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ANIMAL HUSBANDRY & VETERINARY SCIENCE

Effect of Vachellia karroo leaf meal inclusion levels on growth, meat pH, shear force, cooking loss and shelf life of Ross 308 broiler chickens

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Article: 2202037 | Received 17 Oct 2022, Accepted 06 Apr 2023, Published online: 01 May 2023

References

  • Al-Hijazeen, M., Lee, E. J., Mendonca, A., & Ahn, D. U. (2016). Effects of tannic acid on lipid and protein oxidation, color, and volatiles of raw and cooked chicken breast meat during storage. Antioxidants, 5(2), 19. https://doi.org/10.3390/antiox5020019
  • AOAC. (2010). Association of Analytical Chemist, Official Method of Analysis (17th ed) (Vol. 1). Association of Official Analytical Chemists (AOAC).
  • Ao, T., Cantor, A. H., Pescatore, A. J., & Pierce, J. L. (2008). In vitro evaluation of feed-grade enzyme activity at pH levels simulating various parts of the avian digestive tract. Animal Feed Science and Technology, 140(3–4), 462–12. https://doi.org/10.1016/j.anifeedsci.2007.04.004
  • Babiker, E. E., Al-Juhaimi, F. Y., Alqah, H. A., Adisa, A. R., Adiamo, O. Q., Mohamed Ahmed, I. A., Alsawmahi, O. N., Ghafoor, K., & Ozcan, M. M. (2019). The effect of Acacia nilotica seed extract on the physicochemical, microbiological, and oxidative stability of chicken patties. Journal of Food Science and Technology, 56(8), 3910–3920. https://doi.org/10.1007/s13197-019-03862-y
  • Brown, D., Ng’ambi, J. W., & Norris, D. (2017). Effect of tanniniferous Vachellia karroo leaf meal inclusion level on feed intake, digestibility and live weight gain of goats fed a Setaria verticillata grass hay-based diet. Journal of Applied Animal Research, 46(1), 248–253. https://doi.org/10.1080/09712119.2017.1289939
  • Cornale, P., Parantola, M., Lussiana, C., Tassone, S., Castellina, C., & Battaglini, L. M. (2011). Effects of ginger (Zingiber officinale) and European Stoneseed (Lithospermum officinale) extracts on performances, meat quality and fatty acid composition of finishing bulls. Annalen Warsaw University Life Science SGGW Animal Science, 49, 11–20. https://doi.org/10.3923/javaa.2011.1127.1132
  • Cui, Y. M., Wang, J., Lu, W., Zhang, H. J., Wu, S. G., & Qi, G. H. (2018). Effect of dietary supplementation with Moringa oleifera leaf on performance, meat quality, and oxidative stability of meat in broilers. Poultry Science, 97(8), 2836–2844. https://doi.org/10.3382/ps/pey122
  • Cunha, L. C. M., Monteiro, M. L. G., Lorenzo, J. M., Munekata, P. E. S., Muchenje, V., de Carvalho, F. A. L., & Conte-Junior, C. A. (2018). Natural antioxidants in processing and storage stability of sheep and goat meat products. Food Research International, 111, 379–390. https://doi.org/10.1016/j.foodres.2018.05.041
  • Ebrahim, R., Liang, J. B., Jahromi, M. F., Shokryazdan, P., Ebrahimi, M., Li Chen, W., & Goh, Y. M. (2015). Effects of tannic acid on performance and fatty acid composition of breast muscle in broiler chickens under heat stress. Italian Journal of Animal Science, 14(4), 3956. https://doi.org/10.4081/ijas.2015.3956
  • Falowo, A. B., Fayemi, P. O., & Muchenjie, V. (2014). Natural antioxidants against lipid-protein oxidative deterioration in meat and meat products. Food Research International, 64(14), 171–181. https://doi.org/10.1016/j.foodres.2014.06.022
  • Gheisari, A. A., le Saheb Fosoul, S. S., Pourali, S., Nasre Esfahani, E., & Mohammadrezaei, M. (2017). Blood lipid metabolites and meat lipid peroxidation responses of broiler chickens to dietary lecithinized palm oil. South African Journal of Animal Science, 47(4), 526–534. https://doi.org/10.4314/sajas.v47i4.11
  • Gudiso, X., Hlatini, V., Chimonyo, M., & Mafongoya, P. (2019). Response of broiler (Gallus gallus domesticus) performance and carcass traits to increasing levels of Acacia angustissima leaf meal as a partial replacement of standard protein sources. The Journal of Applied Poultry Research, 28(1), 13–22. https://doi.org/10.3382/japr/pfx068
  • Hafeni, S., 2013. Performance of broiler chickens fed Pearl Millet as an energy source and Acacia karroo leaf meal as an additive ( Doctoral dissertation). http://hdl.handle.net/11070/872
  • Hafiz, A., Zaiton Hassan, Z., & Manap, M. N. A. (2015). Effect of slaughtering methods on meat quality. indicators, chemical changes and microbiological quality of broiler chicken meat during refrigerated storage. J. Agricultural Veterinary ScienceJournal of Agriculture and Veterinary Science, 8(9), 12–17.
