Ganjewala Deepak, Luthra Rajesh
School of Biosciences and Technology, Vellore Institute of Technology (VIT) University, Vellore-632 014, (T.N.) India.
Nat Prod Commun. 2010 Jan;5(1):163-72.
Essential oils distilled from Cymbopogon species are of immense commercial value as flavors and fragrances in the perfumery, cosmetics, soaps, and detergents and in pharmaceutical industries. Two major constituents of the essential oil, geraniol and citral, due to their specific rose and lemon like aromas are widely used as flavors, fragrances and cosmetics. Citral is also used for the synthesis of vitamin A and ionones (for example, beta-ionone, methyl ionone). Moreover, Cymbopogon essential oils and constituents possess many useful biological activities including cytotoxic, anti-inflammatory and antioxidant. Despite the immense commercial and biological significance of the Cymbopogon essential oils, little is known about their biosynthesis and regulatory mechanisms. So far it is known that essential oils are biosynthesized via the classical acetate-MVA route and existence of a newly discovered MEP pathway in Cymbopogon remains as a topic for investigation. The aim of the present review is to discuss the biosynthesis and regulation of essential oils in the genus Cymbopogon with given emphasis to two elite members, lemongrass (C. flexuosus Nees ex Steud) and palmarosa (C. martinii Roxb.). This article highlights the work done so far towards understanding of essential oil biosynthesis and regulation in the genus Cymbopogon. Also, based on our experiences with Cymbopogon species, we would like to propose C. flexuosus as a model system for the study of essential oil metabolism beyond the much studied plant family Lamiaceae.
从香茅属植物中提取的精油在香料、化妆品、肥皂、洗涤剂以及制药行业中作为香料和香精具有巨大的商业价值。精油的两种主要成分香叶醇和柠檬醛,因其独特的玫瑰和柠檬般香气,被广泛用作香料、香精和化妆品原料。柠檬醛还用于合成维生素A和紫罗兰酮(例如,β-紫罗兰酮、甲基紫罗兰酮)。此外,香茅属植物精油及其成分具有许多有益的生物活性,包括细胞毒性、抗炎和抗氧化作用。尽管香茅属植物精油具有巨大的商业和生物学意义,但人们对其生物合成和调控机制知之甚少。到目前为止,已知精油是通过经典的乙酸-MVA途径生物合成的,而香茅属植物中一条新发现的MEP途径的存在仍是一个有待研究的课题。本综述的目的是讨论香茅属植物精油的生物合成和调控,重点关注两个优良品种,柠檬草(C. flexuosus Nees ex Steud)和玫瑰天竺葵(C. martinii Roxb.)。本文强调了迄今为止在理解香茅属植物精油生物合成和调控方面所做的工作。此外,基于我们对香茅属植物的研究经验,我们建议将柠檬草作为研究精油代谢的模型系统,以超越对研究较多的唇形科植物的研究。