Development of reverse-transcriptase, real-time PCR assays to distinguish the Southern African Territories (SAT) serotypes 1 and 3 and topotype VII of SAT2 of Foot-and-Mouth Disease Virus

Foot-and-Mouth Disease Virus (FMDV), the causative agent of Foot-and-Mouth Disease, is a highly feared, economically devastating transboundary pathogen. This is due to the virus' extremely contagious nature and its ability to utilize multiple transmission routes. As such, rapid and accurate dia...

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Main Authors: Taeyo Chestley, Patrycja Sroga, Michelle Nebroski, Kate Hole, Hussaini Ularamu, Oliver Lung, Charles Nfon
Format: Article
Language:English
Published: Frontiers Media S.A. 2022-09-01
Series:Frontiers in Veterinary Science
Subjects:
Online Access:https://www.frontiersin.org/articles/10.3389/fvets.2022.977761/full
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author Taeyo Chestley
Patrycja Sroga
Michelle Nebroski
Kate Hole
Hussaini Ularamu
Oliver Lung
Charles Nfon
author_facet Taeyo Chestley
Patrycja Sroga
Michelle Nebroski
Kate Hole
Hussaini Ularamu
Oliver Lung
Charles Nfon
author_sort Taeyo Chestley
collection DOAJ
description Foot-and-Mouth Disease Virus (FMDV), the causative agent of Foot-and-Mouth Disease, is a highly feared, economically devastating transboundary pathogen. This is due to the virus' extremely contagious nature and its ability to utilize multiple transmission routes. As such, rapid and accurate diagnostic testing is imperative to the control of FMD. Identification of the FMDV serotype is necessary as it provides the foundation for appropriate vaccine selection and aids in outbreak source tracing. With the vast genetic diversity, there is a desperate need to be able to characterize FMDV without relying on prior knowledge of viral serotypes. In this study, the Neptune bioinformatics tool was used to identify genetic signatures specific to each Southern African Territories (SAT) 1, 2 and 3 genomes but exclusionary to the other circulating FMDV serotypes (A, O, Asia1, and the heterologous SAT1, SAT2 and/or SAT3). Identification of these unique genomic regions allowed the design of TaqMan-based real-time reverse transcriptase PCR (rRT-PCR) primer/probe sets for SAT1, SAT2 and SAT3 viruses. These assays were optimized using prototypic FMDV cell culture isolates using the same reagents and thermocycling conditions as the FMDV pan-serotype 3D rRT-PCR assay. Cross-reactivity was evaluated in tandem with the FMDV pan-serotype 3D rRT-PCR utilizing representative strains from FMDV serotypes A, O, Asia1, SAT1, SAT2 and SAT3. The SAT1, SAT2, and SAT3 primer/probe sets were specific for the homologous serotype and exclusionary to all others. SAT1 and SAT3 primer/probe sets were able to detect several topotypes, whereas the SAT2 assay was revealed to be specific for topotype VII. The SAT2 topotype VII specificity was possibly due to the use of sequence data deposited post-2011to design the rRT-PCR primers and probes. Each assay was tested against a panel of 99 bovine tissue samples from Nigeria, where SAT2 topotype VII viruses were correctly identified and no cross-reactivity was exhibited by the SAT1 and 3 assays. These novel SAT1, SAT3 and SAT2 topotype VII rRT-PCR assays have the potential to detect and differentiate circulating FMD SAT viruses.
