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Physiological dynamics in broiler chickens under heat stress and possible mitigation strategies

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References

  • Khan RU, Naz S, Nikousefat Z, et al. Effect of vitamin E in heat-stressed poultry. World’s Poult Sci J. 2011;67(3):469–478.
  • Khan RU, Naz S, Nikousefat Z, Selvaggi M, Laudadio V, Tufarelli V. Effect of ascorbic acid in heat-stressed poultry. World’s Poult Sci J. 2012;68(3):477–490.
  • Freeman BM. Body temperature and thermoregulation. In: Bell DJ, Freeman BM, eds. Physiology and Biochemistry of the Domestic Fowl. London, UK: Academic Press; 1971:1115–1151.
  • North MO, Bell DD. Commercial Chicken Production Manual. 4th ed. One Penn Plaza, New York: Chapman & Hall; 1990.
  • Borges SA, Fischer da Silva AV, Majorka A, Hooge DM, Cummings KR. Physiological responses of broiler chickens to heat stress and dietary electrolyte balance (sodium plus potassium minus chloride, milliequivalents per kilogram). Poult Sci. 2004;83(9):1551–1558.
  • Dawson WR, Whittow GC. Regulation of body temperature. In: Causey G Sturkiés Avian Physiology. 5th ed. California, USA: Academic Press; 2000:340–390.
  • Chand N, Naz S, Khan A, Khan S, Khan RU. Performance traits and immune response of broiler chicks treated with zinc and ascorbic acid supplementation during cyclic heat stress. Int J Biometeorol. 2014;58(10):2153–2157.
  • Fathi MM, Galal A, El-Safty S, Mahrous M. Naked neck and frizzle genes for improving chickens raised under high ambient temperature: I. Growth performance and egg production. World’s Poult Sci J. 2013;69(4):813–832.
  • Siegel HS, Van Kampen M. Energy relationships in growing chickens given daily injections of corticosterone. Br Poult Sci. 1984;25(4):477–485.
  • Kpomasse CC, Oke OE, Houndonougbo FM, Tona K. Broiler production challenges in the tropics: a review. Vet Med Sci. 2021;7(3):831–812.
  • Selim NA, Youssef SF, Abdel-Salam AF, Nada SHA. Evaluation of some natural antioxidant sources in broiler diets: 1-effect on growth, physiological, microbiological and immunological performance of broiler chicks. Int J Poult Sci. 2013;12(10):561–571.
  • Razuki WM, Farhan SH, Jasim FH, Alkhilani FMH, Jameel FR. Effects of genetic strain and protein concentrate removal from finisher ration on performance and carcass parameters of broilers reared under hot climate. Int J Poult Sci. 2015;14(2):92–99.
  • Kalmath GP, Swamy MN. Effect of summer stress and supplementation of vitamin E and selenium on serum lipid profile in Hallikar cattle. IJSR. 2013;4:95–97.
  • Mashaly MM, Hendricks GL, Kalama MA, Gehad AE, Abbas AO, Patterson PH. Effect of heat stress on production parameters and immune responses of commercial laying hens. Poult Sci. 2004;83(6):889–894.
  • Decuypere E, Kuhn ER. Thyroid hormone physiology in galliformes: age and strain related changes in physiological control. Am Zool. 1988;28(2):401–415.
  • Melesse A, Maak S, Schmidt R, Von Lengerken G. Effect of long-term heat stress on key enzyme activities and T3 levels in commercial layer hens. Int J Livest Prod. 2011;2:107–116.
  • Sahin K, Kucuk O. Effects of vitamin C and vitamin E on performance, digestion of nutrients, and carcass characteristics of Japanese quails reared under chronic heat stress (34 °C). J Anim Physiol Anim Nutr. 2001;85(11–12):335–342.
  • Zulkifli I, Al-Aqil A, Omar AR, Sazili AQ, Rajion MA. Crating and heat stress influence blood parameters and heat shock protein 70 expression in broiler chickens showing short or long tonic immobility reactions. Poult Sci. 2009;88(3):471–476.
  • Ruvio JF, Schiassi L, Araujo HB, Damasceno F, Junior TY. Estimation of heat dissipation in broiler chickens during the first two weeks of life. BJA. 2017;92(3):248–260.
  • Park SO, Kim WK. Effects of betaine on biological functions in meat-type ducks exposed to heat stress. Poult Sci. 2017;96(5):1212–1218.
  • Quinteiro-Filho WM, Gomes AVS, Pinheiro ML, et al. Heat stress impairs performance and induces intestinal inflammation in broiler chickens infected with Salmonella enteritidis. Avian Pathol. 2012;41(5):421–4127.
  • Al-Fataftah ARA, Abu-Dieyeh ZHM. Effect of chronic heat stress on broiler performance in Jordan. Int J Poult Sci. 2007;6:64–70.
