Bioorganic Research Institute, Suntory Foundation for Life Sciences, Osaka 618-8503, Japan.
Department of Biology, Faculty of Basic Sciences, University of Zabol, Zabol, Iran.
Metabolites. 2015 May 4;5(2):270-90. doi: 10.3390/metabo5020270.
Lignans are structurally and functionally diverse phytochemicals biosynthesized in diverse plant species and have received wide attentions as leading compounds of novel drugs for tumor treatment and healthy diets to reduce of the risks of lifestyle-related non-communicable diseases. However, the lineage-specific distribution and the low-amount of production in natural plants, some of which are endangered species, hinder the efficient and stable production of beneficial lignans. Accordingly, the development of new procedures for lignan production is of keen interest. Recent marked advances in the molecular and functional characterization of lignan biosynthetic enzymes and endogenous and exogenous factors for lignan biosynthesis have suggested new methods for the metabolic engineering of lignan biosynthesis cascades leading to the efficient, sustainable, and stable lignan production in plants, including plant cell/organ cultures. Optimization of light conditions, utilization of a wide range of elicitor treatments, and construction of transiently gene-transfected or transgenic lignan-biosynthesizing plants are mainly being attempted. This review will present the basic and latest knowledge regarding metabolic engineering of lignans based on their biosynthetic pathways and biological activities, and the perspectives in lignan production via metabolic engineering.
木脂素是在多种植物物种中生物合成的结构和功能多样的植物化学物质,作为治疗肿瘤的新型药物和健康饮食的先导化合物,以降低与生活方式相关的非传染性疾病的风险,受到广泛关注。然而,由于某些木脂素在天然植物中的种系特异性分布和低产量,其中一些是濒危物种,这阻碍了有益木脂素的有效和稳定生产。因此,开发新的木脂素生产工艺具有重要意义。近年来,木脂素生物合成酶的分子和功能特征以及木脂素生物合成的内源性和外源性因素的研究取得了显著进展,为木脂素生物合成级联的代谢工程提供了新方法,从而可以在植物中实现高效、可持续和稳定的木脂素生产,包括植物细胞/器官培养。主要尝试优化光照条件、利用广泛的诱导剂处理以及构建瞬时转染基因或转基因木脂素合成植物。本文将基于木脂素的生物合成途径和生物活性,介绍木脂素代谢工程的基本知识和最新进展,并探讨通过代谢工程生产木脂素的前景。