The stacked over-expression of FPS, CYP71AV1 and CPR genes leads to the increase of artemisinin level in Artemisia annua L.

被引:0
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作者
Yunfei Chen
Qian Shen
Yueyue Wang
Tao Wang
Shaoyan Wu
Ling Zhang
Xu Lu
Fangyuan Zhang
Weimin Jiang
Bo Qiu
Erdi Gao
Xiaofen Sun
Kexuan Tang
机构
[1] Shanghai Jiao Tong University,Plant Biotechnology Research Center, School of Agriculture and Biology, Fudan
来源
Plant Biotechnology Reports | 2013年 / 7卷
关键词
L.; Artemisinin; Genetic engineering; CYP71AV1; CPR; FPS;
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摘要
Artemisinin is an endoperoxide sesquiterpene lactone isolated from the aerial parts of Artemisia annua L., and is presently the most potent anti-malarial drug. Owing to the low yield of artemisinin from A. annua as well as the widespread application of artemisinin-based combination therapy recommended by the World Health Organization, the global demand for artemisinin is substantially increasing and is therefore rendering artemisinin in short supply. An economical way to increase artemisinin production is to increase the content of artemisinin in A. annua. In this study, three key genes in the artemisinin biosynthesis pathway, encoding farnesyl diphosphate synthase, amorpha-4, 11-diene C-12 oxidase and its redox partner cytochrome P450 reductase, were over-expressed in A. annua through Agrobacterium-mediated transformation. The transgenic lines were confirmed by Southern blotting and the over-expressions of the genes were demonstrated by real-time PCR assays. The HPLC analysis showed that the artemisinin contents in transgenic lines were increased significantly, with the highest one found to be 3.6-fold higher (2.9 mg/g FW) than that of the control. These results demonstrate that multigene engineering is an effective way to enhance artemisinin content in A. annua.
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页码:287 / 295
页数:8
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