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首页> 外文期刊>Biotechnology and Applied Biochemistry >Development of transgenic Artemisia annua (Chinese wormwood) plants with an enhanced content of artemisinin, an effective anti-malarial drug, by hairpin-RNA-mediated gene silencing
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Development of transgenic Artemisia annua (Chinese wormwood) plants with an enhanced content of artemisinin, an effective anti-malarial drug, by hairpin-RNA-mediated gene silencing

机译:通过发夹RNA介导的基因沉默开发具有增强含量的青蒿素(一种有效的抗疟药)的转基因青蒿(中国艾草)植物

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摘要

Artemisinin is an effective anti-malarial drug isolated from Artemisia annua L. (Chinese wormwood), but the content of artemisinin in A. annua is low. In the present study we explored the possibility of using genetic engineering to increase the artemisinin content of A. annua by suppressing the expression of SQS (squalene synthase), a key enzyme of sterol pathway (a pathway competitive with that of artemisinin biosynthesis) by means of a hairpin-RNA-mediated RNAi (RNA interference) technique. A total of 23 independent transgenic A. annua plants were obtained through Agrobacterium tumefaciens-mediated transformation, which was confirmed by PCR and Southern-blot analyses. HPLC-evaporative light-scattering detection analysis showed that the artemisinin content of some transgenic plants was significantly increased, with the highest values reaching 31.4 mg/g dry weight, which is about 3.14-fold the content observed in untransformed control plants. Real-time reverse transcription-PCR analysis demonstrated that the expression of SQS was suppressed significantly, and GC-MS analysis showed that sterol was efficiently decreased in the transgenic plants. The present study demonstrated that genetic-engineering strategy of RNAi Is an effective means of increasing artemisinin content in plants.
机译:青蒿素是一种从青蒿(中国艾草)中分离出来的有效抗疟药,但青蒿中青蒿素的含量很低。在本研究中,我们探索了利用基因工程通过抑制SQS(角鲨烯合酶)的表达来增加花青素含量的可能性。发夹RNA介导的RNAi(RNA干扰)技术的概述。通过根癌农杆菌介导的转化获得了总共23株独立的转基因农杆菌。这通过PCR和Southern印迹分析得到证实。 HPLC蒸发光散射检测分析表明,一些转基因植物的青蒿素含量显着增加,最高值达到31.4 mg / g干重,是未转化对照植物中观察到的含量的3.14倍。实时逆转录-PCR分析表明,SQS的表达被显着抑制,GC-MS分析表明,固醇在转基因植物中得到有效降低。本研究表明,RNAi的基因工程策略是增加植物中青蒿素含量的有效手段。

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