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Ambient temperature: a factor affecting performance and physiological response of broiler chickens

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Abstract

An experiment was conducted to elucidate the influence of four constant ambient temperatures (20°, 25°, 30° and 35°C) on the performance and physiological reactions of male commercial broiler chicks from 3 to 7 weeks of age. A 12 h light-dark cycle was operated, while relative humidity and air circulation were not controlled. Exposure of broiler chickens to the 20°, 25°, 30° and 35°C treatments showed highly significant (P<0.0001) depression in growth rate, food intake and efficiency of food utilization, and a significant increase in water consumption for the 30° and 35°C groups. Mortality was, however, not affected by the temperature treatments. Changes in physiological status, such as increased rectal temperatures, decreased concentration of red blood cells, haemoglobin, haematocrit, and total plasma protein were observed in birds housed in the higher temperature (30° and 35°C) environments. Moreover, in these broiler chickens, there was an increased blood glucose concentration and a decreased thyroid gland weight. These results indicate that continuous exposure of broiler chickens to high ambient temperatures markedly affects their performance and physiological response.

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References

  • Adams RL, Rogler JC (1968) The effects of environmental temperature on the protein requirements and response to energy in slow and fast growing chicks. Poult Sci 47: 579–586

    Google Scholar 

  • Adams RL, Andrews FN, Gardiner EE, Fontaine WE, Carrick CW (1962) The effect of environmental temperature on the growth and nutritional requirements of the chick. Poult Sci 41: 588–594

    Google Scholar 

  • Arieli A, Meltzer A, Berman A (1980) The thermoneutral temperature zone and seasonal acclimatization in the hen Br Poult Sci 21: 471–478

    Google Scholar 

  • Barnas GM, Rautenberg W (1985) Cardiorespiratory response in the pigeon to thermal stimulation of the spinal cord in the opposite direction to external thermal stimulation. Physiol Zool 58: 232–235

    Google Scholar 

  • Boone MA, Hughes BL (1971a) Effect of heat stress on laying and non-laying hens. Poult Sci 50: 473–477

    Google Scholar 

  • Boone MA, Hughes BL (1971b) Family variation of four year old White Plymouth Rock males to heat stress. Poult Sci 50: 659–661

    Google Scholar 

  • Boone MA, Huston TM (1967) Effect of water consumption on the body temperature of males held at high temperatures. South Carolina Poult Res Ser 25

  • Brody S (1945) Bioenergetics and growth, 1st edn. Reinhold, New York

    Google Scholar 

  • Charles DR (1986) Temperature for broilers. World's Poult Sci J 42: 249–258

    Google Scholar 

  • Charles DR, Groom CM, Bray TS (1981) The effects of temperature on broilers: interaction between temperature and feeding regime. Br Poult Sci 22: 475–481

    Google Scholar 

  • Christie G (1978) Haematological and biochemical findings in an anaemia induced by the daily bleeding of ten-week-old cockerels. Br Vet J 134: 358–365

    Google Scholar 

  • Cowan PJ, Michie W (1977) Environmental temperature and choice feeding of the broiler. Br J Nutr 40: 311–314

    Google Scholar 

  • Cowan PJ, Michie W (1978) Environmental temperature and broiler performance: the use of diets containing increasing amounts of protein. Br Poult Sci 19: 601–605

    Google Scholar 

  • Dacie JV, Lewis SM (1975) Practical haematology, 5th edn. Churchill Livingstone, Edinburgh

    Google Scholar 

  • Dawson WE (1982) Evaporative losses of water by birds. Comp Biochem Physiol 71 A: 495–509

    Google Scholar 

  • Deaton JW, Reece FN, McNaughton JL (1978) The effect of temperature during the growing period on broiler performance. Poult Sci 57: 1070–1074

    Google Scholar 

  • Deaton JW, Reece FN, Lott BD (1984) Effect of differing temperature cycles on broiler performance. Poult Sci 63: 612–615

