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非热处理和热处理小麦-大麦猪日粮中添加微生物植酸酶对磷消化率的影响。

Effect of microbial phytase on phosphorus digestibility in non-heat-treated and heat-treated wheat-barley pig diets.

机构信息

Aarhus University, Foulum, Department of Animal Science, DK-8830 Tjele, Denmark.

出版信息

J Anim Sci. 2012 Dec;90 Suppl 4:206-8. doi: 10.2527/jas.53920.

Abstract

The objective was to evaluate effects of microbial phytase on apparent total tract digestibility (ATTD) of P in a non-heat-treated and a heat-treated wheat (Triticum aestivum)-barley (Hordeum vulgare) diet fed without inorganic P in a 2 × 3 factorial arrangement. The basal diet was ground and half of the batch was steam pelleted at 81°C and crumbled. Phytase was added at 0, 250, and 500 phytase units (FTU)/kg as-fed (Aspergillus niger). The study comprised 36 pigs from 6 litters. Pigs were housed in metabolism crates and fed 1 of 6 diets for 12 d: 5 d for adaptation and 7 d for total collection of feces. The ATTD of P was highest (P < 0.01) for the non-heat-treated diets and highest (P < 0.01) for the phytase-supplemented diets. Heat treatment reduced plant phytase activity by 25% whereby the ATTD of P decreased (P < 0.01) from 57 to 49%. Microbial phytase increased the ATTD of P to a maximum of 64 and 61% in the non-heat-treated and heat-treated diets corresponding to an increase of 7 and 12%-units. Responses for ATTD of P did not differ between 250 vs. 500 FTU/kg as-fed. In conclusion, processing of feed (meal or pellets) containing plant phytase should be considered to avoid over- or underestimation of effects of microbial phytase.

摘要

目的在于评估微生物植酸酶对非热处理和热处理小麦(Triticum aestivum)-大麦(Hordeum vulgare)饲粮中磷(P)表观全肠道消化率(ATTD)的影响,该饲粮未添加无机 P,并采用 2×3 析因设计。基础饲粮经粉碎后,一半批次在 81°C 下进行蒸汽制粒并压碎。植酸酶以 0、250 和 500 个植酸酶单位(FTU)/kg 饲粮(黑曲霉)添加。该研究包括 6 窝中的 36 头猪。猪饲养在代谢笼中,饲喂 6 种饲粮中的 1 种,为期 12d:适应期 5d,总排粪期 7d。未热处理饲粮的 P 表观全肠道消化率最高(P<0.01),添加植酸酶的饲粮最高(P<0.01)。热处理降低了植物植酸酶活性 25%,从而导致 P 的 ATTD 降低(P<0.01),从 57%降至 49%。微生物植酸酶使未热处理和热处理饲粮的 P 表观全肠道消化率分别提高至 64%和 61%的最大值,相应提高了 7%和 12%单位。未热处理和热处理饲粮中 250 和 500 FTU/kg 饲粮添加植酸酶对 P 表观全肠道消化率的响应无差异。总之,应考虑加工含有植物植酸酶的饲料(颗粒料或粉料),以避免对微生物植酸酶的作用过度或低估。

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