Advanced Laboratory for Plant Genetic Engineering, Indian Institute of Technology, Kharagpur, 721302, India.
Plant Mol Biol. 2014 Nov;86(4-5):351-65. doi: 10.1007/s11103-014-0233-6. Epub 2014 Aug 20.
The sesame 2S albumin (2Salb) promoter was evaluated for its capacity to express the reporter gusA gene encoding β-glucuronidase in transgenic tobacco seeds relative to the soybean fad3C gene promoter element. Results revealed increased expression of gusA gene in tobacco seed tissue when driven by sesame 2S albumin promoter. Prediction based deletion analysis of both the promoter elements confirmed the necessary cis-acting regulatory elements as well as the minimal promoter element for optimal expression in each case. The results also revealed that cis-regulatory elements might have been responsible for high level expression as well as spatio-temporal regulation of the sesame 2S albumin promoter. Transgenic over-expression of a fatty acid desaturase (fad3C) gene of soybean driven by 2S albumin promoter resulted in seed-specific enhanced level of α-linolenic acid in sesame. The present study, for the first time helped to identify that the sesame 2S albumin promoter is a promising endogenous genetic element in genetic engineering approaches requiring spatio-temporal regulation of gene(s) of interest in sesame and can also be useful as a heterologous genetic element in other important oil seed crop plants in general for which seed oil is the harvested product. The study also established the feasibility of fatty acid metabolic engineering strategy undertaken to improve quality of edible seed oil in sesame using the 2S albumin promoter as regulatory element.
芝麻 2S 白蛋白(2Salb)启动子被评估为在转基因烟草种子中相对于大豆 fad3C 基因启动子元件表达报告基因 gusA 的能力。结果表明,芝麻 2S 白蛋白启动子驱动时,gusA 基因在烟草种子组织中的表达增加。对两个启动子元件的基于预测的缺失分析证实了必要的顺式作用调节元件以及每种情况下最佳表达的最小启动子元件。结果还表明,顺式调节元件可能负责高水平表达以及芝麻 2S 白蛋白启动子的时空调节。由 2S 白蛋白启动子驱动的大豆脂肪酸去饱和酶(fad3C)基因的转基因过表达导致芝麻中 α-亚麻酸的种子特异性增强水平。本研究首次有助于确定芝麻 2S 白蛋白启动子是在芝麻中时空调节感兴趣基因(s)的基因工程方法中很有前途的内源性遗传元件,并且通常也可以用作其他重要油籽作物植物的异源遗传元件,因为种子油是收获的产品。该研究还确立了使用 2S 白蛋白启动子作为调节元件,采用脂肪酸代谢工程策略来改善芝麻食用种子油质量的可行性。