Effect of yucca and probiotic supplements on ammonia levels in rabbit farms
Denis Viryanski
, Radostina S.-Grigorova
, Milena Bozhilova-Sakova
, Mariya Todorova
, Dimitar Petrov
Резюме: Rabbit breeding is a highly intensive production industry. Rabbit meat is characterized by specific taste and qualities. Due to its composition, it is considered to bring many health benefits to the people. The microclimate in rabbit farms is critical to animal health, productivity and welfare. In order to achieve optimal production from rabbits, suitable environmental conditions must be created by controlling temperature, humidity, lighting, noise, air quality, water and food. In recent decades, the use of biologically active supplements in different branches of animal husbandry has increased. Biologically active supplements have natural origin, are safe and have proven positive effects on farm animals. They are easy to grow, and are also a renewable and sustainable source of beneficial ingredients in animal nutrition. Such supplements are probiotics, ferments and medicinal herbs.
Biologically active substances are known to restore and maintain the balance of intestinal microflora, to improve the functions of immune system and to improve the overall health of farm animals. Another desirable effect of the diet supplements, such as the medicinal plant Yucca schidigera supplementation and different types of probiotics, is the ability to reduce ammonia levels in the produced manure. Diet supplements are easily applicable, by adding the extracts to the fodder or bedding of farm animals.
Ключови думи: ammonia levels; probiotics; rabbit farms; yucca
Цитиране: Viryanski, D., Stoykova-Grigorova, R., Bozhilova-Sakova, M., Todorova, M. & Petrov, D. (2024). Effect of Yucca and probiotic supplements on Ammonia levels in rabbit farms. Bulgarian Journal of Animal Husbandry, 61(4), 17-25
Литература: (click to open/close) | Abaza, I. M. & El-Said, H. (2005). Effect of using yucca schidigera as feed additive on performance of growing rabbits. The 4th Inter. Con. on Rabbit Prod. in Hot Clim., Sharm El-Sheikh, Egypt, 259-266. Abdelsalam, M. & Moataz, F. M. (2023). Improving productivity in rabbits by using some natural feed additives under hot environmental conditions — A review. Anim Biosci, 36, 540-554. Adegbeye M. J., Elghandour, M., Monroy, J. C., Abegunde, T. O., Salem, A. Z. M., A., Barbabosa-Pliego, T.O. & Faniyl (2019). Potential influence of Yucca extract as feed additive on greenhouse gases emission for a cleaner livestock and aquaculture farming - A review. Journal of Cleaner Production, 239, 118074. https://doi.org/10.1016/j.jclepro.2019.118074. Adli, D., Sjofjan, O., Sholikin, M. M., Hidayatc, C., Utama, D., Jayanegarad, A., Natsir, M., Nuningtyas, Y., Pramujo, M. & Puspitaa, P. (2023). The effects of lactic acid bacteria and yeast as probiotics on theperformance, blood parameters, nutrient digestibility, and carcasequality of rabbits: a meta-analysis. Italian journal of animal science, 22(1), 157–168. https://doi.org/10.1080/1828051X.2023.2172467. Amber, Kh., Yakout, H. M. & Hamed, R. S. (2004). Effect of feeding diets containing yucca extract or probiotic on growth, digestibility, nitrogen balance and caecal microbial activity of growing new zealand white rabbits. Proceedings - 8th World Rabbit Congress – September 7-10, 2004 – Puebla, Mexico. Ashour, E. A., Alagawany, M., Reda, F. M. & Abd El-Hack, M. E. (2014). Effect of Supplementation of Yucca schidigera Extract to Growing Rabbit Diets on Growth Performance, Carcass Characteristics, Serum Biochemistry and Liver Oxidative Status. Asian Journal of Animal and Veterinary Advances, 9(11), 732-742. Biagini, D., Enzo, М., Rosato, R., Lazzaroni, C. & Dinuccio, E. (2021). Reducing ammonia and GHG emissions from rabbit rearing through a feed additive