HOME JOURNALS CONTACT

International Journal of Poultry Science

Year: 2012 | Volume: 11 | Issue: 11 | Page No.: 718-729
DOI: 10.3923/ijps.2012.718.729
Role of Dietary L-Arginine in Poultry Production
A.M. Fouad, H.K. El-Senousey, X.J. Yang and J.H. Yao

Abstract: As a result of impressive progress that made in economic traits such as body weight gain, feed efficiency and breast yield to meet the demands of consumers, nowadays, poultry became more susceptible to obesity, stressors and less ability to resist the common diseases in commercial farms. L-Arginine (L-Arg) supplementation in poultry diets improves egg production, egg weight, modulates lipid metabolism toward reducing total body fat accumulation to improve meat quality and increases antioxidant defense under normal conditions. Also under stress conditions L-Arg has the ability to alleviate this stress and to normalize the growth performance. Dietary L-Arg supplementation reduces ascites mortality under low ambient temperatures, attenuates the adverse effects of heat stress and high stock density, activates the immune system and enhances its responses to different common diseases in poultry farms. Therefore, L-Arg plays a pivotal role in poultry production.

Fulltext PDF

How to cite this article
A.M. Fouad, H.K. El-Senousey, X.J. Yang and J.H. Yao, 2012. Role of Dietary L-Arginine in Poultry Production. International Journal of Poultry Science, 11: 718-729.

Keywords: L-Arginine, poultry, carcass yield, stress and immune

REFERENCES

  • Abdukalykova, S.T. and C.A. Ruiz-Feria, 2006. Arginine and vitamin E improve the cellular and humoral immune response of broiler chickens. Int. J. Poult. Sci., 5: 121-127.
    CrossRef    Direct Link    


  • Abdukalykova, S.T., X. Zhao and C.A. Ruiz-Feria, 2008. Arginine and vitamin E modulate the subpopulations of T lymphocytes in broiler chickens. Poult. Sci., 87: 50-55.
    CrossRef    


  • Al-Daraji, H.J. and A.M. Salih, 2012. The influence of dietary arginine supplementation on blood traits of broiler chickens. Pak. J. Nutr., 11: 258-264.
    CrossRef    Direct Link    


  • Al-Daraji, H.J. and A.M. Salih, 2012. Effect of dietary L-arginine on carcass traits of broilers. Res. Opin. Anim. Vet. Sci., 2: 40-43.
    Direct Link    


  • Al-Daraji, H.J., A.A. Al-Mashadani, W.K. Al-Hayani, A.S. Al-Hassani and H.A. Mirza, 2011. Influence of in ovo injection of L-Arginine on productive and physiological performance of quail. Res. Opin. Anim. Vet. Sci., 1: 463-467.
    Direct Link    


  • Allen, P.C. and R.H. Fetterer, 2000. Effect of Eimeria acervulina infections on plasma L-arginine. Poult. Sci., 79: 1414-1417.
    Direct Link    


  • Allen, P.C., 1999. Effects of daily oral doses of L-arginine on coccidiosis infections in chickens. Poult. Sci., 78: 1506-1509.
    PubMed    


  • Allen, P.C., 1997. Production of free radical species during Eimeria maxima infections in chickens. Poult. Sci., 76: 814-821.
    CrossRef    Direct Link    


  • Allen, P.C., 1997. Nitric oxide production during Eimeria tenella infections in chickens. Poult. Sci., 76: 810-813.
    PubMed    


  • Atakisi, O., E. Atakisi and A. Kart, 2009. Effects of dietary zinc and L-arginine supplementation on total antioxidants capacity, lipid peroxidation, nitric oxide, egg weight and blood biochemical values in Japanese quails. Biol. Trace Elem. Res., 132: 136-143.
    CrossRef    PubMed    Direct Link    


  • Attia, Y.A., R.A. Hassan, A.E. Tag El-Din and B.M. Abou-Shehema, 2011. Effect of ascorbic acid or increasing metabolizable energy level with or without supplementation of some essential amino acids on productive and physiological traits of slow-growing chicks exposed to chronic heat stress. J. Anim. Physiol. Anim. Nutr., 95: 744-755.
    CrossRef    PubMed    Direct Link    


  • Azad, K.M.A., M. Kikusato, A.M. Hoque and M. Toyomizu, 2010. Effect of chronic heat stress on performance and oxidative damage in different strains of chickens. J. Poult. Sci., 47: 333-337.
    CrossRef    Direct Link    


  • Balnave, D., J. Hayat and J. Brake, 1999. Dietary arginine: Lysine ratio and methionine activity at elevated environmental temperatures. J. Applied Poult. Res., 8: 1-9.


