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RESEARCH ARTICLE

Gypsum improves broiler litter quality and reduces footpad lesions

Gabriela M. Galli A , Marcel M. Boiago https://orcid.org/0000-0002-0950-4577 B D , Eduardo Roscamp B , Lucieli K. Muller B , Lenita M. Stefani A , Ricardo E. Mendes https://orcid.org/0000-0001-9222-3479 C , Anderson Gris C , Jéssica D. Dilkin B , Rosilene Oliveira B , Marindia A. Kolm B and Aleksandro S. Da Silva https://orcid.org/0000-0001-5459-3823 B D
+ Author Affiliations
- Author Affiliations

A Graduate Program in Animal Science, State University of Santa Catarina (UDESC), Street Beloni Trombeta Zanini, 680E, Santo Antonio, 89815-630, Chapecó, SC, Brazil.

B Department of Animal Science, UDESC, Street Beloni Trombeta Zanini, 680E, Santo Antonio, 89815-630, Chapecó, SC, Brazil.

C Laboratory of Veterinary Pathology, Instituto Federal Catarinense, SC 283, s/n Fragosos, 89703-720, Concórdia, SC, Brazil.

D Corresponding authors. Email: aleksandro.silva@udesc.br; mmboiago@gmail.com

Animal Production Science 61(16) 1686-1693 https://doi.org/10.1071/AN19718
Submitted: 16 December 2019  Accepted: 15 June 2021   Published: 24 August 2021

Abstract

Context: To optimise litter quality, the use of gypsum (CaSO4·2H2O) may be a good strategy. Brazil is the largest exporter of chicken meat in the world. The Asian market, in particular, demands chicken feet; however, quality standards for export demand that the feet have to be free (or almost free) of injuries. It is therefore essential to reduce the incidence of footpad lesions.

Aims: To determine whether the replacement of lime (Ca(OH)2) by gypsum in poultry broiler litter improves litter quality, pododermatitis scores, animal performance and health.

Methods: In total, 320, 1-day-old male Cobb 500 broilers were divided into the following four groups: control group in which no gypsum or lime were added to the litter (TC); group with 0.5 kg of lime/m2 of litter (TL 0.5); group with 0.5 kg of gypsum/m2 of litter (TG 0.5); and group with 1.0 kg of gypsum/m2 of litter (TG 1.0). The pH, dry matter, water activity and surface temperature of the litter were measured on Days 21, 35 and 42. Animal performance parameters were measured on Days 1, 21, 35 and 42; blood collection was performed on Day 42 for biochemical and haematological analysis, in addition to excreta samples and litter for bacterial counts. At the end of the experiment, 32 broilers were humanely killed for tissue analysis (liver and intestine) and histopathology. The degrees of footpad injury (Day 42) were graded using a 5-point scale, from 0 (no injury), to 1, 2, 3 and 4 (severe injury).

Key results: No differences were found between treatments regarding performance (P > 0.05). With respect to intestinal parameters, there were significant differences in villus height and crypt depth, with TL 0.5, and TG 1.0 showing larger villi than did the control group. The shallowest crypt depths were seen in TC and TG 0.5. Litter dry matter content was significantly higher than in the control (TC) at Day 35 in TG 0.5, and at Day 42 in the TG 1.0 treatments. The litter temperature was significantly higher in the TL 0.5 treatment than in the TG 1.0 at 21 days, but they were not different from that in the control. At Day 35, both TG treatments had significantly lower litter temperature than did the control group, but no differences were observed at Day 42. The treatments had no effect on haematology or biochemical properties, nor on litter or bacterial counts in excreta. Broilers raised on litter treated with gypsum showed 50% fewer Grade 3 and 4 footpad lesions than did the control animals on Day 42, an important finding mainly for lesion grades between 3 and 4 that could prevent export of feet.

Conclusions: Gypsum at 0.5 kg/m2 showed the best results regarding litter quality, reducing the incidence of footpad lesions without compromising animal health or performance.

Implications: Applying gypsum to litter at 0.5 kg/m2 reduces the number of broilers with pododermatitis, an economic benefit to the poultry industry.

Keywords: bumblefoot, gypsum, footpad dermatitis, poultry litter, wet litter.


References

Abd El-Wahab A, Visscher CF, Wolken S, Reperant JM, Beineke A, Beyerbach M, Kamphues J (2012) Foot-pad dermatitis and experimentally induced coccidiosis in young turkeys fed a diet without anticoccidia. Poultry Science 91, 627–635.
Foot-pad dermatitis and experimentally induced coccidiosis in young turkeys fed a diet without anticoccidia.Crossref | GoogleScholarGoogle Scholar | 22334737PubMed |

ABPA (Associação Brasileira de Proteína Animal) (2018) Annual report. Available at http://abpa-br.com.br/setores/avicultura/publicacoes/relatorios-anuais.

