Mani Vimalraj, Park Soyoung, Kim Jin A, Lee Soo In, Lee Kijong
Department of Agricultural Biotechnology, National Institute of Agricultural Sciences, Rural Development Administration, Jeonju 54874, Korea.
Plants (Basel). 2021 Oct 14;10(10):2179. doi: 10.3390/plants10102179.
Terpenoids represent one of the high-value groups of specialized metabolites with vast structural diversity. They exhibit versatile human benefits and have been successfully exploited in several sectors of day-to-day life applications, including cosmetics, foods, and pharmaceuticals. Historically, the potential use of terpenoids is challenging, and highly hampered by their bioavailability in their natural sources. Significant progress has been made in recent years to overcome such challenges by advancing the heterologous production platforms of hosts and metabolic engineering technologies. Herein, we summarize the latest developments associated with analytical platforms, metabolic engineering, and synthetic biology, with a focus on two terpenoid classes: monoterpenoids and sesquiterpenoids. Accumulated data showed that subcellular localization of both the precursor pool and the introduced enzymes were the crucial factors for increasing the production of targeted terpenoids in plants. We believe this timely review provides a glimpse of current state-of-the-art techniques/methodologies related to terpenoid engineering that would facilitate further improvements in terpenoids research.
萜类化合物是具有巨大结构多样性的高价值特殊代谢产物之一。它们对人类具有多种益处,并已成功应用于日常生活的多个领域,包括化妆品、食品和制药。从历史上看,萜类化合物的潜在用途具有挑战性,并且其在天然来源中的生物利用度严重阻碍了其应用。近年来,通过推进宿主的异源生产平台和代谢工程技术,在克服这些挑战方面取得了重大进展。在此,我们总结了与分析平台、代谢工程和合成生物学相关的最新进展,重点关注两类萜类化合物:单萜和倍半萜。积累的数据表明,前体库和引入酶的亚细胞定位是提高植物中目标萜类化合物产量的关键因素。我们相信,这篇及时的综述展示了与萜类工程相关的当前最先进技术/方法,将有助于萜类研究的进一步改进。