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International Journal of Poultry Science

Year: 2014 | Volume: 13 | Issue: 11 | Page No.: 645-651
DOI: 10.3923/ijps.2014.645.651
Blood Profile and Performance of Native Chicken with Functional Feed
Ning Iriyanti, R. Singgih Sugeng Santosa and W.S. Rachmawati

Abstract: Native chicken quality performances could be improved through high quality feed. Thus, their growth, body weight and egg production could be optimized. This research used 60 hens of 6 weeks old native chicken with functional feed which consist of : menhaden fish oil, N-3 isolate of Histamine Methyl Transferase enzyme producer, Lactobacillus and Bacillus sp. at 1:1. The treatment consisted of 4 groups i.e., R0 (control), R1 (the use of functional feed at 2.5%), R2 (the use of functional feed at 5.0%); R3 (the use of functional feed at 7.5%). These are arranged based on a Completely Randomized Design with 4 replications, each replications with 5 hens, respectively. The measured variables were blood profile (cholesterol, triglycerides, LDL, HDL, erythrocyt, leucocyte, hematocrit and plasma protein) and performance (feed consumption, lipid consumption, energy consumption and carcass percentage). The results revealed that functional feed has increased very significantly (p<0.01) on lipid consumption, has increased significantly (p<0.05) to carcasses percentage. However, not significant difference (p>0.05) was observed on blood profile. A subsequent test was done with Honestly Significant Differences test to show that using functional feed up to 7.5% in fed could reduce lipid consumption, increased carcasses percentage but still produced relatively similar blood profile.

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How to cite this article
Ning Iriyanti, R. Singgih Sugeng Santosa and W.S. Rachmawati, 2014. Blood Profile and Performance of Native Chicken with Functional Feed. International Journal of Poultry Science, 13: 645-651.

Keywords: Functional feed, blood profile and native chicken

REFERENCES

  • AOAC., 2006. Official Methods of Analysis of Association of Official Analytical Chemists. 18th Edn., Association of Official Analytical Chemists Press, Arlington, VA., USA


  • Aydin, R., M. Karaman, H.H.C. Torak, A.K. Ozugur, D. Aydin and T. Cieck, 2006. The effect of long-term feeding of conjugated linoleic acid on fertility in Japanese quail. South Afr. J. Anim. Sci., 36: 99-104.
    Direct Link    


  • Belzung, F., T. Raclot and R. Groscolas, 1993. Fish oil n-3 fatty acids selectively limit the hypertrophy of abdominal fat depots in growing rats fed high-fat diets. Am. J. Physiol., 264: R1111-R1118.
    PubMed    


  • Clarke, S.D., 2001. Polyunsaturated fatty acid regulation of gene transcription: A molecular mechanism to improve the metabolic syndrome. J. Nutr., 131: 1129-1132.
    PubMed    


  • Chashnidel, Y., H. Moravej, A. Towhidi, F. Asadi and S. Zeinodini, 2010. Influence of different levels of n-3 supplemented (fish oil) diet on performance, carcass quality and fat status in broilers. Afr. J. Biotechnol., 9: 687-691.
    Direct Link    


  • Chowdhury, S.R., T.K. Smith, H.J. Boermans, A.E. Sefton, R. Downey and B. Woodward, 2005. Effects of feeding blends of grains naturally contaminated with Fusarium mycotoxins on performance, metabolism, hematology and immunocompetence of ducklings. Poult. Sci., 84: 1179-1185.
    Direct Link    


  • Cortinas, L., A. Barroeta, C. Villaverde, J. Galobart, F. Guardiola and M.D. Baucells, 2005. Influence of the dietary polyunsaturation level on chicken meat quality: Lipid oxidation. Poult. Sci., 84: 48-55.
    CrossRef    Direct Link    


  • Diwyanto, K., 1999. Livestock industries of Indonesia prior to the Asian financial crisis. Food and Agriculture Organization of the United Nations Regional Office for Asia and the Pacific, Maliwan Mansion, Phra Athit Road, Bangkok 10200, Thailand, December 1999, pp: 1-10.


  • Du, M. and D.U. Ahn, 2002. Effect of dietary conjugated linoleic acid on the growth rate of live birds and on the abdominal fat content and quality of broiler meat. Poult. Sci., 81: 428-433.
    Direct Link    


  • Harper, H.A., V.W. Rodwell and P.A. Mays, 1977. Biochemistry: Review of Physiological Chemistry. 17th Edn., Los Atlas, California


  • Kim, E.M., J.H. Choi and K.M. Chee, 1997. Effect of dietary safflower and perilla oils on fatty acid composition in egg yolk. Kor. J. Anim. Sci., 39: 135-144.


