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Development of a DNA Microarray-Based Assay for the Detection of Sugar Beet Root Rot Pathogens

机译:基于DNA芯片检测甜菜根腐病病原体检测方法的发展

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Sugar beet root rot diseases that occur during the cropping season or in storage are accompanied by high yield losses and a severe reduction of processing quality. The vast diversity of microorganism species involved in rot development requires molecular tools allowing simultaneous identification of many different targets. Therefore, a new microarray technology (Array Tube) was applied in this study to improve diagnosis of sugar beet root rot diseases. Based on three marker genes (internal transcribed spacer, translation elongation factor 1 alpha, and 16S ribosomal DNA), 42 well-performing probes enabled the identification of prevalent field pathogens (e.g., Aphanomyces cochlioides), storage pathogens (e.g., Botrytis cinerea), and ubiquitous spoilage fungi (e.g., Penicillium expansum). All probes were proven for specificity with pure cultures from 73 microorganism species as well as for in planta detection of their target species using inoculated sugar beet tissue. Microarray-based identification of root rot pathogens in diseased field beets was successfully confirmed by classical detection methods. The high discriminatory potential was proven by Fusarium species differentiation based on a single nucleotide polymorphism. The results demonstrate that the ArrayTube constitute an innovative tool allowing a rapid and reliable detection of plant pathogens particularly when multiple microorganism species are present.
机译:甜菜根腐病在种植季节或在储存期间发生,伴随着高产损失和加工质量的严重降低。腐烂发展涉及的微生物种类繁多,需要分子工具才能同时鉴定许多不同的靶标。因此,一项新的微阵列技术(Array Tube)被用于这项研究,以改善甜菜根腐病的诊断。基于三个标记基因(内部转录的间隔子,翻译延伸因子1α和16S核糖体DNA),有42个性能良好的探针能够鉴定流行的现场病原体(例如,Aphanomyces cochlioides),储存病原体(例如,灰葡萄孢),和无处不在的腐败真菌(例如,青霉菌)。事实证明,所有探针均具有来自73种微生物的纯培养物的特异性,以及使用接种的甜菜组织在植物中检测其目标物种的特异性。通过经典检测方法成功地证实了基于芯片的病田甜菜根腐病病原体鉴定。通过基于单核苷酸多态性的镰刀菌属物种分化证明了高的鉴别潜力。结果表明,ArrayTube构成了一种创新工具,可以快速,可靠地检测植物病原体,特别是当存在多种微生物时。

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