Journal of Animal and Veterinary Advances

Year: 2011
Volume: 10
Issue: 11
Page No. 1421 - 1426

Detection of sef14, sef17 and sef21 Fimbrial Virulence Genes of Salmonella enteritidis by Multiplex PCR

Authors : T. Zahraei Salehi, O. Madadgar, S. Naserli, B. Nayeri Fasaei, M.M. Ghafari and I. Ashrafi Tamai

References

Clayton, D.J., A.J. Bowen, S.D. Hulme, A.M. Buckley and V.L. Deacon et al., 2008. Analysis of the role of 13 major fimbrial subunits in colonisation of the chicken intestines by Salmonella enterica serovar Enteritidis reveals a role for a novel locus. BMC Microbiol., 8: 228-228.
CrossRef  |  PubMed  |  

Clegg, S., L.S. Hancox and K.S. Yeh, 1996. Salmonella typhimurium fimbrial phase variation and fimA expression. J. Bacteriol., 178: 542-545.
Direct Link  |  

Collighan, R.J. and M.J. Woodward, 2001. The SEF14 fimbrial antigen of Salmonella enterica serovar Enteritidis is encoded within a pathogenicity islet. Vet. Microbiol., 80: 235-245.
CrossRef  |  PubMed  |  

Collinson, S.K., J.M.R. Parker, R.S. Hodges and W.W. Kay, 1999. Structural predictions of AgfA, the insoluble fimbrial subunit of Salmonella thin aggregative fimbriae. J. Mol. Bacteriol., 290: 741-756.
CrossRef  |  PubMed  |  

Collinson, S.K., P.C. Doig, J.L. Doran, S. Clouthier, L. T.J. Trust and W.W. Kay, 1993. Thin, aggregative fimbriae mediate binding of Salmonella entenitidis to fibronectin. J. Bacteriol., 175: 12-18.
Direct Link  |  

Cortez, A.L.L., A.C.F.B. Carvalho, A.A. Ikuno, K.P. Burger and A.M.C. Vidal-Martins, 2006. Identification of Salmonella sp. isolates from chicken abattoirs by M-PCR. Vet. Sci., 81: 340-344.
CrossRef  |  

Darwin, K.H. and V.L. Miller, 1999. Molecular basis of the interaction of Salmonella with the intestinal mucosa. Clin. Microbiol. Rev., 12: 405-428.
PubMed  |  Direct Link  |  

Del Cerro, A., S.M. Soto and M.C. Mendoza, 2003. Virulence and antimicrobial-resistance gene profiles determined by PCR-based procedures for Salmonella isolated from samples of animal origin. Food Microbiol., 20: 431-438.
Direct Link  |  

Edwards, R.A., D.M. Schifferli and S.R. Maloy, 2000. A role for Salmonella fimbriae in intraperitoneal infections. Proc. Nat. Acad. Sci. USA., 97: 1258-1262.
PubMed  |  Direct Link  |  

Gantois, I., R. Ducatelle, F. Pasmans, F. Haesebrouck and F. van Immerseel, 2008. Salmonella enterica serovar enteritidis genes induced during oviduct colonization and egg contamination in laying hens. Applied Environ. Microbiol., 74: 6616-6622.
PubMed  |  Direct Link  |  

Herrera-Leon, S., J.R. McQuiston, M.A. Usera, P.I. Fields, J. Garaizar and M.A. Echeita, 2004. Multiplex PCR for distinguishing the most common phase-1 Flagellar antigens of Salmonella sp. J. Clin. Microbiol., 42: 2581-2586.
CrossRef  |  PubMed  |  

Humphries, A.D., S.M. Townsend, R.A Kingsley, T.L. Nicholson, R.M. Tsolis and A.J. Baumler, 2001. Role of fimbriae as antigens and intestinal colonization factors of Salmonella serovars. FEMS Microbiol. Let., 201: 121-125.
CrossRef  |  PubMed  |  

Kisiela, D., M. Kuczkowski, A. Wieliczco, I. Sambor, M. Mazurkiewicz and M. Ugorski, 2003. Comparison of Sef A, FimA, Agf A fimbrial proteins of Salmonella enteritidis in their abilities to elicit humeral immune response in hens. Bull. Vet. Ins. Pulawy., 47: 95-105.

