A. Hilmi, H. T. Surakka, A. Apajalahti, J. Saris, and P. E. , Identification of the most abundant Lactobacillus species in the crop of 1-and 5-week-old broiler chickens, Appl Environ Microbiol, vol.73, pp.7867-7873, 2007.

J. L. Arqués, J. Fernández, P. Gaya, M. Núñez, E. Rodríguez et al., Antimicrobial activity of reuterin in combination with nisin against food-borne pathogens, Int J Food Microbiol, vol.95, pp.225-229, 2004.

J. L. Balcazar, I. De-blas, I. Ruiz-zarzuela, D. Vendrell, A. C. Calvo et al., Changes in intestinal microbiota and humoral immune response following probiotic administration in brown trout (Salmo trutta), Br J Nutr, vol.97, pp.522-527, 2007.

E. M. Barnes, The avian intestinal flora with particular reference to the possible ecological significance of the cecal anaerobic bacteria, Am J Clin Nutr, vol.25, pp.1475-1497, 1972.

E. M. Barnes, C. S. Impey, and B. Stevens, Factors affecting the incidence and anti-salmonella activity of the anaerobic caecal flora of the young chick, J Hyg, vol.82, pp.263-283, 1979.

L. Bjerrum, R. M. Engberg, T. D. Leser, B. B. Jensen, K. Finster et al., Microbial community composition of the ileum and cecum of broiler chickens as revealed by molecular and culture based techniques, Poul Sci, vol.85, pp.1151-1164, 2006.

E. R. Burrough, O. Sahin, P. J. Plummer, K. D. Diverde, Q. Zhang et al., Comparison of two commercial ovine Campylobacter vaccines and an experimental bacterin in guinea pigs inoculated with Campylobacter jejuni, Am J Vet Res, vol.72, pp.799-805, 2011.

F. Chiaramonte, S. Blugeon, S. Chaillou, P. Langella, and M. Zagorec, Behavior of the meat-borne bacterium Lactobacillus sakei during its transit through the gastrointestinal tracts of axenic and conventional mice, Appl Environ Microbiol, vol.75, pp.4498-4505, 2009.
URL : https://hal.archives-ouvertes.fr/hal-01190025

P. L. Connerton, A. R. Timms, and I. F. Connerton, Campylobacter bacteriophages and bacteriophage therapy, J Appl Microbiol, vol.111, pp.255-265, 2011.

J. E. Corry and H. I. Atabay, Poultry as a source of Campylobacter and related organisms, Symp Ser Soc Appl Microbiol, 2001.

D. Loach and . Jr, Development of PREEMPT?: the first FDA approved CE product to reduce Salmonella in poultry, Annual Summit Proceedings. Technology Transfer Society, pp.123-126, 1998.

J. De-man, M. Rogosa, and . Sharpe, ME (1964) A medium for the cultivation of lactobacilli, J Appl Bacteriol, vol.23, pp.130-136

C. Dortu, P. Fickers, C. Franz, D. Ndagano, M. Huch et al., Characterisation of an antilisterial bacteriocin produced by Lactobacillus sakei CWBI-B1365 isolated from raw poultry meat and determination of factors controlling its production, Probiotics Antimic Proteins, vol.1, pp.75-84, 2009.

S. Dubernet, N. Desmasures, and M. Guéguen, A PCR-based method for identification of lactobacilli at the genus level, FEMS Microbiol Lett, vol.21, pp.271-275, 2002.
URL : https://hal.archives-ouvertes.fr/hal-02087040

T. J. Dumonceaux, J. E. Hill, S. M. Hemmingsen, V. Kessel, and A. G. , Characterization of intestinal microbiota and response to dietary virginiamycin supplementation in the broiler chicken, Appl Environ Microbiol, vol.72, pp.2815-2823, 2006.

, European Food safety Authority report, 2007.

R. Fuller, Probiotics in man and animals, J Appl Bacteriol, vol.66, pp.365-378, 1989.

I. Gabriel, S. Maillet, and P. Sibille, La microflore digestive des volailles: facteurs de variation et conséquences pour l'animal, INRA Prod Anim, vol.18, pp.309-322, 2005.

