| Literature DB >> 28550743 |
Alzahraa Radwan1, Maik Kleinwächter2, Dirk Selmar3.
Abstract
In previous experiments, we demonstrated that the amount of monoterpenes in sage is increased massively by drought stress. Our current study is aimed to elucidate whether this increase is due, at least in part, to elevated activity of the monoterpene synthases responsible for the biosynthesis of essential oils in sage. Accordingly, the transcription rates of the monoterpene synthases were analyzed. Salvia officinalis plants were cultivated under moderate drought stress. The concentrations of monoterpenes as well as the expression of the monoterpene synthases were analyzed. The amount of monoterpenes massively increased in response to drought stress; it doubled after just two days of drought stress. The observed changes in monoterpene content mostly match with the patterns of monoterpene synthase expressions. The expression of bornyl diphosphate synthase was strongly up-regulated; its maximum level was reached after two days. Sabinene synthase increased gradually and reached a maximum after two weeks. In contrast, the transcript level of cineole synthase continuously declined. This study revealed that the stress related increase of biosynthesis is not only due to a "passive" shift caused by the stress related over-reduced status, but also is due - at least in part-to an "active" up-regulation of the enzymes involved.Entities:
Keywords: Drought stress; Laminaceae; Monoterpene synthases; Sage; Salvia officinalis
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Year: 2017 PMID: 28550743 DOI: 10.1016/j.phytochem.2017.05.005
Source DB: PubMed Journal: Phytochemistry ISSN: 0031-9422 Impact factor: 4.072