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探究禁食与再喂食对鹅下丘脑和皮下脂肪组织血液生化指标及转录谱的影响。

Investigating the Impact of Fasting and Refeeding on Blood Biochemical Indicators and Transcriptional Profiles in the Hypothalamus and Subcutaneous Adipose Tissue in Geese.

作者信息

Liu Yi, Wang Xianze, Li Guangquan, Chen Shufang, Jia Huiyan, Dai Jiuli, He Daqian

机构信息

Shanghai Academy of Agricultural Sciences, Shanghai 201106, China.

Ningbo Academy of Agricultural Sciences, Ningbo 315101, China.

出版信息

Animals (Basel). 2024 Sep 23;14(18):2746. doi: 10.3390/ani14182746.

Abstract

Fasting and refeeding systems can cause significant short-term fluctuations in nutrient and energy levels, triggering adaptive physiological responses in animals. This study examines the effects of fasting and refeeding on blood biochemical indicators and transcriptional profiles in the hypothalamus and subcutaneous adipose tissue of geese. Biochemical assays reveal that fasting significantly increases levels of free fatty acids and glucagon, while reducing concentrations of triglycerides, leptin, and insulin. Transcriptomic analyses identify a complex transcriptional response in both the hypothalamus and subcutaneous adipose tissue, affecting several metabolic pathways and key genes associated with feed intake and energy metabolism. In subcutaneous adipose tissue, fasting downregulates genes involved in fatty acid synthesis (, , and ) and upregulates , a gene promoting lipid droplet degradation. Fasting affects a variety of metabolic pathways and critical genes in the hypothalamus, including Apelin, insulin, and mTOR signaling pathways. After fasting, the mRNA expression of , , and genes in the hypothalamus are significantly upregulated, while proopiomelanocortin () gene expression is markedly downregulated. This study highlights the intricate biological responses to nutritional changes in geese, which adds to our understanding of energy balance and metabolic regulation in avian species.

摘要

禁食和再投喂系统会导致营养和能量水平出现显著的短期波动,从而引发动物的适应性生理反应。本研究考察了禁食和再投喂对鹅下丘脑和皮下脂肪组织血液生化指标及转录谱的影响。生化分析表明,禁食显著提高了游离脂肪酸和胰高血糖素水平,同时降低了甘油三酯、瘦素和胰岛素的浓度。转录组分析确定了下丘脑和皮下脂肪组织中复杂的转录反应,影响了几个与采食量和能量代谢相关的代谢途径和关键基因。在皮下脂肪组织中,禁食下调了参与脂肪酸合成的基因(、和),并上调了,一个促进脂滴降解的基因。禁食影响下丘脑的多种代谢途径和关键基因,包括阿片肽、胰岛素和mTOR信号通路。禁食后,下丘脑、和基因的mRNA表达显著上调,而阿黑皮素原()基因表达明显下调。本研究突出了鹅对营养变化的复杂生物学反应,这增进了我们对鸟类能量平衡和代谢调节的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f9b3/11428393/1d233a104c79/animals-14-02746-g001.jpg

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