  • Hygreeva, D., Pandey, M. C., & Radhakrishna, K. (2014). Potential applications of plant-based derivatives as fat replacers, antioxidants, and antimicrobials in fresh and processed meat products: Review. Meat Science, 98(1), 47–57. https://doi.org/10.1016/j.meatsci.2014.04.006
  • Kang, K. R., Cherian, G., & Sim, J. S. (2001). Dietary palm oil alters the lipid stability of polyunsaturated fatty acid-modified poultry products. Poultry Science, 80(2), 228–234. https://doi.org/10.1093/ps/80.2.228
  • Kolobe, S. D., Manyelo, T. G., Ngambi, J. W., Nemauluma, M. F. D., & Malematja, E. (2022). Effect of Acacia karroo leaf meal inclusion levels on performance and gut morphology of broiler chickens. Advances in Animal and Veterinary Sciences, 10(11), 2347–2355. https://doi.org/10.17582/journal.aavs/2022/10.11.2347.2355
  • Liu, H. W., Gai, F., Gasco, L., Brugiapaglia, A., Lussiana, C., Guo, K. J., Tong, J. M., & Zoccarato, I. (2009). Effects of chestnut tannins on carcass characteristics, meat quality, lipid oxidation and fatty acid composition of rabbits. Meat Science, 83(4), 678–683. https://doi.org/10.1016/j.meatsci.2009.08.003
  • Lorenzo, J. M., Pateiro, M., Domínguez, R., Barba, F. J., Putnik, P., Kovačević, D. B., Shpigelman, A., Granato, D., & Franco, D. (2018). Berries extracts as natural antioxidants in meat products. A review. Food Research International, 106, 1095–1104. https://doi.org/10.1016/j.foodres.2017.12.005
  • Manyelo, T. G., Ng’ambi, J. W., Mabelebele, M., & Mabelebele, M. (2019). Effects of replacing maize meal with a low tannin white sorghum meal, macia on productivity of Ross 308 broilers aged 1-42 days. South African Journal of Animal Science, 49(3), 478–484. https://doi.org/10.4314/sajas.v49i3.8
  • Mapiye, C., Chimonyo, M., Marufu, M. C., & Dzama, K. (2011). Utility of Acacia karroo for beef production in Southern African smallholder farming systems: A review. Animal Feed Science and Technology, 164(3–4), 135–146. https://doi.org/10.1016/j.anifeedsci.2011.01.006
  • Mbajiorgu, C. A., Ng’ambi, J. W., & Norris, D. (2007). Effect of time of initiation of feeding after hatching and influence of dietary lysine supplementation on productivity and carcass characteristics of Ross 308 broiler chickens in South Africa. International Journal of Poultry Science, 6(8), 2–12. https://doi.org/10.3923/ijps.2007.583.591
  • McDonald, P. R., Edwards, A., Greenhalgh, J. F. D., Morgan, C. A., Sinclair, L. A., & Wilkinson, R. G. (2010). Animal Nutrition (7th ed.). Prentice Hall. U.K.
