Zhang Chunquan, Yang Chunling, Whitham Steven A, Hill John H
Department of Plant Pathology, Iowa State University, Ames, IA 50011, USA.
Mol Plant Microbe Interact. 2009 Feb;22(2):123-31. doi: 10.1094/MPMI-22-2-0123.
Virus-induced gene silencing (VIGS) is increasingly being used as a reverse genetics tool to study functions of specific plant genes. It is especially useful for plants, such as soybean, that are recalcitrant to transformation. Previously, Bean pod mottle virus (BPMV) was shown to be an effective VIGS vector for soybean. However, the reported BPMV vector requires in vitro RNA transcription and inoculation, which is not reliable or amenable to high-throughput applications. To increase the efficiency of the BPMV vector for soybean functional genomics, a DNA-based version was developed. Reported here is the construction of a Cauliflower mosaic virus 35S promoter-driven BPMV vector that is efficient for the study of soybean gene function. The selection of a mild rather than a severe BPMV strain greatly reduced the symptom interference caused by virus infection. The DNA-based BPMV vector was used to silence soybean homologues of genes involved in plant defense, translation, and the cytoskeleton in shoots and in roots. VIGS of the Actin gene resulted in reduced numbers of Soybean mosaic virus infection foci. The results demonstrate the utility of this new vector as an efficient tool for a wide range of applications for soybean functional genomics.
病毒诱导的基因沉默(VIGS)正越来越多地被用作一种反向遗传学工具,以研究特定植物基因的功能。它对于像大豆这样难以转化的植物尤其有用。此前,菜豆荚斑驳病毒(BPMV)被证明是一种有效的大豆VIGS载体。然而,报道的BPMV载体需要体外RNA转录和接种,这既不可靠也不适合高通量应用。为了提高BPMV载体用于大豆功能基因组学研究的效率,开发了一种基于DNA的版本。本文报道了一种由花椰菜花叶病毒35S启动子驱动的BPMV载体的构建,该载体对于研究大豆基因功能非常有效。选择温和而非严重的BPMV株系大大减少了病毒感染引起的症状干扰。基于DNA的BPMV载体被用于沉默参与植物防御、翻译以及地上部和根部细胞骨架的大豆同源基因。肌动蛋白基因的VIGS导致大豆花叶病毒感染位点数量减少。结果证明了这种新载体作为一种高效工具在大豆功能基因组学广泛应用中的实用性。