J. Gong, R. J. Forster, H. Yu, J. R. Chambers, R. Wheatcroft et al., Molecular analysis of bacterial populations in the ileum of broiler chickens and comparison with bacteria in the cecum, FEMS Microbiol Ecol, vol.41, pp.171-179, 2002.

V. Gürtler and V. A. Stanisich, New approaches to typing and identification of bacteria using the 16S-23S rDNA spacer region, Microbiology, vol.142, pp.3-16, 1996.

J. P. Higgins, S. E. Higgins, J. L. Vicente, A. D. Wolfenden, G. Tellez et al., Temporal effects of lactic acid bacteria probiotic culture on Salmonella in neonatal broilers, Poult Sci, vol.86, pp.1662-1666, 2007.

M. Hugas, M. Garriga, T. Aymerich, and J. M. Monfort, Biochemical characterization of lactobacilli from dry fermented sausages, Int J Food Microbiol, vol.18, pp.107-113, 1993.

E. Jaffres, H. Prévost, A. Rossero, J. J. Joffraud, and X. Dousset, Vagococcus penaei sp. nov., isolated from spoilage microbiota of cooked shrimp (Penaeus vannamei), Int J Syst Evol Microbiol, vol.60, pp.2159-2164, 2010.
URL : https://hal.archives-ouvertes.fr/hal-02661905

P. Kabadjova, X. Dousset, L. Cam, V. Prevost, and H. , Differentiation of closely related Carnobacterium food isolates based on 16S-23S ribosomal DNA intergenic spacer region polymorphism, Appl Environ Microbiol, vol.68, pp.5358-5366, 2002.

M. A. Karimi-torshizi, A. R. Moghaddam, R. Sh, and N. Mojgani, Assessing the effect of administering probiotics in water or as a feed supplement on broiler performance and immune response, Brit Poult Sci, vol.5, pp.178-184, 2010.

A. Knarreborg, M. A. Simon, R. M. Engberg, B. B. Jensen, and G. W. Tannock, Effects of dietary fat source and subtherapeutic levels of antibiotic on the bacterial community in the ileum of broiler chickens at various ages, Appl Environ Microbiol, vol.68, pp.5918-5924, 2002.

C. Kurekci, S. L. Bishop-hurley, P. E. Vercoe, Z. Durmic, A. Jassim et al., Screening of Australian plants for antimicrobial activity against Campylobacter jejuni, Phytother Res, 2011.

J. Lu, U. Idris, B. Harmon, C. Hofacre, J. J. Maurer et al., Diversity and succession of the intestinal bacterial community of the maturing broiler chicken, Appl Environ Microbiol, vol.69, pp.6816-6824, 2003.

X. Lu, B. A. Rasco, J. M. Jabal, D. E. Aston, M. Lin et al., Investigating Antibacterial mechanisms of garlic (Allium sativum) concentrate and garlic-derived organosulfur compounds on Campylobacter jejuni using FT-IR spectroscopy, Raman spectroscopy and electron microscope, Appl Environ Microbiol, vol.72, pp.799-805, 2011.

A. Menconi, A. D. Wolfenden, S. Shivaramaiah, J. C. Terraes, T. Urbano et al., Effect of lactic acid bacteria probiotic culture for the treatment of Salmonella enterica serovar Heidelberg in neonatal broiler chickens and turkey poults, Poult Sci, vol.90, pp.561-565, 2011.

L. Nazef, Y. Belguesmia, A. Tani, H. Prévost, and D. Drider, Identification of lactic acid bacteria from poultry feces: evidence on anti-Campylobacter and anti-listeria activities, Poult Sci, vol.87, pp.329-334, 2008.

J. A. Patterson and K. M. Burkholder, Application of prebiotics and probiotics in poultry production, Poult Sci, vol.82, pp.627-631, 2003.

M. Rantala and E. Nurmi, Prevention of the growth of Salmonella infantis in chicks by the flora of the alimentary tract of chickens, Brit Poult Sci, vol.14, pp.627-657, 1973.

G. Reid and R. Friendship, Alternatives to antibiotic use: probiotics for the gut, Anim Biotechnol, vol.13, pp.97-112, 2002.

