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Amino acid and mineral digestibility,bone ash,and plasma inositol is increased by including microbial phytase in diets for growing pigs

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摘要 Background The effect of microbial phytase on amino acid and energy digestibility is not consistent in pigs,which may be related to the phytase dosage or the adaptation length to the diet.Therefore,an experiment was conducted to test the hypotheses that increasing dietary phytase after an 18-day adaptation period:1)increases nutrient and energy digestibility;2)increases plasma P,plasma inositol,and bone ash of young pigs;and 3)demonstrates that maximum phytate degradation requires more phytase than maximum P digestibility.Results Data indicated that increasing inclusion of phytase[0,250,500,1,000,2,000,and 4,000 phytase units(FTU)/kg feed]in corn-soybean meal-based diets increased apparent ileal digestibility(AID)of Trp(quadratic;P<0.05),and of Lys and Thr(linear;P<0.05),and tended to increase AID of Met(linear;P<0.10).Increasing dietary phytase also increased AID and apparent total tract digestibility(ATTD)of Ca and P(quadratic;P<0.05)and increased ATTD of K and Na(linear;P<0.05),but phytase did not influence the ATTD of Mg or gross energy.Concentrations of plasma P and bone ash increased(quadratic;P<0.05),and plasma inositol also increased(linear;P<0.05)with increasing inclusion of phytase.Reduced concentrations of inositol phosphate(IP)6 and IP5(quadratic;P<0.05),reduced IP4 and IP3(linear;P<0.05),but increased inositol concentrations(linear;P<0.05)were observed in ileal digesta as dietary phytase increased.The ATTD of P was maximized if at least 1,200 FTU/kg were used,whereas more than 4,000 FTU/kg were needed to maximize inositol release.Conclusions Increasing dietary levels of phytase after an 18-day adaptation period increased phytate and IP ester degradation and inositol release in the small intestine.Consequently,increasing dietary phytase resulted in improved digestibility of Ca,P,K,Na,and the first 4 limiting amino acids,and in increased concentrations of bone ash and plasma P and inositol.In a corn-soybean meal diet,maximum inositol release requires approximately 3,200 FTU/kg more phytase than that required for maximum P digestibility.
出处 《Journal of Animal Science and Biotechnology》 SCIE CAS CSCD 2024年第2期699-712,共14页 畜牧与生物技术杂志(英文版)
基金 support for this research from AB Vista,Marlborough,UK,is greatly appreciated。
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  • 1Jongbloed AW: Phosphorus in the feeding of pigs. Effect of diet in the absorption and retention of phosphorus by growing pigs. Netherlands: PhD thesis. University of Wageningen; 1987.
  • 2Lassen SF, Breinholt J, Ostergaard PR, Brugger R, Bischoff A, Wyss M, Fuglsang CC: Expression, gene cloning, and characterization of five novel phytases from four Basidiomycete fungi: Peniophora Iycii, Agrocybe pediades, a Ceriporia sp, and Trametes pubescens. App/ Environ Microb 2001, 67:4701-4707.
  • 3Jongbloed AW, Mroz Z, Kemme PA: The effect of supplementary Aspergillus niger phytase in diets for pigs on concentration and apparent digestibility of dry matter, total phosphorus, and phytic acid in different sections of the alimentary tract. J Anim Sci 1992, 70:1159-1168.
  • 4Yi Z, Kornegay ET: Sites of phytase activity in the gastrointestinal tract of young pigs. Anim Feed Sci Techno/1996, 61:361-368.
  • 5Sandberg AS, Larsen T, Sandstrom B: High dietary calcium level decrease colonic phytate degradation in pigs fed a rapeseed diet. J Nutr 1993, 123:559-566.
  • 6Saha PR, Weaver CM, Mason AC: Mineral bioavailability in rats from intrinsically labeled whole wheat flour of various phytate levels. J Agri Food Chem 1994,42:2531-2535.
  • 7Selle PH, Ravindran V: Microbial phytase in poultry nutrition. Anim Feed Sci Techno/2007, 135:1-41.
  • 8Selle PH, Cowieson AJ, Ravindran V: Consequences of calcium interactions with phytate and phytase for poultry and pigs. Livest Sci 2009, 124:126-141.
  • 9Almeida FN, Stein HH: Performance and phosphorus balance of pigs fed diets formulated on the basis of values for standardized total tract digestibility of phosphorus. J Anim Sci 2010, 88:2968-2977.
  • 10Lei XG, Stahl CH: Biotechnological development of effective phytases for mineral nutrition and environmental protection. Appl Microbiol Biotechnol 2001,57:474-481.

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