Detection of Foot and Mouth Disease Virus by RT-PCR and Microplate Hydridization Assay Using Inactivated Viral Antigens

被引:0
作者
D. Barlič-Maganja
J. Grom
I. Toplak
P. Hostnik
机构
[1] University of Ljubljana,Institute of Microbiology and Parasitology, Virology Unit
来源
Veterinary Research Communications | 2004年 / 28卷
关键词
biotin label; diagnosis; ELISA; foot and mouth; primers; probe; RT-PCR; serotypes;
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学科分类号
摘要
A single step RT-PCR was tested for detection of foot and mouth disease virus (FMDV) and immunoenzymatic determination of amplified products in a microplate hybridization assay. Inactivated reference strains (ELISA antigen) of all seven serotypes were used to optimize the test. Oligonucleotide primers were selected from two different genomic regions coding for RNA polymerase and VP1 protein, respectively. The RT-PCR used to amplify the polymerase gene specific RNA detected FMDV strains A, C, O, Asia1 and SAT1, and the identity of the fragments obtained was confirmed with a specific internal biotin-labelled capture probe. For the amplification of the VP1 genome region, two sets of oligonucleotide primers were used. One primer pair was successfully applied for the detection of serotypes A, C, O and Asia1 and a second one for serotypes SAT1, SAT2, SAT3. The specific probe enabled the detection of all the amplified products in a PCR ELISA test. By comparison with antigen ELISA, the PCR ELISA method allowed the detection of smaller amounts of FMDV in the inactivated material examined. The application of molecular diagnostic methods to inactivated antigens offers a good alternative procedure for developing and optimizing a sensitive method for detection of FMDV in laboratories that are not allowed to work with viable FMDV.
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页码:149 / 158
页数:9
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[1]  
Amaral-Doel C.M.F.(1993)Detection of foot-and-mouth disease viral sequences in clinical specimens and ethyleneimine-inactivated preparations by the polymerase chain reaction Vaccine 11 415-421
[2]  
Owen N.E.(2001)Highly sensitive one-tube RT-PCR and microplate hybridisation assay for the detection and for the discrimination of classical swine fever virus from other pestiviruses Journal of Virological Methods 95 101-110
[3]  
Ferris N.P.(2001)FMD diagnosis The Veterinary Record 148 640-6815
[4]  
Kitching R.P.(1988)Gene encoding capsid protein VPI of foot-and-mouth disease virus a quasispecies model of molecular evolution Proceedings of the National Academy of Sciences of the USA 85 6811-209
[5]  
Doel T.R.(1988)Routine application of enzyme-linked immunosorbent assay in comparison with complement fixation for the diagnosis of foot-and-mouth and swine vesicular diseases Veterinary Microbiology 16 201-41
[6]  
Barlič-Maganja D.(1990)Use of inactivated foot-and-mouth disease virus antigen in liquid-phase blocking ELISA Journal of Virological Methods 29 33-208
[7]  
Grom J.(1992)Detection of FMDV RNA amplified by the polymerase chain reaction (PCR) Journal of Virological Methods 36 197-444
[8]  
Donaldson A.I.(1995)Rapid detection and characterization of foot-and-mouth disease virus by restriction enzyme and nucleotide sequence analysis of PCR products Journal of Clinical Microbiology 33 440-61
[9]  
Kitching P.(1985)Sequence of the viral replicase gene from foot-and-mouth disease virus C1-Santa Pau (C-S8) Gene 35 55-172
[10]  
Dopazo J.(1991)Rapid and sensitive detection of foot-and-mouth disease virus in tissues by enzymatic amplification of the polymerase gene Journal of Virological Methods 34 161-67