Comparison of locomotion problems and its economic impact on Cobb and Ross broiler strains

Authors

  • José Alfredo Villagómez-Cortés University of Veracruz
  • Blanca Leydi Guevara-Torres Facultad de Medicina Veterinaria y Zootecnia, Universidad Veracruzana, Veracruz
  • Luis Antonio Landin-Grandvallet Facultad de Medicina Veterinaria y Zootecnia, Universidad Veracruzana, Veracruz
  • Alberto Tirado-Madrid Productos Agrícolas y Pecuarios de Neria, Super Pollo, Fortín

DOI:

https://doi.org/10.30564/vsr.v3i2.4126

Abstract

The rapid weight gain and fast muscle growth due to intense genetic selection and improved nutrition for additional breast muscle in broiler commercial strains affect chickens health. In order to compare the main locomotive problems in broilers of Cobb and Ross strains, two pens from a commercial farm in Veracruz, Mexico were used. The first pen housed 16,500 males and 16,500 females of Cobb strain and the second one 16,500 males and 16,500 females of Ross strain. Chicks were checked for locomotion problems from day one until their sale. Animals with problems were recorded and necropsies were performed to identify the pathology. Out of 1406 animals with locomotive problems (2.13% of the total), 58.9% were Cobb and 41.1% Ross (P <0.05). The frequency of locomotive problems was 2.51% for Cobb and 1.75% for Ross. Most common individual lesions were osteochondrosis (38.61%), inflamed joints with purulent contents (37.13%), and valgus (19.65%). Locomotive problems appeared since the first week, but its number increased as birds gained weight, particularly from the fourth week on. Problems occurred more in males than in females and in Cobb birds than in the Ross strain. Economic loss due to locomotion problems was higher for the Cobb strain.

Keywords:

animal welfare, bone symmetry, cost of disease, femoral degeneration, genetics, poultry health,

References

[1] Leeson, S., 2012. Future considerations in poultry nutrition. Poultry Science. 9(6), 1281-1285. DOI: https://doi.org/10.3382/ps.2012-02373

[2] Willems, O.W., Miller, S.P., Wood, B.J., 2013. Aspects of selection for feed efficiency in meat producing poultry. World’s Poultry Science Journal. 69, 77- 87. DOI: https://doi.org/10.1017/S004393391300007X

[3] Tavárez, M.A., de los Santos, F.S., 2016. Impact of genetics and breeding on broiler production performance: a look into the past, present, and future of the industry. Animal Frontiers. 6(4), 37-41. DOI: https://doi.org/10.2527/af.2016-0042

[4] Zuidhof, M.J., Schneider, B.L., Carney, V.L., Korver, D.R., Robinson, F.E., 2014. Growth, efficiency, and yield of commercial broilers from 1957, 1978, and 2005. Poultry Science. 93, 2970-2982. DOI: https://doi.org/10.3382/ps.2014-04291

[5] Knowles, T.G., Kestin, S.C., Haslam, S.M., Brown, S.N., Green, L.E., Butterworth, A., Pope, S.J., 45 Veterinary Science Research | Volume 03 | Issue 02 | December 2021 Pfeiffer, D., Nicol, C.J., 2008. Leg disorders in broiler chickens: prevalence, risk factors and prevention. PLoSone. 3(2), e1545. DOI: https://doi.org/10.1371/journal.pone.0001545

[6] Hartcher, K.M., Lum, H.K., 2020. Genetic selection of broilers and welfare consequences: a review. World’s Poultry Science Journal. 76(1), 154-167. DOI: https://doi.org/10.1080/00439339.2019.1680025

[7] Bradshaw, R.H., Kirkden, R.D., Broom, D.M., 2002. A review of the aetiology and pathology of leg weakness in broilers in relation to welfare. Avian and Poultry Biology Reviews. 13, 45-103. DOI: https://doi.org/10.3184/147020602783698421

[8] Almeida Paz, I.C.D.L., 2008. Problemas locomotores em frangos de corte - Revisão. Revista Brasileira de Engenharia de Biossistemas. 2(3), 263-272. DOI: https://doi.org/10.18011/BIOENG-2008V2N3P263-272

[9] Webster, J., Cameron, C., Rogers, A., 2013. Survey of lameness in New Zealand meat chickens. MPI Technical Paper No: 2013/45. Ministry for Primary Industries, Hamilton, New Zealand. https://safe.org. nz/wp-content/uploads/2019/09/2013-MPI-surveyof-lameness-in-new-zealand-meat-chickens-min.pdf.

