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在肉鸡饲料中添加粒径减小的麦麸和木聚糖酶对阿拉伯木聚糖水解及发酵的影响因肉鸡年龄而异。

Reduced-particle size wheat bran and endoxylanase supplementation in broiler feed affect arabinoxylan hydrolysis and fermentation with broiler age differently.

作者信息

Bautil An, Bedford Michael R, Buyse Johan, Courtin Christophe M

机构信息

Laboratory of Food Chemistry and Biochemistry, Department of Microbial and Molecular Systems (MS), KU Leuven, Leuven, 3001, Belgium.

AB Vista, Marlborough, Wiltshire SN8 4AN, United Kingdom.

出版信息

Anim Nutr. 2022 Nov 23;12:308-320. doi: 10.1016/j.aninu.2022.11.003. eCollection 2023 Mar.

Abstract

Since the caecal microbiota of young broilers are not yet able to ferment the dietary fibre (DF) fraction of the feed to a large extent, increasing the accessibility of DF substrates along the gastrointestinal tract is crucial to benefit from the health stimulating metabolic end-products (e.g. butyric acid) generated upon microbial DF fermentation. Therefore, the present study aimed to evaluate the potential of reduced-particle size wheat bran (RPS-WB) and endoxylanases as feed additives to stimulate arabinoxylan (AX) hydrolysis and fermentation along the hindgut of young broilers. To this end, RPS-WB and endoxylanase supplementation were evaluated in a 2 × 2 factorial design using a total of 256 male 1-d-old chicks (Ross 308). Broilers were assigned to 4 dietary treatments: a basal wheat-based diet with (1) no feed additives (control, CTRL), (2) an endoxylanase (XYL; Econase XT 25 at 0.10 g/kg diet), (3) 1% wheat bran with an average reduced particle size of 297 μm (RPS-WB) and (4) an endoxylanase and 1% RPS-WB (RPS-WB + XYL). Each dietary treatment was replicated 8 times and on d 10 and 28, respectively, 24 and 16 broilers per treatment group were euthanised to analyse AX degradation, short-chain fatty acid production and digesta viscosity in the ileum and caecum. Broilers receiving XYL in their diet showed increased AX solubilisation and fermentation at both d 10 and 28 compared to the CTRL group ( < 0.05). Adding RPS-WB to the diet stimulated wheat AX utilisation by the primary AX degraders in the caecum at 10 d of age compared to the CTRL group, as observed by the high AX digestibility coefficient for the RPS-WB supplemented group at this young age ( < 0.05). At 28 d, RPS-WB supplementation lowered body-weight gains but increased butyric acid concentrations compared to the XYL and CTRL group ( < 0.05). Although no synergistic effect for RPS-WB + XYL broilers was observed for AX hydrolysis and fermentation, these findings suggest that both additives can raise a dual benefit to the broiler as a butyrogenic effect and improved AX fermentation along the ileum and caecum were observed throughout the broiler's life.

摘要

由于幼龄肉鸡的盲肠微生物群尚未能够在很大程度上发酵饲料中的膳食纤维(DF)部分,因此提高DF底物在胃肠道中的可及性对于从微生物DF发酵产生的有益健康的代谢终产物(如丁酸)中获益至关重要。因此,本研究旨在评估降低粒度的麦麸(RPS-WB)和内切木聚糖酶作为饲料添加剂刺激幼龄肉鸡后肠中阿拉伯木聚糖(AX)水解和发酵的潜力。为此,采用2×2析因设计对RPS-WB和内切木聚糖酶的添加进行了评估,共使用256只1日龄雄性雏鸡(罗斯308)。肉鸡被分配到4种日粮处理组:一种以小麦为基础的基础日粮,(1)不添加饲料添加剂(对照组,CTRL),(2)添加内切木聚糖酶(XYL;Econase XT,添加量为0.10 g/kg日粮),(3)添加1%平均粒度降低至297μm的麦麸(RPS-WB),(4)添加内切木聚糖酶和1%RPS-WB(RPS-WB+XYL)。每种日粮处理重复8次,在第10天和第28天,分别对每个处理组的24只和16只肉鸡实施安乐死,以分析AX降解、短链脂肪酸产生以及回肠和盲肠内容物的粘度。与CTRL组相比,日粮中添加XYL的肉鸡在第10天和第28天的AX溶解和发酵均增加(P<0.05)。与CTRL组相比,在10日龄时,日粮中添加RPS-WB刺激了盲肠中主要AX降解菌对小麦AX的利用,这一点可从该幼龄期添加RPS-WB组的高AX消化系数看出(P<0.05)。在28日龄时,与XYL组和CTRL组相比,添加RPS-WB降低了体重增加,但提高了丁酸浓度(P<0.05)。尽管未观察到RPS-WB+XYL组肉鸡在AX水解和发酵方面的协同效应,但这些发现表明,两种添加剂均可为肉鸡带来双重益处,因为在肉鸡整个生命过程中均观察到了产丁酸效应以及回肠和盲肠中AX发酵的改善。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4714/9874015/d5f9ac4667ae/gr1.jpg

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