  • Barelee, S.M. and A.B. Batal, 2007. The effect of supplemental glutamine on growth performace, development of the gastrointestinal tract and immune response of broilers. Poult. Sci., 86: 1940-1947.
    Direct Link    


  • Basiouni, G.F., 2009. The effect of feeding an extra amounts of arginine to local saudi hens on luteinizing hormone secretion. J. Biol. Sci., 9: 671-680.
    CrossRef    


  • Basoo, H., F. Khajali, E. Asadi Khoshoui, M. Faraji and R.F. Wideman, 2012. Estimation of arginine requirements for broilers grown at high altitude during the 3- to 6-week period. J. Poult. Sci., 49: 3023-3027.


  • Bautista-Ortega, J. and C.A. Ruiz-Feria, 2010. L-Arginine and antioxidant vitamins E and C improve the cardiovascular performance of broiler chickens grown under chronic hypobaric hypoxia. Poult. Sci., 89: 2141-2146.
    CrossRef    PubMed    


  • Becker, W.A., J.V. Spencer, L.W. Mirosh and J.A. Verstrate, 1979. Prediction of fat and fat free live weight in broiler chickens using backskin fat, abdominal fat and live body weight. Poult. Sci., 58: 835-842.
    CrossRef    


  • Beker, A., S.L. Vanhooser, J.H. Swartzlander and R.G. Teeter, 2003. Graded atmospheric oxygen level effects on performance and ascites incidence in broilers. Poult. Sci., 82: 1550-1553.
    Direct Link    


  • Beloor, J., H.K. Kang, Y.J. Kim, V.K. Subramani, I.S. Jang, S.H. Sohn and Y.S. Moon, 2010. The effect of stocking density on stress related genes and telomeric length in broiler chickens. Asian-Australas. J. Anim. Sci., 23: 437-443.
    Direct Link    


  • Brake, J., D. Balnave and J.J. Dibner, 1998. Optimum dietary arginine: Lysine ratio for broiler chickens is altered during heat stress in association with changes in intestinal uptake and dietary sodium chloride. Br. Poult. Sci., 39: 639-647.
    CrossRef    PubMed    Direct Link    


  • Broz, J. and N.E. Ward, 2007. The role of vitamins and feed enzymes in combating metabolic challenges and disorders. J. Applied Poult. Res., 16: 150-159.
    Direct Link    


  • Bun, S.D., Y.M. Guo, F.C. Guo, F.J. Ji and H. Cao, 2011. Influence of organic zinc supplementation on the antioxidant status and immune responses of broilers challenged with Eimeria tenella. Poult. Sci., 90: 1220-1226.
    CrossRef    PubMed    


  • Burt, D.W., 2002. Applications of biotechnology in the poultry industry. World's Poult. Sci. J., 58: 5-13.


  • Campo, J.L., M.G. Gil and S.G. Davila, 2005. Effects of specific noise and music stimuli on stress and fear levels of laying hens of several breeds. Applied Anim. Behav. Sci., 91: 75-84.
    CrossRef    Direct Link    


  • Cartwright, A.L., 1991. Adipose cellularity in Gallus domesticus: Investigations to control body composition in growing chickens. J. Nutr., 121: 1486-1497.
    PubMed    


  • Chamruspollert, M., G.M. Pesti and R.I. Bakalli, 2004. Chick responses to dietary Arg and met levels at different environmental temperatures. Br. Poult. Sci., 45: 93-100.


  • Chamruspollert, M., G.M. Pesti and R.I. Bakalli, 2004. Influence of temperature on the arginine and methionine requirements of young broiler chicks. J. Applied Poult. Res., 13: 628-638.
    Direct Link    


  • Chen, J., M. Wang, Y. Kong, H. Ma and S. Zou, 2011. Comparison of the novel compounds creatine and pyruvateon lipid and protein metabolism in broiler chickens. Animal, 5: 1082-1089.
    CrossRef    PubMed    


  • Corzo, A., E.T. Moran Jr. and D. Hoehler, 2003. Arginine need of heavy broiler males: Applying the ideal protein concept. Poult. Sci., 82: 402-407.
    Direct Link    


  • Cui, H.X., M.Q. Zheng, R.R. Liu, G.P. Zhao, J.L. Chen and J. Wen, 2011. Liver dominant expression of Fatty Acid Synthase (FAS) gene in two chicken breeds during intramuscular-fat development. Mol. Biol. Rep., 39: 3794-3798.
    PubMed    Direct Link    


