Dynamics of Puccinia striiformis f. sp. tritici Urediniospores and Its Relationship with Meteorological Factors in Mianyang, China

Author:

Hu Xuemin1,Lin Jiahao1,Li Yuxiang1,Zhang Hua2,Xu Xiangming3,Hu Xiaoping1ORCID

Affiliation:

1. Key Laboratory of Plant Protection Resources and Pest Integrated Management of Ministry of Education, Key Laboratory of Integrated Pest Management on Crops in Northwestern Loess Plateau of Ministry of Agriculture and Rural Affairs, and College of Plant Protection, Northwest A&F University, Taicheng Road 3, Yangling, Shaanxi 712100, China

2. Mianyang Institute of Agricultural Science/Crop Characteristic Resources Creation and Utilization Key Laboratory of Sichuan Province, Mianyang, Sichuan 621023, China

3. Pest & Pathogen Ecology, NIAB East Malling, West Malling, Kent ME19 6BJ, U.K.

Abstract

Stripe rust, caused by Puccinia striiformis f. sp. tritici ( Pst), is one of the main diseases of wheat worldwide. Mianyang of Sichuan province in Southwest China is one of main regions for winter Pst inoculum production and spring epidemic and provides urediniospores for infecting wheat in the surrounding regions. Understanding the urediniospore dynamics is important to predict and manage stripe rust. In this study, spore trapping coupled with a TaqMan real-time quantitative PCR method was used to monitor airborne Pst urediniospores from December 2019 to December 2022 in Mianyang. Weather conditions (temperature, relative humidity, daily sunshine duration, and precipitation) were collected for the same period. These data were used to study the relationship of airborne urediniospore density with climatic conditions. The results showed that Pst urediniospores were captured all year round, and the annual peak of urediniospore densities occurred in the period from March to April in which the urediniospores accounted for the largest proportion of the annual total urediniospores. The density of urediniospores in the period of March to April was linearly related to the average sunshine duration of 20 days and average temperature of 15 days prior to the final day of a 7-day trapping period. This relationship needs to be tested in other regions where Pst can sporulate during the winter before it can be integrated with Pst infection conditions to predict rust development.

Funder

China Agriculture Research System of Wheat

National Natural Science Foundation of China

Major Science and Technology Project of Agricultural Collaborative Innovation and Promotion Association in Shaanxi Province in 2022

National Key Research and Development Program of China

Extension Project of Northwest A&F University

Publisher

Scientific Societies

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