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首页> 外文期刊>Journal of Plant Research >Evolution of C4 photosynthetic genes and overexpression of maize C4 genes in rice
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Evolution of C4 photosynthetic genes and overexpression of maize C4 genes in rice

机译:水稻C4光合基因的进化及玉米C4基因的过表达

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摘要

C3 plants including many agronomically important crops exhibit a lower photosynthetic efficiency due to inhibition of photosynthesis by O-2 and the associated photorespiration. C4 plants had evolved the C4 pathway to overcome low CO2 and photorespiration. This review first focuses on the generation of a system for high level expression of the C4-specific gene for pyruvate, orthophosphate dikinase (Pdk), one of the key enzyme in C4 photosynthesis. Based on the results with transgenic rice plants, we have demonstrated that the regulatory system controlling the Pdk expression in maize is not unique to C4 plants but rice (C3 plant) posses a similar system. Second, we discuss the possibility of the high level expression of maize C4-specific genes in transgenic rice plants. Introduction of the maize intact phosphoenolpyruvate carboxylase gene (Ppc) caused 30-100 fold higher PEPC activities than non-transgenic rice. These results demonstrated that intact C4-type genes are available for high level expression of C4 enzymes in rice plants. [References: 12]
机译:由于O-2抑制光合作用及相关的光呼吸作用,包括许多具有重要农学意义的农作物的C3植物显示出较低的光合作用效率。 C4植物已经进化出C4途径来克服低CO2和光呼吸作用。这篇综述首先关注于丙酮酸正磷酸二激酶(Pdk)(C4光合作用的关键酶之一)的C4特异性基因的高水平表达的系统的产生。基于转基因水稻植物的结果,我们证明了控制玉米中Pdk表达的调节系统并非C4植物独有,但水稻(C3植物)也具有类似的系统。其次,我们讨论了在转基因水稻植物中高表达玉米C4特异性基因的可能性。玉米完整的磷酸烯醇丙酮酸羧化酶基因(Ppc)的引入引起的PEPC活性比非转基因水稻高30-100倍。这些结果证明完整的C4型基因可用于水稻植物中C4酶的高水平表达。 [参考:12]

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