Bennett DD, Higgins SE, Moore RW, Beltran R, Caldwell DJ, Byrd JA, Hargis BM (2003) Effects of lime on Salmonella enteritidis survival in vitro. Journal of Applied Poultry Research 12, 65–68.
Effects of lime on Salmonella enteritidis survival in vitro.Crossref | GoogleScholarGoogle Scholar |

Bilgili SF, Hess JB, Blake JP, Macklin KS, Saenmahayak B, Sibley JL (2009) Influence of litter material on footpad dermatitis in broiler chickens. Journal of Applied Poultry Research 18, 583–589.
Influence of litter material on footpad dermatitis in broiler chickens.Crossref | GoogleScholarGoogle Scholar |

Brazil MCTI (2013) ‘CONCEA guidelines for euthanasia practice.’ (MCTI: Brasília, Brazil)

Brinson SE, Cabiera ML, Tyson SC (1994) Ammonia volatilization from surface-applied, fresh and composted poultry litter. Plant and Soil 167, 213–218.
Ammonia volatilization from surface-applied, fresh and composted poultry litter.Crossref | GoogleScholarGoogle Scholar |

Caruso M, Demonte A (2005) Histomorfometria do intestino delgado de ratos submetidos a diferentes fontes protéicas. Alimentos e Nutrição Araraquara 16, 131–136.

Dunlop MW (2017). Quantifying poultry litter conditions and relationships with odour emissions, PhD thesis, University of New South Wales. Sydney, NSW, Australia, Available at http://www.unsworks.unsw.edu.au/primo_library/libweb/action/dlDisplay.do?vid=UNSWORKS&docId=unsworks_44956.

Ferreira HA, Oliveira MC, Traldi AB (2004) Effect of chemical conditioners in the poultry litter on the broiler performance. Arquivo Brasileiro de Medicina Veterinária e Zootecnia 56, 542–546.
Effect of chemical conditioners in the poultry litter on the broiler performance.Crossref | GoogleScholarGoogle Scholar |

Giron TV, Vieira BS, Viott AM, Pozza MSS, Castilha LD, Reis IN, Nunes RV (2019) Mechanical removal (epidermal scarification) of pododermatitis injuries reduces the presence of both inflammatory tissue and its associated microbiota in broiler feet. Poultry Science 98, 1455–1460.
Mechanical removal (epidermal scarification) of pododermatitis injuries reduces the presence of both inflammatory tissue and its associated microbiota in broiler feet.Crossref | GoogleScholarGoogle Scholar | 30325460PubMed |

Gloria NA, Barretto MCV, Moraes CJ, Mattiazzo ME (1991) Avaliaçao do gesso e de alguns fosfatos como inibidores da volatilização de amônia de estercos. Revista Brasileira de Ciência do Solo 15, 297–301.

Heidemann Olsen R, Christensen H, Kabell S, Bisgaard M (2018) Characterization of prevalent bacterial pathogens associated with pododermatitis in table egg layers. Avian Pathology 47, 281–285.
Characterization of prevalent bacterial pathogens associated with pododermatitis in table egg layers.Crossref | GoogleScholarGoogle Scholar | 29517269PubMed |

International Organization for Standardization (2017) ISO 6570. Available at https://www.sis.se/api/document/preview/921516/.

Jones TA, Donnelly CA, Dawkins MS (2005) Environmental and management factors affecting the welfare of chickens on commercial farms in the United Kingdom and Denmark stocked at five densities. Poultry Science 84, 1155–1165.
Environmental and management factors affecting the welfare of chickens on commercial farms in the United Kingdom and Denmark stocked at five densities.Crossref | GoogleScholarGoogle Scholar | 16156197PubMed |

Kaukonen E, Norring M, Valros A (2017) Evaluating the effects of litter materials and elevated platforms on contact dermatitis and plumage cleanliness of commercial broilers and on litter condition in broiler houses. British Poultry Science 58, 480–489.
Evaluating the effects of litter materials and elevated platforms on contact dermatitis and plumage cleanliness of commercial broilers and on litter condition in broiler houses.Crossref | GoogleScholarGoogle Scholar | 28604061PubMed |

Kim DW, MM H, Parvin R, Kang HK, Kim JH, Hwangbo J, Yang CB, Park BJ, Choi HC (2015) Various levels and forms of dietary α-lipoic acid in broiler chickens: impact on blood biochemistry, stress response, liver enzymes, and antibody titers. Poultry Science 94, 226–231.
Various levels and forms of dietary α-lipoic acid in broiler chickens: impact on blood biochemistry, stress response, liver enzymes, and antibody titers.Crossref | GoogleScholarGoogle Scholar | 25630676PubMed |

