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Effects of pea extrusion and enzyme and probiotic supplementation on performance, microbiota activity and biofilm formation in the broiler gastrointestinal tract

机译:豌豆挤出和益生菌补充对肉鸡胃肠道性能,微生物群活动和生物膜形成的影响

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1. The effects of supplementation of broiler chicken diets with pea meal, carbohydrase enzymes and a probiotic were investigated for potential performance improvement. 2. Raw or extruded pea meal (cv Model, grown in Poland) was included in a wheat-soybean meal-based diet at 250 g/kg. The diets were unsupplemented (control) or supplemented with either carbohydrase enzymes (200 U/kg xylanase and 10 U/kg beta-glucanase in feed) or a probiotic (Bacillus subtilis), or both. The diets were fed to Ross 308 broilers aged 9-28 days. 3. After two additional days, chick gastrointestinal tracts were excised and analysed for the presence of Bacillus subtilis biofilm; and the ileal and caecal digesta were analysed for bacterial enzyme activities and to determine the concentration of short-chain fatty acids (SCFAs). 4. Feeding the pea-based diet supplemented with the probiotic compromised feed utilisation, due to higher feed intake. The addition of enzymes to the raw, but not the extruded, pea containing diet partially ameliorated this effect (pea form x additives; P & 0.002). 5. In the ileal digesta, interactions between the dietary treatments were observed for the activities of all bacterial glycolytic enzymes and for SCFA concentrations. beta-glucosidase, alpha-galactosidase and beta-glucuronidase were highest in birds fed the diet containing extruded pea supplemented with the probiotic and enzymes (pea form x additives; P = 0.018 to P & 0.006). In the caecal digesta, interactions were observed for bacterial enzyme activities, but not for total SCFA concentration. Biofilm formation in the caecum indicated that the probiotic strain was metabolically active in the broiler gut. 6. In conclusion, supplementation of diets containing raw or extruded pea meal with enzymes and a Bacillus subtilis spore-based probiotic modulated microbiota activity but had no clear effects on broiler performance. Probiotic administration did not cause excessive fermentation in the ileum and caecum but enhanced Bacillus subtilis spp. biofilm formation in the caecum, which may be indicative of a beneficial effect on gut health.
机译:1.研究了肉鸡鸡食与豌豆膳食,碳水化合物酶和益生菌的影响,以进行潜在的性能改善。 2.原始或挤出的豌豆膳食(在波兰种植的CV型号)包括在250克/千克的小麦大豆膳食饮食中。饮食不介绍(对照)或用碳水化合物酶(200u / kg木聚糖酶和10u / kgβ-葡聚糖酶中的饲料中的10u / kgβ-葡聚糖酶补充)或益生菌(芽孢杆菌)或两者。饮食被喂食至9-28天的罗斯308肉鸡。 3.再次额外两天后,切除小鸡胃肠道并分析枯草芽孢杆菌生物膜的存在;分析eLEAL和粘椎间酸盐以用于细菌酶活性,并确定短链脂肪酸的浓度(SCFA)。 4.由于进料摄入量更高,喂养益生菌受损饲料利用的豌豆饮食。向原料中添加酶,但不是挤出的豌豆含有部分改善这种效果(豌豆形式x添加剂; P& 0.002)。在ILEAL DIGESTA中,观察到膳食处理之间的相互作用,用于所有细菌糖酵解酶和SCFA浓度的活性。 β-葡萄糖苷酶,α-半乳糖苷酶和β-葡糖醛酸酶在喂食含有益生菌和酶(豌豆形式X添加剂的挤出豌豆的饮食中的鸟类中最高)。在菌落中,观察到对细菌酶活性的相互作用,但不能用于总SCFA浓度。盲肠中的生物膜形成表明益生菌菌株在肉鸡肠道中代谢活性。 6.结论总之,用酶和枯草芽孢杆菌的孢子基益生菌调节的微生物群活动补充含有原料或挤出豌豆膳食的饮食,但对肉鸡的性能没有明显的影响。益生菌给药在回肠和盲肠中没有引起过量的发酵,但增强的芽孢杆菌SPP。在盲肠中的生物膜形成,这可能表明对肠道健康有益的影响。

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