  • Cui, H.X., S.Y. Yang, H.Y. Wang, J.P. Zhao and R.R. Jiang et al., 2010. The effect of a mutation in the 3-UTR region of the HMGCR gene on cholesterol in Beijing-You chickens. Anim. Biotechnol., 21: 241-251.
    CrossRef    Direct Link    


  • D'Amato, J.L. and B.D. Humphrey, 2010. Dietary arginine levels alter markers of arginine utilization in peripheral blood mononuclear cells and thymocytes in young broiler chicks. Poult. Sci., 89: 938-947.
    PubMed    


  • Decuypere, E., J. Buyse and N. Buys, 2000. Ascites in broiler chickens: Exogenous and endogenous structural and functional causal factors. World's Poult. Sci. J., 56: 367-376.
    CrossRef    Direct Link    


  • Deng, K., C.W. Wong and J.V. Nolan, 2005. Long-term effects of early life L-arginine supplementation on growth performance, lymphoid organs and immune responses in Leghorn-type chickens. Br. Poult. Sci., 46: 318-324.
    CrossRef    Direct Link    


  • Emadi, M., F. Jahanshiri, K. Kaveh, M. Hair-Bejo, A. Ideris and A.R. Alimon, 2011. Nutrition and immunity: The effects of the combination of arginine and tryptophan on growth performance, serum parameters and immune response in broiler chickens challenged with infectious bursal disease vaccine. Avian Pathol., 40: 63-72.
    PubMed    


  • Emadi, M., K. Kaveh, M.H. Bejo, A. Ideris, F. Jahanshiri, M. Ivan and R.A. Alimon, 2010. Growth performance and blood parameters as influenced by different levels of dietary arginine in broiler chickens. J. Anim. Vet. Adv., 9: 70-74.
    CrossRef    Direct Link    


  • Emadi, M., F. Jahanshiri, F.A. Jalalian, K. Kaveh and M.H. Bejo et al., 2010. Immunostimulatory effects of arginine in broiler chickens challenged with vaccine strain of infectious bursal disease virus. J. Anim. Vet. Adv., 9: 594-600.
    CrossRef    Direct Link    


  • Emmerson, D.A., K.A. Turner, D.N. Foster, N.B. Anthony and K.E. Nestor, 1997. Ornithine decarboxylase activity in muscle, liver, and intestinal tissue of turkeys during a short-term feed withdrawal and following refeeding. Poult. Sci., 76: 1563-1568.
    PubMed    


  • Fathi, M., K. Nazeradl, Y.E. Nezhad, H.A. Shahryar, M. Daneshyar and T. Tanha, 2011. Antioxidant enzyme activities characterization in Pulmonary Hypertension Syndrome (PHS) in broilers. Res. J. Biol. Sci., 6: 118-123.
    Direct Link    


  • Fernandes, J.I.M., A.E. Murakami, E.N. Martins, M.I. Sakamoto and E.R.M. Garcia, 2009. Effect of arginine on the development of the pectoralis muscle and the diameter and the protein: Deoxyribonucleic acid rate of its skeletal myofibers in broilers. Poult. Sci., 88: 1399-1406.
    Direct Link    


  • Gaya, L.G., J.B. Ferraz, F.M. Rezende, G.B. Mourao, E.C. Mattos, J.P. Eler and T.M. Filho, 2006. Heritability and genetic correlation estimates for performance and carcass and body composition traits in a male broiler line. Poult. Sci., 85: 837-843.
    Direct Link    


  • Graber, G. and D.H. Baker, 1973. The essential nature of glycine and proline for growing chickens. Poult. Sci., 52: 892-896.
    PubMed    


  • Guo, Y.L., W.B. Li and J.L. Chen, 2010. Influence of nutrient density and lighting regime in broiler chickens: Effect on antioxidant status and immune function. Br. Poult. Sci., 51: 222-228.
    CrossRef    Direct Link    


  • Hamasu, K., T. Haraguchi, Y. Kabuki, N. Adachi and S. Tomonaga et al., 2009. L-Proline is a sedative regulator of acute stress in the brain of neonatal chicks. Amino Acids, 37: 377-382.
    CrossRef    


  • Han, B., S.S. Yoon, H.R. Han, W.J. Qu and F. Nigussie, 2005. Effect of low ambient temperature on the concentration of free radicals related to ascites in broiler chickens. Asian-Australia J. Anim. Sci., 18: 1182-1187.
    Direct Link    


