D'Alençon-Rozzi Triana, Mora-Figueroa Patricio, González-Calquín Christian, Stange Klein Claudia
Centro de Biología Molecular Vegetal, Departamento de Biología, Facultad de Ciencias, Universidad de Chile, Santiago, Chile.
Department of Biology, University of Chile, Santiago, Chile.
Methods Mol Biol. 2025;2911:37-43. doi: 10.1007/978-1-0716-4450-8_5.
Transient plant tissue transformation in Nicotiana tabacum is a valuable technique in molecular biology applications. N. tabacum is highly susceptible to transformation and sustains significant levels of heterologous gene expression. The infiltration process includes an initial phase of T-DNA expression without integration into the genome that can be used for different purposes such as gene expression analysis, quantification of protein accumulation, and metabolite production.To overcome the limitations of conventional infiltration methods, a vacuum infiltration protocol for young N. tabacum plants was developed, allowing simultaneous infiltration of multiple plants. Here, we show the application of the transient agroinfiltration method using the 35S:RUBY plasmid, encoding a biosynthetic pathway for the red-purple betalain pigment to facilitate the visualization of the transformed tissue over time.
烟草中的瞬时植物组织转化是分子生物学应用中的一项重要技术。烟草对转化高度敏感,并能维持较高水平的异源基因表达。浸润过程包括T-DNA表达的初始阶段,此时T-DNA尚未整合到基因组中,可用于不同目的,如基因表达分析、蛋白质积累定量和代谢产物生产。为克服传统浸润方法的局限性,开发了一种针对烟草幼苗的真空浸润方案,可同时浸润多株植物。在此,我们展示了使用35S:RUBY质粒的瞬时农杆菌浸润方法的应用,该质粒编码红紫色甜菜红素色素的生物合成途径,以便随时间观察转化组织。