    Google Scholar 

  • Farrell DS, Swain S (1977) Effects of temperature treatment on the heat production of starving chickens. Br Poult Sci 18: 725–734

    Google Scholar 

  • Finberg JPM, Berlyne GM (1976) Modification of renin and aldosterone response to heat by acclimatization. J Appl Physiol 41: 323–327

    Google Scholar 

  • Fisher C, MacLeod MG, Mitchell MA (1985) Feeding at high temperatues — a theoretical approach. In: Bornstein S (ed) Proc 5th European Symp Poult Nutr, Israel, pp 85–96

  • Fitzsimons JT (1979) The physiology of thirst and sodium appetite. Cambridge University Press, Cambridge

    Google Scholar 

  • Fuller HL, Dale NM (1979) Effect of diet on heat stress in broilers. In: Proc Georgia Nutr Conf, Athens, p 56

  • Geisthovel E, Simon E (1984) In: Hales JRS (ed) Thermal physiology. Raven Press, New York

    Google Scholar 

  • Gornall AG, Bardawill CJ, David MD (1949) Determination of serum protein by means of the biuret reaction. J Biol Chem 177: 751–766

    Google Scholar 

  • Haddad EE, Mashaly MM (1989) Effect of thyroidectomy of immature male chickens on circulating thyroid hormones and on responses to thyroid-stimulating hormone and chronic cold exposure. Poult Sci 68: 169–176

    Google Scholar 

  • Hazelwood RL (1976) Carbohydrate metabolism. In Sturkie PD (ed) Avian physiology, 3rd edn. Springer New York, pp 220–232

    Google Scholar 

  • Hoffman E, Shaffner CS (1950) Thyroid weight and function as influenced by environmental temperature. Poult Sci 29: 365–376

    Google Scholar 

  • Huston TM (1960) The influence of high environmental temperatures upon blood constituents and thyroid activity of domestic fowl. Poult Sci 39: 1260

    Google Scholar 

  • Huston TM (1965) The influence of different environmental temperatures on immature fowl. Poult Sci 44: 1032–1036

    Google Scholar 

  • Jones GE, Huston TM (1967) Effects of environmental temperature upon domestic fowl deprived of feed and water. Poult Sci 46: 1389–1398

    Google Scholar 

  • Kadono H, Besch EL (1978) Telemetry measured body temperature of domestic fowl at various ambient temperatures. Poult Sci 57: 1075–1080

    Google Scholar 

  • Kamar GAR, Khalifa MAS (1964) The effect of environmental conditions on body temperature of fowls. Br Poult Sci 5: 235–244

    Google Scholar 

  • Kechil AA, Richards SA, Sykes AH (1981) An acute drinking response in hens induced by thermal stimuli. Physiol Behav 27: 73–76

    Google Scholar 

  • Keshavarz K, Fuller HL (1980) The influence of widely fluctuating temperatures on heat production and energetic efficiency of broilers. Poult Sci 59: 2121–2158

    Google Scholar 

  • Kleiber M (1975) The fire of life, 2nd edn. Wiley, New York

    Google Scholar 

  • Kubena LF, Lott BD, Deaton JW, Reece FN, May JD (1972) Body composition of chicks as influenced by environmental temperature and selected dietary factors. Poult Sci 51: 517–522

    Google Scholar 

  • Leung FC, Taylor JE, Iderstine A van (1984) Thyrotrophin-releasing hormone stimulates body weight gain and increased thyroid hormones and growth hormone in plasma of cockerels. Endocrinology 115: 736–740

    Google Scholar 

  • Maxwell MH (1981) Production of a Heinz body anaemia in the domestic fowl after ingestion of dimethyl disulphide: a haematological and ultrastructural study. Res Vet Sci 30: 233–238

    Google Scholar 

  • McNaughton JL, Reece FN (1984) Response of broiler chickens to dietary energy and lysine levels in a warm environment. Poult Sci 63: 1170–1174

