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首页> 外文期刊>Scientific reports. >Lactobacillus rhamnosus lowers zebrafish lipid content by changing gut microbiota and host transcription of genes involved in lipid metabolism
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Lactobacillus rhamnosus lowers zebrafish lipid content by changing gut microbiota and host transcription of genes involved in lipid metabolism

机译:鼠李糖乳杆菌通过改变肠道菌群和脂质代谢相关基因的宿主转录来降低斑马鱼的脂质含量

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摘要

The microbiome plays an important role in lipid metabolism but how the introduction of probiotic communities affects host lipid metabolism is poorly understood. Using a multidisciplinary approach we addressed this knowledge gap using the zebrafish model by coupling high-throughput sequencing with biochemical, molecular and morphological analysis to evaluate the changes in the intestine. Analysis of bacterial 16S libraries revealed that Lactobacillus rhamnosus was able to modulate the gut microbiome of zebrafish larvae, elevating the abundance of Firmicutes sequences and reducing the abundance of Actinobacteria. The gut microbiome changes modulated host lipid processing by inducing transcriptional down-regulation of genes involved in cholesterol and triglycerides metabolism ( fit2, agpat4, dgat2, mgll , hnf4α, scap , and cck ) concomitantly decreasing total body cholesterol and triglyceride content and increasing fatty acid levels. L. rhamnosus treatment also increased microvilli and enterocyte lengths and decreased lipid droplet size in the intestinal epithelium. These changes resulted in elevated zebrafish larval growth. This integrated system investigation demonstrates probiotic modulation of the gut microbiome, highlights a novel gene network involved in lipid metabolism, provides an insight into how the microbiome regulates molecules involved in lipid metabolism, and reveals a new potential role for L. rhamnosus in the treatment of lipid disorders.
机译:微生物组在脂质代谢中起着重要作用,但是对益生菌群落的引入如何影响宿主脂质代谢的了解却很少。使用多学科方法,我们通过将高通量测序与生化,分子和形态学分析相结合来评估肠道变化,从而利用斑马鱼模型解决了这一知识鸿沟。细菌16S文库的分析表明,鼠李糖乳杆菌能够调节斑马鱼幼虫的肠道微生物组,从而提高了Firmicutes序列的丰度并降低了放线菌的丰度。肠道微生物组通过诱导胆固醇和甘油三酸酯代谢相关基因(fit2,agpat4,dgat2,mgll,hnf4α,scap和cck)的转录下调而改变了宿主脂质的加工过程,从而降低了体内总胆固醇和甘油三酸酯的含量并增加了脂肪酸水平。鼠李糖乳杆菌的治疗还增加了微绒毛和肠上皮细胞的长度,并减少了肠上皮中脂质滴的大小。这些变化导致斑马鱼幼虫生长加快。这项综合系统研究证明了肠道微生物组的益生菌调节,突出了参与脂质代谢的新型基因网络,深入了解了微生物组如何调节参与脂质代谢的分子,并揭示了鼠李糖乳杆菌在治疗脂多糖中的新潜在作用。脂质疾病。

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