[10] Hartcher, K.M., Lum, H.K., 2020. Genetic selection of broilers and welfare consequences: a review, World’s Poultry Science Journal. 76(1), 154-167. DOI: https://doi.org/10.1080/00439339.2019.1680025

[11] Fernandes, B.C.S., Martins, M.R.F.B., Mendes, A.A., Almeida Paz, I.C.L., Komiyama, C.M.E.L., Milbradt, E.L., Martins, B.B., 2012. Locomotion problems of broiler chickens and its relationship with the gait score. Revista Brasileira de Zootecnia. 41, 1951- 1955. DOI:https://doi.org/10.1590/S1516-35982012000800021

[12] Sanotra, G.S., Lund, J.D., Ersboll, A.K., Petersen, J.S., Vestergaard, K.S., 2001. Monitoring leg problems in broilers: A survey of commercial broiler production in Denmark. World’s Poultry Science Journal. 57(1), 55-69. DOI: https://doi.org/10.1079/WPS20010006

[13] Massé, P.G., Boskey, A.L., Ziv, I., Hauschka, P., Donovan, S.M., Howell, D.S., Cole, D.E.C., 2003. Chemical and biomechanical characterization of hyperhomoysteinemic bone disease in an animal model. BMC Musculoskeletal Disorders. 4, Article number 2. DOI:https://doi.org/10.1186/1471-2474-4-2

[14] Leeson, S., Diaz, G.J., Summers, J.D., 1995. Skeletal disorders. In: Poultry metabolic disorders and micotoxins. University Books, Guelph. pp.124-175.

[15] Klasing, C., Austic, R.E., 2003. Nutritional diseases. In: SAIF YM. Diseases of poultry. Iowa State Press, Ames. pp.1027-1054.

[16] Oviedo-Rondón, E.O., Wineland, M.J., Funderburk, S., Small, J., Cutchin, H.M., Mann, M., 2009. Incubation conditions affect leg health in large, high-yield broilers. Journal of Applied Poultry Research. 18(3), 640-646. DOI: https://doi.org/10.3382/JAPR.2008-00127

[17] Sorensen, P., Su, G., Kestin, S.C., 2000. Effects of age and stocking density on leg weakness in broiler chickens. Poultry Science. 79(6), 864-870. DOI: https://doi.org/10.1093/ps/79.6.864

[18] Opengart, K., Bilgili, S.F., Warren, G.L., Baker, K.T., Moore, J.D., Dougherty, S., 2018. Incidence, severity, and relationship of broiler footpad lesions and gait scores of market-age broilers raised under commercial conditions in the southeastern United States. Journal of Applied Poultry Research. 27, 424-432. DOI: http://dx.doi.org/10.3382/japr/pfy002

[19] Sterling, K., Pesti, G., Bakalli, R., 2006. Performance of different broiler genotypes fed diets with varying levels of dietary crude protein and lysine. Poultry Science. 85(6), 1045-1054. DOI: https://doi.org/10.1093/ps/85.6.1045

[20] Stringhini, J.H., Laboissiere, M., Muramatsu, K., Leandro, N.S.M., Café, M.B., 2003. Avaliaçao do desempenho e rendimento de carcaça de quatro linhagens de frangos de corte criadas en Goias. Revista Brasileira de Zootecnia. 32(1), 183-190. DOI:https://doi.org/10.1590/S1516-35982003000100023

[21] Do Nascimento, D.C.N., Dourado, L.R.B., Costa, J., de Siqueira, J.C., de Lima, S.B.P., da Silva, M.C.M., Da Silva, N.K., Sakomura, N.K., Ferreira, G.J.B.C., Biagiotti, D., 2018. Productive features of broiler chickens in hot weather: effects of strain and sex. Semina: Ciências Agrárias. 39(2), 731-745. DOI: https://doi.org/10.5433/1679-0359.2018v39n2p731

[22] Khalid, N., Ali, M.M.J., Ali, Z., Amin, Y., Ayaz, M., 2021. Comparative productive performance of two broiler strains in open housing system. Advancements in Life Science. 8(2), 124-127. http://www.als-journal.com/825-21/

[23] Bessei, W., 2006. Welfare of broilers: a review. World’s Poultry Science Journal. 62, 455- 466. DOI:https://doi.org/10.1017/S0043933906001085

[24] Nääs, I.A., Almeida Paz, I.C.L., Baracho, M.S., Menezes, A.G., Bueno, L.G.F., Almeida, I.C.L., Moura, J.D., 2009. Impact of lameness on broiler well-being. Journal of Applied Poultry Research. 18, 432-439.46 Veterinary Science Research | Volume 03 | Issue 02 | December 2021 DOI: https://doi.org/10.3382/japr.2008-00061

[25] Shim, M.Y., Karnuah, A.B., Anthony, N.B., Pesti, G.M., Aggrey, S.E., 2012. The effects of broiler chicken growth rate on valgus, varus, and tibial dyschondroplasia. Poultry Science. 91, 62-65. DOI: https://doi.org/10.3382/ps.2011-01599

[26] Granquist, E.G., Vasdal, G., de Jong, I.C., Moe, R.O., 2019. Lameness and its relationship with health and production measures in broiler chickens. Animal. 13(10), 2365-2372. DOI: https://doi.org/10.1017/S1751731119000466

