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Administration of Exogenous Melatonin Improves the Diurnal Rhythms of the Gut Microbiota in Mice Fed a High-Fat Diet

机译:外源褪黑激素的给药改善了喂养高脂饮食的小鼠中肠道微生物的昼夜节律

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Melatonin, a circadian hormone, has been reported to improve host lipid metabolism by reprogramming the gut microbiota, which also exhibits rhythmicity in a light/dark cycle. However, the effect of the administration of exogenous melatonin on the diurnal variation in the gut microbiota in mice fed a high-fat diet (HFD) is unclear. Here, we further confirmed the antiobesogenic effect of melatonin on mice fed an HFD for 2 weeks. Samples were collected every 4 h within a 24-h period, and diurnal rhythms of clock gene expression ( Clock , Cry1 , Cry2 , Per1 , and Per2 ) and serum lipid indexes varied with diurnal time. Notably, Clock and triglycerides (TG) showed a marked rhythm in the control in melatonin-treated mice but not in the HFD-fed mice. The rhythmicity of these parameters was similar between the control and melatonin-treated HFD-fed mice compared with that in the HFD group, indicating an improvement caused by melatonin in the diurnal clock of host metabolism in HFD-fed mice. Moreover, 16S rRNA gene sequencing showed that most microbes exhibited daily rhythmicity, and the trends were different for different groups and at different time points. We also identified several specific microbes that correlated with the circadian clock genes and serum lipid indexes, which might indicate the potential mechanism of action of melatonin in HFD-fed mice. In addition, effects of melatonin exposure during daytime or nighttime were compared, but a nonsignificant difference was noticed in response to HFD-induced lipid dysmetabolism. Interestingly, the responses of microbiota-transplanted mice to HFD feeding also varied at different transplantation times (8:00 and 16:00) and with different microbiota donors. In summary, the daily oscillations in the expression of circadian clock genes, serum lipid indexes, and the gut microbiota appeared to be driven by short-term feeding of an HFD, while administration of exogenous melatonin improved the composition and diurnal rhythmicity of some specific gut microbiota in HFD-fed mice. IMPORTANCE The gut microbiota is strongly shaped by a high-fat diet, and obese humans and animals are characterized by low gut microbial diversity and impaired gut microbiota compositions. Comprehensive data on mammalian gut metagenomes shows gut microbiota exhibit circadian rhythms, which is disturbed by a high-fat diet. On the other hand, melatonin is a natural and ubiquitous molecule showing multiple mechanisms of regulating the circadian clock and lipid metabolism, while the role of melatonin in the regulation of the diurnal patterns of gut microbial structure and function in obese animals is not yet known. This study delineates an intricate picture of melatonin-gut microbiota circadian rhythms and may provide insight for obesity intervention.
机译:据报道,旋光素是一种昼夜戒指,通过重新编程肠道微生物群来改善宿主脂质代谢,其在光/暗循环中也表现出节奏性。然而,施用外源褪黑素对喂养高脂饮食(HFD)的小鼠肠道微生物的昼夜变化的影响尚不清楚。在这里,我们进一步证实了褪黑素对喂养HFD 2周的小鼠的抗筛选作用。每4小时在24-H周期内收集样品,而时钟基因表达的昼夜节律(时钟,Cry1,Cry2,per1和per2)和血清脂质指标随着昼夜变化而变化。值得注意的是,时钟和甘油三酯(Tg)在褪黑激素处理的小鼠中显示出明显的节律,但不在HFD-FED小鼠中。与HFD组中的对照和褪黑激素处理的HFD-FED小鼠之间的节奏性与HFD组相比相似,表明HFD-FED小鼠中宿主代谢的亚麻状时钟中的褪黑激素引起的改善。此外,16S RRNA基因测序显示大多数微生物表现出每日节律性,不同组和不同时间点的趋势不同。我们还确定了几种特定微生物,其与昼夜钟表基因和血清脂质指数相关,这可能表明褪黑素在HFD喂养小鼠中的潜在作用机制。此外,比较了褪黑激素暴露在白天或夜间期间的影响,但响应HFD诱导的脂质多糖蛋白,注意到了一种不显着的差异。有趣的是,微生物群移植的小鼠对HFD饲养的反应也在不同的移植时间(8:00和16:00)和不同的微生物酵母供体。总之,在昼夜节律脂质指标表达的日常振荡,血清脂质指标和肠道微生物瘤似乎是通过HFD的短期进料驱动的,而外源褪黑素的施用改善了一些特定肠道的组成和昼夜节律性在HFD喂养小鼠中的微生物群。 Gut Microbiota的重要性由高脂饮食强烈塑造,并且肥胖的人类和动物的特征是低压肠道微生物多样性和肠道微生物群组合物受损。哺乳动物肠道组织综合数据显示肠道微生物症表现出昼夜节律,这受高脂饮食的干扰。另一方面,褪黑激素是一种天然和无处不在的分子,显示出调节昼夜钟表和脂质代谢的多种机制,而褪黑素在肠道微生物结构的昼夜模式调节中的作用尚不清楚。本研究描绘了褪黑素 - 肠道微生物群昼夜节律的复杂图片,可以为肥胖干预提供洞察力。

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