  • Hartree, S.A. and F.J. Cunningham, 1969. Purification of chickien pituitary follicle-stimulating hormone and luteinizing hormone. J. Endocrinol., 43: 609-616.
    CrossRef    Direct Link    


  • Hasheimi, S.R., I. Zulkifli, M.N. Somchit, Z. Zunita, T.C. Loh, A.F. Soleimani and S.C. Tang, 2013. Dietary supplementation of Zingiber officinale and Zingiber zerumbet to heat-stressed broiler chickens and its effect on heat shock protein 70 expression, blood parameters and body temperature. J. Anim. Physiol. Anim. Nutr., 97: 632-638.
    CrossRef    Direct Link    


  • Hassanpour, H., A.K. Moghaddam and H. Zarei, 2009. Effect of citric acid on electrocardiographic parameters of broiler chickens with pulmonary hypertension. Acta Vet. Hung., 57: 229-238.
    CrossRef    PubMed    Direct Link    


  • Havenstein, G.B., P.R. Ferket and M.A. Qureshi, 2003. Growth, livability and feed conversion of 1957 versus 2001 broilers when fed representative 1957 and 2001 broiler diets. Poult. Sci., 82: 1500-1508.
    CrossRef    PubMed    Direct Link    


  • Hocquette, J.F., F. Gondret, E. Baeza, F. Medale, C. Jurie and D.W. Pethick, 2010. Intramuscular fat content in meat-producing animals: Development, genetic and nutritional control and identification of putative markers. Animal, 4: 303-319.
    CrossRef    Direct Link    


  • Ipek, A. and U. Saha, 2006. Effect of cold stress on broiler performance and ascites susceptibility. Asian-Australia J. Anim. Sci., 19: 734-738.
    Direct Link    


  • Ishibashi, T. and C. Yonemochi, 2002. Possibility of amino acid nutrition in broiler. Anim. Sci. J., 73: 155-165.
    Direct Link    


  • Iqbal, M., D. Cawthon, K. Beers, R.F. Wideman Jr. and W.G. Bottje, 2002. Antioxidant enzyme activities and mitochondrial fatty acids in Pulmonary Hypertension Syndrome (PHS) in broilers. Poult. Sci., 81: 252-260.
    Direct Link    


  • Izadinia, M., M. Nobakht, F. Khajali, M. Faraji, F. Zamani, D. Qujeq and I. Karimi, 2010. Pulmonary hypertension and ascites as affected by dietary protein source in broiler chickens reared in cool temperature at high altitudes. Anim. Feed Sci. Tech., 155: 194-200.
    CrossRef    


  • Jiao, P., Y. Guo, X. Yang and F. Long, 2010. Effects of dietary arginine and methionine levels on broiler carcass traits and meat quality. J. Anim. Vet. Adv., 9: 1546-1551.
    CrossRef    Direct Link    


  • Jobgen, W.S., S.K. Fried, W.J. Fu, C.J. Meininger and G. Wu, 2006. Regulatory role for the arginine-nitric oxide pathway in metabolism of energy substrates. J. Nutr. Biochem., 17: 571-588.
    CrossRef    Direct Link    


  • Julian, R.J., J. Summers and J.B. Wilson, 1986. Right ventricular failure and ascites in broiler chickens caused by phosphorus-deficient diets. Avian Dis., 30: 453-459.
    PubMed    


  • Khajali, F. and R.F. Wideman, 2010. Dietary arginine: Metabolic, environmental, immunological and physiological interrelationships. World's Poult. Sci. J., 66: 751-766.
    CrossRef    


  • Khajali, F., M. Tahmasebi, H. Hassanpour, M.R. Akbari, D. Qujeq and R.F. Wideman, 2011. Effects of supplementation of canola meal-based diets with arginine on performance, plasma nitric oxide and carcass characteristics of broiler chickens grown at high altitude. Poult. Sci., 90: 2287-2294.
    CrossRef    PubMed    Direct Link    


  • Kidd, M.T., 2004. Nutritional modulation of immune function in broilers. Poult. Sci., 83: 650-657.
    CrossRef    Direct Link    


  • Kratzer, F.H. and L. Earl, 1975. Effect of arginine deficiency on normal and dystrophic chickens. Proc. Soc. Exp. Biol. Med., 148: 656-659.
    CrossRef    PubMed    Direct Link    


