A Real-Time Recombinase Polymerase Amplification Assay for Specific Detection of Lumpy Skin Disease Virus

Author:

Zhai Qi1ORCID,Zhou Xia1,Du Liyin2,Yang Nan3,Lou Yakun3,Liu Jianying4,Zhai Shaolun1

Affiliation:

1. Institute of Animal Health, Guangdong Academy of Agricultural Sciences, Key Laboratory of Livestock Disease Prevention of Guangdong Province, Scientific Observation and Experiment Station of Veterinary Drugs and Diagnostic Techniques of Guangdong Province, Ministry of Agriculture and Rural Affairs, Guangzhou 510640, China

2. Zijin Animal Disease Prevention and Control Center, Zijin 517400, China

3. Zhengzhou Zhongdao Biotechnology Co., Ltd., Zhengzhou 451000, China

4. Guangdong Agricultural Technology Extension Center, Guangzhou 510520, China

Abstract

Lumpy skin disease virus (LSDV) infection, accompanied by loss of hide quality, poor reproductive efficiency, consistent degenerative emaciation, and milk yield reduction of animals, causes severe economic implications in endemic zones. The heterologous attenuated goat pox (GTPV) vaccine (AV41 strain) was used in China to prevent LSDV infection. Only a few LSDV detection methods that distinguish LSDV from GTPV vaccine strains have been reported before. For simple, rapid, and specific detection of LSDV, the real-time recombinase polymerase amplification (RPA) method was established with the specific primers and probes designed according to the conserved regions of ORF132 gene sequences. The assay could be finished within 20 min at a constant temperature (39 °C). This method had a limit of detection (LOD) of 15 copies/μL for LSDV and no cross-reaction with the nucleic acids of goat pox virus, infectious bovine rhinotracheitis virus, Pasteurella multocida, and bovine healthy tissue. Furthermore, 43 clinical samples were detected by this method and the real-time PCR recommended by the World Organisation for Animal Health (WOAH), with a kappa value, was 0.94. These results demonstrated that the real-time RPA method for detecting LSDV developed in this study was characterized by high sensitivity and specificity, which has wide application value in the clinical diagnosis and detection of LSDV in China.

Funder

Guangzhou Basic and Applied Basic Research Foundation

Collaborative Innovation Center Fund

Department of Agriculture and Rural Affairs of Guangdong Province

Guangzhou Science and Technology Bureau

Project of President Funding of Guangdong Academy of Agricultural Sciences

Publisher

MDPI AG

Subject

General Veterinary

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