Yumurta Tavuğu Rasyonlarında Amino Asit Yoğunluğu ve Proteaz İlavesinin Performans, Yumurta Kalitesi ve Azot Atılımı Üzerine Etkileri

Yazarlar

DOI:

https://doi.org/10.24925/turjaf.v11i9.1706-1714.6292

Anahtar Kelimeler:

Proteaz- besi performans- protein- azot- yumurta kalitesi- yumurta tavuğu

Özet

Bu çalışmada farklı sindirilebilir amino asit seviyelerindeki rasyonlara ticari proteaz enzimi ilavesinin yumurta tavuklarının performansı, yumurta kalite parametreleri ve azot atılımı üzerindeki etkileri değerlendirilmiştir. Çalışma, 26 haftalık yaştan 56 haftalık yaşa kadar olan 336 adet Nick Brown yumurta tavuğu ile yürütülmüştür. Deneme 4 muamele grubu, ve her tekerrürde 7 hayvan olacak şekilde 12 tekerrürle yürütülmüştür. Faktöriyel bir düzende 4 rasyon uygulaması (2 amino asit seviyesi; normal ve %6 daha düşük × enzim takviyeli veya takviyesiz) deneme bloklarına rastgele atanmıştır. Nick Brown yumurta tavuklarına proteaz ilavesinin canlı ağırlık, yumurta ağırlığı, yumurta verimi, yumurta kalitesi, yem değerlendirme, yem tüketimi ve azot atılımı üzerinde önemli bir etkisi olmazken; amino asit seviyelerinin yumurta verimi, yumurta ağırlığı ve haftalık yem tüketimi üzerinde önemli etkileri olduğu, ancak bu etkilerin deneme geneline yansımadığı belirlenmiştir. Amino asit seviyeleri ve proteaz ilavesi arasındaki interaksiyon istatistiksel olarak önemli bulunmuş; Haugh birimi standart amino asit rasyonlarında proteaz ile iyileşirken, düşük amino asit seviyeli rasyonlarda önemli bir değişiklik olmamıştır. Amino asit seviyeleri ve proteaz ilavesi arasındaki interaksiyon, atılan azot / tüketilen azot oranı için istatistiksel olarak anlamlı bulunmuştur.  Atılan azot, normal amino asit rasyonlarında proteaz ilavesi ile iyileşirken; düşük amino asit rasyonlarında önemli bir değişiklik olmamıştır. Sindirilebilir esansiyel amino asit gereksinimleri ideal amino asit profiline göre karşılandığında, ticari kahverengi yumurtacılarda performansı ve yumurta kalitesini olumsuz etkilemeden önerilen protein ve amino asit seviyelerini %6 oranında azaltmanın mümkün olduğu sonucuna varılmıştır. Ayrıca, proteaz ilavesinin söz konusu amino asit seviyelerinde Kahverengi yumurtacı tavukların performansı veya yumurta kalitesi üzerinde önemli bir etkisi yoktur.

Referanslar

Abudabos MA. 2011. Enzyme supplementation of layer diets containing wheat middlings. Avian Biology Research, 4(3): 110–117. doi: 10.3184/175815511X13142802499814

Akyıldız AR. 1984. Yemler Bilgisi Laboratuvar Klavuzu. Ankara Üniversitesi Ziraat Fakültesi Yayınları No: 895, Ankara.

Anonymous 2012. H&N International. Brown Nick Management Guide. (http://www.hn-int.com/eng-wAssets/docs/managementguides/001MG-Brown-Nick_englisch_final.pdf. Erişim tarihi: 12 Eylül 2014).

Antar RS, Harms RH, Shıvazad M, Faria DE, Russell GB. 2004. Performance of commercial laying hens when six percent corn oil is added to the diet at various ages and with different levels of tryptophan and protein. Poultry Science, 83:3, p. 447- 455.

Barbosa SA, Corrêa GSS, Vieira BS, Silva GMM, Gonzalez-Esquerra R, Araujo RB. 2016. Effect of protease supplementation on performance, egg quality and intestinal morphometry of layers International Production and Processing Expo – IPPE, Atlanta – GA – USA, p.98.

Bedford MR, and Schulze H. 1998. Exogenous enzymes for pigs and poultry. Nutritional Research Review 11, 91–114.

Bedford MR. 2000. Exogenous enzymes in monogastric nutrition – their current value and future benefits. Animal Feed Science and Technology 86 (2000)

Benabdejelil K, and Arbaoui MI. 1994. Effect of enzyme supplementation of barleybased diets on hen performance and egg quality. Animal. Feed Science and Technolgy, 48: 325-334.

Blair R, Jacob JP, Ibrahim S, and Wang P. 1999. A quantitative assessment of reduced protein diets and supplements to improve nitrogen utilization. Journal of Applied Poultry Research, 8: 25-47.

