丹参
RNA干扰
迷迭香酸
MYB公司
基因沉默
基因
转录因子
转基因
化学
抑制因子
生物合成
生物化学
生物
核糖核酸
抗氧化剂
医学
病理
中医药
替代医学
作者
Qian Tian,Limin Han,Xiaoya Zhu,Caijuan Zhang,Yunyun Li,Xiaoshan Xue,Yueyue Wang,Donghao Wang,Junfeng Niu,Wenping Hua,Bin Li,Zhezhi Wang
出处
期刊:Metabolites
[MDPI AG]
日期:2022-10-12
卷期号:12 (10): 968-968
被引量:21
标识
DOI:10.3390/metabo12100968
摘要
Salvia miltiorrhiza Bunge is one of the most famous traditional Chinese medicinal plants. The two most important classes of pharmaceutically relevant compounds in S. miltiorrhiza are phenolic acids and tanshinones. The MYB family of transcription factors may efficiently regulate the secondary metabolism in plants. In this study, a subgroup 4 R2R3MYB transcription factor gene, SmMYB4, was isolated from S. miltiorrhiza and functionally characterized using overexpression and a RNAi-mediated silencing. We achieved a total of six overexpressions and eight RNAi transgenic lines from the Agrobacterium leaf disc method. The content of the total phenolics, rosmarinic acid, and salvianolic acid B markedly decreased in the SmMYB4-overexpressing lines but increased in the SmMYB4-RNAi lines. The content of the total tanshinones, cryptotanshinone, and tanshinone IIA decreased in the SmMYB4-overexpressing transgenic lines but increased in the SmMYB4-RNAi lines. A gene expression analysis demonstrated that SmMYB4 negatively regulated the transcription of the critical enzyme genes involved in the phenolic acid and tanshinone biosynthesis. The genetic control of this transcriptional repressor may be used to improve the content of these bioactive compounds in the cultivated S. miltiorrhiza.
科研通智能强力驱动
Strongly Powered by AbleSci AI