  • Kumar, P. and C.M. Chaturvedi, 2008. Correlation of nitric oxide (NO) activity and gonadal function in Japanese quail, Coturnix coturnix japonica following temporal phase relation of serotonergic and dopaminergic oscillations. Anim. Reprod. Sci., 106: 48-64.
    CrossRef    Direct Link    


  • Kurauchi, I., K. Shigemi, Y. Kabuki, K. Hamasu and H. Yamane et al., 2010. Central L-ornithine, but not polyamines, induces a hypnotic effect in neonatal chicks under acute stress. Nutr. Neurosci., 13: 17-20.
    CrossRef    PubMed    Direct Link    


  • Denbow, D.M., I. Kurauchi, K. Hamasu and M. Furuse, 2009. Plasma amino acid concentration in neonatal chicks modified by acute stress. J. Anim. Vet. Adv., 8: 1838-1841.
    Direct Link    


  • Kwak, H., R.E. Austic and R.R. Dietert, 1999. Influence of dietary arginine concentration on lymphoid organ growth in chickens. Poult. Sci., 78: 1536-1541.
    PubMed    Direct Link    


  • Laurent, F., R. Mancassola, S. Lacroix, R. Menezes and M. Naciri, 2001. Analysis of chicken mucosal immune response to Eimeria tenella and Eimeria maxima infection by quantitative reverse transcription-PCR. Infect. Immun., 69: 2527-2534.
    CrossRef    PubMed    Direct Link    


  • Lechner, O., H. Dietrich, G.J. Wiegers, M. Vacchio and G. Wick, 2001. Glucocorticoid production in the chicken bursa and thymus. Int. Immunol., 13: 769-776.
    CrossRef    Direct Link    


  • Li, K., J. Qiao, L. Zhao, S. Dong and D. Ou et al., 2006. Increased calcium deposits and decreased Ca2+-ATPase in right ventricular myocardium of ascitic broiler chickens. J. Vet. Med. Ser. A: Physiol. Pathol. Clin. Med., 53: 458-463.
    CrossRef    Direct Link    


  • Lin, H., H.C. Jiao, J. Buyse and E. Decuypere, 2006. Strategies for preventing heat stress in poultry. World Poult. Sci. J., 62: 71-86.
    CrossRef    Direct Link    


  • Manwar, S.J., R.P. Moudgal, K.V.H. Sastry, J. Mohan, J.B. Tyagi and R. Raina, 2006. Role of Nitric Oxide in Ovarian Follicular Development and Egg Production in Japanese Quail (Coturnix Coturnix Japonica). Theriogenology, 65: 1392-1400.
    CrossRef    PubMed    Direct Link    


  • Manwar, S.J., R.P. Moudgal, K.V.H. Sastry, I.S. Tyagi and Y.K. Saxena, 2003. Nitric Oxide Regulating Immune Functions in Egg Type Japanese Quail. Indian J. Poult. Sci., 38: 133-136.
    Direct Link    


  • Maroufyan, E., A. Kasim, M. Ebrahimi, T.C. Loh, M. Hair-Bejo and A.F. Soleimani, 2012. Dietary methionine and n-6/n-3 polyunsaturated fatty acid ratio reduce adverse effects of infectious bursal disease in broilers. Poult. Sci., 91: 2173-2182.
    CrossRef    Direct Link    


  • Maxwell, M.H. and G.W. Robertson, 1997. World broiler ascites survey 1996. Poult. Int., 23: 200-206.


  • McDougald, L.R., 2003. Protozoal Infections. In: Diseases of Poultry, Saif, J.R.G.Y.M., A.M. Fadly, L.R. McDougald and D.E. Swayne (Eds.). Iowa State Press, Ames, USA., pp: 974-990


  • McIlroy, S.G., E.A. Goodall and R.M. McCracken, 1989. Economic effects of subclinical infectious bursal disease on broiler production. Avian Pathol., 18: 465-480.
    CrossRef    PubMed    Direct Link    


  • Milinkovic-Tur, S., Z. Stojevic, J. Pirsljin, M. Zdelar-Tuk, N. Poljicak-Milas, B.B. Ljubic and B. Gradinski-Vrbanac, 2007. Effects of fasting and refeeding on the antioxidant system in cockerels and pullets. Acta Veterinaria Hungarica, 55: 181-189.
    CrossRef    Direct Link    


  • Mujahid, A., 2011. Nutritional strategies to maintain efficiency and production of chickens under high environmental temperature: A review. J. Poult. Sci., 48: 145-154.
    CrossRef    Direct Link    


