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]
日期:2025-08-12
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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