol. 1999 Jan;17(1):76-80. doi: 10.1038/5256.

Abstract

Using an Agrobacterium-mediated transformation system, we have introduced the intact gene of maize phosphoenolpyruvate carboxylase (PEPC), which catalyzes the initial fixation of atmospheric CO2 in C4 plants into the C3 crop rice. Most transgenic rice plants showed high-level expression of the maize gene; the activities of PEPC in leaves of some transgenic plants were two- to threefold higher than those in maize, and the enzyme accounted for up to 12% of the total leaf soluble protein. RNA gel blot and Southern blot analyses showed that the level of expression of the maize PEPC in transgenic rice plants correlated with the amount of transcript and the copy number of the inserted maize gene. Physiologically, the transgenic plants exhibited reduced O2 inhibition of photosynthesis and photosynthetic rates comparable to those of untransformed plants. The results demonstrate a successful strategy for installing the key biochemical component of the C4 pathway of photosynthesis in C3 plants.

摘要

利用农杆菌介导的转化系统,我们已将玉米磷酸烯醇式丙酮酸羧化酶(PEPC)的完整基因导入C3作物水稻中,该酶在C4植物中催化大气中CO2的初始固定。大多数转基因水稻植株表现出玉米基因的高水平表达;一些转基因植株叶片中PEPC的活性比玉米中的高出两到三倍,该酶占叶片总可溶性蛋白的比例高达12%。RNA凝胶印迹和Southern印迹分析表明,转基因水稻植株中玉米PEPC的表达水平与转录本数量和插入的玉米基因拷贝数相关。在生理上,转基因植株表现出光合作用对O2抑制的降低,光合速率与未转化植株相当。结果证明了在C3植物中植入光合作用C4途径关键生化成分的成功策略。

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