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日粮鱼油对高脂日粮饲喂小鼠发情周期和机体产热的影响
引用本文:杨晓华,刘方方,张枫琳,易鑫,陈林,束刚,王丽娜,朱晓彤,高萍,江青艳,王松波. 日粮鱼油对高脂日粮饲喂小鼠发情周期和机体产热的影响[J]. 畜牧兽医学报, 2021, 52(7): 1891-1902. DOI: 10.11843/j.issn.0366-6964.2021.07.012
作者姓名:杨晓华  刘方方  张枫琳  易鑫  陈林  束刚  王丽娜  朱晓彤  高萍  江青艳  王松波
作者单位:华南农业大学动物科学学院 广东省动物营养调控重点实验室, 广州 510642
基金项目:国家自然科学基金(31972636;31790411);广东省基础与应用基础研究基金(2020A1515010261)
摘    要:本研究旨在探讨鱼油对高脂日粮饲喂小鼠发情周期和机体代谢产热的影响.试验选用36只4周龄C57BL/6 J雌性小鼠,随机分成3组(n=12):对照组、高脂组和高脂+鱼油组.对照组饲喂标准啮齿动物饲料(AIN-93G),高脂组和高脂+鱼油组分别饲喂高脂日粮(脂肪提供60%能量)和添加5%鱼油(等能替代猪油)的高脂日粮.试验...

关 键 词:鱼油  发情周期  BAT产热  WAT褐色化  小鼠
收稿时间:2021-02-26

Effects of Dietary Fish Oil on Estrous Cycles and Body Heat Production in Mice Fed High-fat Diets
YANG Xiaohua,LIU Fangfang,ZHANG Fenglin,YI Xin,CHEN Lin,SHU Gang,WANG Lina,ZHU Xiaotong,GAO Ping,JIANG Qingyan,WANG Songbo. Effects of Dietary Fish Oil on Estrous Cycles and Body Heat Production in Mice Fed High-fat Diets[J]. Chinese Journal of Animal and Veterinary Sciences, 2021, 52(7): 1891-1902. DOI: 10.11843/j.issn.0366-6964.2021.07.012
Authors:YANG Xiaohua  LIU Fangfang  ZHANG Fenglin  YI Xin  CHEN Lin  SHU Gang  WANG Lina  ZHU Xiaotong  GAO Ping  JIANG Qingyan  WANG Songbo
Affiliation:Guangdong Provincial Key Laboratory of Animal Nutrition Control, College of Animal Science, South China Agricultural University, Guangzhou 510642, China
Abstract:This study aimed to investigate the effects of dietary fish oil on estrous cycles and body heat production of mice fed high-fat diets (HFD). Thirty-six C57BL/6 J female mice at 4-week-old were randomly divided into 3 groups (n=12):control group, HFD group and HFD + fish oil group, respectively. The control group was fed with a standard rodent chow diet (AIN-93G). The HFD group and HFD + fish oil group were fed HFD (60% energy from fat) without or with 5% fish oil (equally replace lard energy), respectively. During the trial, the mice were used for various examinations, including body composition (12-week-old), body energy metabolism (16-week-old), brown adipose tissue(BAT) temperature (18-week-old), body core temperature (rectum temperature, 18-week-old) and estrous cycles (20-week-old). At the end of the experiment, the blood sample was collected from eye sockets, and the serum was isolated for examination of follicle-stimulating hormone (FSH) and estradiol (E2). In addition, the subcutaneous fat, abdominal fat and interscapular BAT were collected, weighed and used for detection of the protein expression of genes related to thermogenic program in adipose tissues (UCP1, Cyto C) by Western blot, and the mRNA expression of genes related to thermogenic program in brown adipose tissues (UCP1, PRDM16, PGC1α, Cidea, Elovl3) by real-time fluorescence quantitative PCR. The results showed that HFD induced a significant increase in body fat content (12-week-old), and subcutaneous fat and abdominal fat mass (21-week-old) compared with the control diet (P<0.05). Notably, the HFD-induced increase of fat content was significantly reduced by fish oil supplementation (P<0.05). In addition, HFD led irregular estrous cycles, with prolonged cycle duration and shortened estrus period, and decreased the level of FSH and E2 in serum (P<0.05). However, the HFD-induced estrous cycle irregularity of mice was alleviated by fish oil supplementation and the level of FSH and E2 in serum was increased (P<0.05). Meanwhile, fish oil supplementation increased BAT activation/thermogenesis and promoted white adipose tissue(WAT) browning in HFD-fed mice, with enhanced the expression of thermogenic marker genes in interscapular brown adipose tissue (iBAT) and inguinal white adipose tissue (iWAT) (P<0.05). These findings suggest that dietary fish oil can alleviate HFD-induced estrous cycle irregularity, possibly associate with enhanced body thermogenesis via BAT activation and WAT browning.
Keywords:fish oil  estrous cycle  BAT thermogenesis  WAT browning  mouse  
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