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Development of a robust field-deployable loop-mediated isothermal amplification (LAMP) assay for specific detection of potato pathogen Dickeya dianthicola targeting a unique genomic region

机译:开发了一种强大的可在现场部署的环介导的等温扩增(LAMP)测定法用于特异性检测针对独特基因组区域的马铃薯病原体迪卡迪克(Dickeya dianthicola)

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摘要

Destructive maceration, a wide host range, and longevity in non-plant substrates has established Dickeya dianthicola (blackleg of potato) as a significant threat to potato industries worldwide. To protect these businesses, a specific and sensitive point-of-care D. dianthicola detection tool is necessary. We have developed a loop-mediated isothermal amplification (LAMP) assay for specific, sensitive, and rapid detection of D. dianthicola, which can be streamlined for point-of-care use. The developed LAMP assay targets a unique gene, alcohol dehydrogenase, of D. dianthicola. Assay specificity was assessed using strains present in inclusivity (16 D. dianthicola strains) and exclusivity panels (56 closely related, potato pathogenic, and other bacterial strains). Amplification with strains of inclusivity panel occurred, and cross-reactivity with non-target DNA was not observed. The limit of detection (LOD) was 10 CFU/ml when dilutions were made before isolating the genomic DNA; however, LOD was determined as 1 pg using 10-fold serially diluted D. dianthicola genomic DNA. Similar LOD of 1 pg was observed when serially diluted target genomic DNA was mixed with host genomic DNA. LOD (1 pg) was also calculated with 10-fold serially diluted synthetic DNA fragments containing primer target sites. Naturally and artificially inoculated plant samples were used for field adaptability tests with the field-deployable Optigene Plant Material Lysis Kit and a heat block (65°C); the results were obtained within 20 minutes. Despite the lack of method precision, no false positives or false negatives were observed. Therefore, with prepared reactions and a steady heat source, this assay can be used for rapid point-of-care detection, which is imperative for quarantine, eradication, disease management, and border protection.
机译:破坏性浸渍,广泛的寄主范围和对非植物基质的长寿命已将Dickeya dianthicola(马铃薯黑腿病)确立为对全世界马铃薯产业的重大威胁。为了保护这些企业,有必要使用专门且灵敏的即时诊断D. dianthicola检测工具。我们已经开发了一种环介导的等温扩增(LAMP)测定法,用于特异性,灵敏和快速检测D. dianthicola,可以简化此方法用于现场护理。研发的LAMP测定法针对D. dianthicola的独特基因,醇脱氢酶。使用存在性中的菌株(16个D. dianthicola菌株)和排他性面板(56个密切相关,马铃薯致病性菌株和其他细菌菌株)评估测定特异性。发生了包涵性菌株的扩增,未观察到与非靶标DNA的交叉反应性。当在分离基因组DNA之前进行稀释时,检测限(LOD)为10 CFU / ml。但是,使用10倍连续稀释的狄氏石竹基因组DNA测得LOD为1 pg。当将连续稀释的靶基因组DNA与宿主基因组DNA混合时,观察到相似的1 pg LOD。还用含有引物靶位点的10倍连续稀释的合成DNA片段计算了LOD(1 pg)。使用可现场部署的Optigene植物材料裂解试剂盒和加热块(65°C),将天然和人工接种的植物样品用于田间适应性测试。结果在20分钟内获得。尽管缺乏方法精度,但未观察到假阳性或假阴性。因此,有了已准备好的反应和稳定的热源,此分析可用于快速即时检测,这对于隔离,根除,疾病管理和边境保护非常重要。

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