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一组用于特异性检测三种属于苹果增殖群的植原体的实时 PCR 检测方法。

A panel of real-time PCR assays for specific detection of three phytoplasmas from the apple proliferation group.

机构信息

National Institute of Biology, Vecna pot 111, SI-1000 Ljubljana, Slovenia.

出版信息

Mol Cell Probes. 2010 Oct;24(5):303-9. doi: 10.1016/j.mcp.2010.06.005. Epub 2010 Jul 1.

Abstract

We report here on the development of combination of assays for fast, reliable, specific and sensitive detection and discrimination of 'Candidatus Phytoplasma mali', 'Ca. P. prunorum' and 'Ca. P. pyri' from the 16Sr-X (apple proliferation - AP) group. These phytoplasmas are causal agents of diseases of fruit trees within the family Rosaceae, namely apple proliferation (AP), European stone fruit yellows (ESFY) and pear decline (PD). The designed panel of assays uses TaqMan minor groove binder probes (MGB). It comprises the same set of primers and specific probes for species-specific amplification within the 16S-23S rRNA intergenic spacer region, a set of primers and probes for amplification of the 16S ribosomal DNA region for the universal phytoplasma detection, and an additional set of primers and probe for 18S rRNA as an endogenous quality control of DNA extraction. The performance characteristics of the panel were evaluated. The advantages of new assays were shown in a comparative study with the conventional PCR, which proved their higher sensitivity combined with three-fold shorter time of testing process; and in comparison with two reported multiplex real-time PCR assays for detection of 'Ca. P. mali' or 'Ca. P. pyri'. New panel of assays were tested on the DNA samples of 'Ca. P. mali', 'Ca. P. prunorum', 'Ca. P. pyri', other phytoplasmas and other bacteria isolated from plant material. Additionally, 198 symptomatic and asymptomatic fruit tree field samples collecting during several growing seasons were tested with new assays as well. The results of this study indicate that the combination of three specific assays may be applied in routine phytoplasma surveys and in the certification programs.

摘要

我们在此报告了一种组合检测方法的开发,该方法用于快速、可靠、特异和灵敏地检测和区分 16Sr-X(苹果增殖 - AP)组中的“Candidatus Phytoplasma mali”、“Ca. P. prunorum”和“Ca. P. pyri”。这些植原体是蔷薇科果树病害的病原体,包括苹果增殖(AP)、欧洲核果黄化(ESFY)和梨衰退(PD)。设计的检测面板使用 TaqMan 小沟结合探针(MGB)。它包括一组用于在 16S-23S rRNA 基因间隔区中进行种特异性扩增的引物和特定探针,一组用于扩增 16S 核糖体 DNA 区域的引物和探针,用于普遍检测植原体,以及一组用于 18S rRNA 的额外引物和探针,作为 DNA 提取的内源性质量控制。评估了该面板的性能特征。与传统 PCR 的比较研究表明了新检测方法的优势,其灵敏度更高,检测过程时间缩短了三倍;与两种已报道的用于检测“Ca. P. mali”或“Ca. P. pyri”的多重实时 PCR 检测方法相比也是如此。新的检测面板已在“Ca. P. mali”、“Ca. P. prunorum”、“Ca. P. pyri”、其他植原体和从植物材料中分离出的其他细菌的 DNA 样本上进行了测试。此外,还对多个生长季节收集的 198 个有症状和无症状的果树田间样本进行了新检测方法的测试。这项研究的结果表明,三种特异性检测方法的组合可应用于常规植原体调查和认证计划。

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