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Data processing of qualitative results from an interlaboratory comparison for the detection of Flavescence dorée phytoplasma: How the use of statistics can improve the reliability of the method validation process in plant pathology

机译:通过实验室间比较对定性结果进行数据处理以检测黄萎病植物质体:使用统计数据如何提高植物病理学方法验证过程的可靠性

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摘要

A working group established in the framework of the EUPHRESCO European collaborative project aimed to compare and validate diagnostic protocols for the detection of “Flavescence dorée” (FD) phytoplasma in grapevines. Seven molecular protocols were compared in an interlaboratory test performance study where each laboratory had to analyze the same panel of samples consisting of DNA extracts prepared by the organizing laboratory. The tested molecular methods consisted of universal and group-specific real-time and end-point nested PCR tests. Different statistical approaches were applied to this collaborative study. Firstly, there was the standard statistical approach consisting in analyzing samples which are known to be positive and samples which are known to be negative and reporting the proportion of false-positive and false-negative results to respectively calculate diagnostic specificity and sensitivity. This approach was supplemented by the calculation of repeatability and reproducibility for qualitative methods based on the notions of accordance and concordance. Other new approaches were also implemented, based, on the one hand, on the probability of detection model, and, on the other hand, on Bayes’ theorem. These various statistical approaches are complementary and give consistent results. Their combination, and in particular, the introduction of new statistical approaches give overall information on the performance and limitations of the different methods, and are particularly useful for selecting the most appropriate detection scheme with regards to the prevalence of the pathogen. Three real-time PCR protocols (methods M4, M5 and M6 respectively developed by Hren (2007), Pelletier (2009) and under patent oligonucleotides) achieved the highest levels of performance for FD phytoplasma detection. This paper also addresses the issue of indeterminate results and the identification of outlier results. The statistical tools presented in this paper and their combination can be applied to many other studies concerning plant pathogens and other disciplines that use qualitative detection methods.
机译:在EUPHRESCO欧洲合作项目框架内成立的工作组旨在比较和验证诊断方案,以检测葡萄中的“ Flavescencedorée”(FD)植物原质。在实验室间测试性能研究中比较了七个分子方案,每个实验室必须分析同一组样品,这些样品由组织实验室制备的DNA提取物组成。测试的分子方法包括通用的和特定于组的实时和终点嵌套式PCR测试。将不同的统计方法应用于此协作研究。首先,存在一种标准的统计方法,包括分析已知为阳性的样品和已知为阴性的样品,并报告假阳性和假阴性结果的比例,以分别计算诊断特异性和敏感性。通过基于一致性和一致性概念的定性方法的可重复性和可重复性计算,对这种方法进行了补充。一方面,基于检测模型的概率,另一方面,基于贝叶斯定理,还实施了其他新方法。这些不同的统计方法是互补的,并且给出一致的结果。它们的组合,尤其是新统计方法的引入,提供了有关不同方法的性能和局限性的总体信息,对于选择关于病原体流行的最合适的检测方案特别有用。三种实时PCR方案(分别由Hren(2007),Pelletier(2009)和专利寡核苷酸开发的方法M4,M5和M6)实现了FD胞质检测的最高水平。本文还讨论了不确定结果和识别异常结果的问题。本文介绍的统计工具及其组合可用于许多其他有关植物病原体的研究,以及使用定性检测方法的其他学科。

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