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Enterococcus faecium Modulates the Gut Microbiota of Broilers and Enhances Phosphorus Absorption and Utilization

机译:肠球菌粪便调节肉鸡的肠道微生物,增强磷吸收和利用率

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Modern broiler chickens have ongoing bone health problems. Phosphorus (P) plays an important role in bone development and increased understanding of P metabolism should improve the skeletal health of broilers. Enterococcus faecium has been widely used as a probiotic in broiler production and is shown to improve skeletal health of rats, but its effect on the bones of broilers remains unclear. This study investigated the effect of E. faecium on P absorption and utilization in broilers and the associated changes in the gut microbiota using 16S rDNA sequencing. Dietary supplementation with E. faecium improved P absorption through upregulation of the expression of intestinal NaP-IIb mRNA and increased the concentration of serum alkaline phosphatase. These actions increased P retention and bone mineralization in E. faecium -treated broilers. The positive effects of E. faecium on P metabolism were associated with changes in the populations of the intestinal microbiota. There was increased relative abundance of the following genera, Alistipes , Eubacterium , Rikenella and Ruminococcaceae and a decrease in the relative abundance of Faecalibacterium and Escherichia-Shigella . Dietary supplementation with E. faecium changed gut microbiota populations of broilers, increased the relative abundance of SCFA (short-chain fatty acid)-producing bacteria, improved intestinal P absorption and bone forming metabolic activities, and decreased P excretion. E. faecium facilitates increased utilisation of P in broilers.
机译:现代肉鸡鸡具有持续的骨骼健康问题。磷(P)在骨骼发育中起重要作用,增加对P代谢的理解应该改善肉鸡的骨骼健康。肠球菌粪便被广泛用作富肉鸡生产中的益生菌,并显示出提高大鼠的骨骼健康,但其对肉鸡骨骼的影响仍不清楚。本研究研究了E. Feecium对肉鸡的吸收和利用率的影响以及使用16S RDNA测序的肠道微生物群的相关变化。膳食补充剂通过肠道液体液体 - IIB mRNA表达的上调和血清碱性磷酸酶的浓度提高了P吸收。这些动作增加了对粪便生物的P保留和骨矿化。 E. Feecium对P代谢的积极作用与肠道微生物群种群的变化有关。随着以下属,alistipes,盲肠,蓖麻菌和喇叭杆菌的相对丰富的相对丰富程度增加以及粪便杆菌和大肠杆菌的相对丰度降低。膳食补充剂与E. Faecium改变肠道微生物群肉鸡,增加了SCFA(短链脂肪酸) - 发给细菌的相对丰度,改善肠道P吸收和骨骼形成代谢活性,并降低了P排泄量。 E.粪便促进P在肉鸡中的利用率增加。

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