  • Bartlett JR, Smith MO. Effects of different levels of zinc on the performance and immunocompetence of broilers under heat stress. Poult Sci. 2003;82(10):1580–1588.
  • Zhang ZY, Jia GQ, Zuo JJ, et al. Effects of constant and cyclic heat stress on muscle metabolism and meat quality of broiler breast fillet and thigh meat. Poult Sci. 2012;91(11):2931–2937.
  • Bonnet S, Geraert PA, Lessire M, Carre B, Guillaumin S. Effect of high ambient temperature on feed digestibility in broilers. Poult Sci. 1997;76(6):857–863.
  • Gu XH, Li SS, Lin H. Effects of hot environment and dietary protein level on growth performance and meat quality of broiler chickens. Asian Australas J Anim Sci. 2008;21(11):1616–1623.
  • Liu QW, Feng JH, Chao Z, et al. The influences of ambient temperature and crude protein levels on performance and serum biochemical parameters in broilers. J Anim Physiol Anim Nutr. 2016;100(2):301–308.
  • Altan O, Pabuçcuoğlu A, Altan A, Konyalioğlu S, Bayraktar H. Effect of heat stress on oxidative stress, lipid peroxidation and some stress parameters in broilers. Br Poult Sci. 2003;44(4):545–550.
  • Mujahid A, Pumford NR, Bottje W, et al. Mitochondrial oxidative damage in chicken skeletal muscle induced by acute heat stress. J Poult Sci. 2007;44(4):439–445.
  • Gogoi S, Kolluri G, Tyagi JS, Marappan G, Manickam K, Narayan R. Impact of heat stress on broilers with varying body weights: elucidating their interactive role through physiological signatures. J Therm Biol. 2021;97:102840.
  • Pamok S, Aengwanich W, Komutrin T. Adaptation to oxidative stress and impact of chronic oxidative stress on immunity in heat-stressed broilers. J Therm Biol. 2009;34(7):353–357.
  • Miao Q, Si X, Xie Y, et al. Effects of acute heat stress at different ambient temperature on hepatic redox status in broilers. Poult Sci. 2020;99(9):4113–4122.
  • Li M, Wu J, Chen Z. Effects of heat stress on the daily behavior of wenchang chickens. Rev Bras Cienc Avic. 2015;17(4):559–566.
  • Shini S, Kaiser P, Shini A, Bryden WL. Biological response of chickens (Gallus gallus domesticus) induced by corticosterone and a bacterial endotoxin. Comp Biochem Physiol B Biochem Mol Biol. 2008;149(2):324–333.
  • Chiang W, Booren A, Strasburg G. The effect of heat stress on thyroid hormone response and meat quality in turkeys of two genetic lines. Meat Sci. 2008;80(3):615–622.
  • Silva JE. The thermogenic effect of thyroid hormone and its clinical implications. Ann Intern Med. 2003;139(3):205–213.
  • Elnagar SA, Scheideler SE, Beck MM. Reproductive hormones, hepatic deiodinase messenger ribonucleic acid, and vasoactive intestinal polypeptide-immunoreactive cells in hypothalamus in the heat stress-induced or chemically induced hypothyroid laying hen. Poult Sci. 2010;89(9):2001–2009.
  • Abu-Dieyeh ZHM. Effect of high ambient temperature per se on growth performance of broilers. Int J Poult Sci. 2006;5:19–21.
  • Farrell DJ, Swain S. Effects of temperature treatments on the Energy and nitrogen metabolism of fed chickens. Br Poult Sci. 1977;18(6):735–748.
  • Howlider MAR, Rose SP. Temperature and growth of broiler. Worlds Poult Sci J. 1987;43(3):228–237.
  • Tankson JD, Vizzier-Thaxton Y, Thaxton JP, May JD, Cameron JA. Stress and nutritional quality of broilers. Poult Sci. 2001;80(9):1384–1389.
  • Lu Q, Wen J, Zhang H. Effect of chronic heat exposure on fat deposition and meat quality in two genetic types of chicken. Poult Sci. 2007;86(6):1059–1064.
  • Cahaner A, Leenstra FR. Effects of high temperature on growth and efficiency of male and female broilers from lines selected for high weight gain, favorable feed conversion, and high or low fat content. Poult Sci. 1992;71(8):1237–1250.
  • Daghir NJ. Nutritional strategies to reduce heat stress in broilers and broiler breeders. Lohmann Information. 2009;44:6–15.
  • Lin H, Jiao HC, Buyse J, Decuypere E. Strategies for preventing heat stress in poultry. Worlds Poult Sci J. 2006;62(1):71–85.
  • Geraert PA, Padilha JFC, Guillaumin S. Metabolic and endocrine changes induced by chronic heat exposure in broiler chickens: biological and endocrinological variables. Br J Nutr. 1996;75:205–216.
