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RESEARCH ARTICLE (Open Access)

The potential for probiotics to prevent reproductive tract lesions in free-range laying hens

S. Shini A C D , A. Shini B and P. J. Blackall C
+ Author Affiliations
- Author Affiliations

A School of Veterinary Science, The University of Queensland, Gatton, Qld 4343, Australia.

B School of Agriculture and Food Sciences, The University of Queensland, Gatton, Qld 4343, Australia.

C Queensland Alliance for Agriculture and Food Innovation, The University of Queensland, St Lucia, Qld 4072, Australia.

D Corresponding author. Email: s.shini@uq.edu.au

Animal Production Science 53(12) 1298-1308 https://doi.org/10.1071/AN12337
Submitted: 26 September 2012  Accepted: 19 February 2013   Published: 7 May 2013

Journal Compilation © CSIRO Publishing 2013 Open Access CC BY-NC-ND

Abstract

A study was undertaken to investigate the ability of two commercial probiotics applied in free-range laying hens (from 18 to 22 weeks of age) in reducing the occurrence of reproductive tract pathologies, and improving hen health and performance. In all, 630 17-week-old brown layers were transferred to a freshly cleaned free-range laying facility, and randomly divided into three groups, with three replicates of 70 birds each. Both probiotics were administered in the drinking water (Groups 1 and 2) on a daily basis for 4 weeks, while Group 3 was left untreated. At 38 weeks of age, the results demonstrated that treatment with either probiotic significantly reduced the occurrence of reproductive tract pathologies (control vs probiotics, 33% vs 22% and 11%; P < 0.01), mortalities (control vs probiotics; 3.8% vs 1.5 and 1.9%; P < 0.01), and increased the performance of hens, for another 20 weeks post-treatments (hen day production for control vs probiotics 75% vs 90% and 94%; P < 0.01). Birds treated with probiotics maintained their bodyweight and egg weights at standard ranges, while untreated birds did not perform at this level. Although we were unable to show any effect on cloacal bacterial colonisation, the results of the present study provided some initial evidence that reproductive pathologies that often cause drops in egg production and sudden deaths of birds, can be reduced if free range hens are treated with a commercial probiotic before or during the onset of lay. The use of a probiotic benefits the health and performance status of hens, resulting in better hen welfare and significant economic gains to egg producers.

Additional keywords: egg production, good bacteria, laying hens, oviduct pathology.


References

AECL (2010) ‘Egg industry overview – 2010.’ (Australian Egg Corporation Limited: Sydney).

Apajalahti J, Kettunen A, Graham H (2004) Characteristics of the gastrointestinal microbial communities, with special reference to the chicken. World’s Poultry Science Journal 60, 223–232.
Characteristics of the gastrointestinal microbial communities, with special reference to the chicken.Crossref | GoogleScholarGoogle Scholar |

Awad WA, Ghareeb K, Abdel-Raheem S, Böhm J (2009) Effects of dietary inclusion of probiotic and synbiotic on growth performance, organ weights, and intestinal histomorphology of broiler chickens. Poultry Science 88, 49–56.
Effects of dietary inclusion of probiotic and synbiotic on growth performance, organ weights, and intestinal histomorphology of broiler chickens.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BD1MXhtlamt74%3D&md5=23e2f304d265593501250dc83104aabfCAS | 19096056PubMed |

Balevi T, Ucan US, Coskun B, Kurtoglu V, Cetingul IS (2001) Effect of dietary probiotic on performance and humoral immune response in layer hens. British Poultry Science 42, 456–461.
Effect of dietary probiotic on performance and humoral immune response in layer hens.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BD3MXnsFSisrg%3D&md5=7d5ac646655178d42648b23b166f7b73CAS | 11572620PubMed |