Madadgar, O., H. Tadjbakhsh, T.Z. Salehi, M. Mahzounieh and M.M. Feizabadi, 2008. Evaluation of random amplified polymorphic DNA analysis and antibiotic susceptibility application in discrimination of Salmonella typhimurium isolates in Iran. New Microbiol., 31: 211-216.
PubMed  |  Direct Link  |  

Mirmomeni, M.H., S. Sisakhtnezhad and A. Sharifi, 2008. Rapid detection of Salmonella enteritidis by PCR amplification of the SefA gene and its cloning. Pak. J. Biol. Sci., 11: 428-432.
CrossRef  |  PubMed  |  Direct Link  |  

Murugkar, H.V., H. Rahman and P.K. Dutta, 2003. Distribution of virulence genes in Salmonella serovars isolated from man and animals. Indian J. Med. Res., 117: 66-70.
PubMed  |  Direct Link  |  

Naughton, P.J., G. Grant, M. Sojka, S. Bardocz, C.J. Thorns and A. Pusztai, 2001. Survival and distribution of cell-free SEF 21 of Salmonella enterica serovar Enteritidis in the stomach and various compartments of the rat gastrointestinal tract in vivo. J. Med. Microbiol., 50: 1049-1054.
Direct Link  |  

Naughton, P.J., G. Grant, S. Bardocz, E. Allen-Vercoe, M.J. Woodward and A. Pusztai, 2001. Expression of type 1 fimbriae (SEF 21) of Salmonella enterica serotype Enteritidis in the early colonisation of the rat intestine. J. Med. Microbiol., 50: 191-197.
Direct Link  |  

Ochoa-Reparaz, J., B. Sesma, M. Alvarez, M.J. Renedo, J.M. Irache and C. Gamazo, 2004. Humoral immune response in hens naturally infected with Salmonella enteritidis against outer membrane proteins and other surface structural antigens. Vet. Res., 35: 291-298.
CrossRef  |  PubMed  |  

Oliveira, S.D., C.R. Rodenbusch, M.C. Ce, S.L.S. Rocha and C.W. Canal, 2003. Evaluation of selective and non-selective enrichment PCR procedures for Salmonella detection. Lett. Applied Microbiol., 36: 217-221.
CrossRef  |  PubMed  |  Direct Link  |  

Pan, T.M. and Y.J. Liu, 2002. Identification of Salmonella enteritidis isolates by polymerase chain reaction and multiplex polymerase chain reaction. J. Microbiol. Immunol. Infect., 35: 147-151.
PubMed  |  Direct Link  |  

Pasmans, F., A. Martel, F. Boyen, D. Vandekerchove and I. Wybo et al., 2005. Characterization of Salmonella isolates from captive lizard. Vet. Microbiol., 110: 285-291.
CrossRef  |  PubMed  |  

Soumet, C., G. Ermel, N. Rose, V. Rose, P. Drouin, G. Salvat and P. Colin, 1999. Identification by a multiplex PCR-based assay of Salmonella typhimurium and Salmonella enteritidis strains from environmental swabs of poultry houses. Lett. Applied Microbiol., 29: 1-6.
CrossRef  |  

Sukhnanand, S., S. Alcaine, L.D. Warnick, W.L. Su and J. Hof et al., 2005. DNA Sequence-based subtyping and evolutionary analysis of selected Salmonella enteric serotypes. J. Clin. Microbiol., 43: 3688-3698.
CrossRef  |  

Thorns, C.J., C. Turcotte, C.G. Gemmell and M.J. Woodward, 1996. Studies into the role of the SEF14 fimbrial antigen in the pathogenesis of Salmonella enteritidis. Microbial Pathogen., 20: 235-246.
CrossRef  |  PubMed  |  Direct Link  |  

Van Asten, A.J.A.M. and J.E. van Dijk, 2005. Distribution of “classic” virulence factors among Salmonella spp. FEMS Immunol. Med. Microbiol., 44: 251-259.
CrossRef  |  PubMed  |  Direct Link  |  

Design and power by Medwell Web Development Team. © Medwell Publishing 2024 All Rights Reserved