S. M. Man, The clinical importance of emerging Campylobacter species, Nat Rev Gastroenterol Hepatol, vol.8, pp.669-85, 2011.

S. On, Isolation, identification and subtyping of Campylobacter: where to from here?, J Microbiol Methods, vol.95, pp.3-7, 2013.

S. On, . Taxonomy, and A. Campylobacter, Helicobacter and related bacteria: current status, future prospects and immediate concerns, J Appl Microbiol, vol.90, pp.1-15, 2001.

. Oie, Código sanitario para los animales terrestres. CA PÍTULO 11. 3. Campilobacteriosis genital bovina, pp.10-11, 2014.

M. Veron and R. Chatelain, Taxonomic Study of the Genus Campylobacter Sebald and Veron and Designation of the Neotype Strain for the Type Species, Campylobacter fetus (Smith and Taylor) Sebald and Veron, Int J Syst Bacteriol, vol.23, pp.122-156, 1973.

M. M. Garcia, G. M. Ruckerbauer, M. D. Eaglesome, and W. E. Boisclair, Detection of Campylobacter fetus in artificial insemination bulls with a transport enrichment medium, Can J Comp Med, vol.47, pp.336-376, 1983.

J. A. Wagenaar, M. Van-bergen, M. J. Blaser, R. V. Tauxe, D. G. Newell et al., Campylobacter fetus infections in humans: exposure and disease, Clin Infect Dis, vol.58, pp.1-26, 2014.

G. Iraola, L. Betancor, L. Calleros, P. Gadea, G. Algorta et al., A rural worker infected with a bovine-prevalent genotype of Campylobacter fetus subsp. fetus supports zoonotic transmission and inconsistency of MLST and whole-genome typing, Eur J Clin Microbiol Infect Dis, vol.34, pp.1593-1599, 2015.

G. D. Mshelia, J. D. Amin, Z. Woldehiwet, R. D. Murray, and G. O. Egwu, Epidemiology of bovine venereal campylobacteriosis: geographic distribution and recent advances in molecular diagnostic techniques, Reprod Domest Anim, vol.45, pp.221-251, 2010.

C. Fitzgerald, Z. C. Tu, M. Patrick, T. Stiles, A. J. Lawson et al., Campylobacter fetus subsp. testudinum subsp. nov., isolated from humans and reptiles, Int J Syst Evol Microbiol, vol.64, pp.2944-2952, 2014.

T. M. Alves, A. Stynen, and K. L. Miranda, Campilobacteriose genital bovina e tricomonose genital bovina : epidemiologia, diagnóstico e controle. Pesqui Veterinária Bras, vol.31, pp.336-380, 2011.

S. Hum, K. Quinn, J. Brunner, and S. L. On, Evaluation of a PCR assay for identification and differentiation of Campylobacter fetus subspecies, Aust Vet J, vol.75, pp.827-858, 1997.

C. Abril, E. M. Vilei, I. Brodard, A. Burnens, J. Frey et al., Discovery of insertion element ISCfe1: a new tool for Campylobacter fetus subspecies differentiation, Clin Microbiol Infect, vol.13, pp.993-1000, 2007.

B. Chaban, K. M. Musil, C. G. Himsworth, and J. E. Hill, Development of cpn60-based real-time quantitative PCR assays for the detection of 14 Campylobacter species and application to screening of canine fecal samples, Appl Environ Microbiol, vol.75, pp.3055-61, 2009.

B. Chaban, S. Chu, S. Hendrick, C. Waldner, and J. E. Hill, Evaluation of a Campylobacter fetus subspecies venerealis real-time quantitative polymerase chain reaction for direct analysis of bovine preputial samples, Can J Vet Res, vol.76, pp.166-73, 2012.

A. M. Selim, M. M. Elhaig, and W. Gaede, Development of multiplex real-time PCR assay for the detection of Brucella spp., Leptospira spp. and Campylobacter foetus, Vet Ital, vol.50, pp.269-75, 2014.

