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基于SYBR(®) Green的实时定量逆转录PCR用于检测和鉴别葡萄病毒。

SYBR(®) Green-based real-time quantitative reverse-transcription PCR for detection and discrimination of grapevine viruses.

作者信息

Poojari Sudarsana, Alabi Olufemi J, Okubara Patricia A, Naidu Rayapati A

机构信息

Department of Plant Pathology, Washington State University, Irrigated Agriculture Research and Extension Center, Prosser, WA, USA; Agriculture and Agri-Food Canada, Summerland Research and Development Centre, Summerland, British Columbia V0H 1Z0, Canada.

Department of Plant Pathology, Washington State University, Irrigated Agriculture Research and Extension Center, Prosser, WA, USA; Department of Plant Pathology & Microbiology, Texas A&M AgriLife Research & Extension Center, 2401 East Highway 83, Weslaco, TX, USA.

出版信息

J Virol Methods. 2016 Sep;235:112-118. doi: 10.1016/j.jviromet.2016.05.013. Epub 2016 May 28.

Abstract

A SYBR(®) Green-based real-time quantitative reverse transcription PCR (qRT-PCR) assay in combination with melt-curve analysis (MCA) was optimized for the detection of nine grapevine viruses. The detection limits for simplex qRT-PCR for all nine grapevine viruses were estimated to be in the range of 214-1112 copies of the virus genome. Amplicons with melting temperatures (Tm) separated by at least 2°C in the MCA could differentiate two viruses in the same reaction. Therefore, eight of the nine viruses could be co-diagnosed in five different combinations of duplex assays. Of 305 grape leaf samples from the field or greenhouse, 162 were positive for at least one of the nine grapevine viruses using the duplex qRT-PCR assays. In contrast, only 127 samples were positive using endpoint RT-PCR and PCR assays, indicating the enhanced sensitivity of duplex real-time PCR. In addition, the duplex qRT-PCR assays were be used to detect Grapevine leafroll associated virus 3 (GLRaV-3) in its vector, the grape mealybug (Pseudococcus maritimus Ehrhorn), and Grapevine red blotch-associated virus (GRBaV) in Virginia creeper leafhopper (Erythroneura ziczac Walsh). The simplex and duplex real-time PCR assays developed in this study can be used to examine transmission of co-occruing viruses by insect vectors as well as for rapid and sensitive detection of viruses in infected grapevines.

摘要

优化了一种基于SYBR(®) Green的实时定量逆转录PCR(qRT-PCR)检测方法,并结合熔解曲线分析(MCA)来检测9种葡萄病毒。估计所有9种葡萄病毒的单重qRT-PCR检测限在病毒基因组214 - 1112个拷贝范围内。在MCA中熔解温度(Tm)相差至少2°C的扩增子可在同一反应中区分两种病毒。因此,9种病毒中的8种可通过5种不同的双重检测组合进行联合诊断。在305份来自田间或温室的葡萄叶片样本中,使用双重qRT-PCR检测方法,162份样本至少对9种葡萄病毒中的一种呈阳性。相比之下,使用终点RT-PCR和PCR检测方法时只有127份样本呈阳性,这表明双重实时PCR的灵敏度更高。此外,双重qRT-PCR检测方法还用于检测其传播介体葡萄粉蚧(Pseudococcus maritimus Ehrhorn)中的葡萄卷叶相关病毒3(GLRaV-3)以及五叶地锦叶蝉(Erythroneura ziczac Walsh)中的葡萄红斑点相关病毒(GRBaV)。本研究中开发的单重和双重实时PCR检测方法可用于检测昆虫介体传播的共现病毒,以及快速灵敏地检测受感染葡萄中的病毒。

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