Department of Plant Pathology, University of California, 95616, Davis, CA, USA.
World J Microbiol Biotechnol. 1992 Nov;8(6):638-44. doi: 10.1007/BF01238805.
A fusion gene usingluxA andluxB genes ofVibrio species has been designed to express light autonomously in plants.LuxA:luxB was introduced into plants by a high-efficiency transformation system consisting of a high-copy virulence helper plasmid pUCD2614 and T-vector pUCD2715 containingluxA:luxB. The expression ofluxA:luxB fusion gene was optimized by adjusting the spacing between the genes and by placing the translational efficiency of its mRNA under the control of the Ω-3 translational enhancer. The resulting transgenic plants synthesized luciferase at levels greater than 1% of the total leaf protein. These plants produced light autonomously and light intensity was enhanced by the addition of aldehyde. That theluxA:luxB fusion has been optimized enables its use as a reporter for gene activity in plants during development and under various stress-inducing conditions. These results show that a specific protein from an introduced foreign gene can be produced with high efficiency in cultivated plants and such a system is therefore amenable for production of desired proteins through conventional farming methods.
已经设计了一种融合基因,该基因使用了 Vibrio 属的 luxA 和 luxB 基因,能够在植物中自主表达光。将 LuxA:luxB 通过由高拷贝毒性辅助质粒 pUCD2614 和包含 luxA:luxB 的 T 载体 pUCD2715 组成的高效转化系统引入植物。通过调整基因之间的间隔并将其 mRNA 的翻译效率置于Ω-3 翻译增强子的控制下,优化了 luxA:luxB 融合基因的表达。所得的转基因植物合成的荧光素酶水平超过总叶蛋白的 1%。这些植物能够自主发光,并且通过添加醛可以增强光强度。优化 luxA:luxB 融合使其能够用作在植物发育过程中和在各种诱导应激条件下基因活性的报告基因。这些结果表明,可以在栽培植物中高效地产生来自引入的外源基因的特定蛋白质,因此该系统适合通过传统的农业方法生产所需的蛋白质。