L. Van-der-graaf-van-bloois, M. Van-bergen, F. J. Van-der-wal, A. G. De-boer, B. Duim et al., Evaluation of molecular assays for identification Campylobacter fetus species and subspecies and development of a C. fetus specific real-time PCR assay, J Microbiol Methods, vol.95, pp.93-100, 2013.

K. Blom, C. M. Patton, M. A. Nicholson, and B. Swaminathan, Identification of Campylobacter fetus by PCR-DNA probe method, J Clin Microbiol, vol.33, pp.1360-1362, 1995.

P. Cardarelli-leite, K. Blom, C. M. Patton, M. A. Nicholson, A. G. Steigerwalt et al., Rapid identification of Campylobacter species by restriction fragment length polymorphism analysis of a PCR-amplified fragment of the gene coding for 16S rRNA, J Clin Microbiol, vol.34, pp.62-69, 1996.

C. P. Kolbert and D. H. Persing, Ribosomal DNA sequencing as a tool for identification of bacterial pathogens, Curr Opin Microbiol, vol.2, pp.299-305, 1999.

D. Linton, R. J. Owen, and J. Stanley, Rapid identification by PCR of the genus Campylobacter and of five Campylobacter species enteropathogenic for man and animals, Res Microbiol, vol.147, pp.707-725, 1996.

W. G. Weisburg, S. M. Barns, D. A. Pelletier, and D. J. Lane, 16S ribosomal DNA amplification for phylogenetic study, J Bacteriol, vol.173, pp.697-703, 1991.

I. V. Wesley, R. D. Wesley, M. Cardella, F. E. Dewhirst, and B. J. Paster, Oligodeoxynucleotide probes for Campylobacter fetus and Campylobacter hyointestinalis based on 16S rRNA sequences, J Clin Microbiol, vol.29, pp.1812-1819, 1991.

G. Gorkiewicz, G. Feierl, C. Schober, F. Dieber, J. Köfer et al., Species-specific identification of campylobacters by partial 16S rRNA gene sequencing, J Clin Microbiol, vol.41, pp.2537-2583, 2003.

O. A. Oyarzabal, T. V. Wesley, K. M. Harmon, J. M. Barbaree, L. H. Lauerman et al., Campylobacter fetus by PCR targeting variable regions of the 16s rDNA, vol.58, pp.61-71, 1997.

S. On, Identification methods for campylobacters, helicobacters, and related organisms, Clin Microbiol Rev, vol.9, pp.405-427, 1996.

C. Tramuta, D. Lacerenza, S. Zoppi, M. Goria, A. Dondo et al., Development of a set of multiplex standard polymerase chain reaction assays for the identification of infectious agents from aborted bovine clinical samples, J Vet Diagn Invest, vol.23, pp.657-64, 2011.

M. A. Van-bergen, G. Simons, L. Van-der-graaf-van-bloois, J. P. Van-putten, J. Rombout et al., Amplified fragment length polymorphism based identification of genetic markers and novel PCR assay for differentiation of Campylobacter fetus subspecies, J Med Microbiol, vol.54, pp.1217-1241, 2005.

G. Wang, C. G. Clark, T. M. Taylor, C. Pucknell, C. Barton et al., Colony multiplex PCR assay for identification and differentiation of Campylobacter jejuni, C. coli, C. lari, C. upsaliensis, and C. fetus subsp. fetus, J Clin Microbiol, vol.40, pp.4744-4751, 2002.

R. Alonso, M. E. Cisterna, and R. , Detection of parC mutations in Streptococcus pneumoniae by Real-time PCR and Taqman-MGB probes, J Microbiol Methods, vol.69, pp.214-221, 2007.

