Oh Bong Geun, Yoon Ju-Yeon, Ju Ho-Jong
Department of Agricultural Biology, Jeonbuk National University, Jeonju 54896, Korea.
Department of Plant Protection and Quarantine, Jeonbuk National University, Jeonju 54896, Korea.
Plant Pathol J. 2024 Aug;40(4):337-345. doi: 10.5423/PPJ.OA.02.2024.0027. Epub 2024 Aug 1.
Soybean (Glycine max L.) is one of the most widely planted and used legumes in the world, being used for food, animal feed products, and industrial production. The soybean mosaic virus (SMV) is the most prevalent virus infecting soybean plants. This study developed a diagnostic method for the rapid and sensitive detection of SMV using a reverse transcription-recombinase polymerase amplification (RT-RPA) technique combined with a lateral flow strip (LFS). The RT-RPA and RT-RPA-LFS conditions to detect the SMV were optimized using the selected primer set that amplified part of the VPg protein gene. The optimized reaction temperature for the RT-RPA primer and RT-RPA-LFS primer used in this study was 38℃ for both, and the minimum reaction time was 10 min and 5 min, respectively. The RT-RPA-LFS was as sensitive as RT-PCR to detect SMV with 10 pg/μl of total RNA. The reliability of the developed RT-RPA-LFS assay was evaluated using leaves collected from soybean fields. The RT-RPA-LFS diagnostic method developed in this study will be useful as a diagnostic method that can quickly and precisely detect SMV in the epidemiological investigation of SMV, in the selection process of SMV-resistant varieties, on local farms with limited resources.
大豆(Glycine max L.)是世界上种植和使用最广泛的豆类之一,可用于食品、动物饲料产品和工业生产。大豆花叶病毒(SMV)是感染大豆植株的最普遍病毒。本研究开发了一种诊断方法,利用逆转录重组酶聚合酶扩增(RT-RPA)技术结合侧向流动试纸条(LFS)对SMV进行快速灵敏检测。使用扩增部分VPg蛋白基因的选定引物对,对检测SMV的RT-RPA和RT-RPA-LFS条件进行了优化。本研究中使用的RT-RPA引物和RT-RPA-LFS引物的最佳反应温度均为38℃,最短反应时间分别为10分钟和5分钟。RT-RPA-LFS检测10 pg/μl总RNA的SMV时与RT-PCR一样灵敏。利用从大豆田采集的叶片评估了所开发的RT-RPA-LFS检测方法的可靠性。本研究开发的RT-RPA-LFS诊断方法作为一种能够在SMV的流行病学调查、SMV抗性品种的选育过程中,在资源有限的当地农场快速准确检测SMV的诊断方法将很有用。