异源的
代谢工程
化学
转基因
生物化学
异源表达
老茧
底盘
代谢途径
酶
转基因作物
生物合成
人参皂甙
生物反应器
细胞培养
农杆菌
生物
生物技术
代谢活性
基因工程
人参
作者
Linggai Cao,Xuemeng Li,Shanshan Lang,Yan Chen,Ping Dong,Jie Zhang,Jie Liu,Jie Liu,Pan Zhang,Shizhou Yu,Jianfeng Zhang,Jianfeng Zhang
标识
DOI:10.3389/fpls.2026.1884201
摘要
Abstract Rare ginsenosides, such as compound K (CK) and Rh2, possess potent pharmacological activities but are present at extremely low levels in natural Panax ginseng . Here, we report the successful heterologous biosynthesis of CK and Rh2 in tobacco ( Nicotiana benthamiana and N. tabacum K326) through metabolic engineering. Three pivotal genes— DDS , CYP716A47 , and either UGTPg1 or UGTPg45 —were introduced into tobacco using a multi-gene overexpression construct. Transgenic lines were generated and screened, and ginsenoside accumulation was quantified via LC–MS. N. benthamiana exhibited superior CK production, reaching up to 47.87 µg/g DW in roots, whereas K326 showed higher Rh2 accumulation, up to 8.11 µg/g DW in roots. Across both species, roots consistently contained greater ginsenoside levels than leaves. Topping significantly enhanced yield, and callus cultures demonstrated the potential for scalable in vitro production. These results establish tobacco as a robust plant chassis for the heterologous production of rare ginsenosides.
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