Jiang Yin-Yin, Tang Ya-Nan, Tan Yu-Ping, Sun Shu-Fu, Guo Juan, Cui Guang-Hong, Tang Jin-Fu
State Key Laboratory for Quality Ensurance and Sustainable Use of Dao-di Herbs, National Resource Center for Chinese Materia Medica, China Academy of Chinese Medical Sciences Beijing 100700, China.
State Key Laboratory for Quality Ensurance and Sustainable Use of Dao-di Herbs, National Resource Center for Chinese Materia Medica, China Academy of Chinese Medical Sciences Beijing 100700, China Experimental Research Center, China Academy of Chinese Medical Sciences Beijing 100700, China.
Zhongguo Zhong Yao Za Zhi. 2025 Jun;50(12):3291-3296. doi: 10.19540/j.cnki.cjcmm.20250314.102.
Constructing an efficient and easy-to-operate multigene expression system is currently a crucial part of plant genetic engineering. In this study, a fragment carrying three independent gene expression cassettes and the expression unit of the gene-silencing suppressor protein(RNA silencing suppressor 19 kDa protein, P19) simultaneously was designed and constructed. This fragment was cloned into the commonly used plant expression vector pCAMBIA300, and the plasmid pC1300-TP2-P19 was obtained. Each gene expression cassette consists of different promoters, fusion tags, and terminators. The target gene can be flexibly inserted into the corresponding site through enzymatic digestion and ligation or recombination and fused with different protein tags, which provides great convenience for subsequent detection. The enhanced green fluorescent protein(eGFP) reporter gene was individually constructed into each expression cassette to verify the feasibility of this vector system. The results of tobacco transient expression and laser-confocal microscopy showed that each expression cassette presented independent and normal expression. Meanwhile, the three key enzyme genes in the betanin synthesis pathway, BvCYP76AD, BvDODA1, and DbDOPA5GT, were constructed into the three expression cassettes. The results of tobacco transient expression phenotype, protein immunoblotting(Western blot), and chemical detection of product demonstrated that the three exogenous genes were highly expressed, and the target compound betanin was successfully produced. The above results indicated that the constructed multigene expression system for plants in this study was efficient and reliable and can achieve the co-transformation of multiple plant genes. It can provide a reliable vector platform for the analysis of plant natural product synthesis pathways, functional verification, and plant metabolic engineering.
构建一个高效且易于操作的多基因表达系统是当前植物基因工程的关键部分。在本研究中,设计并构建了一个同时携带三个独立基因表达盒和基因沉默抑制蛋白(RNA沉默抑制因子19 kDa蛋白,P19)表达单元的片段。该片段被克隆到常用的植物表达载体pCAMBIA300中,获得了质粒pC1300 - TP2 - P19。每个基因表达盒由不同的启动子、融合标签和终止子组成。目标基因可通过酶切连接或重组灵活插入相应位点,并与不同的蛋白质标签融合,为后续检测提供了极大便利。将增强型绿色荧光蛋白(eGFP)报告基因分别构建到每个表达盒中,以验证该载体系统的可行性。烟草瞬时表达和激光共聚焦显微镜观察结果表明,每个表达盒均呈现独立且正常的表达。同时,将甜菜红素合成途径中的三个关键酶基因BvCYP76AD、BvDODA1和DbDOPA5GT构建到三个表达盒中。烟草瞬时表达表型、蛋白质免疫印迹(Western blot)和产物化学检测结果表明,三个外源基因均高表达,且成功产生了目标化合物甜菜红素。上述结果表明,本研究构建的植物多基因表达系统高效可靠,能够实现多个植物基因的共转化。它可为植物天然产物合成途径分析、功能验证及植物代谢工程提供可靠的载体平台。