Vet Med - Czech, 2009, 54(11):525-531 | DOI: 10.17221/3075-VETMED

The effect of a new probiotic preparation on the performance and faecal microflora of broiler chickens

J. Biernasiak1, K. Slizewska2
1 Institute of Chemical Technology of Food, Technical University of Lodz, Lodz, Poland
2 Institute of Fermentation Technology and Microbiology, Technical University of Lodz, Lodz, Poland

The aim of the study was to examine the possibility of replacing antibiotic growth promoters with a new probiotic preparation. One gram of the preparation contains: 4.7 × 107 of LAB (Lactobacillus casei/paracasei LOCK 0920, L. brevis LOCK 0944, L. plantarum LOCK 0945), 2.0 × 103 of yeast (Saccharomyces cerevisiae LOCK 0140) and a 50 mg of extract from Yucca Schidigera. The experiment was conducted on 99 female broilers divided into three groups consisting of 33 chickens, kept separately. A wheat- and soybean meal-based diet was divided into three parts: A (containing 1 g/kg of probiotic for starter and grower diets and 0.5g/kg for finisher diet), B (containing 14 mg/kg of flavomycin), and C (unsupplemented). The diets were fed from Day 1 to Day 41 of life. Final BW was on average 2.4 kg in all groups, FCR was 1.63 kg feed/kg BWG, neither BWG nor FCR nor mass of the liver, pancreas and gastrointestinal tract were significantly influenced by supplementing the diet with either additive. Special attention should be drawn to the fact that supplementing feeds with a probiotic preparation already after one week of breeding considerably decreased the number of Clostridium bacteria in broilers' faeces. Nevertheless, it should be emphasized that in this study the excreta of chickens fed with the feed mixed with a probiotic contained the lowest changeability of the number bacteria of the Enterobacteriaceae family and bacteria belonging to coli groups in individual weeks of breeding. It may be concluded that the studied probiotic can be considered as a substitute for antibiotic growth promoters in broiler diets.

Keywords: probiotic; broiler chickens; faecal microflora; performance

Published: November 30, 2009  Show citation

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Biernasiak J, Slizewska K. The effect of a new probiotic preparation on the performance and faecal microflora of broiler chickens. Vet Med - Czech. 2009;54(11):525-531. doi: 10.17221/3075-VETMED.
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References

  1. Anonymous (2002): Guidelines for the Evaluation of Probiotics in Food. Report of a Joint FAO/WHO Working Group on Drafting Guidelines for the Evaluation of Probiotics in Food. London Ontario, Canada, 30 April and 1 May 2002.
  2. Berghmann L.R., Abi-Ghanem D., Wagnela S.D., Ricke S.C. (2005): Antibodies: an alternative for antibiotics? Poultry Science, 84, 660-666. Go to original source... Go to PubMed...
  3. Casewell M., Friis C., Marco E. (2003): The European ban on growth promoting antibiotics and emerging consequences for human and animal health. The Journal of Antimicrobial Chemotherapy, 52, 159-161. Go to original source... Go to PubMed...
  4. Fethiere R., Miles R.D. (1987): Intestinal tract weight of chicks fed an antibiotic and probiotic. Nutrition Reports International, 36, 1305-1309.
  5. Francis C., Janky D.M., Arafa A.S., Harms R.H. (1978): Interrelationship of Lactobacillus and zinc bacitracin in diets of Turkey poults. Poultry Science, 57, 1687-1689. Go to original source...
  6. Jin L.Z., Ho Y.W., Abdullah N., Ali M.A., Jalaludin S. (1998): Effects of adherent Lactobacillus cultures on growth, weight of organs and intestinal microflora and volatile fatty acids in broilers. Animal Feed Science and Technology, 70, 197-209. Go to original source...
  7. Kralik G., Milakovic Z., Ivankovic S. (2004): Effect of probiotic supplementation on the performance and the composition of the intestinal microflora in broilers. Acta Agraria Kaposvariensis, 8, 23-31.
  8. Maiolino R., Fioretii A., Menna L.F., Meo C. (1992): Research on the efficiency of probiotics in diets for broiler chickens. Nutrition Abstracts and Reviews, Series B, 62, 482.
  9. McEwen S.A. (2001): Improve antibiotic use in animals. Antibiotic resistance: syntheses of recommendations by expert policy groups. WHO/CDS/CSR/DRS/2001, 10, 65-79.
  10. McEwen S.A., Fedorka-Cray P.J. (2002): Antimicrobial use and resistance in animals. Clinical Infectious Diseases, 34, 93-106. Go to original source... Go to PubMed...
  11. Patterson J.A., Burkholder K.M. (2003): Application of prebiotics and probiotics in poultry production. Poultry Science, 82, 627-631. Go to original source... Go to PubMed...
  12. Philips I., Casewell M., Cox T., de Groot B., Friis Ch., Jones R., Nightingale Ch., Preston R., Waddell J. (2003): Does the use of antibiotic in food animals pose a risk to human health? A critical review of published data. The Journal of Antimicrobial Chemotherapy, 53, 28-52. Go to original source... Go to PubMed...
  13. Verstegen M.W.A., Williams B.A. (2002): Alternatives to the use of antibiotics as growth promoters for monogastric animals. Animal Biotechnology, 13, 113-127. Go to original source... Go to PubMed...
  14. Watkins B.A., Kratzer F.H. (1983): Effect of oral dosing of Lactobacillus strains on gut colonization and liver biotin in broiler chicks. Poultry Science, 62, 2088- 2094. Go to original source... Go to PubMed...
  15. Watkins B.A., Kratzer F.H. (1984): Drinking water treatment with commercial preparation of a concentrated Lactobacillus culture for broiler chickens. Poultry Science, 63, 1671-1673. Go to original source... Go to PubMed...

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