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Rapid Detection of Ceratocystis platani Inoculum by Quantitative Real-Time PCR Assay

机译:实时荧光定量PCR快速检测白斑鹿角菌接种物

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Ceratocystis platani is the causal agent of canker stain of plane trees, a lethal disease able to kill mature trees in one or two successive growing seasons. The pathogen is a quarantine organism and has a negative impact on anthropogenic and natural populations of plane trees. Contaminated sawdust produced during pruning and sanitation fellings can contribute to disease spread. The goal of this study was to design a rapid, real-time quantitative PCR assay to detect a C. platani airborne inoculum. Airborne inoculum traps (AITs) were placed in an urban setting in the city of Florence, Italy, where the disease was present. Primers and TaqMan minor groove binder (MGB) probes were designed to target cerato-platanin (CP) and internal transcribed spacer 2 (ITS2) genes. The detection limits of the assay were 0.05 pg/μl and 2 fg/μl of fungal DNA for CP and ITS, respectively. Pathogen detection directly from AITs demonstrated specificity and high sensitivity for C. platani, detecting DNA concentrations as low as 1.2 × 10?2 to 1.4 × 10?2 pg/μl, corresponding to ~10 conidia per ml. Airborne inoculum traps were able to detect the C. platani inoculum within 200 m of the closest symptomatic infected plane tree. The combination of airborne trapping and real-time quantitative PCR assay provides a rapid and sensitive method for the specific detection of a C. platani inoculum. This technique may be used to identify the period of highest risk of pathogen spread in a site, thus helping disease management.
机译:柏拉角藻(Ceratocystis platani)是平面树木溃疡病的病原体,这种致命疾病能够在一个或两个连续的生长季节杀死成熟树木。该病原体是检疫生物,对人为和自然的梧桐树有负面影响。修剪和环卫采伐过程中产生的受污染的木屑可导致疾病传播。这项研究的目的是设计一种快速,实时的定量PCR检测试剂盒,以检测白纹梭菌空中接种物。机载接种物诱集器(AITs)被放置在存在这种疾病的意大利佛罗伦萨市的城市环境中。引物和TaqMan小沟结合剂(MGB)探针被设计为靶向cerato-platanin(CP)和内部转录的间隔物2(ITS2)基因。该检测的检出限分别为CP和ITS的真菌DNA为0.05 pg /μl和2 fg /μl。直接从AITs进行病原体检测显示了对白斑梭菌的特异性和高灵敏度,可检测低至1.2×10 ?2 至1.4×10 ?2 pg /μl的DNA浓度,相当于每毫升〜10个分生孢子。空中接种物诱捕器能够在最接近有症状感染的平面树200 m内检测到白斑梭菌接种物。空中捕获和实时定量PCR分析相结合提供了一种快速而灵敏的方法,用于特异性检测白纹梭菌接种物。此技术可用于确定站点中病原体传播风险最高的时​​期,从而有助于疾病管理。

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