Seo Jang-Kyun, Lee Hyeok-Geun, Kim Kook-Hyung
Department of Agricultural Biotechnology, College of Agriculture and Life Sciences, Seoul National University, Seoul, South Korea.
Arch Virol. 2009;154(1):87-99. doi: 10.1007/s00705-008-0286-4. Epub 2008 Dec 19.
Plant virus-based vectors provide attractive and valuable tools for conventional transgenic technology and gene function studies in plants. In the present study, we established the infectivity of intact plasmid DNA of Soybean mosaic virus (SMV) cDNA upon simple rub-inoculation of soybean leaves by utilizing viral transcription and processing signals to produce infectious in vivo transcripts. Furthermore, we engineered this SMV cDNA clone as a gene delivery vector for systemic expression of foreign proteins in soybean. Using this SMV-based vector, several genes with different biological activities were successfully expressed and stably maintained following serial plant passage in soybean. Thus, DNA-mediated gene delivery using this SMV-based vector provides a rapid and cost-effective approach for the overproduction of valuable proteins and for the evaluation of new traits in soybean after simple rub-inoculation onto leaves.
基于植物病毒的载体为传统转基因技术和植物基因功能研究提供了有吸引力且有价值的工具。在本研究中,我们通过利用病毒转录和加工信号在体内产生感染性转录本,经简单摩擦接种大豆叶片,确立了大豆花叶病毒(SMV)cDNA完整质粒DNA的感染性。此外,我们将此SMV cDNA克隆构建成一种基因传递载体,用于在大豆中系统表达外源蛋白。利用这种基于SMV的载体,几个具有不同生物学活性的基因在大豆中连续传代后成功表达并稳定维持。因此,使用这种基于SMV的载体进行DNA介导的基因传递,为在简单摩擦接种到叶片后过量生产有价值的蛋白质以及评估大豆新性状提供了一种快速且经济高效的方法。