  • Mujahid, A., N.R. Pumford, W. Bottje, K. Nakagawa, T. Miyazawa, Y. Akiba and M. Toyomizu, 2007. Mitochondrial oxidative damage in chicken skeletal muscle induced by acute heat stress. J. Poult. Sci., 44: 439-445.
    CrossRef    Direct Link    


  • Munir, K., M.A. Muneer, E. Masaoud, A. Tiwari, A. Mahmud, R.M. Chaudhry and A. Rashid, 2009. Dietary arginine stimulates humoral and cell-mediated immunity in chickens vaccinated and challenged against hydropericardium syndrome virus. Poult. Sci., 88: 1629-1638.
    CrossRef    PubMed    Direct Link    


  • Nadaf, J., F. Pitel, H. Gilbert, M.J. Duclos and F. Vignoles et al., 2009. QTL for several metabolic traits map to loci controlling growth and body composition in an F2 intercross between high-and low-growth chicken lines. Physiol. Genomics, 38: 241-249.
    PubMed    


  • Nain, S., B. Ling, J. Alcorn, C.M. Wojnarowicz, B. Laarveld and A.A. Olkowski, 2008. Biochemical factors limiting myocardial energy in a chicken genotype selected for rapid growth. Comp. Biochem. Physiol. A Mol. Integr. Physiol., 149: 36-43.
    PubMed    


  • Nijdam, E., E. Delezie, E. Lambooij, M.J. Nabuurs, E. Decuypere and J.A. Stegeman, 2005. Feed withdrawal of broilers before transport changes plasma hormone and metabolite concentrations. Poult. Sci., 84: 1146-1152.
    Direct Link    


  • NRC., 1994. Nutrient Requirements for Poultry. 9th Edn., National Academy Press, Washington, DC., USA


  • Olanrewaju, H.A., J.P. Thaxton, W.A. Dozier III, J. Purswell, W.B. Roush and S.L. Branton, 2006. A review of lighting programs for broiler production. Int. J. Poult. Sci., 5: 301-308.
    CrossRef    Direct Link    


  • Perez-Carbajal, C., D. Caldwell, M. Farnell, K. Stringfellow and G. Casco et al., 2010. Immune response of broiler chickens fed different levels of arginine and vitamin E to a coccidiosis vaccine and Eimeria challenge. Poult. Sci., 89: 1870-1877.
    PubMed    


  • Rajani, J., M.A.K. Torshizi and S. Rahimi, 2011. Control of ascites mortality and improved performance and meat shelf-life in broilers using feed adjuncts with presumed antioxidant activity. Anim. Feed. Sci. Technol., 170: 239-245.
    CrossRef    Direct Link    


  • Ruff, M.D. and P.C. Allen, 1990. Pathophysiology. In: Coccidiosis of Man and Domestic Animals, Long, P.L. (Ed.). CRC Press, Boca Raton, FL., USA., pp: 263-280


  • Ruiz-Feria, C.A. and S.T. Abdukalykova, 2009. Arginine and vitamin E improve the antibody responses to Infectious Bursal Disease Virus (IBDV) and sheep red blood cells in broiler chickens. Br. Poult. Sci., 50: 291-297.
    CrossRef    PubMed    Direct Link    


  • Ruiz-Feria, C.A., M.T. Kidd and R.F. Wideman, Jr., 2001. Plasma levels of arginine, ornithine and urea and growth performance of broilers fed supplemental L-arginine during cool temperature exposure. Poult. Sci., 80: 358-369.
    Direct Link    


  • Santoso, U., K. Tanaka and S. Ohtani, 1995. Effect of dried Bacillus subtilis culture on growth, body composition and hepatic lipogenic enzyme activity in female broiler chicks. Br. J. Nutr., 74: 523-529.
    CrossRef    PubMed    Direct Link    


  • Shahin, K.A. and F. Abd El Azeem, 2006. Effects of breed, sex and diet and their interactions on fat deposition and partitioning among depots of broiler chickens. Arch. Tierz. Dummertorf., 49: 181-193.
    CrossRef    Direct Link    


  • Sohn, S.H., V.K. Subramani, Y.S. Moon and I.S. Jang, 2012. Telomeric DNA quantity, DNA damage and heat shock protein gene expression as physiological stress markers in chickens. Poult. Sci., 91: 829-836.
    CrossRef    PubMed    Direct Link    


