Multiomics reveals changes in lipid metabolism in the livers of landes geese before and after overfeeding

肠道菌群 生物 脂质代谢 内科学 胆汁酸 下调和上调 牛磺酸 内分泌学 餐食 新陈代谢 肝肠循环 生物化学 食品科学 医学 氨基酸 基因
作者
Wei-qing Ma,Yang Liu,Yuanyuan Jing,Pengwei Ren,Xingchen Liu,Meixia Zhang,Xiaomin Qi,Mingxia Zhu,Qiaomei Zhang
出处
期刊:Animal Bioscience [Asian-Australasian Association of Animal Production Societies]
标识
DOI:10.5713/ab.25.0405
摘要

: The aim of this experiment was to integrated production indices with omics sequencing to elucidate the systemic perturbations between hepatic metabolism and the gut microbiota during overfeeding. : A total of 120 seven-week-old male Landes geese were floor reared in a pen environment. Overfeeding commenced at week 8 using a corn-based diet containing 5% soybean oil. The feeding regimen consisted of three daily meals (150-180 g/meal) initially, gradually increasing to five meals (300-500 g/meal) after two weeks, and was maintained for a total overfeeding period of four weeks. : The results demonstrated that overfeeding significantly increased liver weight and serum lipid levels, accompanied by intracellular lipid droplet accumulation. Concurrently, the downregulation of taurine-conjugated bile acids and the upregulation of free bile acids disrupted cholesterol homeostasis. Crucially, overfeeding triggered gut microbial dysbiosis characterized by Escherichia-Shigella enrichment and norank_o_Clostridia_UCG-014 depletion. : Our work demonstrated that the identification of the "gut microbiota‒bile acid‒liver axis" could as a pivotal signaling pathway driving overfeeding-induced foie gras formation while providing a theoretical foundation for overfeeding strategies to mitigate metabolic pathologies in waterfowl production.

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