S. Ruiz-moyano, A. Martin, M. J. Benito, R. Casquette, M. J. Serradilla et al., Safety and functional aspects of pre-selected lactobacilli for probiotic use in Iberian dry-fermented sausages, Meat Sci, vol.83, pp.460-467, 2009.

R. G. Shaughnessy, K. G. Meade, B. A. Mcgivney, B. Allan, O. 'farrelly et al., Global gene expression analysis of chicken caecal response to Campylobacter jejuni, Vet Immunol Immunopath, vol.142, pp.64-71, 2011.

M. R. Souza, J. L. Moreira, F. H. Barbosa, M. M. Cerqueira, A. C. Nunes et al., Influence of intensive and extensive breeding on lactic acid bacteria isolated from Gallus gallus domesticus ceca, Vet Microbiol, vol.120, pp.142-150, 2007.

N. J. Stern, E. A. Svetoch, B. V. Eruslanov, Y. N. Kovalev, L. I. Volodina et al., Paenibacillus polymyxa purified bacteriocin to control Campylobacter jejuni in chickens, J Food Prot, vol.68, pp.1450-1453, 2005.

N. J. Stern, E. A. Svetoch, B. V. Eruslanov, V. V. Perelygin, E. V. Mitsevich et al., Isolation of a Lactobacillus salivarius strain and purification of its bacteriocin, which is inhibitory to Campylobacter jejuni in the chicken gastrointestinal system, Ant Ag Chemother, vol.50, pp.3111-3116, 2006.

P. Surachon, P. Sukon, P. Chaveerach, P. Waewdee, and C. Soikum, Screening of lactic acid bacteria isolated from chicken ceca for in vitro growth inhibition of Salmonella enteritica serovar Enteritidis, J Anim Vet Advan, vol.10, pp.939-944, 2011.

E. A. Svetoch, B. V. Eruslanov, V. V. Perelygin, E. V. Mitsevich, I. P. Mitsevich et al., Diverse antimicrobial killing by Enterococcus faecium E 50-52 bacteriocin, J Agric Food Chem, vol.56, pp.1942-1948, 2008.

E. A. Svetoch, B. V. Eruslanov, V. P. Levchuk, V. V. Perelygin, E. V. Mitsevich et al., Isolation of Lactobacillus salivarius 1077 (NRRL B-50053) and characterization of its bacteriocin, including the antimicrobial activity spectrum, Appl Environ Microbiol, vol.77, pp.2749-2754, 2011.

K. Tamura, J. Dudley, M. Nei, and S. Kumar, MEGA4: Molecular Evolutionary Genetics Analysis (MEGA) software version 4.0, Mol Biol Evolut, vol.24, pp.1596-1599, 2007.

L. M. Teixeira, M. G. Carvalho, V. L. Merquior, A. G. Steigerwalt, D. J. Brenner et al., Phenotypic and genotypic characterization of Vagococcus fluvialis, including strains isolated from human sources, J Clin Microbiol, vol.35, pp.2778-2781, 1997.

J. D. Thompson, D. G. Higgins, and T. J. Gibson, CLUSTAL W: improving the sensitivity of progressive multiple sequence alignment through sequence weighting, position-specific gap penalties and weight matrix choice, Nuc Acid Res, vol.22, pp.4673-4680, 1994.

S. D. Todorov and L. M. Dicks, Optimization of bacteriocin ST311LD production by Enterococcus faecium ST 311LD, isolated from spoiled black olives, J Microbiol, vol.43, pp.370-374, 2005.

E. Vera-pingitore, E. M. Hébert, M. E. Nader-macías, and F. Sesma, Characterization of salivaricin CRL 1328, a two-peptide bacteriocin produced by Lactobacillus salivarius CRL 1328 isolated from the human vagina, Res Microbiol, vol.160, pp.401-408, 2009.

D. Villate, L'appareil digestif, Les maladies des volailles, pp.27-38, 2001.

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.

G. Zhang, L. Ma, and M. P. Doyle, Potential competitive exclusion bacteria from poultry inhibitory to Campylobacter jejuni and Salmonella, J Food Prot, vol.70, pp.867-873, 2007.