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利用逆转录重组酶聚合酶扩增的等温AmplifyRP(®)技术对李属植物中的李痘病毒进行快速诊断检测。

Rapid diagnostic detection of plum pox virus in Prunus plants by isothermal AmplifyRP(®) using reverse transcription-recombinase polymerase amplification.

作者信息

Zhang Shulu, Ravelonandro Michel, Russell Paul, McOwen Nathan, Briard Pascal, Bohannon Seven, Vrient Albert

机构信息

Agdia Inc., 52642 County Road 1, Elkhart, IN 46514, USA.

UMR-1332, Biologie du Fruit et Pathologie, Virologie, INRA-Bordeaux, BP-81, CS20032, Villenave d'Ornon 33882, France.

出版信息

J Virol Methods. 2014 Oct;207:114-20. doi: 10.1016/j.jviromet.2014.06.026. Epub 2014 Jul 7.

Abstract

Plum pox virus (PPV) causes the most destructive viral disease known as plum pox or Sharka disease in stone fruit trees. As an important regulated pathogen, detection of PPV is thus of critical importance to quarantine and eradication of the spreading disease. In this study, the innovative development of two AmplifyRP(®) tests is reported for a rapid isothermal detection of PPV using reverse transcription-recombinase polymerase amplification. In an AmplifyRP(®) test, all specific recombination and amplification reactions occur at a constant temperature without thermal cycling and the test results are either recorded in real-time with a portable fluorescence reader or displayed using a lateral flow strip contained inside an amplicon detection chamber. The major improvement of this assay is that the entire test from sample preparation to result can be completed in as little as 20min and can be performed easily both in laboratories and in the field. The results from this study demonstrated the ability of the AmplifyRP(®) technique to detect all nine PPV strains (An, C, CR, D, EA, M, Rec, T, or W). Among the economic benefits to pathogen surveys is the higher sensitivity of the AmplifyRP(®) to detect PPV when compared to the conventional ELISA and ImmunoStrip(®) assays. This is the first report describing the use of such an innovative technique to detect rapidly plant viruses affecting perennial crops.

摘要

李痘病毒(PPV)在核果类果树中引发了最具破坏性的病毒性疾病,即李痘病或沙卡病。作为一种重要的管制病原体,PPV的检测对于检疫和根除这种传播性疾病至关重要。在本研究中,报告了两种AmplifyRP(®)检测方法的创新性开发,用于利用逆转录-重组酶聚合酶扩增技术对PPV进行快速等温检测。在AmplifyRP(®)检测中,所有特异性重组和扩增反应均在恒温下进行,无需热循环,检测结果可使用便携式荧光读数器实时记录,或通过扩增子检测室内的侧向流动试纸条显示。该检测方法的主要改进之处在于,从样品制备到得出结果的整个检测过程最短只需20分钟,且在实验室和现场都能轻松进行。本研究结果证明了AmplifyRP(®)技术能够检测所有九种PPV毒株(An、C、CRn、D、EA、M、Rec、T或W)。与传统的酶联免疫吸附测定(ELISA)和免疫试纸条(ImmunoStrip(®))检测相比而言,AmplifyRP(®)在病原体检测方面具有更高的灵敏度,这是病原体检测调查的经济效益之一。这是第一份描述使用这种创新技术快速检测影响多年生作物的植物病毒的报告。

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