Burkholder KM, Thompson KL, Einstein ME, Applegate TJ, Patterson JA (2008) Influence of stressors on normal intestinal microbiota, intestinal morphology, and susceptibility to Salmonella enteritidis colonization in broilers. Poultry Science 87, 1734–1741.
Influence of stressors on normal intestinal microbiota, intestinal morphology, and susceptibility to Salmonella enteritidis colonization in broilers.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BD1cXhtFWqu7nE&md5=3f5c7e6fe40cbf60d56c6374e7dca69bCAS | 18753440PubMed |

Chadfield M, Permin A, Nansen P, Bisgaard M (2001) Investigation of the parasitic nematode Ascaridia galli (Shrank 1788) as a potential vector for Salmonella enterica dissemination in poultry. Parasitological Research 87, 317–325.
Investigation of the parasitic nematode Ascaridia galli (Shrank 1788) as a potential vector for Salmonella enterica dissemination in poultry.Crossref | GoogleScholarGoogle Scholar | 1:STN:280:DC%2BD3M3mtlensA%3D%3D&md5=a6d700da4862aa656adc199e589ba64fCAS |

Chinivasagam HN, Tran T, Maddock L, Gale A, Blackall PJ (2010) The aerobiology of the environment around mechanically ventilated broiler sheds. Journal of Applied Microbiology 108, 1657–1667.
The aerobiology of the environment around mechanically ventilated broiler sheds.Crossref | GoogleScholarGoogle Scholar | 1:STN:280:DC%2BC3czgs1aguw%3D%3D&md5=5e0b19f6fd07a6cb1b8c1eeb46ec68b6CAS | 19849770PubMed |

De Reu K, Messens W, Heyndrickx M, Rodenburg TB, Uyttendaele M, Herman L (2008) Bacterial contamination of table eggs and the influence of housing systems. World’s Poultry Science Journal 64, 1–19.
Bacterial contamination of table eggs and the influence of housing systems.Crossref | GoogleScholarGoogle Scholar |

Durant JA, Corrier DE, Byrd JA, Stanker LH, Ricke SC (1999) Feed deprivation affects crop environment and modulates Salmonella enteritidis colonization and invasion of Leghorn hens. Applied and Environmental Microbiology 65, 1919–1923.

Ewing WN (2008) Analysing microbial gut population. In ‘The living gut’. 2nd edn. (Eds WN Ewing, with contributions by LA Tucker) pp. 51–57. (Nottingham University Press: Nottingham, UK)

Fossum O, Jansson DS, Etterlin PE, Vågsholm I (2009) Causes of mortality in laying hens in different housing systems in 2001–2004. Acta Veterinaria Scandinavica 15, 51–53.

Gallazzi D, Giardini A, Mangiagalli MG, Marelli S, Ferrazzi V, Orsi C, Cavalchini LG (2008) Effects of Lactobacillus acidophilus D2/CSLon laying hen performance. Italian Journal of Animal Science 7, 27–37.

Gast RK, Beard CW (1990) Isolation of Salmonella enteritidis from internal organs of experimentally infected hens. Avian Diseases 34, 991–993.
Isolation of Salmonella enteritidis from internal organs of experimentally infected hens.Crossref | GoogleScholarGoogle Scholar | 1:STN:280:DyaK3M7ivVaqsA%3D%3D&md5=82630c7e088599561630d2f515ed55ddCAS | 2282024PubMed |

Gross WB, Siegel PB (1959) Coliform peritonitis of chickens. Avian Diseases 3, 370–373.
Coliform peritonitis of chickens.Crossref | GoogleScholarGoogle Scholar |

Hoop RK, Pospischil A (1993) Bacteriological, serological, histological and immunohistochemical findings in laying hens with naturally acquired Salmonella enteritidis phage type 4 infection. The Veterinary Record 133, 391–393.
Bacteriological, serological, histological and immunohistochemical findings in laying hens with naturally acquired Salmonella enteritidis phage type 4 infection.Crossref | GoogleScholarGoogle Scholar | 1:STN:280:DyaK2c7ksVSrsg%3D%3D&md5=60a12d5d4bba901d130890d69f58d012CAS | 8310606PubMed |