  • Rastogi SC. Essentials of Animal Physiology (fourth ed.), New Age International Publishers, New Delhi; 2008.
  • Yahav S, Straschnow A, Plavnik I, Hurtwitz S. Blood system responses of chickens to changes in environmental temperature. Poult Sci. 1997;76(4):627–633.
  • Borges SA, Da Silva AVF, Maiorka A. Acid-base balance in broilers. Worlds Poult Sci J. 2007;63(1):73–81.
  • Keambou TC, Hakotouko BA, Mboumba S, et al. Oxidation of biological systems: oxidative stress phenomena, antioxidants, redox reactions, and methods for their quantification. Toxicol Pathol. 2002;30(6):620–650.
  • Mohamed E, Ali OHA, Malik HEE, Yousif I. Effect of season and dietary protein level on some haematological parameters and blood biochemical compositions of three broiler strains. Int J Poult Sci. 2012;11(12):787–793.
  • Huston TM, Cotton TE, Carmon JL. The influence of high environmental temperature on the oxygen consumption of mature fowl. Poult Sci. 1962;41(1):179–183.
  • Kubena LF, May JD, Reece FN, Daton JW. Hematocrit and hemoglobin of broilers as influenced by environmental temperature and dietary iron level. Poult Sci. 1972;51(3):759–763.
  • Malik HEE, Ali OHA, Mohamed EAA, Yousif I. Effect of season and dietary protein level on immune response of three exotic broiler strains in Sudan. J Anim Feed Res. 2013;3:31–35.
  • Altan O, Altan A, Cabuk M, Bayraktar H. Effect of heat stress on some blood parameters in broilers. Turkish J Vet Anim Sci. 2000;24:145148.
  • Harvey S, Hall TR. Hormones and stress in birds: activation of the hypothalamo–pituitary–adrenal axis. Prog Clin Biol Res. 1990;342:453–460.
  • Kovacs KJ, Peczely P. Plasma adrenocorticotropin in domestic geese: effects of ether stress and endocrine manipulations. Gen Comp Endocrinol. 1991;84:192–198.
  • Beuving G, Vonder GMA. Comparison of the adrenal sensitivity to ACTH of laying hens with immobilization and plasma baseline levels of corticosterone. Gen Comp Endocrinol. 1986;62(3):353–358.
  • Santana P, Akana SF, Hanson ES, Strack AM, Sebastian RJ, And, Dallman MF. Aldosterone and dexamethasone both stimulate energy acquisition whereas only the glucocorticoid alters energy storage. Endocrinology. 1995;136(5):2214–2222.
  • Kral I, Suchy P. Hematological studies in adolescent breeding cocks. Acta Vet Brno. 2000;69:189–194.
  • Vandendriessche J, Arnouts S. Evaluation of the health status of subclinically diseased poultry by the use of blood parameters. In: 5th Int Colloquium on Animal Acute Phase Proteins. Dublin, Ireland; 2005.
  • Ajakaiye JJ, Ayo JO, Ojo SA. Effects of heat stress on some blood parameters and egg production of shika brown layer chickens transported by road. Biol Res. 2010;43(2):183–l89.
  • Imik H, Ozkanlar S, Kaynar O, Koc M. Effects of vitamin E, C, and α-lipoic acid supplementation on the serum glucose, lipid profile, and proteins in quails under heat stress. Bull Vet Inst Pulawy. 2009;53:521–526.
  • Bhatti BM, Dil S. Effect of vitamin C on immune response in Desi chicken against Newcastle disease. Pak Vet J. 2005;2:48–49.
  • Lin H, De Vos D, Decuypere E, Buyse J. Dynamic changes in parameters of redox balance after mild heat stress in aged laying hens. Comp Biochem Physiol. 2005;147:30–50.
  • Kataria N, Kataria AK, Gahlot AK. Ambient temperature associated variations in serum hormones and interrelated analytes of broiler chickens in arid tract. Slov Vet Zb. 2008;45:127–134.
  • Richards SA. Physiology of thermal panting in birds. Ann Biol Anim Bioch Biophys. 1970;10(Hors-série 2):151–168.
  • Sohail MU, Ijaz A, Yousaf MS, et al. Alleviation of cyclic heat stress in broilers by dietary supplementation of mannan-oligosaccharide and Lactobacillus-based probiotic: dynamics of cortisol, thyroid hormones, cholesterol, C-reactive protein, and humoral immunity. Poult Sci. 2010;89(9):1934–1938.
  • Lehtonen MA, Savolainen MJ, Hassinen IE. Hormonal regulation of hepatic soluble phosphatidate phosphohydrolase. Induction by cortisol in vivo and in perfused rat liver. FEBS Letter. 1979;99(1):162–165.
