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Changes in Bowel Microbiota Induced by Feeding Weanlings Resistant Starch Stimulate Transcriptomic and Physiological Responses

机译:饲喂抗断奶的淀粉引起的肠道菌群的变化刺激转录和生理反应。

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The ability to predictably engineer the composition of bowel microbial communities (microbiota) using dietary components is important because of the reported associations of altered microbiota composition with medical conditions. In a synecological study, weanling conventional Sprague-Dawley rats (21 days old) were fed a basal diet (BD) or a diet supplemented with resistant starch (RS) at 5%, 2.5%, or 1.25% for 28 days. Pyrosequencing of 16S rRNA genes and temporal temperature gradient electrophoresis (TTGE) profiles in the colonic digesta showed that rats fed RS had altered microbiota compositions due to blooms of Bacteroidetes and Actinobacteria . The altered microbiota was associated with changes in colonic short-chain fatty acid (SCFA) concentrations, colonic-tissue gene expression ( Gsta2 and Ela1 ), and host physiology (serum metabolite profiles and colonic goblet cell numbers). Comparisons between germ-free and conventional rats showed that transcriptional and serum metabolite differences were mediated by the microbiota and were not the direct result of diet composition. Altered transcriptomic and physiological responses may reflect the young host's attempts to maintain homeostasis as a consequence of exposure to a new collection of bacteria and their associated biochemistry.
机译:使用饮食成分可预测地改造肠道微生物群落(微生物群)组成的能力很重要,因为据报道,微生物群组成的改变与医学状况有关。在一项生理学研究中,对断奶的传统Sprague-Dawley大鼠(21天大)进行基础饮食(BD)或补充了抗性淀粉(RS)的饮食(5%,2.5%或1.25%)持续28天。结肠消化物中16S rRNA基因的焦磷酸测序和瞬时温度梯度电泳(TTGE)图谱显示,喂食RS的大鼠由于拟杆菌和放线菌的繁殖而改变了微生物群组成。改变的微生物群与结肠短链脂肪酸(SCFA)浓度,结肠组织基因表达(Gsta2和Ela1)以及宿主生理(血清代谢产物谱和结肠杯状细胞数)的变化有关。无菌大鼠和常规大鼠之间的比较表明,转录和血清代谢物差异是由微生物群介导的,而不是饮食组成的直接结果。转录和生理反应的改变可能反映了年轻寄主试图维持体内稳态的尝试,这是由于接触了新的细菌及其相关的生物化学而导致的。

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