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Simultaneous Detection and Quantification of Phytophthora nicotianae and P. cactorum and Distribution Analyses in Strawberry Greenhouses by Duplex Real-time PCR

机译:实时荧光定量PCR同时检测和定量检测烟草疫霉和仙人掌疫霉菌及其在温室中的分布

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摘要

Phytophthora nicotianae and P. cactorum cause Phytophthora rot of strawberry. A duplex real-time PCR technique for simultaneous detection and quantification of the two pathogens was developed. Species-specific primers for P. nicotianae and P. cactorum were designed based on the internal transcribed spacer regions (ITS) of rDNA and the ras-related protein gene Ypt1, respectively. TaqMan probes were labeled with FAM for P. nicotianae and HEX for P. cactorum. Specificities were demonstrated using 52 isolates, including various soil-borne pathogens. Sensitivities for P. nicotianae and P. cactorum DNAs were 10 fg and 1 pg, respectively. The technique was applied to naturally infested soil and root samples; the two pathogens were detected and the target DNA concentrations were quantified. Significant correlations of DNA quantities in roots and the surrounding soils were found. The minimum soil DNA concentration predicting the development of disease symptoms was estimated as 20 pg (g soil)−1. In three strawberry greenhouses examined, the target DNA concentrations ranged from 1 to 1,655 pg (g soil)−1 for P. nicotianae and from 13 to 233 pg (g soil)−1 for P. cactorum. The method proved fast and reliable, and provides a useful tool to monitor P. nicotianae and P. cactorum in plants or soils.
机译:烟草疫霉(Phytophthora nicotianae)和仙人掌假单胞菌(P. cactorum)导致草莓疫霉菌腐烂。建立了同时检测和定量两种病原体的双重实时PCR技术。分别基于rDNA的内部转录间隔区(ITS)和与ras相关的蛋白质基因Ypt1,设计了烟草假单胞菌和仙人掌假单胞菌的物种特异性引物。 TaqMan探针用FAM标记烟曲霉,用HEX标记仙人掌菌。使用52种分离物(包括各种土壤传播的病原体)证明了特异性。烟草假单胞菌和仙人掌假单胞菌DNA的敏感性分别为10 fg和1 pg。该技术被用于自然侵染的土壤和根样品。检测了这两种病原体并定量了目标DNA浓度。发现根与周围土壤中DNA量之间存在显着相关性。预测疾病症状发展的最低土壤DNA浓度估计为20 pg(克土壤) -1 。在三个经过检查的草莓温室中,烟草的目标DNA浓度范围从1到1,655 pg(克土壤) -1 ,从13到233 pg(克土壤) −1 用于仙人掌。该方法被证明是快速和可靠的,并且为监测植物或土壤中的烟草假单胞菌和仙人掌假单胞菌提供了有用的工具。

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