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Supplementation of the Diet with High-Viscosity Beta-Glucan Results in Enrichment for Lactobacilli in the Rat Cecum

机译:饮食中补充高粘度β-葡聚糖可导致大鼠盲肠乳杆菌的富集

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BBn (BioBreeding) rats were fed casein-based diets supplemented with barley flour, oatmeal flour, cellulose, or barley β-glucans of high [HV] or low viscosity [LV] in order to measure the prebiotic effects of these different sources of dietary fiber. The dietary impact on the composition of the cecal microbiota was determined by the generation of denaturing gradient gel electrophoresis (DGGE) profiles of PCR-amplified 16S rRNA gene sequences. The DGGE profiles produced from the cecal microbiota of rats within each dietary group were similar, but consensus profiles generated from pooled bacterial DNAs showed differences between rat groups. Animals fed HV glucans (HV-fed rats) had DGGE consensus profiles that were 30% dissimilar from those of the other rat groups. A 16S rRNA gene fragment that was more conspicuous in the profiles of HV-fed animals than in those of cellulose-fed rats had sequence identity with Lactobacillus acidophilus. Measurements of L. acidophilus rRNA abundance (DNA-RNA hybridization), the preparation of cloned 16S rRNA gene libraries, and the enumeration of Lactobacillus cells (fluorescent in situ hybridization) showed that lactobacilli formed a greater proportion of the cecal microbiota in HV-fed rats. In vitro experiments confirmed that some lactobacilli utilize oligosaccharides (degree of polymerization, 3 or 4) present in β-glucan hydrolysates. The results of this study have relevance to the use of purified β-glucan products as dietary supplements for human consumption.
机译:BBn(BioBreeding)大鼠以酪蛋白为基础的日粮,辅以大麦粉,燕麦粉,纤维素或高[HV]或低粘度[LV]的大麦β-葡聚糖,以测定这些不同饮食来源的益生元效应纤维。饮食对盲肠微生物群组成的影响通过PCR扩增的16S rRNA基因序列的变性梯度凝胶电泳(DGGE)谱的产生来确定。每个饮食组中大鼠盲肠菌群产生的DGGE图谱相似,但从合并细菌DNA生成的共有图谱显示大鼠组之间存在差异。饲喂HV葡聚糖的动物(HV喂养的大鼠)的DGGE共有谱与其他大鼠组的DGGE共有谱相差30%。 HV喂养的动物的轮廓比纤维素喂养的大鼠的轮廓更明显的16S rRNA基因片段与嗜酸乳杆菌具有序列同一性。嗜酸乳杆菌rRNA丰度的测量(DNA-RNA杂交),克隆的16S rRNA基因文库的制备以及乳杆菌细胞的计数(荧光原位杂交)显示,乳酸菌在高压饲喂的盲肠微生物中占更大比例大鼠。体外实验证实,某些乳杆菌利用β-葡聚糖水解产物中存在的寡糖(聚合度为3或4)。这项研究的结果与使用纯化的β-葡聚糖产品作为人类食用的膳食补充剂有关。

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