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Articles

Relationship between apparent metabolisable (AME) values and in vivo/in vitro starch digestibility of wheat for broilers

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Pages 305-318 | Published online: 23 Sep 2019

References

  • AMERICAN ASSOCIATION OF CEREAL CHEMISTS (AACC) (1983) Method 39–70. Wheat hardness as determined by near-infrared reflectance, rev. 11-4-87. Approved Methods of the American Association of Cereal Chemists, 8th Edition, AACC, St Paul, Minnesota
  • ARIYOSHI, S., KOIKE, T., FURUTA, F., OZONE, K., MATSUMURA, Y., DIMICK, M.K., HUNTER, W.L., WANG, W. and LEPKOVSKY, S. (1964) The digestion of protein, fat and starch in the depancreatized chicken. Poultry Science 43: 232–238
  • BARLOW, K.K., BUTTROSE, M.S., SIMMONDS, D.H. and VESK, M. (1973) The nature of the starch-protein interface in wheat endosperm. Cereal Chemistry 50: 443–454
  • BATEY, I.L. (1982) Starch analysis using thermostable alpha-amylases. Starch/Stärke 34: 125–128
  • BJÖRCK, I., ASP, N.-G., BIRKHED, D. and LUNDQUIST, I. (1984) Effects of processing on availability of starch for digestion in vitro and in vivo: I. Extrusion cooking of wheat flours and starch. Journal of Cereal Chemistry 2: 91–103
  • BOLTON, W. (1955) The digestibility of the carbohydrate complex of barley, wheat and maize by adult fowls. Journal of Agricultural Science 46: 119–122
  • BOLTON, W. (1965) Digestion in the crop of fowl. British Poultry Science 6: 97–102
  • BOOHER, L.E., BEHAN, I. and McMEANS, E. (1951) Biological utilisation of unmodified and modified food starches. Journal of Nutrition 45: 75–95
  • BORNET, F.R.J., FONTVIEILLE, A.M., RIZKALLA, S., COLONNA, P., MERCIER, C. and SLAMA, G. (1989) Insulin and glycemic responses from different starches according to food processing in normal subjects. Correlation to in-vitro alpha-amylase susceptibility. American Journal of Clinical Nutrition 50: 315–323
  • BRAND, J.C., NICHOLSON, P.L., THORBURN, A.W. and TRUSWELL, A.S. (1985) Food processing and the glycemic index. American Journal of Clinical Nutrition 42: 1192–1196
  • CHESSON, A. (1990) Nutritional significance and nutritive value of polysaccharides. In: Feedstuff Evaluation (Wiseman, J. and Cole, D.J.A., Eds), Butterworths, London, pp. 179–195
  • CHOCT, M. and ANNISON, G. (1990) Anti-nutritive activity of wheat pentosans in broiler diets. British Poultry Science 31: 811–821
  • CHOCT, M. and ANNISON, G. (1992) Inhibition of nutrient digestion by wheat pentosans. British Journal of Nutrition 67: 123–131
  • CONE, J.W. and WOLTERS, M.G.E. (1990) Some properties and degradability of isolated starch granules. Starch/Stärke 42: 298–301
  • DOUBLIER, J.L. (1987) A rheological comparison of wheat, maize, faba bean and smooth pea starches. Journal of Cereal Science 5: 247–262
  • DREHER, M.L., DREHER, C.J. and BERRY, J.W. (1984) Starch digestibility of foods: a nutritional perspective. CRC Critical Reviews in Food Science and Nutrition 20: 47–71
  • DUBOIS, M., GILLES, K.A., HAMILTON, J.K., REBERS, P.A. and SMITH, F. (1956) Colorimetric method for determination of sugars and related substances. Analytical Chemistry 28: 350–356
  • ENGLYST, H. (1989) Classification and measurement of plant polysaccharides. Animal Feed Science and Technology 23: 27–42
  • ENGLYST, H.N. and CUMMINGS, J.H. (1985) Digestion of the polysaccharides of some cereal foods in the human small intestine. American Journal of Clinical Nutrition 42: 778–787
  • ENGLYST, H.N. and CUMMINGS, J.H. (1986) Digestion of the carbohydrate of banana (Musa paradisiaca sapientum) in the human small intestine. American journal of Clinical Nutrition 44: 42–50
  • ENGLYST, H.N. and CUMMINGS, J.H. (1987) Digestion of the polysaccharides of potato in the small intestine of man. American Journal of Clinical Nutrition 45: 423–431
  • ENGLYST, H.N. and HUDSON, G.J. (1997) Starch and health. In: Starch: Structure and Functionality (Frazier, P.J., Donald, A.M. and Richmond, P., Eds), The Royal Society of Chemistry, London, pp. 9–21
  • FAO (1997) Production Year Book. Volume 50. Food and Agriculture Organisation of the United Nations, Rome
  • FAULKS, R.M., SOUTHON, S. and LIVESEY, G. (1989) The utilisation of α-amylase (EC 3.2.1.1) resistant corn and pea (Pisum sativum) starch in the rat. British Journal of Nutrition 61: 291–300
  • FOGARTY, W.M. (1983) Microbial amylases. In: Microbial Enzymes and Biotechnology, Applied Science Publishers, London, pp.1–92
  • FRANÇOIS, P.L. (1989) In-vitro availability of starch in cereal products. Journal of the Science of Food and Agriculture 49: 499–501
  • GARNSWORTHY, P.C. and WISEMAN, J. (2000) Rumen digestibility of starch and nitrogen in near-isogenic lines of wheat. Animal Feed Science and Technology 85: 33–40