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spelling doaj.art-9ccbd3981db94b968ad83e3ff583f7392022-12-22T04:30:27ZengFrontiers Media S.A.Frontiers in Veterinary Science2297-17692022-09-01910.3389/fvets.2022.977761977761Development of reverse-transcriptase, real-time PCR assays to distinguish the Southern African Territories (SAT) serotypes 1 and 3 and topotype VII of SAT2 of Foot-and-Mouth Disease VirusTaeyo Chestley0Patrycja Sroga1Michelle Nebroski2Kate Hole3Hussaini Ularamu4Oliver Lung5Charles Nfon6National Centre for Foreign Animal Disease, Canadian Food Inspection Agency, Winnipeg, MB, CanadaNational Centre for Foreign Animal Disease, Canadian Food Inspection Agency, Winnipeg, MB, CanadaNational Centre for Foreign Animal Disease, Canadian Food Inspection Agency, Winnipeg, MB, CanadaNational Centre for Foreign Animal Disease, Canadian Food Inspection Agency, Winnipeg, MB, CanadaNational Veterinary Research Institute, Vom, Plateau State, NigeriaNational Centre for Foreign Animal Disease, Canadian Food Inspection Agency, Winnipeg, MB, CanadaNational Centre for Foreign Animal Disease, Canadian Food Inspection Agency, Winnipeg, MB, CanadaFoot-and-Mouth Disease Virus (FMDV), the causative agent of Foot-and-Mouth Disease, is a highly feared, economically devastating transboundary pathogen. This is due to the virus' extremely contagious nature and its ability to utilize multiple transmission routes. As such, rapid and accurate diagnostic testing is imperative to the control of FMD. Identification of the FMDV serotype is necessary as it provides the foundation for appropriate vaccine selection and aids in outbreak source tracing. With the vast genetic diversity, there is a desperate need to be able to characterize FMDV without relying on prior knowledge of viral serotypes. In this study, the Neptune bioinformatics tool was used to identify genetic signatures specific to each Southern African Territories (SAT) 1, 2 and 3 genomes but exclusionary to the other circulating FMDV serotypes (A, O, Asia1, and the heterologous SAT1, SAT2 and/or SAT3). Identification of these unique genomic regions allowed the design of TaqMan-based real-time reverse transcriptase PCR (rRT-PCR) primer/probe sets for SAT1, SAT2 and SAT3 viruses. These assays were optimized using prototypic FMDV cell culture isolates using the same reagents and thermocycling conditions as the FMDV pan-serotype 3D rRT-PCR assay. Cross-reactivity was evaluated in tandem with the FMDV pan-serotype 3D rRT-PCR utilizing representative strains from FMDV serotypes A, O, Asia1, SAT1, SAT2 and SAT3. The SAT1, SAT2, and SAT3 primer/probe sets were specific for the homologous serotype and exclusionary to all others. SAT1 and SAT3 primer/probe sets were able to detect several topotypes, whereas the SAT2 assay was revealed to be specific for topotype VII. The SAT2 topotype VII specificity was possibly due to the use of sequence data deposited post-2011to design the rRT-PCR primers and probes. Each assay was tested against a panel of 99 bovine tissue samples from Nigeria, where SAT2 topotype VII viruses were correctly identified and no cross-reactivity was exhibited by the SAT1 and 3 assays. These novel SAT1, SAT3 and SAT2 topotype VII rRT-PCR assays have the potential to detect and differentiate circulating FMD SAT viruses.https://www.frontiersin.org/articles/10.3389/fvets.2022.977761/fullFoot-and-Mouth Disease VirusFMDVSouthern African Territoriesserotypingdetectionreal-time reverse transcriptase polymerase chain reaction
spellingShingle Taeyo Chestley
Patrycja Sroga
Michelle Nebroski
Kate Hole
Hussaini Ularamu
Oliver Lung
Charles Nfon
Development of reverse-transcriptase, real-time PCR assays to distinguish the Southern African Territories (SAT) serotypes 1 and 3 and topotype VII of SAT2 of Foot-and-Mouth Disease Virus
Frontiers in Veterinary Science
Foot-and-Mouth Disease Virus
FMDV
Southern African Territories
serotyping
detection
real-time reverse transcriptase polymerase chain reaction
title Development of reverse-transcriptase, real-time PCR assays to distinguish the Southern African Territories (SAT) serotypes 1 and 3 and topotype VII of SAT2 of Foot-and-Mouth Disease Virus
title_full Development of reverse-transcriptase, real-time PCR assays to distinguish the Southern African Territories (SAT) serotypes 1 and 3 and topotype VII of SAT2 of Foot-and-Mouth Disease Virus
title_fullStr Development of reverse-transcriptase, real-time PCR assays to distinguish the Southern African Territories (SAT) serotypes 1 and 3 and topotype VII of SAT2 of Foot-and-Mouth Disease Virus
title_full_unstemmed Development of reverse-transcriptase, real-time PCR assays to distinguish the Southern African Territories (SAT) serotypes 1 and 3 and topotype VII of SAT2 of Foot-and-Mouth Disease Virus
title_short Development of reverse-transcriptase, real-time PCR assays to distinguish the Southern African Territories (SAT) serotypes 1 and 3 and topotype VII of SAT2 of Foot-and-Mouth Disease Virus
title_sort development of reverse transcriptase real time pcr assays to distinguish the southern african territories sat serotypes 1 and 3 and topotype vii of sat2 of foot and mouth disease virus
topic Foot-and-Mouth Disease Virus
FMDV
Southern African Territories
serotyping
detection
real-time reverse transcriptase polymerase chain reaction
url https://www.frontiersin.org/articles/10.3389/fvets.2022.977761/full
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