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包被营养素的释放对肉鸡木聚糖酶的功效有重要作用吗?

Does release of encapsulated nutrients have an important role in the efficacy of xylanase in broilers?

作者信息

Khadem A, Lourenço M, Delezie E, Maertens L, Goderis A, Mombaerts R, Höfte M, Eeckhaut V, Van Immerseel F, Janssens G P J

机构信息

Laboratory of Animal Nutrition, Faculty of Veterinary Medicine, Ghent University, Heidestraat 19, 9820 Merelbeke, Belgium Animal Science Unit, Institute for Agricultural and Fisheries Research, 9090 Melle, Belgium.

Laboratory of Animal Nutrition, Faculty of Veterinary Medicine, Ghent University, Heidestraat 19, 9820 Merelbeke, Belgium.

出版信息

Poult Sci. 2016 May;95(5):1066-76. doi: 10.3382/ps/pew002. Epub 2016 Feb 16.

Abstract

The non-starch polysaccharides (NSPs) in cell walls can act as a barrier for digestion of intracellular nutrients. This effect is called "cage effect." Part of the success of fibrolytic enzymes in broiler feed is assumed to be attributed to cage effect reduction. Further, changes in viscosity and potential prebiotic action should also be considered. The aim of this study was to gain insight into the relative importance of the cage effect in xylanase efficacy in broilers. Using a 2×2 factorial design, 24 pens with 30 Ross 308 male chicks were fed corn-soy based diets consisting of normal and freeze-thawed (5 d at -18°C) corn, both with and without xylanase. The freeze-thaw method was used to eliminate the cage effect, whereas a corn-based diet was used to exclude viscosity effects. Body weights (BW), feed intake (FI), and feed conversion ratio (FCR) were determined at d 13, 26, and 39. A balance study was executed at the end of the growing phase. These birds were euthanized at d 34 (non-fasted) to determine the viscosity of digesta, blood metabolites, intestinal morphology, and microbiota composition. During the finisher period, there was a significant interaction between enzyme supplementation and freeze-thawing for FCR, in which FCR was improved by freeze-thawed corn and tended to be improved by normal corn+enzyme compared with the control group. The improvement in performance (finisher period) of freeze-thawed corn and xylanase coincided with increased gut absorption of glucose (based on postprandial plasma concentrations) and increased number of Clostridiumcluster IV in the caecum, and agreed with the higher gut villus height. In addition, xylanase inclusion significantly increased the postprandial plasma glycine and triglycerides concentration, and led to elevated bacterial gene copies of butyryl CoA:acetate CoA-transferase, suggesting a prebiotic effect of xylanase addition through more than just the cage effect reduction. The applied model managed to rule out viscosity by using corn, and it was possible to isolate the cage effect by freeze-thawing the dietary corn.

摘要

细胞壁中的非淀粉多糖(NSPs)可作为细胞内营养物质消化的屏障。这种效应被称为“笼效应”。肉鸡饲料中纤维分解酶的部分成功被认为归因于笼效应的降低。此外,还应考虑粘度变化和潜在的益生元作用。本研究的目的是深入了解笼效应在肉鸡木聚糖酶功效中的相对重要性。采用2×2析因设计,用24个饲养栏,每个栏饲养30只罗斯308雄性雏鸡,给它们饲喂以玉米-豆粕为基础的日粮,日粮由普通玉米和冻融(在-18°C下5天)玉米组成,且分别添加和不添加木聚糖酶。采用冻融法消除笼效应,而以玉米为基础的日粮用于排除粘度效应。在第13、26和39天测定体重(BW)、采食量(FI)和饲料转化率(FCR)。在生长阶段结束时进行平衡研究。在第34天(非禁食)对这些鸡实施安乐死,以测定消化物粘度、血液代谢物、肠道形态和微生物群组成。在育肥期,酶添加和冻融处理对FCR存在显著交互作用,与对照组相比,冻融玉米改善了FCR,普通玉米+酶处理有改善FCR的趋势。冻融玉米和木聚糖酶对性能(育肥期)的改善与肠道对葡萄糖吸收增加(基于餐后血浆浓度)以及盲肠中IV型梭菌数量增加相一致,并且与较高的肠道绒毛高度相符。此外,添加木聚糖酶显著提高了餐后血浆甘氨酸和甘油三酯浓度,并导致丁酰辅酶A:乙酰辅酶A转移酶的细菌基因拷贝数增加,这表明添加木聚糖酶的益生元效应不仅仅是通过降低笼效应实现的。所应用的模型通过使用玉米成功排除了粘度影响,并且通过对日粮玉米进行冻融处理能够分离出笼效应。

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