  • Musa, H. H., Chen, G. H., Cheng, J. H., Li, B. C., & Mekki, D. M. (2006). Study on carcass characteristics of chicken breeds raised under the intensive condition. International Journal of Poultry Science, 5(6), 530–533. https://doi.org/10.3923/ijps.2006.530.533
  • Ncube, S., Halimani, T. E., Chikosi, E. V. I., & Saidi, P. T. (2018). Effect of Acacia angustissima leaf meal on performance, yield of carcass components and meat quality of broilers. South African Journal of Animal Science, 48(2), 271–283. https://doi.org/10.4314/sajas.v48i2.8
  • Ng’ambi, J. W., Nakalebe, P. M., Norris, D., Malatje, M. S., & Mbajiorgu, C. A. (2009). Effects of dietary energy level and tanniferous Vachellia karroo leaf meal level of supplementation at finisher stage on performance and carcass characteristics of Ross 308 broiler chickens in South Africa. International Journal of Poultry Science, 8(1), 40–46. https://doi.org/10.3923/ijps.2009.40.46
  • Ng’ambu, S., Muchenje, V., & Marume, U. (2013). Effect of Vachellia karroo supplementation on growth, ultimate pH, colour and cooking losses of meat from indigenous Xhosa lop-eared goats. Asian-Australasian Journal of Animal Sciences, 26(1), 128–133. https://doi.org/10.5713/ajas.2012.12046
  • Nikmaram, N., Budaraju, S., Barba, F. J., Lorenzo, J. M., Cox, R. B., Mallikarjunan, K., & Roohinejad, S. (2018). Application of plant extracts to improve the shelf-life, nutritional and health-related properties of ready-to-eat meat products. A review. Meat Science, 145, 245–255. https://doi.org/10.1016/j.meatsci.2018.06.031
  • Northcutt, J. K., Foegeding, E. A., & Edens, F. W. (1994). Water-holding properties of thermally preconditioned chicken breast and leg meat. Poultry Science, 73(2), 308–316. https://doi.org/10.3382/ps.0730308
  • Przywitowski, M., Mikulski, D., Zdunczyk, Z., Rogiewicz, A., & Jankowski, J. (2016). The effect of dietary high-tannin and low-tannin faba bean (Vicia faba L.) on the growth performance, carcass traits and breast meat characteristics of finisher turkeys. Animal Feed Science and Technology, 221, 124–136. https://doi.org/10.1016/j.anifeedsci.2016.08.027
  • Sanchez, N. R., Sporndly, E., & Ledin, I. (2006). Effect of feeding different levels of foliage of Moringa oleifera to creole dairy cows on intake, digestibility, milk production and composition. Livestock Science, 101(1–3), 24–31. https://doi.org/10.1016/j.livprodsci.2005.09.010
  • SAS Institute Inc. (2013). Base SAS® 9.4 Procedures Guide: Statistical Procedures (Second ed.).
  • Shah, M. A., Bosco, S. J. D., & Mir, S. A. (2014). Plant extracts as natural antioxidants in meat and meat products. A review. Meat Science, 98(1), 21–33. https://doi.org/10.1016/j.meatsci.2014.03.020
  • Tan, S. M., de Kock, H. L., Dykes, G. A., Coorey, R., & Buys, E. M. (2018). Enhancement of poultry meat: Trends, nutritional profile, legislation, and challenges. South African Journal of Animal Science, 48(2), 1–14. https://doi.org/10.4314/sajas.v48i2.1
  • Tshabalala, P. A., Strydom, P. E., Webb, E. C., & de Kock, H. L. (2003). Meat quality of designated South African indigenous goat and sheep breeds P.A. Meat Science, 65(1), 563–570. https://doi.org/10.1016/S03091740(02)00249-8
  • Van Ngo, T., Scarlett, C. J., Bowyer, M. C., Ngo, P. D., & Van Vuong, Q. (2017). Impact of different extraction solvents on bioactive compounds and antioxidant capacity from the root of Salacia chinensis L. Journal of Food Quality, 1–8. https://doi.org/10.1155/2017/9305047
  • Vasta, V., Nudda, A., Cannas, A., Lanza, M., & Priolo, A. (2008). Alternative feed resources and their effects on the quality of meat and milk from small ruminants: Review. Animal Feed Science and Technology, 147(1–3), 223–246. https://doi.org/10.1016/j.anifeedsci.2007.09.020
  • Wapi, C., Nkukwana, T. T., Hoffman, L. C., Dzama, K., Pieterse, E., Mabusela, T., & Muchenjie, V. (2013). Physico-chemical shelf-life indicators of meat from Ross 308 broilers given Moringa oleifera leaf meal. South African Journal of Animal Science, 43(5), 1–5. https://doi.org/10.4314/sajas.v43i5.8
  • Wattanachant, S. (2008). Factors affecting the quality characteristics of Thai indigenous chicken meat. Warasan Technology Suranaree, 15(4), 317–322. http://sutir.sut.ac.th:8080/jspui/bitstream/123456789/3788/1/v15n4p317.pdf