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Articles

Digestive system development in post-hatch poultry

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Pages 335-345 | Published online: 23 Sep 2019

References

  • ANGEL, C.R., SELL, J.L. and TRAMPEL, D.W. (1990) Stunning syndrome in turkeys: physical and physiological change. Poultry Science 69: 1931–1942
  • BARANYIOVA, E., and HOLMAN, J. (1976) Morphological changes in the intestinal wall in fed and fasted chicken in the first week after hatch. Acta Veterinaria (Brno) 45: 151–158
  • BAYER, R.C., CHAWAN, C.B., BIRD, F.H. and MUSGRAVE, S.D. (1975) Characteristics of the absorptive surface of the small intestine of the chicken from day 1 to 14 weeks of age. Poultry Science 54: 155–169
  • CARRE, B., GOMEZ, J. and CHANGEUP, A.M. (1995) Contribution of oligosaccharide and polysaccharide digestion, and excreta losses of lactic acid and short chain fatty acids, to dietary metabolizable energy values in broiler chickens and adult cockerels. British PoultryScience 36: 611–629
  • CAREW, L.B., MACHEMER, R.H., SHARP, R.W. and FOSS, D.C. (1972) Fat absorption by the very young chick. Poultry Science 51: 738–742
  • DROR, Y., NIR, I. and NITSAN, Z. (1977) The relative growth of internal organs in light and heavy breeds. Poultry Science 18: 493–496
  • DUCKWORTH, J., NAFTALIN, J.M. and DALGARNO, A.C. (1950) Digestibility of linseed oil and mutton fat by chicks. Journal of Agricultural Science (Cambridge) 40: 39–43
  • ESCRIBANO, F., RAHN, B.E. and SELL, J. (1988) Development of lipase activity in yolk membrane and pancreas of young turkeys. Poultry Science 67: 1089–1097
  • GOMEZ, M.X. and POLIN, D. (1976) The use of bile salts to improve absorption of tallow in chicks of one to three weeks of age. Poultry Science 55: 2189–2195
  • HULAN, H.W. and BIRD, F.H. (1972) Effect of fat level in isonitrogenous diets on the composition of avian pancreatic juice. Journal of Nutrition 102: 459–468
  • IKENO, T. and IKENO, K. (1991) Amylase activity increases in the yolk of fertilized eggs during incubation in chickens. Poultry Science 70: 2176–2179
  • KATONGOLE, J.B.D. and MARCH, B.E. (1980) Fat utilization in relation to intestinal fatty-acid binding protein and bile salts in chicks of different ages and different genetic sources. Poultry Science 59: 819–827
  • KROGDAHL, A. (1985) Digestion and absorption of lipid in poultry. Journal of Nutrition 115: 675–685
  • KROGDAHL, A. and SELL, J.L. (1989) Influence of age on lipase, amylase, and protease activities in pancreatic tissue and intestinal contents of young turkeys. Poultry Science 68: 1561–1568
  • KUSSAIBATI, R., GUILLAUME, J. and LECLERQ, B. (1982) The effects of age, dietary fat and bile salts, and feeding rate on apparent and true metabolizable energy values in chickens. British Poultry Science 23: 393–403
  • LANGENDORFF, O. (1879) Versuch Über die pankreasverdaung der vögel. Archiv für Anatomy und Physiology 18: 1–35
  • MARCHAIM, U. and KULKA, R.G. (1967) The no-parallel increase of amylase, chymotrypsinogen and procarboxypeptidase in the developing chick pancreas. Biochimica et Biophysica Acta 164: 553–559
  • MATSUSHITA, S. (1985) Development of sucrase in the chick small intestine. Journal of Experimental Zoology 233: 377–383
  • MORAN, E.T. Jr. (1985) Digestion and absorption of carbohydrate in fowl and events through prenatal development. Journal of Nutrition 115: 665–674
  • MURAKAMI, H., AKIBA, Y. and HORIGUCHI, M. (1992) Growth and utilization of nutrients in newly-hatched chick with or without removal of residual yolk. Growth, Development and Aging 56: 75–84
  • NIR, I., NITSAN, Z. and MAHAGNA, M. (1993) Comparative growth and development of the digestive organs and some of enzymes in broiler and egg type chicks after hatching. British Poultry Science 34: 523–532
  • NITSAN, Z., DUNTINGTON, E.A. and SIEGEL, P.B. (1991) Organ growth and digestive enzyme levels to fifteen days of age in lines of chickens differing in body weight. Poultry Science 70: 2040–2048
  • NOY, Y. and SKLAN, D. (1995) Digestion and absorption in the young chicks. Poultry Science 74: 366–373
  • NOY, Y. and SKLAN, D. (1997) Posthatch development in poultry. Journal of Applied Poultry Research 6: 344–354
  • NOY, Y., UNI, Z. and SKLAN, D. (1996) Routes of yolk utilization in the newly-hatched chick. British Poultry Science 37: 987–996
  • PALO, P.E., SELL, J.S., PIQUER, F.J., SOTO-SALANOVA, M.F. and VILASECA, L. (1995) Effect of early nutrient restriction on broiler chickens. 1. Effect and development of the gastrointestinal tract. Poultry Science 74: 88–101
  • PHELPS, P.V., EDENS, F.W. and CHRISTENSEN, V.L. (1987) The post-hatch physiology of the turkey poult: I. Growth and development. Comparative Biochemistry and Physiology 86A: 739–743
  • PLIMMER, R.H.A. and ROSEDALE, J.L. (1922) Distribution of enzymes in the alimentary canal of the chickens. Biochemistry Journal 16: 23–26
