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首页> 外文期刊>Plant Science: An International Journal of Experimental Plant Biology >Cloning and functional analysis of three aphid alarm pheromone genes from German chamomile (Matricaria chamomilla L.)
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Cloning and functional analysis of three aphid alarm pheromone genes from German chamomile (Matricaria chamomilla L.)

机译:德国洋甘菊三蚜虫报警信息素基因的克隆与功能分析(Matricaria Chamomilla L.)

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摘要

German chamomile (Matricaria chamomilla L.) is one of the most ancient medicinal species in the world and terpenoids from their flowers have important medicinal value. We cloned three sesquiterpene synthase genes, McGDS1, McGDS2 and McGDS3, and performed sequence alignment and phylogenetic analysis. The encoded proteins possess three conserved structural features: an RRxxxxxxxxW motif, an RxR motif, and a DDxxD motif. McGDS1, McGDS2 and McGDS3 were confirmed to be (E)-farnesene synthase, germacrene D synthase, and germacrene A synthase, respectively. Subcellular localization revealed diffuse GFP reporter-gene signals in the cytoplasm and nucleus. qPCR indicated that McGDS1, McGDS2 and McGDS3, were more highly expressed in young flowers than in old flowers and the expression was highly correlated with amounts of the end-product essential oils ((E)-beta-farnesene, germacrene D and beta-elemene), with coefficients of 0.76, 0.83 and 0.68, respectively. We also established a transformation system for chamomile hairy roots. The overexpression of McGDS1, McGDS2 and McGDS3 resulted in gamma-muurolene accumulation in hairy roots. The activity of three aphid alarm pheromones here forms the molecular basis for the study of the biosynthesis and regulation of volatile terpenes. Transformation of chamomile hairy roots provides a simple system in which to study terpene biosynthesis in chamomile.
机译:德国洋甘菊(Matricaria Chamomilla L.)是世界上最古老的药用物种之一,鲜花的三萜类药具有重要的药用价值。我们克隆了三个倍二萜合酶基因,MCGDS1,MCGDS2和MCGDS3,并进行了序列取向和系统发育分析。编码的蛋白质具有三个保守的结构特征:RRXXXXXXXW主题,RXR主题和DDXXD主题。确认MCGDS1,MCGDS2和MCGDS3分别是(e) - 羟基合酶,Germacrene D合酶和Germac rene A合成酶。亚细胞定位揭示了细胞质和核中的扩散GFP报告基因信号。 QPCR表示MCGDS1,MCGDS2和MCGDS3比旧花朵更高度表达,而表达与最终产物精油的量高度相关((e)-beta-法呢烯,Germac rene d和β-榄烯),系数分别为0.76,0.83和0.68。我们还为洋甘菊长毛根制定了一种转型系统。 MCGDS1,MCGDS2和MCGDS3的过度表达导致毛状根中的γ-倍核积聚。这里的三个蚜虫报警信息素的活性形成了研究生物合成和挥发性萜烯的调节的分子基础。洋甘菊毛状根的转化提供了一种简单的系统,用于研究洋甘菊中的萜烯生物合成。

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