Gulf Coast Research and Education Center, Plant Pathology Department, Institute of Food and Agricultural Sciences, University of Florida, Wimauma, FL 33598.
Phytopathology. 2021 Aug;111(8):1470-1483. doi: 10.1094/PHYTO-12-20-0556-R. Epub 2021 Sep 22.
Rapid and accurate disease diagnosis is a prerequisite for an effective disease management program in strawberry production. In Florida, spp., spp., and are the primary microorganisms causing strawberry crown rot. Even though the diseases can be caused by different pathogens, symptoms are indistinguishable and equally devastating. To inform strawberry growers in a timely fashion of diagnostic results for effective deployment of chemical control practices, we developed a multiplex high-resolution melting (HRM) assay to rapidly and accurately detect the abovementioned pathogens. The multiplex HRM assays using three predesigned primer pairs showed high specificity for individual species by generating specific melting peaks without cross-reaction between primers or with other common strawberry pathogens. The amplification limit of the assay was 1 pg of and and 100 pg of DNA per 10-μl reaction. However, the presence of different melting peaks was observed in mixed DNA samples and was concentration and target DNA dependent. A crude DNA extraction protocol was developed to allow high-throughput screening by minimizing the inhibitory effects. Moreover, we applied the HRM assay to 522 plant samples and found high correlations between conventional pathogen isolation and HRM and between singleplex and multiplex assays. Altogether, this multiplex HRM assay is specific, cost effective, and reliable for the timely detection of strawberry crown rot pathogens.
快速准确的疾病诊断是草莓生产中有效疾病管理计划的前提。在佛罗里达州, spp.、 spp. 和 是引起草莓冠腐病的主要微生物。尽管这些疾病可能由不同的病原体引起,但症状难以区分,同样具有破坏性。为了及时告知草莓种植者有关诊断结果,以便有效部署化学防治措施,我们开发了一种多重高分辨率熔解(HRM)分析,以快速准确地检测上述病原体。使用三个预先设计的引物对的多重 HRM 分析显示出对单个物种的高度特异性,产生特定的熔解峰,而不会发生引物之间的交叉反应或与其他常见的草莓病原体发生交叉反应。该分析的扩增极限为 1pg 的 和 和 100pg 的 DNA 每个 10-μl 反应。然而,在混合 DNA 样本中观察到存在不同的熔解峰,并且与浓度和靶 DNA 有关。开发了一种粗 DNA 提取方案,通过最小化抑制作用来允许高通量筛选。此外,我们将 HRM 分析应用于 522 个植物样本,发现传统病原体分离与 HRM 之间以及单重和多重分析之间高度相关。总的来说,这种多重 HRM 分析具有特异性、成本效益高,并且可靠,可以及时检测草莓冠腐病病原体。