  • Toplu HDO, Tunca R, Aypak SU, et al. Effects of heat conditioning and dietary ascorbic acid supplementation on heat shock protein 70 expression, blood parameters and fear-related behavior in broilers subjected to heat stress. Acta Sci Vet. 2014;42:1179.
  • Halliwell B, Gutteridge JMC. Free Radicals in Biology and Medicine. 2nd ed. New York: Oxford University Press; 1999:105–245.
  • Hangalapura BN, Nieuwland MGB, de Vries Reilingh G, et al. Effects of cold stress on immune responses and body weight of chicken lines divergently selected for antibody responses to sheep red blood cells. Poult Sci. 2003;82(11):1692–1600.
  • Lochmiller RL, Deerenberg C. Trade-offs in evolutionary immunology: just what is the cost of immunity? OIKOS. 2000; 88:87–98.
  • Wasti S, Sah N, Mishra B. Impact of heat stress on poultry health and performances, and potential mitigation strategies. Animals. 2020;10(8):1266.
  • Abhu-Dieyeh ZH. Effect of chronic heat stress and long-term feed restriction on broiler performance. Int J Poult Sci. 2006;5:185–190.
  • Uzum MH, Toplu HDO. Effects of stocking density and feed restriction on performance, carcass, meat quality characteristics and some stress parameters in broilers under heat stress. Rev Med Vet. 2013;164:546–554.
  • Mohamed ASA, Lozovskiy AR, Ali AMA. Strategies to combat the deleterious impacts of heat stress through feed restrictions and dietary supplementation (vitamins, minerals) in broilers. J Indones Trop Anim Agric. 2019;44(2):155–166.
  • Basilio V, De Vilarin M, Yahav S, Picard M. Early age thermal conditioning and a dual feeding program for male broilers challenged by heat stress. Poult Sci. 2001;80(1):29–36.
  • Lozano C, De Basilio V, Oliveros I, et al. Is sequential feeding a suitable technique to compensate for the negative effects of a tropical climate in finishing broilers? Anim Res. 2006;55(1):71–76.
  • Rahimi S, Farhadi D, Valipouri AR. Effect of organic and inorganic selenium sources and vitamin E on broiler performance and carcass characteristics in heat stress condition. Vet J. 2011;91:25–35.
  • Khan RU, Naz S, Dhama K. Chromium: pharmacological applications in heat stressed poultry. Int J Pharmacol. 2014;10(4):213–317.
  • Jahanian R, Rasouli E. Dietary chromium methionine supplementation could alleviate immunosuppressive effects of heat stress in broiler chicks. J Anim Sci. 2015;93(7):3355–3363.
  • Rao SVR, Prakash B, Raju MVLN, Panda AK, Kumari RK, Reddy EPK. Effect of supplementing organic forms of zinc, selenium and chromium on performance, anti-oxidant and immune responses in broiler chicken reared in tropical summer. Biol Trace Elem Res. 2016;172(2):511–520.
  • Mushtaq MMH, Pasha TN, Mushtaq T, Parvin R. Electrolytes, dietary electrolyte balance and salts in broilers: an updated review on growth performance, water intake and litter quality. World’s Poult Sci J. 2013;69(4):789–802.
  • Sahin K, Orhan C, Tuzcu M, et al. Lycopene activates antioxidant enzymes and nuclear transcription factor systems in heat-stressed broilers. Poult Sci. 2016;95(5):1088–1095.
  • Luo J, Song J, Liu L, Xue B, Tian G, Yang Y. Effect of epigallocatechin gallate on growth performance and serum biochemical metabolites in heat-stressed broilers. Poult Sci. 2018;97(2):599–606.
  • Xue B, Song J, Liu L, Luo J, Tian G, Yang Y. Effect of epigallocatechin gallate on growth performance and antioxidant capacity in heat-stressed broilers. Arch Anim Nutr. 2017;71(5):362–372.
  • Zhang J, Bai KW, He J, et al. Curcumin attenuates hepatic mitochondrial dysfunction through the maintenance of thiol pool, inhibition of mtDNA damage, and stimulation of the mitochondrial thioredoxin system in heat-stressed broilers. J Anim Sci. 2018;96(3):867–879.
  • Safiullah Chand N, Khan RU, Naz S, Ahmad M, Gul S. Effect of ginger (Zingiber officinale Roscoe) and organic selenium on growth dynamics, blood melanodialdehyde and paraoxonase in broilers exposed to heat stress. J Appl Anim Res. 2019;47(1):212–216.
  • Rajkumar U, Reddy BLN, Rajaravindra KS, et al. Effect of naked neck gene on immune competence, serum biochemical and carcass traits in chickens under a tropical climate. Asian Australas J Anim Sci. 2010;23(7):867–872.

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