Jones HGR, Owen DM (1981) Reproductive tract lesions of the laying fowl with particular reference to bacterial infection. The Veterinary Record 108, 36–37.
Reproductive tract lesions of the laying fowl with particular reference to bacterial infection.Crossref | GoogleScholarGoogle Scholar | 1:STN:280:DyaL3M3gt1ensg%3D%3D&md5=bb8aaa2499665ae99a88b8f91567acbcCAS |

Jordan FT, Williams NJ, Wattret A, Jones T (2005) Observations on salpingitis, peritonitis and salpingoperitonitis in a layer breeder flock. The Veterinary Record 157, 573–577.

Kamei Y, Yoshimizu M, Ezura Y, Kimura T (1988) Screening of bacteria with antiviral activity from fresh water salmonid hatcheries. Microbiology and Immunology 32, 67–73.

Keller LH, Benson CE, Krotec K, Eckroade RJ (1995) Salmonella enteritidis colonization of the reproductive tract and forming and freshly laid eggs of chickens. Infection and Immunity 63, 2443–2449.

Kinde H, Shivaprasad HL, Daft BM, Read DH, Ardans A, Breitmeyer R, Rajashera G, Nagaraja KV, Gardner IA (2000) Pathologic and bacteriologic findings in 27-week-old commercial laying hens experimentally infected with Salmonella enteritidis phage type 4. Avian Diseases 44, 239–248.
Pathologic and bacteriologic findings in 27-week-old commercial laying hens experimentally infected with Salmonella enteritidis phage type 4.Crossref | GoogleScholarGoogle Scholar | 1:STN:280:DC%2BD3M%2FlsV2htg%3D%3D&md5=f852ef6aaa510bd3999427b5f3b4532bCAS | 10879902PubMed |

Lee K, Lillehoj HS, Siragusa GR (2010) Direct-fed microbials and their impacts on the intestinal microflora and immune system of chickens. Japanese Poultry Science 47, 106–114.
Direct-fed microbials and their impacts on the intestinal microflora and immune system of chickens.Crossref | GoogleScholarGoogle Scholar |

Li L, Xu CL, Ji C, Ma Q, Hao K, Jin ZY, Li K (2005) Effects of a dried Bacillus subtilis culture on egg quality. Poultry Science 85, 364–368.

Mirle C, Schongarth M, Meinhart H, Olm U (1991) Studies into incidence of Pasteurella haemolytica infections and their relevance to hens, with particular reference to diseases of the egg-laying apparatus. Monatshefte fur Veterinarmedizin 46, 545–549.

Morelli L, Zonenenschain D, Del Piano M, Cognein P (2004) Utilization of the intestinal tract as a delivery system for urogenital probiotics. Journal of Clinical Gastroenterology 38, S107–S110.
Utilization of the intestinal tract as a delivery system for urogenital probiotics.Crossref | GoogleScholarGoogle Scholar | 1:STN:280:DC%2BD2czjtF2iuw%3D%3D&md5=9e30a208980f4621aaf93c03f0042735CAS | 15220672PubMed |

Morishita TY, Aye PP, Harr BS, Cobb CW, Clifford JR (1997) Evaluation of an avian- specific probiotic to reduce the colonization and shedding of Campylobacter jejuni in broilers. Avian Diseases 41, 850–855.
Evaluation of an avian- specific probiotic to reduce the colonization and shedding of Campylobacter jejuni in broilers.Crossref | GoogleScholarGoogle Scholar | 1:STN:280:DyaK1c7hsF2gsA%3D%3D&md5=1f2634f39e4981ccc90b6b16b8d0a05eCAS | 9454918PubMed |

Mountzouris KC, Tsirtsikos P, Kalamara E, Nitsch S, Schatzmayr G, Fegeros K (2007) Evaluation of the efficacy of probiotic containing Lactobacillus, Bifidobacterium, Enterococcus, and Pediococcus strains in promoting broiler performance and modulating cecal microflora composition and metabolic activities. Poultry Science 86, 309–317.