produced from green urban residues. Sustainable Production and Consumption, 27, 10.1016/j.spc.2020.10.003. https://doi.org/10.1016/j.spc.2020.10.003. Camble М. R. & Clough, G. (1976). Ammonia build-up in animal boxes and its effect on rat tracheal epithelium. Lab Anim., 10(2), 93-104. Cartwright, G. E., Wintrobe, M. M. & Humphreys, S. (1944).Studies on anemia in swine due to pyridoxine deficiency, together with data on phenyl-hydrazine anemia. J. Biol. Chem., 153, 171-182. Cheeke, P. R., Piacente, S. & Oleszek, W. (2006). Anti-inflammatory and anti-arthritic effects of yucca schidigera: A review. Journal of Inflammation, 3, 6. doi:10.1186/1476-9255-3-6. Chrenkova, M., Chrastinova, L., Polacikova, M., Formelova, Z., Balazi1, A., Ondruska, L., Sirotkin, A. & Chrenek, P. (2012). The effect of Yucca schidigera extract in diet of rabbits on nutrient digestibility and qualitative parameters in caecum. Slovak J. Anim. Sci., 45, 83-88. Colina, J. J., Lewis, A. J., Miller, P. S. & Fischer, R. L. (2001). Dietary manipulation to reduce aerial ammonia concentration in nursery pig facilities. J. Anim. Sci., 79, 3096 – 3103 (contents of rats. Korean, J. Anim. Sci., 34, 167-173). Cui, J., Yang, X., Wang, F., Liu, S., Han, S. & Chen, B. (2021b) Effects of ammonia on growth performance, lipid metabolism and cecal microbial community of rabbits. PLoS ONE, 16(6), e0252065. Cui, J., Fengyang, W., Xinyu, Y., Shudong, L., Shuaijuan, H. & Baojiang, Ch. (2021a). Effects of ammonia on hypothalamic-pituitary-ovarian axis in female rabbits. Ecotoxicology and Environmental Safety, 227, 112865 https://doi.org/10.1016/j.ecoenv.2021.112922. Dimova, N., Laleva, S., Slavova, P., Popova, Yo., Mihaylova, M. & Pacinovski, N. (2017). Effect of probiootic “Zoovit” on productivity of rabbits. Macedonian Journal of Animal Science, 7(1–2), 123–127. doi: 10.1258/002367776781071477. Duffy, C. & Brooks. (1998). Using yucca schidigera in pig diets: Effects on nitrogen metabolism. Proc. Alltech´s 14th Annu. Symp. Nottingham University Press, Nottingham, U.K., 61 Dyavolova, M., Gudev, D., Moneva, P. & Yanchev, I. (2014). Effect of high levels of ammonia in air on adrenal response to adrenocorticotropin and forced running in rabbits. Proceedings of the International Symposium on Animal Science 2014, September 2014, Belgrade-Zemun. Dyavolova, M., Gudev, D., Yanchev, I. & Moneva, P. (2013b). Functional activity of the adrenal glands, rectal temperature and some hematological indices in rabbits reared under low and high indoor ammonia levels. Conference Paper, October 2013. Dyavolova, M., Yanchev, I., Gudev, D. & Moneva, P. (2013a). Effect of high ammonia level on stress-induced hematological changes in rabbits: preventive effect of pyridoxine. Bulgarian Journal of Agricultural Science, 19(4), 828-834. Dyavolova, M., Yanchev, I., Moneva, P. & Gudev, D. (2015). Effect of ammonia on the dinamics of some hematological indices in rabbits, exposed to psychic stress. Bulgarian Journal of Animal Husbandry, LII(4), 25-32. El-Shafei, A. A., Younis, T. M., Al-Gamal, M. A. & Hesham, A. M. (2019). Impact of probiotic (Lactobacillus planterium l) supplementation on productive and physiological performance of growing rabbits under egyptian conditions. Egyptian Journal of Rabbit Science, 29(1), 125 – 148. Flores-Velázquez, J., Villarreal-Guerrero, F., Ojeda, W. & Ruíz-García, A. (2017). Thermal and ammonia concentration gradients in a rabbit barn with two ventilation system designs. Revista Brasileira de Engenharia Agrícola e Ambiental, 21(2), 134-140. DOI: http://dx.doi.org/10.1590/1807-1929/agriambi.v21n2p134-140. https://www.researchgate.net/publication/261605749_functional_activity_of_the_adrenal_glands_rectal_temperature_and_some_hematological_indices_in_rabbits_reared_under_low_and_high_indoor_ammonia_levels. Harma, K. G., Vidyarthi, V. K., Archana, K., Zuyie, R. (2016). Probiotic