    Google Scholar 

  • Meltzer A (1983a) The effect of body temperature on the growth rate of broilers. Br Poult Sci 24: 489–495

    Google Scholar 

  • Meltzer A (1983b) the thermoneutral zone and resting metabolic rate for broilers. Br Poult Sci 24: 471–476

    Google Scholar 

  • Meltzer A, Goodman G, Fistul J (1982) Thermoneutral zone and resting metabolic rate of growing White Leghorn type chicks (Gallus domesticus). Br Poult Sci 23: 383–391

    Google Scholar 

  • Moye RJ, Washburn KW, Huston TM (1969) Effects of environmental temperature on erythrocyte numbers and size. Poult Sci 48: 1683–1686

    Google Scholar 

  • Olson C (1937) Variations in the cells and haemoglobin content in the blood on the normal domestic fowl. Cornell Vet 27: 235

    Google Scholar 

  • Richards SA (1971) The significance of changes in the temperature of the skin and body core of the chicken in the regulation of heat loss. J Physiol (Lond) 216: 1–10

    Google Scholar 

  • Richards SA (1976) Evaporative water loss in domestic fowls and its partition in relation to ambient temperature. J Agric Sci (Cambridge) 87: 527–532

    Google Scholar 

  • SAS (1985) SAS user's guide: Statistics, 5th edn. SAS inst, Cary, NC

    Google Scholar 

  • Scheele CW, Hel van der W, Verstegen MWA, Henken AM (1987) Climatic environment and energy metabolism in broilers. In: Verstegen MWA, Henken AM (eds) Energy metabolism in farm animals — effects of housing, stress and disease. Martinus Nijhoff, Dordrecht, pp 217–260

    Google Scholar 

  • Singh A, Reineke EP, Ringer RK (1968) Influence of thyroid status of the chick on growth and metabolism, with observations on several parameters of thyroid function. Poult Sci 47: 212–218

    Google Scholar 

  • Smith AJ, Oliver L (1972) Some nutritional problems associated with egg production at high environmental temperatures. I. The effect of environmental temperature and rationing treatments on the productivity of pullets fed on diets of differing energy content. Rhod J Agric Sci 10: 3–21

    Google Scholar 

  • Snapir N, Robinzon B, Godschalk M (1976) The drinking response of the chicken to peripheral and central angiotensin II. Pharmacol Biochem Behav 5: 5–10

    Google Scholar 

  • Sykes AH, Al-Fataftah A (1980) Heat acclimatization in laying hens. In: Proc 6th European Poult Conf, 8–12 Sept. World's Poult Sci Assoc, Hamburg, pp 115–120

    Google Scholar 

  • Varley H (1962) Practical clinical biochemistry, 3rd edn. Whitefriars Press, London

    Google Scholar 

  • Vo KV, Boone MA, Johnston WE (1978) Effect of three life ambient temperatures on growth, feed and water consumption and various blood components in male and female Leghorn chickens. Poult Sci 57: 798–803

    Google Scholar 

  • Washburn KW, Huston TM (1968) Effect of environmental temperature on iron deficiency anaemia in Athens-Canadian random-bred. Poult Sci 47: 1532–1535

    Google Scholar 

  • Winter AR (1935) Influence of egg production on haemoglobin of chickens' blood. Poult Sci 14: 316

    Google Scholar 

  • Wolfensen S, Frei YF, Berman A (1982) Blood flow distribution during artificially induced respiratory hypocapnic alkalosis in the fowl. Respir Physiol 50: 87–92

    Google Scholar 

Download references

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Donkoh, A. Ambient temperature: a factor affecting performance and physiological response of broiler chickens. Int J Biometeorol 33, 259–265 (1989). https://doi.org/10.1007/BF01051087

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  • DOI: https://doi.org/10.1007/BF01051087

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