Nagle T, Shini S (2008) Pilot trial – mortality in free range flocks. Final report. Poultry CRC, Armidale, NSW.

Nahashon SN, Nakaue HS, Mirosh LW (1996) Performance of single comb white Leghorn fed a diet supplemented with a live microbial during the growth and egg laying phases. Animal Feed Science and Technology 57, 25–38.
Performance of single comb white Leghorn fed a diet supplemented with a live microbial during the growth and egg laying phases.Crossref | GoogleScholarGoogle Scholar |

Neubauer C, De Souza-Pilz M, Bojesen AM, Bisgaard M, Hess M (2009) Tissue distribution of haemolytic Gallibacterium anatis isolates in laying birds with reproductive disorders. Avian Pathology 38, 1–7.
Tissue distribution of haemolytic Gallibacterium anatis isolates in laying birds with reproductive disorders.Crossref | GoogleScholarGoogle Scholar | 1:STN:280:DC%2BD1M%2FnvFCgsg%3D%3D&md5=499bd4ac30dd3307b7170215a9970192CAS | 19089694PubMed |

Nisbet DJ (1998) Use of competitive exclusion in food animals. Journal of the American Veterinary Medical Association 213, 1744–1746.

Patterson JA, Burkholder KM (2003) Application of prebiotics and probiotics in poultry production. Poultry Science 82, 627–631.

Primary Industries Standing Committee (2002) ‘Model codes of practice for the welfare of animals: domestic poultry.’ 4th edn. (CSIRO Publishing: Melbourne)

Reiber MA, McInroy JA, Conner DE (1995) Enumeration and identification of bacteria in chicken semen. Poultry Science 74, 795–799.
Enumeration and identification of bacteria in chicken semen.Crossref | GoogleScholarGoogle Scholar | 1:STN:280:DyaK2MzislGqug%3D%3D&md5=fbd20d742d91ce43c151175fa15d18efCAS | 7603955PubMed |

Reid G, Bocking A (2003) The potential for probiotics to prevent bacterial vaginosis and preterm labor. American Journal of Obstetrics and Gynecology 189, 1202–1208.
The potential for probiotics to prevent bacterial vaginosis and preterm labor.Crossref | GoogleScholarGoogle Scholar | 14586379PubMed |

Reid G, Charbonneau D, Erb J, Kochanowski B, Beuerman D, Poehner R, Bruce AW (2003) Oral use of Lactobacillus rhamnosus GR-1 and L. fermentum RC-14 significantly alters vaginal flora: randomized, placebo-controlled trial in 64 healthy women. FEMS Immunology and Medical Microbiology 35, 131–134.
Oral use of Lactobacillus rhamnosus GR-1 and L. fermentum RC-14 significantly alters vaginal flora: randomized, placebo-controlled trial in 64 healthy women.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BD3sXhs1aht7k%3D&md5=cb5527dcf7f8f89b1fb9b9304e371dc1CAS | 12628548PubMed |

Riddell C (1996) Endocrine and reproductive systems. In ‘Avian histopathology’. 2nd edn. (Ed. C Riddell) pp. 211–217. (The American Association of Avian Pathologists: Kennett Square, PA)

SAS Institute (1996) ‘SAS/STAT® software. SAS system for Microsoft Windows release 6.12.’ (SAS Institute: Cary, NC)

Schefferle HE (1966) Coryneform bacteria in poultry deep litter. The Journal of Applied Bacteriology 29, 147–160.
Coryneform bacteria in poultry deep litter.Crossref | GoogleScholarGoogle Scholar |

Shalev E, Battino S, Weiner E, Colodner R, Keness Y (1996) Ingestion of yoghurt containing Lactobacillus acidophilus compared to pasteurized yoghurt as prophylaxis for recurrent candidal vaginitis and/or bacterial vaginosis. Archives of Family Medicine 5, 593–596.
Ingestion of yoghurt containing Lactobacillus acidophilus compared to pasteurized yoghurt as prophylaxis for recurrent candidal vaginitis and/or bacterial vaginosis.Crossref | GoogleScholarGoogle Scholar | 1:STN:280:DyaK2s%2Fotlyruw%3D%3D&md5=b3ff6af4debb3e5f9213772a9284e4bfCAS | 8930233PubMed |

