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Impact of combined beta-glucanase and xylanase enzymes on growth performance, nutrients utilization and gut microbiota in broiler chickens fed corn or wheat-based diets

机译:β-葡聚糖酶和木聚糖酶组合对饲喂玉米或小麦饮食的肉鸡生长性能,养分利用和肠道菌群的影响

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The effects of a xylanase and beta-glucanase (XB) blend (2,500 U of xylanase and 250 U of beta-glucanase per kg of complete feed) on growth performance, nutrients utilization and digesta microbiota in broiler chickens were investigated. A total of 140 dayold male Ross 308 broiler chicks were randomly assigned to 7 replicate cages and fed experimental diets. Diets were based on either corn or wheat without or with supplemental XB. Performance was monitored weekly and excreta were collected from d 17 to 20 for nutrients digestibility and AMEn measurements. On d 21, jejunal contents were collected for viscosity determination whereas ileal and cecal contents were obtained for microbial analysis by Illumina sequencing. Microbial data were analyzed using QIIME and PLS-DA whilst other data were analyzed using SAS. Birds fed wheat diets had higher (P 0.001) BWG (3.4%) than birds fed corn-based diet whilst birds fed XB had better BWG (4%) and FCR (7%) than birds fed non-XB diets. Birds fed wheat diet had higher (P 0.001) NDF (46.5%) and less (P = 0.01) CP (-5.4%) digestibility compared to birds fed corn-based diet. XB reduced (P 0.001) jejunal digesta viscosity to a greater extent in wheat diet (-31%) than in corn-based diet (-10%). Birds fed wheat-based diet with XB had higher (3.5%) starch digestibility than birds fed this diet without XB. Janthinobacterium was associated with non-XB cornbased diet, whereas Ruminococcus, Lachnospiraceae, Lactobacillaceae, Peptostreptococcaceae, Clostridiales, Acidovorax and Blautia were associated with XB corn-based diet in the ileum. A relatively similar microbiome clustering was observed in wheat-based treatments in the cecum. There were no significant (P >= 0.05) correlations between selected ileal or cecal bacterial taxa and AMEn. Diet impacted growth performance but XB was efficacious across diet types, implying that degradation of dietary fibrous components by feed enzymes may stimulate performance in young birds. Data provided significant insight on ileal and cecal microbial profile associated with the dietary types and XB; however their functional roles require further investigations.
机译:研究了木聚糖酶和β-葡聚糖酶(XB)混合物(每公斤完整饲料中有2500 U的木聚糖酶和250 U的β-葡聚糖酶)对肉鸡生长性能,养分利用率和消化菌群的影响。将总共​​140只日龄的雄性Ross 308肉鸡小鸡随机分配到7个重复的笼子中,并饲喂实验饲料。饮食以不添加XB或添加XB的玉米或小麦为基础。每周进行一次性能监测,从第17天到20天收集排泄物,用于营养物质消化率和AMEn测量。在第21天,收集空肠含量用于粘度测定,而回肠和盲肠含量用于通过Illumina测序进行微生物分析。使用QIIME和PLS-DA分析微生物数据,同时使用SAS分析其他数据。饲喂小麦日粮的鸟类的BWG(P <0.001)比玉米饲喂的鸟类高(P <0.001),而饲喂XB的鸟类的BWG(4%)和FCR(7%)比饲喂非XB的鸟类更好。与饲喂玉米饮食的鸟类相比,饲喂小麦饮食的鸟类具有更高的(P <0.001)NDF(46.5%)和较低的(P = 0.01)CP(-5.4%)消化率。 XB降低(P <0.001)的空腹消化道黏性在小麦饮食中(-31%)比在玉米饮食中(-10%)更大。饲喂含XB的小麦饮食的鸟类比不饲喂XB的鸟类具有更高的淀粉消化率(3.5%)。 Janthinobacterium与非XB玉米饮食有关,而回肠中的瘤胃球菌,Lachnospiraceae,乳杆菌科,Peptostreptococcaceae,梭菌,酸杆菌属和Blautia与XB玉米饮食有关。在基于小麦的盲肠处理中观察到相对相似的微生物组。在选定的回肠或盲肠细菌分类群与AMEn之间没有显着(P> = 0.05)相关性。饮食影响了生长性能,但XB在不同饮食类型中均有效,这表明饲料酶降解饮食纤维成分可能会刺激幼鸽的生长。数据提供了与饮食类型和XB相关的回肠和盲肠微生物特征的重要见解;但是,它们的功能作用需要进一步研究。

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