  • Sporer, K.R.B., H.R. Zhou, J.E. Linz, A.M. Booren and G.M. Strasburg, 2012. Differential expression of calcium-regulating genes in heat-stressed turkey breast muscle is associated with meat quality. Poult. Sci., 91: 1418-1424.
    CrossRef    PubMed    Direct Link    


  • Srinongkote, S., M. Smrige and Y. Toride, 2004. Diet supplied with L-lysine and L-arginine during chronic stress of high stock density normalizes growth of broilers. Anim. Sci. J., 75: 339-343.
    CrossRef    Direct Link    


  • Suenaga, R., S. Tomonaga, H. Yamane, I. Kurauchi and Y. Tsuneyoshi et al., 2008. Intracerebroventricular injection of L-arginine induces sedative and hypnotic effects under an acute stress in neonatal chicks. Amino Acids, 35: 139-146.
    CrossRef    PubMed    


  • Sundaresan, N.R., V.K. Saxena, K.V.H. Sastry, D. Anish, M. Saxena, K. Nagarajan and K.A. Ahmed, 2007. Nitric oxide: A possible mediator of ovulation and postovulatory follicle regression in chicken. Anim. Reprod. Sci., 101: 351-357.
    CrossRef    Direct Link    


  • Swaggerty, C.L., I.Y. Pevzner, H. He, K.J. Genovese, D.J. Nisbet, P. Kaiser and M.H. Kogut, 2009. Selection of broilers with improved innate immune responsiveness to reduce on-farm infection by foodborne pathogens. Foodborne Pathog. Dis., 6: 777-783.
    CrossRef    Direct Link    


  • Swire, P.W., 1980. Ascites in broilers. Vet. Record, 107: 541-541.


  • Tamir, H. and S. Ratner, 1963. Enzymes of arginine metabolism in chicks. Archiv. Physiol. Biochem., 102: 249-269.


  • Tan, X., J.Q. Pan, J.C. Li, Y.J. Liu, W.D. Sun and X.L. Wang, 2005. L-Arginine inhibiting pulmonary vascular remodelling is associated with promotion of apoptosis in pulmonary arterioles smooth muscle cells in broilers. Res. Vet. Sci., 79: 203-209.
    CrossRef    


  • Tan, X., S.H. Hu and X.L. Wang, 2008. The effect of dietary L-carnitine supplementation on pulmonary hypertension syndrome mortality in broilers exposed to low temperatures. J. Anim. Physiol. Anim. Nutr., 92: 203-210.
    CrossRef    Direct Link    


  • Tan, X., W.D. Sun, Y.X. Hu, J.C. Li, J.Q. Pan, J.Y. Wang and X.L. Wang, 2006. Changes in pulmonary arterioles protein kinase cα expression associated with supplemental L-arginine in broilers during cool temperature exposure. Br. Poult. Sci., 47: 230-236.
    CrossRef    Direct Link    


  • Tan, X., W.D. Sun, J.C. Li, J.Q. Pan, Y.J. Liu, J.Y. Wang and X.L. Wang, 2007. L-Arginine prevents reduced expression of endothelial Nitric Oxide Synthase (NOS) in pulmonary arterioles of broilers exposed to cool temperatures. Vet. J., 173: 151-157.
    CrossRef    Direct Link    


  • Tayade, C., T.N. Jaiswal, S.C. Mishra and M. Koti, 2006. L-Arginine stimulates immune response in chickens immunized with intermediate plus strain of infectious bursal disease vaccine. Vaccine, 24: 552-560.
    CrossRef    Direct Link    


  • Van As, P., M.G. Elferink, A.M. Closter, A. Vereijken and H. Bovenhuis et al., 2010. The use of blood gas parameters to predict ascites susceptibility in juvenile broilers. Poult. Sci., 89: 1684-1691.
    CrossRef    Direct Link    


  • Veldkamp, T., R.P. Kwakkel, P.R. Ferket, P.C.M. Simons, J.P.T. Noordhuizen and A. Pijpers, 2000. Effects of ambient temperature, arginine-to-lysine ratio and electrolyte balance on performance, carcass and blood parameters in commercial male turkeys. Poult. Sci., 79: 1608-1616.
    PubMed    


  • Voslarova, E., P. Chlouopek, J. Chloupek, I. Bedanova, V. Pistekova and V. Vecerek, 2011. The effects of chronic intermittent noise exposure on broiler chicken performance. Anim. Sci. J., 82: 601-606.
    CrossRef    Direct Link    


