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High-level expression of C_4 photosynthetic genes in transgenic rice

机译:转基因水稻C_4光合基因的高级别表达

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Attempts have been made to transfer C_4 traits to C_3 plants by introducing a chimeric gene construct containing cDNAs for C_4 enzymes under the control of active promoters in C_3 plants. However, the levels of transcripts and proteins in these transformants were far below those in C_4 plants. Our studies have demonstrated that the promoters for maize C_4-specific genes encode phosphoenolpyruvate carboxylase (PEPC) and pyruvate, orthophosphate dikinase (PPDK), which can drive the high-level expression of a reporter gene in transgenic rice plants in an organ-specific, mesophyll-specific, and light-dependent manner as in maize. These results suggest that the rice plant possesses the regulatory factors necessary for high-level expression of the C_4-specific genes, and imply that the introduction of the intact maize genes would lead to the high-level expression of the C_4 enzymes in rice leaves. The introduction of the intact maize C_4-specific genes containing all exons and introns and its own promoter and terminator sequences led to the high-level expression of the PEPC and PPDK proteins in the leaves of transgenic rice plants. The activities of PEPC and PPDK were 110- and 40-fold higher than those of nontransgenic rice, respectively. The high-level expression of each C_4 enzyme altered metabolism slightly but did not seem to increase the photosynthetic efficiency of transgenic rice leaves.
机译:通过在C_3植物中的活性启动子的控制下引入含有C_4酶的CDNA的CDNA的CDNA的嵌合基因构建体来将C_4的特征转移到C_3植物中。然而,这些转化体中的转录物和蛋白质的水平远低于C_4植物中的转录物。我们的研究表明,玉米C_4特异性基因的启动子编码磷酸丙酮酸羧酸盐酶(Pepc)和丙酮酸,正磷酸盐二磷酶(PPDK),其可以在器官特异性中促进报告基因在转基因水稻植物中的高水平表达,叶片特异性,玉米中的光依赖性方式。这些结果表明,水稻植物具有C_4特异性基因的高水平表达所需的调节因素,并意味着完整玉米基因的引入将导致水稻叶中C_4酶的高水平表达。引入含有所有外显子和内含子的完整玉米C_4特异性基因及其自身的启动子和终止子序列导致了转基因水稻植物叶中Pepc和Ppdk蛋白的高水平表达。 Pepc和PPDK的活性分别高于非转基因水稻的110-40倍。每个C_4酶的高水平表达略微改变代谢,但似乎似乎没有提高转基因稻叶的光合效率。

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