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Analysis of bacterial community shifts in the gastrointestinal tract of pigs fed diets supplemented with beta -glucan from Laminaria digitata, Laminaria hyperborea and Saccharomyces cerevisiae.

机译:饲喂补充了来自指状海带,高带海带和酿酒酵母的β-葡聚糖的日粮猪的胃肠道细菌群落变化。

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This study was designed to evaluate the effects of algal and yeast beta -glucans on the porcine gastrointestinal microbiota, specifically the community of Lactobacillus, Bifidobacterium and coliforms. A total of 48 pigs were fed four diets over a 28-day period to determine the effect that each had on these communities. The control diet consisted of wheat and soya bean meal. The remaining three diets contained wheat and soya bean meal supplemented with beta -glucan at 250 g/tonne from Laminaria digitata, Laminaria hyperborea or Saccharomyces cerevisiae. Faecal samples were collected from animals before feeding each diet and after the feeding period. The animals were slaughtered the following day and samples were collected from the stomach, ileum, caecum, proximal colon and distal colon. Alterations in Lactobacillus in the gastrointestinal tract (GIT) were analysed using denaturing gradient gel electrophoresis (DGGE) profiles generated by group-specific 16 S rRNA gene PCR amplicons. Plate count analysis was also performed to quantify total coliforms. DGGE profiles indicated that all beta -glucan diets provoked the emergence of a richer community of Lactobacillus. The richest community of lactobacilli emerged after feeding L. digitata (LD beta -glucan). Plate count analysis revealed that the L. hyperborea (LH beta -glucan) diet had a statistically significant effect on the coliform counts in the proximal colon in comparison with the control diet. beta -glucan from L. digitata and S. cerevisiae also generally reduced coliforms but to a lesser extent. Nevertheless, the beta -glucan diets did not significantly reduce levels of Lactobacillus or Bifidobacterium. DGGE analysis of GIT samples indicated that the three beta -glucan diets generally promoted the establishment of a more varied range of Lactobacillus species in the caecum, proximal and distal colon. The LH beta -glucan had the most profound reducing effect on coliform counts when compared with the control diet and diets supplemented with L. digitata and S. cerevisiae beta -glucans.
机译:这项研究旨在评估藻类和酵母β-葡聚糖对猪胃肠道微生物群(特别是乳酸杆菌,双歧杆菌和大肠菌群)的影响。在28天的期间内,共有48头猪接受了四种日粮,以确定每种猪对这些社区的影响。对照饮食由小麦和大豆粉组成。其余三种饮食包含小麦和豆粕,辅以250克/吨的β-葡聚糖,分别来自指状海带,海带或酿酒酵母。在喂养每种饮食之前和喂养期之后,从动物收集粪便样品。第二天将动物宰杀,并从胃,回肠,盲肠,近端结肠和远端结肠中收集样品。使用变性梯度凝胶电泳(DGGE)谱分析胃肠道乳杆菌(GIT)中的变化,该变性梯度凝胶电泳谱是由组特异性16 S rRNA基因PCR扩增子产生的。还进行了板数分析以定量大肠菌群。 DGGE的资料表明,所有的β-葡聚糖饮食都激发了更丰富的乳酸杆菌群落的出现。喂食指状乳酸杆菌(LDβ-葡聚糖)后,出现了最丰富的乳酸菌群落。板计数分析显示,与对照饮食相比,高产乳杆菌(LHβ-葡聚糖)饮食对近端结肠中大肠菌群计数具有统计学显着影响。来自指状乳杆菌和酿酒酵母的β-葡聚糖通常也能减少大肠菌群,但程度较小。然而,β-葡聚糖饮食并没有显着降低乳杆菌或双歧杆菌的水平。 DGGE对GIT样品的分析表明,三种β-葡聚糖饮食通常促进在盲肠,近端结肠和远端结肠中建立更多种乳酸菌。与对照饮食和补充有指状乳杆菌和酿酒酵母β-葡聚糖的饮食相比,LHβ-葡聚糖对大肠菌群的减少具有最深远的影响。

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