[27] Angel, R., 2007. Metabolic disorders: limitations to growth of and mineral deposition into the broiler skeleton after hatch and potential implications for leg problems. Journal Applied Poultry Research. 16(1), 138-149. DOI: https://doi.org/10.1093/japr/16.1.138

[28] Hartcher, K.M., Lum, H.K., 2020. Genetic selection of broilers and welfare consequences: a review. World’s Poultry Science Journal. 76(1), 154-167. DOI: https://doi.org/10.1080/00439339.2019.1680025

[29] Julian, R.J., 2005. Production and growth related disorders and other metabolic diseases of poultry - a review. Veterinary Journal. 169(3), 350-369. DOI: https://doi.org/10.1016/j.tvjl.2004.04.015

[30] Alves, M.C.F., Almeida Paz, I.C.L., Caldara, F.R., Nääs, I.A., Garcia, R.G., Seno, L.O., Baldo, G.A.A., Amadori, M.S., 2013. Equilibrium condition and locomotion problems in broilers. Brazilian Journal of Biosystems Engineering. 7(1), 35-44. DOI:https://doi.org/10.1590/1806-9061-2015-0013

[31] Cordeiro, A.F.D.S., Baracho, M.D.S., Nääs, I., Do Nascimento, G.R., 2012. Using data mining to identify factors that influence the degree of leg injuries in broilers. Engenharia Agrícola. 32(4), 642-649. DOI: https://doi.org/10.1590/S0100-69162012000400003

[32] Alves, M.C.F., Almeida Paz, I.C.L., Nääs, I.A., Garcia, R.G., Caldara, F.R., Baldo, G.A.A., Nascimento, G.R., Amadori, M.S., Felix, G.A., Garcia, E.A., Molino, A.R., 2016. Locomotion of commercial broilers and indigenous chickens. Revista Brasileira de Zootecnia. 45(7), 372-379. DOI: http://dx.doi.org/10.1590/1806-9061-2015-0013

[33] Granquist, E.G., Vasdal, G., de Jong, I.C., Moe, R.O., 2019. Lameness and its relationship with health and production measures in broiler chickens. Animal. 13(10), 2365-2372. DOI: https://doi.org/10.1017/S1751731119000466

[34] Skrbié, L., Pavlovskil, L., Lukié, M., Perié, L., Milosevié, N., 2009. The effect of stocking density on certain broiler welfare parameters. Biotechnology in Animal Husbandry. 25(1-2), 11-21. DOI: https://doi.org/10.2298/BAH0902011S

[35] Paz, I.C.L.A., Garcia, R.G., Bernardi, R., Seno, L.O., Nääs, I.A., Caldara, F.R., 2013. Locomotor problems in broilers reared on new and re-used litter. Italian Journal of Animal Science. 12(2), article e45. DOI: https://doi.org/10.4081/ijas.2013.e45

[36] Fouad, M.A., Razek, A.H.A., Badawy, E.S.M., 2008. Broilers welfare and economics under two management alternatives on commercial scale. International Journal of Poultry Science. 7(12), 1167-1173. DOI: https://doi.org/10.3923/ijps.2008.1167.1173

[37] Garcia, R.G., Lima, N.D.S., Naas, I.A., Caldara, F.R., Sgavioli, S., 2018. The typology of broiler house and the impact in the locomotion of broilers. Engenharia Agrícola. 38(3), 326-333. DOI: https://doi.org/10.1590/1809-4430-Eng.Agric. v38n3p326-333/2018

[38] Oviedo-Rondón, E.O., Wineland, M.J., Funderburk, S., Small, J., Cutchin, H., Mann, M., 2009. Incubation conditions affect leg health in large, high-yield broilers. Journal of Applied Poultry Research. 18, 640-646. DOI: https://doi.org/10.3382/JAPR.2008-00127

[39] Oviedo-Rondón, E.O., Wineland, M.J., Small, J., Cutchin, H., McElroy, A., Barri, A., Martin, S., 2009. Effect of incubation temperatures and chick transportation conditions on bone development and leg health. Journal of Applied Poultry Research. 18, 671- 678. DOI:https://doi.org/10.3382/japr.2008-00135

[40] Oviedo-Rondón, E.O., Ferket, P.R., Havenstein, G.B., 2006. Nutritional factors that affect leg problems in broilers and turkeys. Avian and Poultry Biology Reviews. 17(3), 89-103. DOI: https://doi.org/10.3184/147020606783437921

[41] Martins, J.M.S., dos Santos Neto, L.D., Noleto-Mendonça, R.A., Carvalho, G.B., Sgavioli, S., Barros de Carvalho, F., Leandro, N.S.M., Caf, M.B., 2020. Dietary supplementation with glycosaminoglycans reduces locomotor problems in broiler chickens. Poultry Science. 99, 6974-6982. DOI: https://doi.org/10.1016/j.psj.2020.09.06

Downloads

Issue

Article Type

Articles