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Paternal Programming of Liver Function and Lipid Profile Induced by a Paternal Pre-Conceptional Unhealthy Diet: Potential Association with Altered Gut Microbiome Composition

机译:父本的孕前不健康饮食所致的父本肝功能和脂质谱的父本编程:肠道微生物组组成改变的潜在关联

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Background/Aims: Paternal exposure to adverse environmental conditions can act on offspring’s phenotype and influence offspring’s later life disease risk. Our study was designed to examine the effect of feeding male rats before mating a high-fat, high-sucrose and high-salt diet (HFSSD) over two generations (F0 and F1) on their offspring’s (F2) liver function and gut microbiome composition. Methods: Male F0 rats and male F1 rats were fed either control diet or HFSSD before mating. Liver function of F2 offspring was investigated, and their gut microbiome composition was analyzed by 16S rRNA gene sequencing in the F2 offspring of rats whose fathers and grandfathers were fed with control diet (CD) (F0CD+F1CD-F2 group) or HFSSD prior to mating (F0HD+F1HD-F2 group). Results: F2 offspring had higher serum aspartate aminotransferase activity (female, p 0.05 and male, p 0.01 respectively) compared with control. Shannon indexes of gut microbiota indicated a significantly higher diversity in the female F0HD+F1HD-F2 as compared to F0CD+F1CD-F2 female offspring ( p 0.01). The dominant phyla of all the groups were Bacteroidetes , Firmicutes and Proteobacteria . There were significant differences in gut bacterial community composition at phyla and genus level between the F0CD+F1CD-F2 and F0HD+F1HD-F2. Furthermore, the variation in the relative abundance (percentage) of bacterial genus in the F2 offspring was associated with liver function alterations induced by a paternal pre-conceptional unhealthy diet. Male F0HD+F1HD-F2 offspring had higher serum cholesterol, high density lipoproteins as well as low density lipoproteins concentrations compared to the corresponding male control rats. Conclusion: Taken together, our findings suggested that a paternal pre-conceptional unhealthy diet predisposes the offspring to mild liver function alterations and alterations of gut microbiota in later life. Effects on lipids were sex-specific and only seen in male offspring.
机译:背景/目的:父亲暴露在不利的环境条件下会影响其后代的表型,并影响其后代生活疾病的风险。我们的研究旨在检查在两代(F0和F1)交配高脂,高蔗糖和高盐饮食(HFSSD)之前喂养雄性大鼠对其后代(F2)肝功能和肠道微生物组组成的影响。方法:在交配前,给雄性F0大鼠和雄性F1大鼠饲喂对照饮食或HFSSD。研究F2子代的肝功能,并通过16S rRNA基因测序分析其父亲和祖父接受对照饮食(CD)(F0CD + F1CD-F2组)或HFSSD的大鼠F2子代的肠道微生物组组成。配对(F0HD + F1HD-F2组)。结果:与对照组相比,F2后代的血清天冬氨酸转氨酶活性更高(雌性,p <0.05,雄性,p <0.01)。肠道菌群的香农指数表明,与F0CD + F1CD-F2雌性后代相比,雌性F0HD + F1HD-F2的多样性显着更高(p <0.01)。所有组的优势菌群是拟杆菌,硬菌和变形杆菌。 F0CD + F1CD-F2和F0HD + F1HD-F2在门和属水平上的肠道细菌群落组成存在显着差异。此外,F2后代中细菌属的相对丰富度(百分比)的变化与父本先孕不健康饮食引起的肝功能改变有关。与相应的雄性对照大鼠相比,雄性F0HD + F1HD-F2后代具有更高的血清胆固醇,高密度脂蛋白以及低密度脂蛋白浓度。结论:综上所述,我们的研究结果表明,父本先孕的不健康饮食使后代容易出现轻度肝功能改变和后来的肠道菌群改变。对脂质的影响具有性别特异性,仅在雄性后代中可见。

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