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纤维发酵和蛋白质消化动力学对猪矿物质消化的影响。

Effect of Fiber Fermentation and Protein Digestion Kinetics on Mineral Digestion in Pigs.

作者信息

Heyer Charlotte M E, Jaworski Neil W, Page Greg I, Zijlstra Ruurd T

机构信息

Department of Agricultural, Food and Nutritional Science, University of Alberta, Edmonton, AB T6G 2P5, Canada.

Trouw Nutrition Innovation, 3800 AG Amersfoort, The Netherlands.

出版信息

Animals (Basel). 2022 Aug 12;12(16):2053. doi: 10.3390/ani12162053.

Abstract

Nutrient kinetic data and the timing of nutrient release along the gastrointestinal tract (), are not yet widely used in current feed formulations for pigs and poultry. The present review focuses on interactions between fermentable substrates (e.g., starch, fiber, and protein) and selected minerals on nutrient digestion and absorption to determine nutritional solutions to maximize animal performance, principally in the grower-finisher phase, with the aim of minimizing environmental pollution. For phosphorus (), -inositol 1,2,3,4,5,6-hexakis (dihydrogen phosphate) (), copper (), and zinc (), no standardized methodologies to assess in vitro mineral digestion exist. The stepwise degradation of InsP to lower inositol phosphate () forms in the GIT is rare, and inositol phosphate () might be the limiting isomer of InsP degradation in diets with exogenous phytase. Furthermore, dietary coefficients of standardized total tract digestibility () of P might be underestimated in diets with fermentable ingredients because of increased diet-specific endogenous P losses (), and further clarification is required to better calculate the coefficients of true total tract digestibility () of P. The quantification of fiber type, composition of fiber fractions, their influence on digestion kinetics, effects on digesta pH, and nutrient solubility related to fermentation should be considered for formulating diets. In conclusion, applications of nutrient kinetic data should be considered to help enhance nutrient digestion and absorption in the GIT, thereby reducing nutrient excretion.

摘要

营养动力学数据以及营养物质在胃肠道中的释放时间,目前在猪和家禽的饲料配方中尚未得到广泛应用。本综述重点关注可发酵底物(如淀粉、纤维和蛋白质)与特定矿物质之间对营养物质消化和吸收的相互作用,以确定能够使动物生产性能最大化的营养解决方案,主要针对生长育肥阶段,目的是将环境污染降至最低。对于磷、肌醇六磷酸、铜和锌,不存在评估体外矿物质消化的标准化方法。在胃肠道中肌醇六磷酸逐步降解为低级肌醇磷酸形式的情况很少见,并且在添加外源植酸酶的日粮中,肌醇磷酸可能是肌醇六磷酸降解的限制异构体。此外,由于日粮特异性内源磷损失增加,在含有可发酵成分的日粮中,磷的标准化全肠道消化率日粮系数可能被低估,需要进一步阐明以更好地计算磷的真全肠道消化率系数。在配制日粮时,应考虑纤维类型的量化、纤维组分的组成、它们对消化动力学的影响、对食糜pH值的影响以及与发酵相关的营养物质溶解度。总之,应考虑应用营养动力学数据来帮助增强胃肠道中的营养物质消化和吸收,从而减少营养物质排泄。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a497/9404855/44e1162b1b75/animals-12-02053-g001.jpg

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