Shini S, Shini A, Nagle T (2008) Reproductive tract lesions in free range hens with particular reference to bacterial infections. World’s Poultry Science Journal 64, 321

Shivaprasad HL, Timoney JF, Morales S, Lucio B, Baker RC (1990) Pathogenesis of Salmonella enteritidis infection in laying chickens. I. Studies on egg transmission, clinical signs, fecal shedding and serologic responses. Avian Diseases 34, 548–557.
Pathogenesis of Salmonella enteritidis infection in laying chickens. I. Studies on egg transmission, clinical signs, fecal shedding and serologic responses.Crossref | GoogleScholarGoogle Scholar | 1:STN:280:DyaK3M%2FlsVSrtA%3D%3D&md5=7c1de613597160a58683956c8d409ea4CAS | 2241680PubMed |

Tauson R, Wahlström A, Abrahamsson P (1999) Effect of two floor housing systems and cages on health, production, and fear response in layers. Journal of Applied Poultry Research 8, 152–159.

Thomke S, Elwinger K (1998) Growth promotants in feeding pigs and poultry. III. Alternatives to antibiotic growth promotants. Annales de Zootechnie 47, 245–271.
Growth promotants in feeding pigs and poultry. III. Alternatives to antibiotic growth promotants.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DyaK1cXnt1Whu7c%3D&md5=d4fe9f27a6aceda8aba3d3d4e8cb9c65CAS |

Torok VA, Ophel-Keller K, Loo M, Hughes RJ (2008) Application of methods for identifying broiler chicken gut bacterial species linked with increased energy metabolism. Applied and Environmental Microbiology 74, 783–791.
Application of methods for identifying broiler chicken gut bacterial species linked with increased energy metabolism.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BD1cXhvVWjsr0%3D&md5=9ad23b085c83cf2927e07355256cfe35CAS | 18065621PubMed |

Trampel DW, Wannemuehler Y, Nolan LK (2007) Characterization of Escherichia coli isolates from peritonitis lesions in commercial laying hens. Avian Diseases 51, 840–844.
Characterization of Escherichia coli isolates from peritonitis lesions in commercial laying hens.Crossref | GoogleScholarGoogle Scholar | 18251391PubMed |

Van Coillie E, Goris J, Cleenwerck I, Grijspeerdt K, Botteldoorn N, Van Immerseel F, De Buck J, Vancanneyt M, Swings J, Herman L, Heyndrickx M (2007) Identification of lactobacilli isolated from the cloaca and vagina of laying hens and characterization for potential use as probiotics to control Salmonella enteritidis. Journal of Applied Microbiology 102, 1095–1106.

Willis WL, Reid L (2008) Investigating the effects of dietary probiotic feeding regimens on broiler chicken production and Campylobacter jejuni presence. Poultry Science 87, 606–611.
Investigating the effects of dietary probiotic feeding regimens on broiler chicken production and Campylobacter jejuni presence.Crossref | GoogleScholarGoogle Scholar | 1:STN:280:DC%2BD1c7otVylug%3D%3D&md5=2b524852a7dd1a7cad3715681a99949eCAS | 18339979PubMed |

Yamauchi K, Buwjoom T, Koge K, Ebashi T (2006) Histological alterations of the intestinal villi and epithelial cells in chickens fed dietary sugar cane extract. British Poultry Science 47, 544–553.
Histological alterations of the intestinal villi and epithelial cells in chickens fed dietary sugar cane extract.Crossref | GoogleScholarGoogle Scholar | 1:STN:280:DC%2BD28nhs1GksQ%3D%3D&md5=70a921369c256931a4d50d3fcfb5d4f1CAS | 17050097PubMed |