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首页> 外文期刊>Plant Biotechnology Journal >Up?¢????regulation of an N?¢????terminal truncated 3?¢????hydroxy?¢????3?¢????methylglutaryl CoA reductase enhances production of essential oils and sterols in transgenic Lavandula latifolia
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Up?¢????regulation of an N?¢????terminal truncated 3?¢????hydroxy?¢????3?¢????methylglutaryl CoA reductase enhances production of essential oils and sterols in transgenic Lavandula latifolia

机译:N端端截短的3′端羟基3′′3′′甲基戊二酰辅酶A CoA还原酶的上调作用增强了精油和甾醇的产生。转基因薰衣草

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摘要

Spike lavender ( Lavandula latifolia ) essential oil is widely used in the perfume, cosmetic, flavouring and pharmaceutical industries. Thus, modifications of yield and composition of this essential oil by genetic engineering should have important scientific and commercial applications. We generated transgenic spike lavender plants expressing the Arabidopsis thaliana HMG1 cDNA, encoding the catalytic domain of 3?¢????hydroxy?¢????3?¢????methylglutaryl CoA reductase (HMGR1S), a key enzyme of the mevalonic acid (MVA) pathway. Transgenic T 0 plants accumulated significantly more essential oil constituents as compared to controls (up to 2.1?¢???? and 1.8?¢????fold in leaves and flowers, respectively). Enhanced expression of HMGR1S also increased the amount of the end?¢????product sterols, ???2?¢????sitosterol and stigmasterol (average differences of 1.8?¢???? and 1.9?¢????fold, respectively), but did not affect the accumulation of carotenoids or chlorophylls. We also analysed T 1 plants derived from self?¢????pollinated seeds of T 0 lines that flowered after growing for 2????years in the greenhouse. The increased levels of essential oil and sterols observed in the transgenic T 0 plants were maintained in the progeny that inherited the HMG1 transgene. Our results demonstrate that genetic manipulation of the MVA pathway increases essential oil yield in spike lavender, suggesting a contribution for this cytosolic pathway to monoterpene and sesquiterpene biosynthesis in leaves and flowers of the species.
机译:穗薰衣草(Lavandula latifolia)精油被广泛用于香水,化妆品,调味品和制药行业。因此,通过基因工程修饰该精油的产率和组成应具有重要的科学和商业应用。我们生成了表达拟南芥HMG1 cDNA的转基因穗状薰衣草植物,该植物编码3'???????羟基???????? 3 ???????甲基戊二酰辅酶A还原酶(HMGR1S)的催化结构域。甲羟戊酸(MVA)途径。与对照相比,转基因的T 0植物积聚了更多的精油成分(分别在叶和花中折叠多达2.1倍和1.8倍)。 HMGR1S的表达增强也增加了最终产物固醇,2-固醇和豆甾醇的含量(平均差为1.8和1.9)。分别是多少倍?),但不影响类胡萝卜素或叶绿素的积累。我们还分析了在温室中生长2年后开花的T 0系自花授粉种子的T 1植物。在继承了HMG1转基因的后代中,转基因T 0植物中观察到的香精油和甾醇含量增加。我们的研究结果表明,对MVA途径的遗传操作可提高穗状薰衣草的精油产量,这表明该细胞溶质途径有助于该物种叶片和花朵中单萜和倍半萜生物合成。

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