田间可部署逆转录组合酶聚合酶扩增(RT-RPA)检测玉米绿斑病毒(MCMV)

M. F., G. M., M. S., M. X., N. B., M. S. L.
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引用次数: 0

摘要

玉米致死性坏死(MLN)病毒的诊断是MLN监测项目和种子对玉米绿斑驳病毒(MCMV)零容忍度测试的关键。这对于农民田地和商业种子田的MLN管理至关重要。因此,一种特异性、敏感性、可负担和便携的定制MCMV检测方法对这项任务很重要。逆转录酶-重组酶聚合酶扩增(RT-RPA)符合上述条件。RPA是一种基于专利重组酶聚合酶扩增(RPA)技术的快速等温核酸扩增和检测平台。在本研究中,开发了一种用于检测MCMV的实时终点分析和现场可部署RT-RPA诊断方法。通过一系列引物组评估,设计、合成并测试了RPA引物组及其互补探针,以确定最有效的引物组。引物组定位于2765-2948bp的MCMV基因组(MCMV_gp2复制酶基因)。所评估的参数为该测定的灵敏度、特异性和再现性,结果显著。该试验区分了其他玉米感染病毒,因此对MCMV具有特异性。该方法只需20分钟,其检测限为10-4,与RT-PCR和其他基于分子的检测方法相当。MCMV也直接从叶片边角料中检测到,无需核酸提取步骤,因此适合于农场测试。RPA是一种相对便宜的技术,需要最少的仪器。因此,该检测方法适用于现场调查、植物检疫措施的常规MCMV检测和种子认证程序中的MCMV检测。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Field deployable Reverse TranscriptaseRecombinase Polymerase Amplification (RT-RPA) for detection of Maize chlorotic mottle virus (MCMV)
Diagnosis of maize lethal necrosis (MLN)-causing viruses is key in MLN surveillance programs and in testing seed for zero tolerance of Maize chlorotic mottle virus (MCMV) in seed lots. This is crucial for MLN management in farmers’ fields and in commercial seed fields. A customized MCMV detection assay that is specific, sensitive, affordable, and portable is therefore important for this task. Reverse Transcriptase – Recombinase Polymerase Amplification (RT-RPA) meets those conditions earlier described. RPA is a rapid isothermal nucleic acid amplification and detection platform that is based on patented Recombinase Polymerase Amplification (RPA) technology. In this study, a real time endpoint analysis and field deployable RT-RPA diagnostic method for the detection of MCMV was developed. RPA primer sets with their complementary probes were designed, synthesized and tested through a series of primer set evaluations to determine the most efficient primer sets. The primer sets targeted the MCMV genome at position 2765-2948 bp (MCMV_gp2 replicase gene). The parameters evaluated were sensitivity, specificity and reproducibility for the assay with remarkable results. The assay discriminated against other maize infecting viruses hence specific to MCMV. The assay takes only 20 min and its detection limit of 10 -4 is well comparable to RT-PCR and other molecular based detection assays. MCMV was also detected directly from leaf saps without the nucleic acid extraction step hence suitable for on-farm testing. RPA is a relatively inexpensive technique that requires minimal instrumentation. This assay is therefore suitable for the detection of MCMV in field surveys, routine MCMV testing for phytosanitary measures and in the seed certification procedures.
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