Mapa (2010) ‘Instructions for exportation of frozen poultry cuts (feet) Brazil – Hong Kong.’ (Ministry of Agriculture Livestock and Food Supply of Brazil). Available at https://translate.google.com.br/?hl=ptBR&sl=pt&tl=en&text=disponivel%20em%20&op=translate

Miles DM, Brooks JP, Sistani KR (2011) Spatial contrasts of seasonal and intraflock broiler litter trace gas emissions, physical and chemical properties. Journal of Environmental Quality 40, 176–187.
Spatial contrasts of seasonal and intraflock broiler litter trace gas emissions, physical and chemical properties.Crossref | GoogleScholarGoogle Scholar | 21488506PubMed |

Mishra A, Cabrera ML, Kissel DE, Rema JA (2013) Gypsum effect on nitrogen mineralization and ammonia volatilization from broiler litter. Soil Science Society of America Journal 77, 2045–2049.
Gypsum effect on nitrogen mineralization and ammonia volatilization from broiler litter.Crossref | GoogleScholarGoogle Scholar |

Neme R, Sakomura NK, Dal Seco De OM, Longo FAA, Figueiredo AN (2000) Addition of calcium sulfate in three types of litter about the fixation of nitrogen and on broiler performance. Animal Production Ciência Rural 30, 687–692.

Oliveira MC, Almeida CV, Andrade DO, Rodrigues SMM (2003) Teor de matéria seca, pH e amônia volatilizada da cama de frangos tratada ou não diferentes aditivos. Revista Brasileira de Zootecnia 32, 951–954.
Teor de matéria seca, pH e amônia volatilizada da cama de frangos tratada ou não diferentes aditivos.Crossref | GoogleScholarGoogle Scholar |

Oliveira MC, Ferreira HA, Cancherini LC (2004) Efeito de condicionadores químicos sobre a qualidade da cama de frango. Arquivo Brasileiro de Medicina Veterinária e Zootecnia 56, 536–541.
Efeito de condicionadores químicos sobre a qualidade da cama de frango.Crossref | GoogleScholarGoogle Scholar |

Petrolli TG, Albino LFT, Rostagno HS, Gomes PC, Tavernari F de C, Balbino EM (2012) Herbal extracts in diets for broilers. Revista Brasileira de Zootecnia 41, 1683–1690.
Herbal extracts in diets for broilers.Crossref | GoogleScholarGoogle Scholar |

Rostagno HS, Albino LFT, Hannas MI, Donzele JL, Sakomura NK, Perazzo FG, Brito CO (2017) ‘Tabelas Brasileiras Para Aves e Suínos: Composição de Alimentos e Exigências Nutricionais.’ (Departamento de Zootecnia-UFV: Viçosa, MG, Brazil)

Silva DJ (2002) ‘Análise de alimentos: métodos químicos e biológicos.’ 3rd edn. (UFV: Viçosa, Brazil)

Sobih MA, Dosoky R (1990) Fields trials to reduce ammonia content of air in broiler houses. Assiut Veterinary Medical Journal 24, 159–164.

Thrall MA, Weiser G, Alisson RW, Campbell TW (2015) ‘Hematologia e Bioquímica Clínica Veterinária.’ São Paulo, Editora Roca 2nd edn.

Toppel K, Kaufmann F, Schõn H, Gauly M, Andersson R (2019) Effect of pH-lowering litter amendment on animal-based welfare indicators and litter quality in a European commercial broiler husbandry. Poultry Science 98, 1181–1189.
Effect of pH-lowering litter amendment on animal-based welfare indicators and litter quality in a European commercial broiler husbandry.Crossref | GoogleScholarGoogle Scholar | 30325450PubMed |

United Nations Economic Commission for Europe (UNECE) (2006) ‘Standards for chicken meat: carcasses and parts.’ (Working Party on Agricultural Quality Standards: Geneva, Switzerland)

Vahdatpour T, Nikpiran H (2011) Effects of Protexin, Fermacto and combination of them on blood enzymes and performance of Japanese quails (Coturnix Japonica). Annals of Biological Research 2, 283–291.

Wildey H (1984) Manage turkey litter to control ammonia. Poultry Digestion 43, 257

Xavier DB, Broom DM, McManus CM, Torres C, Bernal FE (2010) Number of flocks on the same litter and carcase condemnations due to cellulitis, arthritis and contact foot-pad dermatitis in broilers. British Poultry Science 51, 586–591.
Number of flocks on the same litter and carcase condemnations due to cellulitis, arthritis and contact foot-pad dermatitis in broilers.Crossref | GoogleScholarGoogle Scholar | 21058060PubMed |