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Lignans of Sesame (Sesamum indicum L.): A Comprehensive Review

期刊

MOLECULES
卷 26, 期 4, 页码 -

出版社

MDPI
DOI: 10.3390/molecules26040883

关键词

sesame lignans; sesamin; sesamolin; sesamol; lignan biosynthesis; lignan glycosides; health-promoting properties; biological function; plant biotechnology

资金

  1. Alexander von Humboldt Foundation

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This article reviews the characteristics and transformation pathways of lignans in sesame, including their biosynthesis processes and effects in plants. Studies have found lignans to be beneficial for health, with properties that promote health and enhance the efficacy of insecticides, but the specific biological functions in plants still need further research.
Major lignans of sesame sesamin and sesamolin are benzodioxol--substituted furofurans. Sesamol, sesaminol, its epimers, and episesamin are transformation products found in processed products. Synthetic routes to all lignans are known but only sesamol is synthesized industrially. Biosynthesis of furofuran lignans begins with the dimerization of coniferyl alcohol, followed by the formation of dioxoles, oxidation, and glycosylation. Most genes of the lignan pathway in sesame have been identified but the inheritance of lignan content is poorly understood. Health-promoting properties make lignans attractive components of functional food. Lignans enhance the efficiency of insecticides and possess antifeedant activity, but their biological function in plants remains hypothetical. In this work, extensive literature including historical texts is reviewed, controversial issues are critically examined, and errors perpetuated in literature are corrected. The following aspects are covered: chemical properties and transformations of lignans; analysis, purification, and total synthesis; occurrence in Seseamum indicum and related plants; biosynthesis and genetics; biological activities; health-promoting properties; and biological functions. Finally, the improvement of lignan content in sesame seeds by breeding and biotechnology and the potential of hairy roots for manufacturing lignans in vitro are outlined.

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