MOLECULAR ENGINEERING OF C4 PHOTOSYNTHESIS.

M. Matsuoka, R. Furbank, H. Fukayama, M. Miyao
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引用次数: 223

Abstract

The majority of terrestrial plants, including many important crops such as rice, wheat, soybean, and potato, are classified as C3 plants that assimilate atmospheric CO2 directly through the C3 photosynthetic pathway. C4 plants such as maize and sugarcane evolved from C3 plants, acquiring the C4 photosynthetic pathway to achieve high photosynthetic performance and high water- and nitrogen-use efficiencies. The recent application of recombinant DNA technology has made considerable progress in the molecular engineering of C4 photosynthesis over the past several years. It has deepened our understanding of the mechanism of C4 photosynthesis and provided valuable information as to the evolution of the C4 photosynthetic genes. It also has enabled us to express enzymes involved in the C4 pathway at high levels and in desired locations in the leaves of C3 plants for engineering of primary carbon metabolism.
c4光合作用的分子工程。
大多数陆生植物,包括许多重要的作物,如水稻、小麦、大豆和马铃薯,都被归类为C3植物,它们通过C3光合作用途径直接吸收大气中的二氧化碳。C4植物如玉米和甘蔗由C3植物进化而来,通过C4光合途径获得高光合性能和高水氮利用效率。近年来,重组DNA技术在C4光合作用分子工程中的应用取得了长足的进展。它加深了我们对C4光合作用机理的认识,为C4光合作用基因的进化提供了有价值的信息。它还使我们能够在C3植物叶片的所需位置高水平表达参与C4途径的酶,以进行初级碳代谢工程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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