首页> 外文期刊>Planta medica: Natural products and medicinal plant research >Artemisinin biosynthesis enhancement in transgenic Artemisia annua plants by downregulation of the beta-caryophyllene synthase gene.
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Artemisinin biosynthesis enhancement in transgenic Artemisia annua plants by downregulation of the beta-caryophyllene synthase gene.

机译:通过下调β-石竹烯合酶基因,增强转基因青蒿植物中青蒿素的生物合成。

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摘要

Artemisinin is an effective antimalarial drug isolated from the medicinal plant Artemisia annua L. Due to its increasing market demand and the low yield in A. annua, there is a great interest in increasing its production. In this paper, in an attempt to increase artemisinin content of A. ANNUA by suppressing the expression of beta-caryophyllene synthase, a sesquiterpene synthase competing as a precursor of artemisinin, the antisense fragment (750 bp) of beta-caryophyllene synthase cDNA was inserted into the plant expression vector pBI121 and introduced into A. annua by Agrobacterium-mediated transformation. PCR and Southern hybridization confirmed the stable integration of multiple copies of the transgene in 5 different transgenic lines of A. annua. Reverse transcription PCR showed that the expression of endogenous CPS in the transgenic lines was significantly lower than that in the wild-type control A. annua plants, and beta-caryophyllene content decreased sharply in the transgenic lines in comparison to the control. The artemisinin content of one of the transgenic lines showed an increase of 54.9 % compared with the wild-type control. The present study demonstrated that the inhibition pathway in the precursor competition for artemisinin biosynthesis by anti-sense technology is an effective means of increasing the artemisinin content of A. annua plants.
机译:青蒿素是一种从药用植物青蒿(Artemisia annua L)分离的有效抗疟药。由于其市场需求的增加和青蒿的低收率,人们对提高其产量有着极大的兴趣。在本文中,为了通过抑制β-叶绿素合酶(一种倍半萜烯合酶竞争作为青蒿素的前体)的表达来增加A. ANNUA的青蒿素含量,插入了β-叶绿素合酶cDNA的反义片段(750 bp)将其导入植物表达载体pBI121中,并通过农杆菌介导的转化引入到农杆菌中。 PCR和Southern杂交证实了转基因的多个拷贝在青蒿的5个不同转基因系中的稳定整合。逆转录PCR显示,转基因品系中内源CPS的表达显着低于野生对照A.annua植物中的表达,并且与对照相比,转基因品系中β-叶绿素的含量急剧下降。与野生型对照相比,一种转基因品系的青蒿素含量显示增加了54.9%。本研究表明,通过反义技术抑制青蒿素生物合成前体竞争的抑制途径是提高青蒿植物青蒿素含量的有效手段。

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