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The Effect of Milk Replacer Composition on the Intestinal Microbiota of Pre-ruminant Dairy Calves

机译:代乳成分对反刍前奶牛肠道菌群的影响

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The impact of dietary composition and prebiotics, in promoting the growth of beneficial groups of gut bacteria, is increasingly apparent. Using Illumina MiSeq sequencing of bacterial 16S rRNA genes, this study has aimed to characterize and compare the establishment of the gastrointestinal microbiota in dairy calves given two different commercial milk replacer (MR) diets. MR1 and MR2 contain different levels of macronutrients such as protein and fat. Moreover, differences in manufacturing methods infer that MR2 may contain a greater proportion of conjugated milk oligosaccharides (OS), while MR1 contains more free milk OS. A total of 10 dairy calves, 5 in each group, were assigned to one of the two MR diets. Freshly voided fecal samples were taken at 0, 7, 14, 28 and 49 days after first consumption of milk replacer. The relative abundance of two individual Bifidobacterium species, which are known to utilize milk OS, and Faecalibacterium prausnitzii were significantly higher at day 7 in the fecal microbiome of calves fed MR2 compared with MR1. These commensal bacteria are widely regarded as probiotic organisms that confer a health benefit on the host. Our findings suggest that the composition of bovine milk replacers can have significant effects on the establishment of the gut microbiota in pre-weaned (neonatal) dairy calves. Better understanding of milk composition-microbiota-host interactions in early life will inform targeted interventions to increase growth and reduce mortality in young animals.
机译:饮食组成和益生元对促进肠道有益菌群生长的影响越来越明显。本研究使用细菌16S rRNA基因的Illumina MiSeq测序,旨在表征和比较给定两种不同商业代乳品(MR)日粮的牛犊中胃肠道微生物群的建立。 MR1和MR2包含不同水平的大量营养素,例如蛋白质和脂肪。此外,制造方法的差异推断出MR2可能包含更大比例的结合牛奶寡糖(OS),而MR1则包含更多的游离牛奶OS。总共10头牛犊,每组5头,被分配给两种MR日粮之一。在第一次饮用代乳品后的0、7、14、28和49天采集新鲜排泄的粪便样品。在第7天,喂食MR2的小牛粪便微生物组中,两个已知利用牛奶OS的双歧杆菌物种和Fauscalibacterium prausnitzii的相对丰度显着高于MR1。这些共生细菌被广泛认为是赋予宿主健康益处的益生菌生物。我们的研究结果表明,牛乳替代品的组成对断奶前(新生儿)奶牛的肠道菌群的建立具有重要影响。早年对牛奶成分-微生物群-宿主相互作用的更好理解将为有针对性的干预提供信息,以增加幼小动物的生长并降低其死亡率。

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