Differential amplification and quantitation of Marek's disease viruses using real-time polymerase chain reaction

被引:90
|
作者
Islam, A [1 ]
Harrison, B
Cheetham, BF
Mahony, TJ
Young, PL
Walkden-Brown, SW
机构
[1] Univ New England, Sch Rural Sci & Agr, Ctr Anim Hlth & Welf, Armidale, NSW 2351, Australia
[2] Dept Primary Ind & Fisheries, St Lucia, Qld 4072, Australia
[3] Univ New England, Sch Biol Biomed & Mol Sci, Armidale, NSW 2351, Australia
[4] Benitec Australia Ltd, St Lucia, Qld 4067, Australia
基金
澳大利亚研究理事会;
关键词
Marek's disease virus serotypes; real-time PCR; quantitation;
D O I
10.1016/j.jviromet.2004.03.006
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
Quantitative real-time PCR (qPCR) assays for the three serotypes of Marek's disease virus (MDV) have been developed. An internal control qPCR assay that detects chicken alpha2 (VI) collagen gene was also developed to allow quantitation of MDV. To reduce costs and time, the assays for MDV1 and the internal control were combined into a duplex assay. The sensitivity, specificity, precision, and reproducibility of each assay are reported. The MDV qPCR assays were specific to their target gene when compared using Australian field and vaccine strains of MDV and 10-100-fold more sensitive than standard PCR. Using DNA from infected spleen tissue, the lower limit of detection of total DNA (viral and host combined) was 0.025 ng for the MDV1 and collagen assays, and 0.25 ng for the HVT and MDV2 assays. All assays were found to be highly reproducible for Ct values, but less so for calculated concentrations. MDV1 and HVT were quantitated in spleen tissue of twenty experimentally infected chickens 7-35 days after infection. The relative abundance of MDV1 exhibited a clear peak at day 14 post-infection, whereas HVT displayed an increasing trend over the 35 days post-infection. The duplex assay was optimized such that it was able to accurately quantitate MDV1 in samples of very high, medium, and very low relative abundance of MDV1. These qPCR assays will be useful for reliable differentiation and quantitation of MDV for a range of research and industry applications. (C) 2004 Elsevier B.V. All rights reserved.
引用
收藏
页码:103 / 113
页数:11
相关论文
共 50 条
  • [1] Rapid and sensitive real-time recombinase polymerase amplification for detection of Marek's disease virus
    Zeng, Fanwen
    Wu, Miaoli
    Ma, Lei
    Han, Zongxi
    Shi, Yue
    Zhang, Yanping
    Liu, Changjun
    Zhang, Shouquan
    Cong, Feng
    Liu, Shengwang
    MOLECULAR AND CELLULAR PROBES, 2019, 48
  • [2] Comparison of standard polymerase chain reaction (PCR) with real-time pcr for meq gene of Marek's disease virus
    Krol, Katarzyna
    Baigent, Sue
    Nair, Venugopal
    Kozdrun, Wojciech
    Samorek-Salamonowicz, Elzbieta
    BULLETIN OF THE VETERINARY INSTITUTE IN PULAWY, 2007, 51 (01) : 3 - 7
  • [3] Improved quantitation of haematopoietic chimaerism by real-time polymerase chain reaction
    Harries, LW
    Wickham, CL
    Rule, SA
    Joyner, MV
    Ellard, S
    BRITISH JOURNAL OF HAEMATOLOGY, 2004, 125 : 39 - 39
  • [4] Real-time polymerase chain reaction for detection and quantitation of Phomopsis longicolla
    Fessehaie, A.
    Shepherd, L. M.
    Block, C. C.
    Munkvold, G.
    Misra, M.
    PHYTOPATHOLOGY, 2009, 99 (06) : S34 - S34
  • [5] Relative quantitation of mRNA in β-thalassemia/Hb E using real-time polymerase chain reaction
    Watanapokasin, Y
    Winichagoon, P
    Fuchareon, S
    Wilairat, P
    HEMOGLOBIN, 2000, 24 (02) : 105 - 116
  • [6] Quantitation of Bacillus clausii in biological samples by real-time polymerase chain reaction
    Perotti, Mario
    Mancini, Nicasio
    Cavallero, Annalisa
    Carletti, Silvia
    Canducci, Filippo
    Burioni, Roberto
    Clementi, Massimo
    JOURNAL OF MICROBIOLOGICAL METHODS, 2006, 65 (03) : 632 - 636
  • [7] Real-time polymerase chain reaction
    Oldach, D
    GASTROENTEROLOGY, 1999, 116 (03) : 763 - 765
  • [8] Real-time polymerase chain reaction
    Wilhelm, J
    Pingoud, A
    CHEMBIOCHEM, 2003, 4 (11) : 1120 - 1128
  • [9] Immunopolymerase chain reaction using real-time polymerase chain reaction for detection
    Sims, PW
    Vasser, M
    Wong, WL
    Williams, PM
    Meng, YG
    ANALYTICAL BIOCHEMISTRY, 2000, 281 (02) : 230 - 232
  • [10] Real-time polymerase chain reaction with electrochemical detection for detection pandemic viruses
    Adam, V.
    Huska, D.
    Krizkova, S.
    Hubalek, J.
    Kizek, R.
    FEBS JOURNAL, 2009, 276 : 95 - 96