Ministry of Agriculture Key Laboratory of Biology and Genetic Resources of Rubber Tree/State Key Laboratory Breeding Base of Cultivation and Physiology for Tropical Crops, Rubber Research Institute, Chinese Academy of Tropical Agricultural Sciences, Haikou, 571101, Hainan, People's Republic of China; Key Laboratory of Combinatorial Biosynthesis and Drug Discovery, Ministry of Education, Wuhan University School of Pharmaceutical Sciences, Wuhan, 430071, Hubei, People's Republic of China; Wuhan Institute of Biotechnology, Wuhan, 470074, Hubei, People's Republic of China.
Key Laboratory of Combinatorial Biosynthesis and Drug Discovery, Ministry of Education, Wuhan University School of Pharmaceutical Sciences, Wuhan, 430071, Hubei, People's Republic of China; Wuhan Drug Solubilization and Delivery Technology Research Center, Wuhan Vocational College of Software and Engineering, Wuhan, 430205, Hubei, People's Republic of China.
Metab Eng. 2022 Jan;69:122-133. doi: 10.1016/j.ymben.2021.11.005. Epub 2021 Nov 12.
Plant-derived natural active products have attracted increasing attention for use in flavors and perfumes. These compounds also have applications in insect pest control because of their environment-friendly properties. Holy basil (Ocimum sanctum), a famous herb used in Ayurveda in India, is a natural source of medical healing agents and insecticidal repellents. Despite the available genomic sequences and genome-wide bioinformatic analysis of terpene synthase genes, the functionality of the sesquiterpene genes involved in the unique fragrance and insecticidal activities of Holy basil are largely unknown. In this study, we systematically screened the sesquiterpenoid biosynthesis genes in this plant using a precursor-providing yeast system. The enzymes that synthesize β-caryophyllene and its close isomer α-humulene were successfully identified. The enzymatic product of OsaTPS07 was characterized by in vivo mining, in vitro reaction, and NMR detection. This product was revealed as (-)-eremophilene. We created a mutant yeast strain that can achieve a high-yield titer by adjusting the gene copy number and FPP precursor enhancement. An optimized two-stage fed-batch fermentation method achieved high biosynthetic capacity, with a titer of 34.6 g/L cyclic sesquiterpene bioproduction in a 15-L bioreactor. Further insect-repelling assays demonstrated that (-)-eremophilene repelled the insect pest, fall leafworm, suggesting the potential of (-)-eremophilene as an alternative to synthetic chemicals for agricultural pest control. This study highlights the potential of our microbial platform for the bulk mining of plant-derived ingredients and provides an impressive cornerstone for their industrial utilization.
植物源天然活性产物因其环境友好的特性,在香料和香精领域受到越来越多的关注。这些化合物也可用于防治害虫。印度阿育吠陀医学中使用的著名草药圣罗勒(Ocimum sanctum)是医学治疗剂和驱虫剂的天然来源。尽管萜烯合酶基因已有可用的基因组序列和全基因组生物信息学分析,但涉及圣罗勒独特香气和杀虫活性的倍半萜基因的功能在很大程度上仍是未知的。在这项研究中,我们使用提供前体的酵母系统系统地筛选了这种植物中的倍半萜生物合成基因。成功鉴定了合成β-石竹烯及其近缘异构体α-葎草烯的酶。通过体内挖掘、体外反应和 NMR 检测对 OsaTPS07 的酶产物进行了表征。该产物被鉴定为(-)-异菖蒲烯。我们构建了一个可以通过调整基因拷贝数和 FPP 前体增强来实现高产滴度的突变酵母菌株。优化的两阶段补料分批发酵方法实现了高生物合成能力,在 15-L 生物反应器中实现了 34.6 g/L 环状倍半萜生物产量。进一步的驱虫试验表明,(-)-异菖蒲烯能驱赶鳞翅目害虫,表明(-)-异菖蒲烯有潜力替代合成化学品用于农业害虫防治。本研究强调了我们的微生物平台用于大规模挖掘植物源成分的潜力,并为其工业利用提供了令人印象深刻的基石。