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AaWRKY1的过表达导致青蒿中青蒿素含量增加。

Overexpression of AaWRKY1 Leads to an Enhanced Content of Artemisinin in Artemisia annua.

作者信息

Jiang Weimin, Fu Xueqing, Pan Qifang, Tang Yueli, Shen Qian, Lv Zongyou, Yan Tingxiang, Shi Pu, Li Ling, Zhang Lida, Wang Guofeng, Sun Xiaofen, Tang Kexuan

机构信息

Key Laboratory of Urban Agriculture (South) Ministry of Agriculture, Plant Biotechnology Research Center, Fudan-SJTU-Nottingham Plant Biotechnology R&D Center, School of Agriculture and Biology, Shanghai Jiaotong University, Shanghai, 200240, China.

出版信息

Biomed Res Int. 2016;2016:7314971. doi: 10.1155/2016/7314971. Epub 2016 Mar 28.

Abstract

Artemisinin is an effective component of drugs against malaria. The regulation of artemisinin biosynthesis is at the forefront of artemisinin research. Previous studies showed that AaWRKY1 can regulate the expression of ADS, which is the first key enzyme in artemisinin biosynthetic pathway. In this study, AaWRKY1 was cloned, and it activated ADSpro and CYPpro in tobacco using dual-LUC assay. To further study the function of AaWRKY1, pCAMBIA2300-AaWRKY1 construct under 35S promoter was generated. Transgenic plants containing AaWRKY1 were obtained, and four independent lines with high expression of AaWRKY1 were analyzed. The expression of ADS and CYP, the key enzymes in artemisinin biosynthetic pathway, was dramatically increased in AaWRKY1-overexpressing A. annua plants. Furthermore, the artemisinin yield increased significantly in AaWRKY1-overexpressing A. annua plants. These results showed that AaWRKY1 increased the content of artemisinin by regulating the expression of both ADS and CYP. It provides a new insight into the mechanism of regulation on artemisinin biosynthesis via transcription factors in the future.

摘要

青蒿素是抗疟药物的有效成分。青蒿素生物合成的调控是青蒿素研究的前沿领域。先前的研究表明,AaWRKY1可以调控ADS的表达,ADS是青蒿素生物合成途径中的第一个关键酶。在本研究中,克隆了AaWRKY1,并通过双荧光素酶检测法在烟草中激活了ADSpro和CYPpro。为了进一步研究AaWRKY1的功能,构建了35S启动子驱动的pCAMBIA2300-AaWRKY1载体。获得了含有AaWRKY1的转基因植物,并对四个AaWRKY1高表达的独立株系进行了分析。在过表达AaWRKY1的青蒿植株中,青蒿素生物合成途径中的关键酶ADS和CYP的表达显著增加。此外,过表达AaWRKY1的青蒿植株中青蒿素产量显著提高。这些结果表明,AaWRKY1通过调控ADS和CYP的表达增加了青蒿素的含量。这为未来通过转录因子调控青蒿素生物合成的机制提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/42b7/4809039/43ed159f09c6/BMRI2016-7314971.001.jpg

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