Bustany ZA ve Elwinger K. 1988. Whole grains, unprocessed rapeseed and bglucanase in diets for laying hens. Swedish Journal of Agriculture Research, 18: 31-40.

Correa JS, Franco LS, Hernandez MC, Colli MC, and Ricalde RS. 2007. Effect of dietary energy and sulphur amino acids level on egg production traits in the tropics. Journal of Animal Veterinary Advancements, 6: 1209-1213.

Cowieson, AJ, and Ravindran V. 2008. Effect of exogenous enzymes in maize-based diets varying in nutrient density for young broilers: Growth performance and digestibility of energy, minerals and amino acids. British Poultry Science, 49(1): 37-44

Cowieson AJ, Acamovic T, Bedford MR. 2004. The effects of phytase and phytic acid on the loss of endogenous amino acids and minerals from broiler chickens. British Poultry Science; 45:101-108.

Cowieson AJ, and Adeola O. 2005. Carbohydrases, protease, and phytase have an additive beneficial effect in nutritionally marginal diets for broiler chicks. Poultry Science, 84: 1860-1867.

Csuka J, and Ledec M. 1981. Egg quality evaluation by selected physical markers. Rocz Nauk Zoot; 8:45-58.

Çiftçi İ, Yenice E, Gökçeyrek D, ve Öztürk E. 1997 Arpa ve Buğday içeren tavuk yemlerinde enzim kullanımı YUTAV bildiriler s:199-211

Çiftci İ, Yenice E, Gökçeyrek D, and Öztürk E. 2003. Effects of energy level and enzyme supplementation in wheat– based layer diets on hen performance and egg quality. Acta Agriculturae Scandinavica, Section A, Animal Science, 53:113-119.

Eisen EJ, Bohren BB, McKean HE. 1962. The haugh unit as a measure of egg albumen quality. Poultry Science, 41:1461-1468.

Filho JAV, Geraldo A, Machado LC, Brito JA, Bertechini AG, Murakami, E.S.F., 2015. Effect of protease supplementation on production performance of laying hens. Acta Scientiarum. Maringá, v. 37, n. 1, p. 29-33.

Freitas ER, Fuentes MFF, Espíndola GB. 2000. Effect of the Enzyme Supplementation of Corn/Soybean Meal Based Diets on the Performance of Commercial Laying Hens. Revista Brasileria de Zootecnia, 29(4):1103-1109.

Ghasemi R, Torki M, Ghasemi HA. 2014. Effects of dietary crude protein and electrolyte balance on production parameters and blood biochemicals of laying hens under tropical summer condition. Tropical Animal Health and Production, 46:5, 717-723

Gunawardana P, Roland DA, Bryant MM. 2009. Effect of dietary energy, protein, and a versatile enzyme on hen performance, egg solids, egg composition, and egg quality of Hy-Line W-36 hens during second cycle, phase two. Journal of Applied Poultry Research, 18 :43–53 doi: 10.3382/japr.2008-00047

Halle I. 2003. Effect of enzymes hydrolyzing non-starch polysaccharides (NSP) as feed additives in wheat-based laying hen diets. Archiv für Geflügelkunde 67 (6), 242-248

Hahn-Didde D, and Purdum SE. 2014. The effects of an enzyme complex in moderate and low nutrient-dense diets with dried distillers grains with solubles in laying hens. Journal of Applied Poultry Research, 23 :23–33

Jaroni D, Scheideler SE, Beck M, Wyatt C. 1999. The Effect of Dietary Wheat Middlings and Enzyme Supplementation. 1. Late Egg Production Efficiency, Egg Yields, and Egg Composition in Two Strains of Leghorn Hens. Poultry Science 78:841–847

Junqueira OM, Laurentiz AC, Silva FR, Rodrigues EA, and Casartelli EMC. 2006. Effects of energy and protein levels on egg quality and performance of laying hens at early second production cycle. Journal of Applied Poultry Research, 15: 110-115.

Khajali F, Khoshouie EA, Dehkordi SK, and Hematian MH. 2008. Production performance and egg quality of Hy-line W36 laying hens fed reduced-protein diets at a constant total sulfur amino acid: Lysine ratio. Journal of Applied Poultry Research, 17: 390-397.

Kralik G, Petricevic A, Izivkic M, and Skrtic Z. 1997. Preliminary results in the use of Polizyme BX in feeding laying hens. Poljoprivredni Fakultet Sveucilista, J.J. Strossmayera, Osijek, Hrvastka, Croatia. Krmiva., 39: 2, 69-75; 12 ref.

Latshaw JD, and Zhao L. 2011. Dietary protein effects on hen performance and nitrogen excretion. Poultry Science, 90: 99-106.