Supplementation in the Diet of Rabbits - A Review. Livestock Research International, 4(1), 1-10. Kim, S., Heo, W., Lee, S. J., Han, B. K., Lee, H. & Kim, Y. (2021). Characterisitcs of Saccharomyces boulardii for reducing ammonia emission from livestock manure. Appl. Biol. Chem., 64, 30. https://doi.org/10.1186/s13765-021-00600-x. Kim, T. W. & Kim, K. I. (1992). Effects of feeding diets containing probiotics or antimicrobial agent on urease activity and ammonia production in the intestinal contents of rats. Korean, J. Anim. Sci., 34, 167-173. Koger, J. B. & Kempen, T. (2006). A Strategy for Reducing Ammonia in Animal Production. Pork Information Gateway. https://porkgateway.org/resource/a-strategy-for-reducing-ammonia-in-animal-production/. Mancini, S. & Paci, G. (2021). Probiotics in Rabbit Farming: Growth Performance, Health Status, and Meat Quality. Animals, 11, 3388-3404. https://doi.org/10.3390/ani11123388. Matsumoto, S. (1989). Effects of ammonia and histamine on lung irritant receptors in the rabbit. Respiration Physiology, 77(3), 301-308. Mayan, M. H. & Merilan, C. P. (1972). Effects of Ammonia Inhalation on Respiration Rate of Rabbits. Journal of Animal Science, 34(3), 448–452, https://doi.org/10.2527/jas1972.343448x. Moneva, P., Yanchev, I., Dyavolova, M. & Gudev, D. (2016). Ammonia compromises the dynamics of some blood parameters in exposed to stress rabbits. Bulgarian Journal of Agricultural Science, 22(1), 42-46. National Agricultural Advisory Service, General Directorate "Agriculture advisory”. (2022). https://www.naas.government.bg/en/vprosi-i-otgovori/publikuvani-otgovori/usloviya-i-iziskvaniya-za-otglezhdane-na-zajci. Park, J. W., Jeong, J. S., Lee, S. I. & Kim, I. H. (2016). Effect of dietary supplementation with a probiotic (Enterococcus faecium) on production performance, excreta microflora, ammonia emission, and nutrient utilization in ISA brown laying hens. Poultry Science, 95, 2829–2835. http://dx.doi.org/10.3382/ps/pew241. Pogány Simonová, M., Chrastinová, L’. & Lauková, A. (2022). Enterocin 7420 and Sage in Rabbit Diet and Their Effect on Meat Mineral Content and Physico-Chemical Properties. Microorganisms, 10, 1094. Regulation (EC) No. 1831/2003 of the european parliament and of the council/22.08.2003/ https://eur-lex.europa.eu/eli/reg/2003/1831/oj. Sahoo, S. P., Kaur, D., Sethi, A. P. S., Sharma, A. & Chandra, M. (2015). Evaluation of Yucca schidigera extract as feed additive on performance of broiler chicks in winter season. Vet. World, 8, 556e560. Sliwinski, B. J. M., Kreuzer, H. R., Wettstein, A. & Machmuller. (2002). Rumen fermentation and nitrogen balance of lambs fed diets containing plant extracts rich in tannins and saponins, and associated emissions of nitrogen and methane. Arch. Tierernahr., 56(6), 379-392. Wang, Y., Zhang, Y., Ren, H., Fan, Z., Yang, X., Zhang, C. & Jiang, Y. (2023). Dietary yucca extract and Clostridium butyricum promote growth performance of weaned rabbits by improving nutrient digestibility, intestinal development, and microbial composition. Front. Vet. Sci., 10, 1088219. doi: 10.3389/fvets.2023.1088219. Yeo, J. & Kim, K. (1997). Effect of feeding diets containing an antibiotic, a probiotic or yucca extract on growth and intestinal N rease activity in broiler chicks. Poult. Sci.,76, 381-385. Order No. 44 of april 20, 2006 On the veterinary medical requirements for livestock facilities - https://www.iasrj.eu/%D0%B4%D0%BE%D0%BA%D1%83%D0%BC%D0%B5%D0%BD%D1%82%D0%B8/%D0%BD%D0%B0%D1%80%D0%B5%D0%B4%D0%B1%D0%B8/126-%D0%BD%D0%B0%D1%80%D0%B5%D0%B4%D0%B1%D0%B0-%E2%84%96-44-%D0%BE%D1%82-20-%D0%B0%D0%BF%D1%80%D0%B8%D0%BB-2006%D0%B3 |
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| Дата на публикуване: 2024-08-27
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