Multiplex one-step RT‒qPCR assays for simultaneous detection of AMDV, MEV and CDV

Author:

Cao Zhi1,Xu Hang1,Zhao Xinru1,Zhang Ke1,Yin Dehua1,Ma Shuai2,Li Wenling1,Li Siyu1,Ren Jianwei1,Wen Jianxin1

Affiliation:

1. College of Veterinary Medicine, Qingdao Agricultural University

2. Qingdao Animal Disease Prevention and Control Center

Abstract

Abstract

Background: Aleutian mink disease, mink viral enteritis and canine distemper are known as the three most serious diseases that cause great economic loss in the mink industry. In clinical practice, aleutian mink disease virus (AMDV), mink enteritis virus (MEV) and canine distemper virus (CDV) are common mixed infections, and they have similar clinical symptoms, such as diarrhoea. Therefore, a rapid and accurate differential diagnosis method for use on mink ranches is essential for the control of these three pathogens. Here, we developed multiplex one-step real-time quantitative PCR (RT‒qPCR) assays for the simultaneous detection and quantification of AMDV, MEV and CDV by using three primers and probes based on the conserved NS1, VP2 and N genes, respectively. Results: The results showed that the established method was less likely to cross-react with other mink pathogens, with a detection sensitivity of 25 copies/μL and a coefficient of variation less than 3.51%. Moreover, the interference experiment showed that the presence of AMDV, MEV and CDV templates at different concentrations would not interfere with the detection results. Furthermore, two hundred clinical samples of mink with diarrhoea were simultaneously analysed using multiplex RT‒qPCR and single RT‒qPCR, the Kappa values were all greater than 0.921, indicating that there was a high degree of coincidence between the two detection methods. Conclusions: In conclusion, multiplex RT‒qPCR exhibited high specificity, sensitivity, and reproducibility, indicating that this method can be used as a reliable and specific tool for the differential detection and quantification of AMDV, MEV and CDV.

Publisher

Research Square Platform LLC

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