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利用液滴数字 PCR 定量检测葡萄苗圃和葡萄园土壤中的 。

Quantification of From Grapevine Nursery Stock and Vineyard Soil Using Droplet Digital PCR.

机构信息

Instituto de Ciencias de la Vid y del Vino (ICVV), Consejo Superior de Investigaciones Científicas - Universidad de la Rioja - Gobierno de La Rioja, Ctra. de Burgos Km. 6, 26007 Logroño, Spain.

Estación de Viticultura y Enología de Galicia (AGACAL-EVEGA), Ponte San Clodio s/n 32428-Leiro-Ourense, Spain.

出版信息

Plant Dis. 2020 Aug;104(8):2269-2274. doi: 10.1094/PDIS-09-19-2035-RE. Epub 2020 Jun 22.

Abstract

is the most prevalent species associated with Petri disease and esca of grapevine. Accurate, early, and specific detection and quantification of are essential to alert growers and nurseries to the presence of the pathogens in soil and to prevent the spread of this pathogen through grapevine planting material. The aim of this study was to develop molecular tools to detect and quantify inoculum from environmental samples. Species specific primers based on the β-tubulin gene and a TaqMan probe for droplet digital PCR (ddPCR) and quantitative PCR (qPCR) were first developed to detect and quantify purified DNA of the target fungus. Specificity tests showed that the primers were able to amplify the DNA (20 isolates) while none of the 29 nontarget fungal species (58 isolates) tested were amplified. The ddPCR was shown to be more sensitive compared with qPCR in the detection and quantification of at very low concentrations and was further selected to accurately detect and quantify the fungus from environmental samples. Twenty-five of the 94 grafting plants (26.6%) analyzed by ddPCR tested positive to DNA (>3 copies/µl). was barely detected from vineyard soils. The procedure employed in this study revealed the presence of the pathogen in symptomless vines, which makes implementation of this technique suitable for certification schemes of -free grapevine planting material.

摘要

是与葡萄扇叶病和葡萄溃疡病关系最密切的优势种。准确、早期和特异性地检测和定量,对于提醒种植者和苗圃注意土壤中病原体的存在以及防止通过葡萄种植材料传播这种病原体至关重要。本研究旨在开发用于从环境样本中检测和定量的分子工具。最初开发了基于β-微管蛋白基因的物种特异性引物和用于液滴数字 PCR (ddPCR)和定量 PCR (qPCR)的 TaqMan 探针,以检测和定量目标真菌的纯化 DNA。特异性测试表明,引物能够扩增的 DNA(20 个分离株),而测试的 29 种非目标真菌种(58 个分离株)均未扩增。与 qPCR 相比,ddPCR 在检测和定量极低浓度时更灵敏,因此被进一步选择用于准确检测和定量环境样本中的真菌。通过 ddPCR 分析的 94 株嫁接植物中有 25 株(26.6%)检测到 DNA(>3 拷贝/µl)呈阳性。几乎未从葡萄园土壤中检测到。本研究中采用的程序揭示了病原体存在于无症状的葡萄藤中,这使得该技术的实施适合于无病原体的葡萄种植材料认证计划。

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