Lázaro R, García M, Araníbar MJ, and Mateos GG. 2003. Effect of enzyme addition to wheat- barley- and rye-based diets on nutrient digestibility and performance of laying hens. British Poultry Science 44 (2), 256-265

Lima MR, Costa FGP, Goulart CC, Pinheiro SG, Barbaso de Souza R, Morais SAN, Rima LC. 2012. Nutritional reduction of protein and usage of enzyme in the diet of light layers. Revista Brasilaria Zootecnia., 41:9, .2055-2063.

Mazzuco H, Bertechini AG. 2014 Critical points on egg production: causes, importance and incidence of eggshell breakage and defects. Ciência e Agrotecnologia, Lavras, 38:1, 7-14.

Novak C, Yakout HM, and Scheideler SE. 2006. The effect of dietary protein level and total sulfur amino acid: Lysine ratio on egg production parameters and egg yield in hy-line W-98 hens. Poultry Science., 85: 2195-2206.

Novak C, Yakout HM, and Remus J. 2007. Response to varying dietary energy and protein with or without enzyme supplementation on growth and performance of Leghorns: Growing period. Journal of Applied Poultry Research, 16: 481-493.

Oloffs K, Jeroch H, and Schöner FJ. 1998. The efficiency of enzyme hydrolyzing non-starch polysaccharides (NSP) as feed additives to layer rations on barleyrye ve wheat-rye basis. Journal of Animal Physiology ve Animal Nutrition 78 (4/5), 178-195

Pérez-Bonilla A, Jabbour C, Frikha M, Mirzaie S, Garcia J, Mateos GG. 2012. Effect of crude protein and fat content of diet on productive performance and egg quality traits of brown egg-laying hens with different initial body weight, Poultry Science, Volume 91, Issue 6, Pages 1400–1405.

Pessoa GBS, Ribeiro Junior V, Albino LFT, Araujo WAG, Silva DL, Hannas MI, Rostagno HS. 2016. Enzyme Complex Added to Broiler Diets: Effects on Performance, Metabolizable Energy Content, and Nitrogen and Phosphorus Balance. Brazilian Journal of Poultry Science, v.18 / n.3 / 467-474.

Polat C, Akyürek H, Konyalı A, and Senköylü N. 1995. WPSAProceedings. 10th European Symposium on Poultry Nutrition (15-19 October Antalya Türkiye), 360-362

Ravindran V, Selle PH, Bryden WL. 1999. Effects of phytase supplementation, individually and in combination, on the nutritive value of wheat and barley. Poult. Sci. 78, 1588–1595.

Santos-Ricalde R, Sarmianto-Franco L, Segura-Correa J. 2013. Effect of three protein levels and an enzyme blend on egg quality of laying hens. Pakistan Journal of Biological Science, 16(9): 1056-1060.

Selle PH, Ravindran V, Caldwell RA, Bryde WL. 2000. Phytate and phytase: consequences for protein utilization. Nutrition Research Reviews; 13:255-278.

Simbaya J, Slominski BA, Guenter W, Morgan A, ve Campbell LD. 1996. The effects of protease and carbohydrase supplementation on the nutritive value of canola meal for poultry: In vitro and in vivo studies. Animal Feed Science And Technology, 61: 219-234. Doi: 10.1016/0377-8401(95)00939-6

Summers JD. 1993. Reducing nitrogen excretion of the laying hen by feeding lower crude protein diets. Poultry Science 72: 1473-1478

Vieira BS, Barbosa SAPV, Tavares JMN, Beloli IGC, Silva GMM, Neto HRL, Caramori Júnior JG, Corrêa GSS. 2016. Phytase and protease supplementation for laying hens in peak egg production. Semina: Ciências Agrárias, Londrina, 37:6, 4285-4294. DOI: 10.5433/1679-0359.2016v37n6p4285

Wen C, Wang LC, Zhou YM, Jiang ZY, Wang T. 2012. Effect of enzyme preparation on egg production, nutrient retention, digestive enzyme activities and pancreatic enzyme messenger RNA expression of late-phase laying hens. Animal Feed Science and Technology 172: 180– 186.

Yusrizal Y, Angel R, Adrizal A, Wanto BE, Fakhri S, Yatno Y. 2013. Feeding native laying hens diets containing palm kernel meal with or without enzyme supplementations. 2. Excreta nitrogen, ammonia, and microbial counts. Journal of Applied Poultry Research, 22 :269–278

Yayınlanmış

2023-09-30

Nasıl Atıf Yapılır

Taşkesen, H. O., & Ceylan, N. (2023). Yumurta Tavuğu Rasyonlarında Amino Asit Yoğunluğu ve Proteaz İlavesinin Performans, Yumurta Kalitesi ve Azot Atılımı Üzerine Etkileri. Türk Tarım - Gıda Bilim Ve Teknoloji Dergisi, 11(9), 1706–1714. https://doi.org/10.24925/turjaf.v11i9.1706-1714.6292

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