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Effects of xylo-oligosaccharides on broiler chicken performance and microbiota

机译:低聚木糖对肉鸡生产性能和微生物群的影响

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摘要

In broiler chickens, feed additives, including prebiotics, are widely used to improve gut health and to stimulate performance. Xylo-oligosaccharides (XOS) are hydrolytic degradation products of arabinoxylans that can be fermented by the gut microbiota. In the current study, we aimed to analyze the prebiotic properties of XOS when added to the broiler diet. Administration of XOS to chickens, in addition to a wheat-rye-based diet, significantly improved the feed conversion ratio. XOS significantly increased villus length in the ileum. It also significantly increased numbers of lactobacilli in the colon and Clostridium cluster XIVa in the ceca. Moreover, the number of gene copies encoding the key bacterial enzyme for butyrate production, butyryl-coenzyme A (butyryl- CoA): acetate CoA transferase, was significantly increased in the ceca of chickens administered XOS. In this group of chickens, at the species level, Lactobacillus crispatus and Anaerostipes butyraticus were significantly increased in abundance in the colon and cecum, respectively. In vitro fermentation of XOS revealed cross-feeding between L. crispatus and A. butyraticus. Lactate, produced by L. crispatus during XOS fermentation, was utilized by the butyrate-producing Anaerostipes species. These data show the beneficial effects of XOS on broiler performance when added to the feed, which potentially can be explained by stimulation of butyrate-producing bacteria through cross-feeding of lactate and subsequent effects of butyrate on gastrointestinal function.
机译:在肉鸡中,饲料添加剂(包括益生元)被广泛用于改善肠道健康和刺激生产性能。木糖寡糖(XOS)是阿拉伯木聚糖的水解降解产物,可通过肠道菌群发酵。在当前的研究中,我们旨在分析添加到肉鸡日粮中的XOS的益生元特性。除以小麦-黑麦为基础的日粮外,还向鸡施用XOS,显着提高了饲料转化率。 XOS显着增加了回肠的绒毛长度。它还显着增加了结肠中的乳酸杆菌数量和盲肠中的梭状芽孢杆菌簇XIVa。此外,在施用XOS的鸡的盲肠中,编码丁酸生产关键细菌酶丁酰辅酶A(丁酰辅酶A):乙酸酯辅酶A转移酶的基因拷贝数显着增加。在这组鸡中,在物种水平上,crispatatus crispatus和buteroatic buteroaticus在结肠和盲肠中的丰度显着增加。 XOS的体外发酵表明,在脆皮乳杆菌和丁酸曲霉之间存在交叉补料。 XOS发酵过程中由crispastus乳杆菌产生的乳酸被产生丁酸盐的厌氧菌属物种利用。这些数据显示了当添加到饲料中时,XOS对肉鸡生产性能的有益影响,这可能可以解释为通过交叉饲喂乳酸刺激产生丁酸盐的细菌以及丁酸盐对胃肠功能的后续影响。

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