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Relative variations of gut microbiota in disordered cholesterol metabolism caused by high-cholesterol diet and host genetics

机译:高胆固醇饮食和宿主遗传学引起的肠道胆固醇代谢紊乱中肠道菌群的相对变化

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Abstract Recent studies performed provide mechanistic insight into effects of the microbiota on cholesterol metabolism, but less focus was given to how cholesterol impacts the gut microbiota. In this study, ApoE ?¢????/?¢???? Sprague Dawley (SD) rats and their wild-type counterparts ( n = 12) were, respectively, allocated for two dietary condition groups (normal chow and high-cholesterol diet). Total 16S rDNA of fecal samples were extracted and sequenced by high-throughput sequencing to determine differences in microbiome composition. Data were collected and performed diversity analysis and phylogenetic analysis. The influence of cholesterol on gut microbiota was discussed by using cholesterol dietary treatment as exogenous cholesterol disorder factor and genetic modification as endogenous metabolic disorder factor. Relative microbial variations were compared to illustrate the causality and correlation of cholesterol and gut microbiota. It turned out comparing to genetically modified rats, exogenous cholesterol intake may play more effective role in changing gut microbiota profile, although the serum cholesterol level of genetically modified rats was even higher. Relative abundance of some representative species showed that the discrepancies due to dietary variation were more obvious, whereas some low abundance species changed because of genetic disorders. Our results partially demonstrated that gut microbiota are relatively more sensitive to dietary variation. Nevertheless, considering the important effect of bacteria in cholesterol metabolism, the influence to gut flora by ?¢????genetically caused cholesterol disorder?¢???? cannot be overlooked. Manipulation of gut microbiota might be an effective target for preventing cholesterol-related metabolic disorders.
机译:摘要最近进行的研究为微生物菌群对胆固醇代谢的影响提供了机械的见解,但对胆固醇如何影响肠道菌群的关注较少。在这项研究中,ApoE?¢ ???? // ¢¢ ??????将Sprague Dawley(SD)大鼠和它们的野生型大鼠(n = 12)分别分为两个饮食条件组(正常食物和高胆固醇饮食)。提取粪便样品的总16S rDNA并通过高通量测序进行测序,以确定微生物组组成的差异。收集数据并进行多样性分析和系统发育分析。以胆固醇饮食作为外源性胆固醇紊乱因子,以基因改造作为内源性代谢紊乱因子,探讨了胆固醇对肠道菌群的影响。比较了相对微生物的变化,以说明胆固醇和肠道菌群的因果关系。事实证明,与转基因大鼠相比,尽管转基因大鼠的血清胆固醇水平更高,但摄入外源胆固醇可能在改变肠道菌群特征方面发挥更有效的作用。一些代表性物种的相对丰度表明,饮食差异引起的差异更为明显,而一些低丰度物种则由于遗传疾病而发生了变化。我们的结果部分证明了肠道菌群对饮食变化相对更敏感。然而,考虑到细菌在胆固醇代谢中的重要作用,“遗传性胆固醇异常”对肠道菌群的影响。不可忽视。肠道菌群的操纵可能是预防胆固醇相关的代谢紊乱的有效目标。

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