College of Life Sciences, Henan Normal University, Xinxiang 453007, Henan, China.
College of Life Sciences, Henan Normal University, Xinxiang 453007, Henan, China.
Fitoterapia. 2020 Apr;142:104495. doi: 10.1016/j.fitote.2020.104495. Epub 2020 Feb 8.
Acteoside is an important bioactive natural product distributed in many plant species, composed of four moieties such as caffeic acid, glucose, rhamnose and phenylethyl alcohol, and possesses some bioactivities such as anti-inflammatory, anti-oxidant, neuro-protective, anti-tumor and so on. However, acteoside content in medicinal plants is low, and acteoside stability is bad, so acteoside biosynthesis is a problem. Recent years, acteoside biosynthesis pathway elucidation and bio-production have been widely investigated, so many achievements have been made up to now. In this study, we reviewed current advances in both the elucidation and bio-production such as the putative methods and enzymatic determination of acteoside biosynthesis pathway, functional analyses of the roles of some candidate genes for verbascoside biosynthesis by transgenic technology, acteoside production via metabolic engineering and synthetic biology approaches and plant tissue culture. Moreover, we first established a combined putative acteoside biosynthesis pathway based on its recent studies in animals, plants and microbes. Meanwhile, we pointed out both problems to shortcomings, and highlighted its future development trend. These results will provide references for the complete elucidation of acteoside biosynthesis pathway and the improvement of acteoside content in medicinal plants and acteoside production via microbial and plant metabolic engineering and synthetic biology approaches, and inform the readers critically of the latest developments of them.
毛蕊花糖苷是一种分布于许多植物物种中的重要生物活性天然产物,由咖啡酸、葡萄糖、鼠李糖和苯乙醇四个部分组成,具有抗炎、抗氧化、神经保护、抗肿瘤等多种生物活性。然而,药用植物中的毛蕊花糖苷含量低,且毛蕊花糖苷稳定性差,因此毛蕊花糖苷的生物合成是一个问题。近年来,毛蕊花糖苷生物合成途径的阐明和生物生产已经得到了广泛的研究,迄今为止已经取得了许多成果。在本研究中,我们综述了毛蕊花糖苷生物合成途径的阐明和生物生产方面的最新进展,如毛蕊花糖苷生物合成途径的推测方法和酶学测定、通过转基因技术对毛蕊花糖苷生物合成候选基因功能的分析、通过代谢工程和合成生物学方法提高毛蕊花糖苷的产量以及植物组织培养。此外,我们首次根据其在动物、植物和微生物中的最新研究建立了一个组合的毛蕊花糖苷生物合成途径。同时,我们指出了存在的问题和不足之处,并强调了其未来的发展趋势。这些结果将为毛蕊花糖苷生物合成途径的完全阐明以及通过微生物和植物代谢工程和合成生物学方法提高药用植物中毛蕊花糖苷的含量和毛蕊花糖苷的生产提供参考,并为读者批判性地了解它们的最新发展提供信息。