Wildung Mark R, Croteau Rodney B
Institute of Biological Chemistry, Washington State University, Pullman, WA 99164-6340, USA.
Transgenic Res. 2005 Aug;14(4):365-72. doi: 10.1007/s11248-005-5475-2.
The biochemistry, organization, and regulation of essential oil metabolism in the epidermal oil glands of peppermint have been defined, and most of the genes encoding enzymes of the eight-step pathway to the principal monoterpene component (-)-menthol have been isolated. Using these tools for pathway engineering, two genes and two expression strategies have been employed to create transgenic peppermint plants with improved oil composition and yield. These experiments, along with related studies on other pathway genes, have led to a systematic, stepwise approach for the creation of a 'super' peppermint.
薄荷表皮油腺中精油代谢的生物化学、组织和调控已得到明确,并且编码通往主要单萜成分(-)-薄荷醇的八步途径中酶的大多数基因已被分离出来。利用这些用于途径工程的工具,已采用两个基因和两种表达策略来培育具有改善的油成分和产量的转基因薄荷植株。这些实验以及对其他途径基因的相关研究,已形成一种用于培育“超级”薄荷的系统、逐步的方法。