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通过多重实时荧光定量PCR检测法一步检测李属和苹果属植物上的褐腐病菌、果生链核盘菌和核果褐腐病菌

One-Step Detection of Monilinia fructicola, M. fructigena, and M. laxa on Prunus and Malus by a Multiplex Real-Time PCR Assay.

作者信息

Guinet C, Fourrier-Jeandel C, Cerf-Wendling I, Ioos R

机构信息

Agence Nationale de Sécurité Sanitaire de l'Alimentation, de l'Environnement et du Travail (ANSES) Laboratoire de la Santé des Végétaux, Unité de Mycologie, Domaine de Pixérécourt, 54220 Malzéville, France.

出版信息

Plant Dis. 2016 Dec;100(12):2465-2474. doi: 10.1094/PDIS-05-16-0655-RE. Epub 2016 Oct 5.

Abstract

Brown rot is an economically important fungal disease affecting stone and pome fruit orchards, as well as harvested fruit during storage and on the market. Monilinia fructicola, M. laxa, and M. fructigena are the main causal agents of this disease and each have a different regulatory status depending on regional regulations. In this study, a new multiplex tool based on real-time polymerase chain reaction was developed to detect the three pathogenic fungi in a single reaction on fruit, twigs, and flowers of Prunus and Malus spp. Species-specific primer-hydrolysis probe combinations were designed to amplify a region located in a previously described MO368 sequenced characterized amplified region marker, and used in a quadruplex format coupled with the 18S Uni universal primer-probe test in order to check the quality of the DNA template. The assay was designed and optimized with the objective to provide high performance values. Experimental data supported its sensitivity, specificity, reproducibility, and robustness. In addition, a set of quality controls was implemented to minimize the risk of false-positive and false-negative results, thus making this new test fit for use in serial analyses and reliable in the framework of official controls.

摘要

褐腐病是一种对经济有重要影响的真菌病害,会影响核果类和仁果类果园,以及储存和市场上的采收果实。果生链核盘菌、核果链核盘菌和仁果链核盘菌是这种病害的主要致病因子,根据地区法规,它们各自具有不同的监管状态。在本研究中,开发了一种基于实时聚合酶链反应的新型多重检测工具,用于在单一反应中检测李属和苹果属植物的果实、嫩枝和花朵上的这三种致病真菌。设计了物种特异性引物-水解探针组合,以扩增位于先前描述的MO368测序特征性扩增区域标记中的一个区域,并以四重反应形式与18S Uni通用引物-探针检测一起使用,以检查DNA模板的质量。该检测方法的设计和优化目标是提供高性能值。实验数据支持了其灵敏度、特异性、重现性和稳健性。此外,实施了一套质量控制措施,以尽量减少假阳性和假阴性结果的风险,从而使这种新检测方法适用于系列分析,并在官方检测框架内具有可靠性。

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