  • POLIN, D. and HUSSEIN T.H. (1982) The effect of bile acid on lipid and nitrogen retention carcass composition, and dietary metabolizable energy in very young chicks. Poultry Science 61: 1697–1707
  • RENNER, R. and HILL, F.W. (1960) The utilization of corn oil, lard and tallow by chickens of various ages. Poultry Science 39: 849
  • RITZ, C.W., HULET, R.M., SELF, B.B. and DENBOW, D.M. (1995) Growth and intestinal morphology of male turkeys as influenced by dietary supplementation of amylase and xylanase. Poultry Science 74: 1329–1334
  • SALMON, R.E. (1997) Effects of age on the absorption of fat by turkey fed mixtures of beef fat and rapeseed oil. Canadian Journal of Animal Science 57: 427–431
  • SELL, J.L. (1989) Intestinal disaccharidas of young turkeys: temporal development and influence of diet composition. Poultry Science 68: 265–277
  • SELL, J.L. (1996) Physiological limitations and potential for improvement in gastrointestinal tract function of poultry. Journal of Applied Poultry Research 5: 96–101
  • SELL, J.L., KROGDAHL, A. and HANYU, N. (1986) Influence of age on utilization of supplemental fats by young turkeys. Poultry Science 65: 546–554
  • SELL, J.L., KOLDOVSKY, O. and REID, B.L. (1989) Intestinal disaccharidases of young turkeys: temporal development and influence of diet composition. Poultry Science 68: 265–277
  • SELL, J.L., ANGEL, C.R., PIQUER, F.J., MALLARINO, E.G. and AL-BATSHAN, H.A. (1991) Development patterns of selected characteristics of the gastrointestinal tract of young turkeys. Poultry Science 70: 1200–1205
  • SHAW, T.P. (1913) Digestion in the chick. American Journal of Physiology 31: 439–446
  • SHAWKY, S.A., SAIF, Y.M. and MCCORMICK, J. (1994) Transfer of maternal anti-rotavirus IgG to the mucosal surfaces and bile of turkey poults. Avian Diseases 38: 409–417
  • SIDDONS, R.C. (1969) Intestinal disaccharidase activities in the chick. Biochemical Journal 112: 51–59
  • SIDDONS, R.C. (1972) Effect of diet on disaccharidase activity in the chick. British Journal of Nutrition 27: 343–352
  • SOTO-SALANOVA, M., BARKER, D., HALSTEAD, A.G., GORDEN, P.J., ERMER, P.M. and SELL, J. (1991) Age-related changes in utilization of diets containing animal-vegetable fat, tallow, or coconut oil by young turkeys. Poultry Science 70 (Supplement): 115
  • SUNDE, M.L. (1954) Use of animal fat in poultry feeds. Journal of American Oil Chemistry Science 31: 49–52
  • TARVID, I.L. (1990) Peptide digestion in poultry in early ontogenesis. In: Assimilation of Organic and Inorganic Compounds in Animal Organisms (Valman, A.R., ed.), Institute of Biology, Latvian Academy of Science, Zinatne, Riga, pp. 265–304
  • TARVID, I.L. (1992) Effect of early postnatal long-term fasting on the development of peptide hydrolysis in chicks. Comparative Biochemistry and Physiology 101A: 161–166
  • TARVID, I.L. (1995) The development of protein digestion in poultry. Poultry and Avian Biology Review 6: 35–54
  • TEN DOESCHATE, R.A.H.M., SCHEELE, C.W., SCHREURS, V.V.A.M. and VAN DER KLIS, J.D. (1993) Digestibility studies in broiler chickens: influence of genotype, age, sex and method of determination. British Poultry Science 34: 131–146
  • THOUVENELLE, M.L., HAYNES, J.S. and REYNOLDS, D.L. (1995) Astrovirus infection in hatching turkey: histologic, morphometric, and ultrastructural findings. Avian Diseases 39: 328–336
  • UNI, Z., GANOT, S. and SKLAN, D. (1998) Posthatch development of mucosal function in the broiler small intestine. Poultry Science 77: 75–82
  • UNI, Z., NOY, Y. and SKLAN, D. (1995) Posthatch changes in morphology and function of the small intestine in heavy- and light-strain chicks. Poultry Science 74: 1622–1629
  • UNI, Z., NOY, Y. and SKLAN, D. (1996) Development of the small intestine in heavy and light strain chicks before and after hatching. British Poultry Science 37: 63–71
  • WALLIS, I.R. and BALNAVE, D. (1984) The influence of environmental temperature, age and sex on the digestibility of amino acids in growing broiler chickens. British Poultry Science 25: 401–407
  • WATERLOW, J. C., GARLICK, P. J. and MILLWARD, D. J. (1978) Protein Turnover in Mammalian Tissues and in the Whole Body. Amsterdam, North-Holland, pp. 529–594
  • WHITEHEAD, C.C. and FISHER, C. (1975) The utilization of various fats by turkeys of different ages. British Poultry Science 16: 481–485
  • YAMAUCHI, KOH-EN and ISSHIKI, Y. (1991) Scanning electron microscopic observations on the intestinal villi in growing White Leghorn and broiler chickens from 1 to 30 days of age. British Poultry Science 32: 67–78
  • YACOWITZ, H. (1953) Supplementation of corn-soybean oil rations with penicillin and various fats. Poultry Science 32: 930 (Abstract)
  • ZELENKA, J. (1968) Influence of the age of chickens on the metabolisable energy values of poultry diets. British Poultry Science 9: 135–142
  • ZUPRIZA, L., LARBIER, M. and CHAGNEAU, A.M. (1992) Effect of age and sex on true digestibility of amino acids of rapeseed and soybean meals in growing broilers. Poultry Science 71: 1486–1492

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