A39 DEVELOPMENTALLY REGULATED CECAL CONTENT MICRO-RNAS CORRELATE WITH MATURING MICROBIOTA GENES AND FUNCTIONS IN JUVENILE MICE

C. Cuinat, A. Taibi, J. Tremblay, G. Gargari, S. Guglielmetti, T. Tompkins, E. Comelli
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Abstract

Abstract Background The gut microbiome establishment in early life is critical to life-long health and influenced by the maternal gut ecosystem. MicroRNAs (miRNAs) have emerged as a new player in host-microbiota interaction due to their regulatory effect on bacterial genes. We previously found that maternal supplementation with a probiotic mix of Lacticaseibacillus rhamnosus R0011 and Lactobacillus helveticus R0052 supported the maturation of microbial metabolic activity and altered the cecal content miRNA profile in juvenile mice. Aims To investigate the relationship between cecal content miRNAs and inferred microbiota genes and functions in early life and identify potential miRNA-bacterial gene targets. Methods We generated 16S rRNA gene sequencing and NanoString nCounter® data from the cecal content of 14, 21, and 36-days-old C57BL/6 mice born to dams receiving or not probiotic-supplemented water since preconception. Taxa contributions to bacterial enzyme-encoding genes and pathways were inferred with PICRUSt2. Time or group-altered genes, pathways, and miRNAs were identified with DESeq2. Spearman correlations were performed between miRNAs and bacterial genes or pathways (n= 3-5 male offspring/PND/group) and significant correlations (q ampersand:003C 0.05) were visualized with NAViGaTOR. Potential miRNA binding sites on bacterial genes were investigated using the ViennaRNA Package. Results Time-associated miR-433 positively correlated with two time-altered genes involved in the TCA and glyoxylate cycles. Group-associated miR-691 was positively correlated with genes related to tRNA charging pathway, pyruvate fermentation to acetate and lactate, and amino acids biosynthesis. Additionally, miR-691 was negatively correlated with six group-altered genes involved in myo-inositol degradation. We identified potential miRNA binding sites (total free energy of binding ampersand:003C -10 kcal/mol) for miR-691 with genes involved in pyruvate fermentation, lysine biosynthesis, and myo-inositol degradation, and for miR-433 with genes annotated to the TCA and glyoxylate cycles. Conclusions Host miRNAs correlate with bacterial pathways and genes maturing during the weaning transition, highlighting their potential to regulate microbial metabolic activity. Maternal probiotics supplementation may accelerate the development of microbial metabolic pathways through epigenetic mechanisms, independently of weaning dietary shift. Correlations identified include energy production pathways and may become clinical targets in infants with delayed maturation of the intestinal ecosystem. Funding Agencies NSERC
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A39 发育调控的盲肠内容物微 rnas 与幼鼠成熟的微生物群基因和功能有关
摘要 背景 生命早期肠道微生物群的建立对终生健康至关重要,并受母体肠道生态系统的影响。微小核糖核酸(miRNA)因其对细菌基因的调控作用而成为宿主与微生物群相互作用的新角色。我们之前发现,母体补充鼠李糖乳杆菌 R0011 和螺旋乳杆菌 R0052 的混合益生菌有助于微生物代谢活动的成熟,并改变幼鼠盲肠中 miRNA 的分布。目的 研究生命早期盲肠内容物 miRNA 与推断的微生物群基因和功能之间的关系,并确定潜在的 miRNA 细菌基因靶标。方法 我们从14、21和36天大的C57BL/6小鼠的盲肠内容物中获得了16S rRNA基因测序和NanoString nCounter®数据。利用 PICRUSt2 推断了细菌酶编码基因和通路的分类群贡献。使用 DESeq2 确定了时间或组别改变的基因、通路和 miRNA。在 miRNA 与细菌基因或通路之间进行斯皮尔曼相关性分析(n= 3-5 个雄性后代/PND/组),并用 NAViGaTOR 显示显著的相关性(q 符号:003C 0.05)。使用 ViennaRNA 软件包研究了细菌基因上潜在的 miRNA 结合位点。结果 时间相关的 miR-433 与两个参与 TCA 和乙醛酸循环的时间变化基因呈正相关。与群体相关的 miR-691 与 tRNA 充电途径、丙酮酸发酵成醋酸和乳酸以及氨基酸生物合成相关的基因呈正相关。此外,miR-691 与六个涉及肌醇降解的群体改变基因呈负相关。我们确定了 miR-691 与参与丙酮酸发酵、赖氨酸生物合成和肌醇降解的基因的潜在 miRNA 结合位点(结合的总自由能安培:003C -10 kcal/mol),以及 miR-433 与注释为 TCA 和乙醛酸循环的基因的潜在 miRNA 结合位点。结论 在断奶过渡期,宿主的 miRNA 与细菌通路和成熟基因相关,突显了它们调节微生物代谢活动的潜力。母体补充益生菌可能会通过表观遗传机制加速微生物代谢途径的发展,而与断奶后的饮食变化无关。已确定的相关性包括能量产生途径,并可能成为肠道生态系统成熟延迟婴儿的临床目标。资助机构 NSERC
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