Spatiotemporal Quantification of Plasmodiophora brassicae Inoculum in Relation to Clubroot Development Under Inoculated and Naturally Infested Field Conditions

农学 孢子 作物 芸苔属 栽培
作者
Manzhu Xing,Gege Guan,Xinyu Zhang,Hui Sun,Zehao Wang,Wenxing Pang,Zhongyun Piao,Xinyu Yang,Jie Feng,Yue Liang
出处
期刊:Plant Disease [American Phytopathological Society]
卷期号:105 (11): 3636-3642 被引量:5
标识
DOI:10.1094/pdis-03-21-0653-re
摘要

Clubroot caused by Plasmodiophora brassicae is a destructive disease of cruciferous plants worldwide. A quantitative PCR (qPCR) system specific to P. brassicae was developed. Analysis of the qPCR sensitivity indicated that the lower limit of detection was 1 × 10 1 resting spores/ml, 1 × 10 2 spores/g of soil, and 1 × 10 3 spores/g of roots and seeds. The regression curves generated from the qPCR data of different samples had a parallel relationship. The difference between the theoretical and actual concentrations was lowest at 1 × 10 5 spores/g of sample, compared with other concentrations. The P. brassicae biomass in soil and plant root tissues after inoculated with different spore concentrations was correlated. A correlation analysis confirmed that the clubroot incidence and disease index at 6 weeks after inoculation increased as the spore concentration increased. Under field conditions, the natural inoculum density of the P. brassicae population decreased at the early stage and then increased, with P. brassicae mainly being detected at a soil depth of 0 to 50 cm. The horizontal distribution of P. brassicae varied in the field with occurrences of hot spots. This study established a qPCR-based method for quantitative detection of clubroot. The developed assay is useful for monitoring the spatiotemporal dynamics of P. brassicae in the field. It may also be applicable for clubroot forecasting as a part of proactive disease management.

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