Johansen L K, Carrington J C
Institute of Biological Chemistry, Washington State University, Pullman, Washington 99164-6340, USA.
Plant Physiol. 2001 Jul;126(3):930-8. doi: 10.1104/pp.126.3.930.
The Agrobacterium-mediated transient expression assay in intact tissues has emerged as a rapid and useful method to analyze genes and gene products in plants. In many cases, high levels of active protein can be produced without the need to produce transgenic plants. In this study, a series of tools were developed to enable strong or weak induction of RNA silencing and to suppress RNA silencing in the absence of stable transgenes. Transient delivery of a gene directing production of a double-stranded green fluorescent protein (GFP) transcript rapidly induced RNA silencing of a codelivered GFP reporter gene, effectively preventing accumulation of GFP protein and mRNA. RNA silencing triggered by the strong dsGFP inducer was partially inhibited by the tobacco etch virus silencing suppressor, P1/HC-Pro. In the absence of the strong double-stranded GFP inducer, the functional GFP gene served as a weak RNA silencing inducer in the transient assay, severely limiting accumulation of the GFP mRNA over time. The weak silencing induced by the GFP gene was suppressed by P1/HC-Pro. These results indicate RNA silencing can be triggered by a variety of inducers and analyzed entirely using transient gene delivery systems. They also indicate that RNA silencing may be a significant limitation to expression of genes in the Agrobacterium-mediated transient assay but that this limitation can be overcome by using RNA silencing suppressors.
农杆菌介导的完整组织瞬时表达分析已成为一种快速且有用的方法,用于分析植物中的基因和基因产物。在许多情况下,无需生成转基因植物就能产生高水平的活性蛋白。在本研究中,开发了一系列工具,以实现RNA沉默的强诱导或弱诱导,并在不存在稳定转基因的情况下抑制RNA沉默。瞬时递送一个指导产生双链绿色荧光蛋白(GFP)转录本的基因,迅速诱导了共递送的GFP报告基因的RNA沉默,有效阻止了GFP蛋白和mRNA的积累。由强dsGFP诱导剂引发的RNA沉默被烟草蚀纹病毒沉默抑制子P1/HC-Pro部分抑制。在不存在强双链GFP诱导剂的情况下,功能性GFP基因在瞬时分析中作为弱RNA沉默诱导剂,随着时间的推移严重限制了GFP mRNA的积累。由GFP基因诱导的弱沉默被P1/HC-Pro抑制。这些结果表明,RNA沉默可由多种诱导剂触发,并可完全使用瞬时基因递送系统进行分析。它们还表明,RNA沉默可能是农杆菌介导的瞬时分析中基因表达的一个重大限制,但通过使用RNA沉默抑制子可以克服这一限制。