Klaus Oliver, Hilgers Fabienne, Nakielski Andreas, Hasenklever Dennis, Jaeger Karl-Erich, Axmann Ilka M, Drepper Thomas
Institute of Molecular Enzyme Technology, Heinrich Heine University Düsseldorf, Forschungszentrum Jülich GmbH, 52428 Jülich, Germany.
Institute for Synthetic Microbiology, Heinrich Heine University Düsseldorf, 40225 Düsseldorf, Germany.
Curr Opin Biotechnol. 2022 Oct;77:102764. doi: 10.1016/j.copbio.2022.102764. Epub 2022 Aug 3.
With more than 80 000 compounds, terpenoids represent one of the largest classes of secondary metabolites naturally produced by various plants and other organisms. Owing to the tremendous structural diversity, they offer a wide range of properties relevant for biotechnological and pharmaceutical applications. In this context, heterologous terpenoid production in engineered microbial hosts represents an often cost-effective and eco-friendly way to make these valuable compounds industrially available. This review provides an overview of current strategies to employ and engineer oxygenic and anoxygenic phototrophic bacteria as alternative cell factories for sustainable terpenoid production. Besides terpenoid pathway engineering, the effects of different illumination strategies on terpenoid photoproduction are key elements in the latest studies.
萜类化合物有80000多种,是各种植物和其他生物天然产生的最大类次生代谢产物之一。由于其巨大的结构多样性,它们具有广泛的特性,与生物技术和制药应用相关。在这种背景下,在工程化微生物宿主中进行异源萜类化合物生产是一种通常具有成本效益且环保的方式,可使这些有价值的化合物实现工业化生产。本文综述了当前利用和改造产氧和不产氧光合细菌作为可持续萜类化合物生产的替代细胞工厂的策略。除了萜类化合物途径工程外,不同光照策略对萜类化合物光生产的影响是最新研究中的关键因素。