Wei Rongxue, Han Chunchun, Wei Shouhai, Teng Yongqiang, Li Liang, Liu Hehe, Hu Shengqiang, Kang Bo, Xu Hengyong
Farm Animal Genetic Resources Exploration and Innovation Key Laboratory of Sichuan Province, Sichuan Agricultural University, Chengdu, China.
Key Laboratory of Livestock and Poultry Multi-omics, Ministry of Agriculture and Rural Affairs, College of Animal Science and Technology, Sichuan Agricultural University, Chengdu, China.
Front Nutr. 2023 Jan 10;9:1052600. doi: 10.3389/fnut.2022.1052600. eCollection 2022.
To further explore the fructose pro-steatosis mechanism, we performed an integrative analysis of liver transcriptome and lipidome as well as peripheral adipose tissues transcriptome analysis using samples collected from geese overfed with maize flour (control group) and geese overfed with maize flour supplemented with 10% fructose (treatment group). Overfeeding period of the treatment group was significantly shorter than that of the control group ( < 0.05). Dietary supplementation with 10% fructose induced more severe steatosis in goose liver. Compared with the control group, the treatment group had lower in ceramide levels ( < 0.05). The key differentially expressed genes (DEGs) (control group vs. treatment group) involved in liver fatty acid biosynthesis and steroid biosynthesis were downregulated. The conjoint analysis between DEGs and different lipids showed that fatty acid biosynthesis and steroid biosynthesis were the highest impact score pathways. In conclusion, fructose expedites goose liver lipid accumulation maximization during overfeeding.
为进一步探究果糖促脂肪变性机制,我们使用从过量喂食玉米粉的鹅(对照组)和过量喂食添加10%果糖的玉米粉的鹅(处理组)收集的样本,对肝脏转录组和脂质组以及外周脂肪组织转录组进行了综合分析。处理组的过量喂食期显著短于对照组(<0.05)。日粮中添加10%果糖会导致鹅肝脏更严重的脂肪变性。与对照组相比,处理组的神经酰胺水平较低(<0.05)。参与肝脏脂肪酸生物合成和类固醇生物合成的关键差异表达基因(对照组与处理组)下调。差异表达基因与不同脂质之间的联合分析表明,脂肪酸生物合成和类固醇生物合成是影响得分最高的途径。总之,果糖在过量喂食期间加速了鹅肝脏脂质积累最大化。