I. V. Kutyavin, I. A. Afonina, A. Mills, V. V. Gorn, E. A. Lukhtanov et al., 3?-minor groove binder-DNA probes increase sequence specificity at PCR extension temperatures, Nucleic Acids Res, vol.28, pp.655-61, 2000.
DOI : 10.1093/nar/28.2.655

URL : https://academic.oup.com/nar/article-pdf/28/2/655/9904753/280655.pdf

N. Rousselon, J. P. Delgenès, and J. J. Godon, A new real time PCR (TaqMan® PCR) system for detection of the16S rDNA gene associated with fecal bacteria, J Microbiol Methods, vol.59, pp.15-22, 2004.

T. Schmidt, E. H. Venter, and J. A. Picard, Evaluation of PCR assays for the detection of Campylobacter fetus in bovine preputial scrapings and the identification of subspecies in South African field isolates, J S Afr Vet Assoc, vol.81, pp.87-92, 2010.

F. Schulze, A. Bagon, W. Müller, and H. Hotzel, Identification of Campylobacter fetus subspecies by phenotypic differentiation and PCR, J Clin Microbiol, vol.44, pp.2019-2043, 2006.

L. Van-der-graaf-van-bloois, W. G. Miller, Y. E. Rijnsburger, M. Wagenaar, J. A. Duim et al., Inconsistency of phenotypic and genomic characteristics of Campylobacter fetus subspecies requires reevaluation of current diagnostics, J Clin Microbiol, vol.52, pp.4183-4191, 2014.

K. Willoughby, P. F. Nettleton, M. Quirie, M. A. Maley, G. Foster et al., A multiplex polymerase chain reaction to detect and differentiate Campylobacter fetus subspecies fetus and Campylobacter fetus subspecies venerealis: use on UK isolates of C. fetus and other Campylobacter spp, J Appl Microbiol, vol.99, pp.758-66, 2005.

J. J. Rasmussen, C. S. Vegge, H. Frøkiaer, R. M. Howlett, K. A. Krogfelt et al., Campylobacter jejuni carbon starvation protein A (CstA) is involved in peptide utilization, motility and agglutination, and has a role in stimulation of dendritic cells, J Med Microbiol, vol.62, pp.1135-1178, 2013.

C. Notredame, D. G. Higgins, and J. Heringa, T-coffee: a novel method for fast and accurate multiple sequence alignment, J Mol Biol, vol.302, pp.205-222, 2000.

C. Quast, E. Pruesse, P. Yilmaz, J. Gerken, T. Schweer et al., The SILVA ribosomal RNA gene database project: improved data processing and web-based tools, Nucleic Acids Res, vol.41, pp.590-596, 2013.

S. F. Altschul, W. Gish, W. Miller, E. W. Myers, and D. J. Lipman, Basic local alignment search tool, J Mol Biol, vol.215, pp.403-413, 1990.

G. Iraola, M. Hernández, L. Calleros, F. Paolicchi, S. Silveyra et al., Application of a multiplex PCR assay for Campylobacter fetus detection and subspecies differentiation in uncultured samples of aborted bovine fetuses, J Vet Sci, vol.13, pp.371-377, 2012.

P. M. Moolhuijzen, A. E. Lew-tabor, B. M. Wlodek, F. G. Agüero, D. J. Comerci et al., Genomic analysis of Campylobacter fetus subspecies: identification of candidate virulence determinants and diagnostic assay targets, BMC Microbiol, vol.9, pp.86-97, 2009.

D. G. Ginzinger, Gene quantification using real-time quantitative PCR: an emerging technology hits the mainstream, Exp Hematol, vol.30, pp.503-515, 2002.

M. W. Pfaffl, A new mathematical model for relative quantification in real-time RT-PCR, Nucleic Acids Res, vol.29, p.45, 2001.

B. Gasparic, M. Cankar, K. Zel, J. Gruden, and K. , Comparison of different real-time PCR chemistries and their suitability for detection and quantification of genetically modified organisms, BMC Biotechnol, vol.8, p.26, 2008.

S. A. Bustin and T. Nolan, Pitfalls of quantitative real-time reverse-transcription polymerase chain reaction, J Biomol Tech, vol.15, pp.155-66, 2004.