  • Nalubamba, K.S, N.B. Mudenda and M. Masuku, 2010. Indices of health; clinical haematology and body weights of free-range guinea fowl (Numida meleagris) from the Southern province of Zambia. Int. J. Poult. Sci., 9: 1083-1086.
    CrossRef    Direct Link    


  • Lee, K.W. and G.Y. Lip, 2003. The role of omega-3 fatty acids in the secondary prevention of cardiovascular disease. Q. J. Med., 96: 465-480.
    PubMed    


  • Lewis, N.M., S. Seburg and N.L. Flanagan, 2000. Enriched eggs as a source of N-3 polyunsaturated fatty acids for humans. Poult. Sci., 79: 971-974.
    CrossRef    Direct Link    


  • Marieb, E.N., 2001. Human Anatomy and Physiology. 5th Edn., Benjamin Cummings Publishing Co., San Francisco, ISBN: 0805349502, pp: 414


  • Martin, Jr. D.W., P.A. Mayes and V.W. Rodwell, 1986. Harper's Review of Biochemistry. 20th Edn., Lange Medical Publications, Los Altos, ISBN-13: 9780870410383, pp: 216-306


  • Meyer, B.J., N.J. Mann, J.L. Lewis, G.C. Milligan, A.J. Sinclair and P.R.C. Howe, 2003. Dietary intakes and food sources of omega-6 and omega-3 polyunsaturated fatty acids. Lipids, 38: 391-398.
    Direct Link    


  • Murwani, R., A. Indriani, I. Yuliana, K. Wihardani and M.A. Wahyuningrum et al., 2011. Blood biochemical indices and productivity of broilers on diet supplemented with mannan oligosacharide, baker yeast, or combined baker yeast and noni leaves extracts. Int. J. Poult. Sci., 10: 991-998.
    CrossRef    Direct Link    


  • Motawe, H.F.A., A.F. Abdel Salam and K.M. El Meleigy, 2014. Reducing the toxicity of aflatoxin in broiler Chickens' diet by using probiotic and yeast. Int. J. Poult. Sci., 13: 397-407.
    CrossRef    Direct Link    


  • Norata, G.D., A. Pirillo, E. Callegari, A. Hamsten, A.L. Catapano and P. Eriksson, 2003. Gene expression and intracellular pathways involved in endothelial dysfunction induced by VLDL and oxidised VLDL. Cardiovasc. Res., 59: 169-180.
    PubMed    


  • Ponte, P.I.P., I. Mendes, M. Quaresma, M.N.M. Aguiar and J.P.C. Lemos et al., 2007. Cholesterol levels and sensory characteristics of meat from broiler consuming moderate to high levels of alfalfa. Poult. Sci., 83: 810-814.
    PubMed    


  • Raes, K., G. Huyghebaert, S. de Smet, L. Nollet, S. Arnouts and D. Demeyer, 2002. The deposition of conjugated linoleic acids in eggs of laying hens fed diets varying in fat level and fatty acid profile. J. Nutr., 132: 182-189.
    PubMed    Direct Link    


  • Schmidt-Nielsen, K., 1990. Animal Physiology. Cambridge University, New York, Pages: 602


  • Schreiner, M., H.W. Hulan, E. Razzazi-Fazeli, J. Bohm and C. Iben, 2004. Feeding laying hens seal blubber oil: Effects on egg yolk incorporation, stereospecific distribution of omega-3 fatty acids, and sensory aspects. Poult. Sci., 83: 462-473.
    Direct Link    


  • Steel, R.G.D. and J.H. Torrie, 1994. Principles and Procedures of Statistics. McGraw-Hill Book Co. Inc. Pub. Ltd., London, New York


  • Tabeidian, A., G.H. Sadeghi and J. Pourreza, 2005. Effect of dietary protein levels and soybean oil supplementation on broiler performance. Int. J. Poult. Sci., 4: 799-803.
    CrossRef    Direct Link    


  • Tamzil, M.H., R.R. Noor, P.S. Hardjosworo, W. Manalu and C. Sumantri, 2014. Hematological response of chickens with different heat shock protein 70 genotypes to acute heat stress. Int. J. Poult. Sci., 13: 14-20.
    CrossRef    Direct Link    


  • Toghyani, M., M. Shivazad, A.A. Gheisari and S.H. Zarkesh, 2006. Performance, carcass traits and hematological parameters of heat-stressed broiler chicks in response to dietary levels of chromium picolinate. Int. J. Poult. Sci., 5: 65-69.
    CrossRef    Direct Link    


  • Ulupi, N., Muladno, C. Sumantri and I.W.T. Wibawan, 2014. Study of kampung chicken resistance against Salmonella enteritidis using tlr4 gene as marker. Int. J. Poult. Sci., 13: 467-472.
    CrossRef    Direct Link    


  • Vargas-Rodriguez, L.M., L.A. Duran-Melendez, J.A. Garcia-Masias, J.L. Arcos-Garcia, B.M. Joaquin-Torres nd M.G. Ruelas-Inzunza, 2013. Effect of probiotic and population density on the growth performance and carcass characteristics in broiler chickens. Int. J. Poult. Sci., 12: 390-395.
    CrossRef    Direct Link    


  • Volek, J.S., M.J. Sharman and C.E. Forsythe, 2005. Modification of lipoproteins by very low-carbohydrate diets. J. Nutr., 135: 1339-1342.
    PubMed    


  • Wells, J.M., 2011. Immunomodulatory mechanisms of Lactobacilli. Microbial. Cell Factories, Vol. 10.
    CrossRef    

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