  • GREENWELL, P. and SCHOFIELD, J.D. (1986) A starch granule protein associated with endosperm softness in wheat. Cereal Chemistry 63: 379–380
  • HOLM, J., LUNDQUIST, I., BJORCK, I., ELIASSON, A.C. and ASP, N.-G. (1988) Degree of starch gelatinization, digestion rate of starch in vitro and metabolic response in rats. American Journal of Clinical Nutrition 47: 1010–1016
  • HOOVER, R. and SOZULSKI, F. (1985) Studies on the functional characteristics and digestibility of starches from Phaseolus vulgaris biotypes. Starch/Stärke 37: 181–191
  • HULAN, H.W. and BIRD, F.H. (1972) The effect of fat level in isonitrogenous diets on the composition of avian pancreatic juice. Journal of Nutrition 102: 459–468
  • INTERNATIONAL WHEAT COUNCIL (1992) World Grain Statistics, International Wheat Council, London
  • KINGMAN, S.M. and ENGLYST, H.N. (1994) The influence of food preparation methods on the in vitro digestibility of starch in potatoes. Food Chemistry 49: 181–186
  • LONGLAND, A.C. (1991) Digestive enzyme activites in pigs and poultry. In: In vitro Digestion for Pigs and Poultry (Fuller, M.F., Ed.), CABI, Wallingford, pp. 3–18
  • LONGSTAFF, M. and McNAB, J.M. (1986) Influence of site and variety on starch, hemicellulose and cellulose composition of wheats and their digestibilities by adult cockerels. British Poultry Science 27: 435–449
  • McNAB, J.M. (1996) Factors affecting the energy value of wheat for poultry. World's Poultry Science Journal 52: 69–73
  • MOLLAH, Y., BRYDEN, W.L., WALLIS, I.R., BALNAVE, D. and ANNISON, E.F. (1983) Studies on low metabolisable energy wheats for poultry using conventional and rapid assay procedures and the effects of processing. British Poultry Science 24: 81–89
  • MORAN Jr, E.T. (1982) Starch digestion in fowl. Poultry Science 61: 1257–1267
  • MORAN Jr, E.T. (1985) Digestion and absorption of carbohydrates in fowl and events through perinatal development. Journal of Nutrition 115: 665–674
  • NICOL, N.T. (1999) Apparent metabolisable energy values of wheat in chick diets. PhD Thesis, University of Nottingham
  • NITSAN, Z., BEN-AVRAHAM, G., ZOREF, Z. and NIR, I. (1991) Growth and development of the digestive organs and some enzymes in broiler chicks after hatching. British Poultry Science 32: 515–523
  • O'DEA, K., SNOW, P. and NESTEL, P. (1981) Rate of starch hydrolysis in vitro as a predictor of metabolic responses to complex carbohydrate in vivo. American Journal of Clinical Nutrition 34: 1991–1993
  • ORSKOV, E.R. and McDONALD, I. (1979) The estimation of protein degradability in the rumen from incubation measurements weighted according to rate of passage. Journal of Agricultural Science, Cambridge 92: 499–503
  • OSMAN, A.M. (1982) Amylase in chicken intestine and pancreas. Comparative Biochemistry and Physiology 73B: 571–574
  • RIESENFIELD, G., SKLAN, D., BAR, A., EISNER, U. and HURWITZ, S. (1980) Glucose absorption and starch digestion in the intestine of the chicken. Journal of Nutrition 110: 117–121
  • ROGEL, A.M., ANNISON, E.F., BRYDEN, W.L. and BALNAVE, D. (1987) The digestion of wheat starch in broiler chickens. Australian Journal of Agricultural Research 38: 639–649
  • SHORT, F.J., WISEMAN, J. and BOORMAN, K.N. (2000) The effect of the 1B/1R translocation and endosperm texture on amino acid digestibility in near-isogenic lines of wheat for broilers. Journal of Agricultural Science, Cambridge (in press)
  • SILVESTER, K.R., ENGLYST, H.N. and CUMMINGS, J.H. (1995) Ileal recovery of starch from whole diets containing resistant starch measured in vitro and fermentation of ileal effluent. American Journal of Clinical Nutrition 62: 403–411
  • SMITS, C.H.M. and ANNISON, G. (1996) Non-starch plant polysaccharides in broiler nutrition – towards a physiologically valid approach to their determination. World's Poultry Science Journal 52: 203–221
  • TESTER, R.F. and MORRISON, W.R. (1990) Swelling and gelatinisation of cereal starches. I. Effects of amylopectin, amylose and lipids. Cereal Chemistry 67: 551–557
  • WILLIAMS, P.E.V. and CHESSON, A. (1989) Cereal raw materials and animal production. In: Cereal Science and Technology (Palmer, G.H., Ed.), Aberdeen University Press, Aberdeen, pp. 413–442
  • WISEMAN, J. and INBORR, J. (1990) The nutritive value of wheat and its effect on broiler performance. In: Recent Advances in Animal Nutrition – 1990 (Haresign, W. and Cole, D.J.A., Eds), Butterworths, London, pp. 79–101
  • WISEMAN, J., NICOL, N.T. and NORTON, G. (1994) Developments in the nutritional value of wheat for non-ruminants. In: Recent Advances in Animal Nutrition – 1994 (Garnsworthy, P.C. and Cole, D.J.A., Eds), Nottingham University Press, Nottingham, pp. 117–132

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