  • Wideman, R.F., Y.K. Kirby, M. Ismalil, W. Bottje, R.W. Moore and R.C. Vardeman, 1995. Supplemental l-arginine attenuates pulmonary hypertension syndrome (ascites) in broilers. Poult. Sci., 74: 323-330.
    PubMed    


  • Witzel, D.A., W.E. Huff, L.F. Kubena, R.B. Harvey and M.H. Elissalde, 1990. Ascites in growing broilers: A researche model. Poult. Sci., 69: 741-745.
    PubMed    Direct Link    


  • Williams, R.B., 1999. A compartmentalised model for the estimation of the cost of coccidiosis to the world's chicken production industry. Int. J. Parasitol., 29: 1209-1229.
    CrossRef    Direct Link    


  • Wu, L.Y., Y.J. Fang and X.Y. Guo, 2011. Dietary L-arginine supplementation beneficially regulates body fat deposition of meat-type ducks. Br. Poult. Sci., 52: 221-226.
    CrossRef    


  • Xiang, R.P., W.D. Sun, J.Y. Wang and X.L. Wang, 2002. Effect of vitamin C on pulmonary hypertension and muscularisation of pulmonary arterioles in broiler. Br. Poult. Sci., 43: 705-712.
    CrossRef    Direct Link    


  • Xiong, M., S. Li, X. Peng, Y. Feng, G. Yu, Q. Xin and Y. Gong, 2010. Adipogenesis in ducks interfered by small interfering ribonucleic acids of Peroxisome proliferator-activated receptor γ gene. Poult. Sci., 89: 88-95.
    CrossRef    Direct Link    


  • Xu, L., S.G. Wu, H.J. Zhang, L. Zhang, H.Y. Yue, F. Ji and G.H. Qi, 2011. Comparison of lipid oxidation, messenger ribonucleic acid levels of avian uncoupling protein, avian adenine nucleotide translocator and avian peroxisome proliferator-activated receptor- γ coactivator-1α in skeletal muscles from electrical- and gas-stunned broilers. Poult. Sci., 90: 2069-2075.
    CrossRef    PubMed    Direct Link    


  • Yang, L., G.Y. Tan, Y.Q. Fu, J.H. Feng and M.H. Zhang, 2010. Effects of acute heat stress and subsequent stress removal on function of hepatic mitochondrial respiration, ROS production and lipid peroxidation in broiler chickens. Comp. Biochem. Physiol. C: Toxicol. Pharmacol., 151: 204-208.
    CrossRef    PubMed    Direct Link    


  • Yesilbag, D., M. Eren, H. Agel, A. Kovanlikaya and F. Balci, 2011. Effects of dietary rosemary, rosemary volatile oil and vitamin E on broiler performance, meat quality and serum SOD activity. Br. Poult. Sci., 52: 472-482.
    CrossRef    PubMed    Direct Link    


  • Young, V.R. and A.M. Ajami, 2000. Glutamate: An amino acid of particular distinction. J. Nutr., 130: 892S-900S.
    PubMed    


  • Zhang, Z.Y., G.Q. Jia, J.J. Zuo, Y. Zhang, J. Lei, L. Ren and D.Y. Feng, 2012. Effects of constant and cyclic heat stress on muscle metabolism and meat quality of broiler breast fillet and thigh meat. Poult. Sci., 91: 2931-2937.
    CrossRef    Direct Link    


  • Zhang, L., H.Y. Yue, S.G. Wu, L. Xu and H.J. Zhang et al., 2010. Transport stress in broilers. II. Superoxide production, adenosine phosphate concentrations and mRNA levels of avian uncoupling protein, avian adenine nucleotide translocator and avian Peroxisome proliferator-activated receptor-γ coactivator-1α in skeletal muscles. Poult. Sci., 89: 393-400.
    CrossRef    Direct Link    


  • Zhao, J.P., H.C. Jiao, Z.G. Song and H. Lin, 2009. Effects of L-arginine supplementation on glucose and Nitric Oxide (NO) levels and activity of NO synthase in corticosterone-challenged broiler chickens (Gallus gallus). Comp Biochem. Physiol. C Toxicol. Pharmacol., 150: 474-480.
    CrossRef    Direct Link    


  • Zhou, H., N. Deeb, C.M. Evock-Clover, C.M. Ashwell and S.J. Lamont, 2006. Genome-wide linkage analysis to identify chromosomal regions affecting phenotypic traits in the chicken. II. Body composition. Poult. Sci., 85: 1712-1721.
    CrossRef    Direct Link    

  • © Science Alert. All Rights Reserved