Influence of dietary nicotinic acid supplementation on lipid metabolism and related gene expression in two distinct broiler breeds of female chickens

文献类型: 外文期刊

第一作者: Jiang, R. R.

作者: Jiang, R. R.;Zhao, G. P.;Zhao, J. P.;Chen, J. L.;Zheng, M. Q.;Liu, R. R.;Wen, J.;Jiang, R. R.

作者机构:

关键词: chicken;fat deposition;hepatic gene expression;nicotinic acid;plasma metabolites

期刊名称:JOURNAL OF ANIMAL PHYSIOLOGY AND ANIMAL NUTRITION ( 影响因子:2.13; 五年影响因子:2.322 )

ISSN:

年卷期:

页码:

收录情况: SCI

摘要: This study aimed to evaluate the influence of supplemental dietary nicotinic acid (NA) on lipid metabolism and hepatic expression of related genes in female chickens of two distinct broiler strains [Arbor Acres (AA) and Beijing-You (BJY)]. The treatments were arranged in a 2x4 factorial in a completely randomized design. Day-old females (n=384) were allocated to four treatments with six cages per treatment and fed diets (basal contained approximately 25mgNA/kg) supplemented with 0, 30, 60 and 120mgNA/kg. A sample of 72 birds from each breed was slaughtered and sampled at their different market times (8week for AA and 16week for BJY). Arbor Acres broilers had thickness of subcutaneous fat plus the skin (SFS), and plasma concentration of low-density lipoprotein cholesterol (LDLC) and lower percentage of abdominal fat (PAF), plasma concentrations of TG, NEFA and adiponectin than the BJY line. The hepatic transcription of apolipoprotein A-I (ApoA-I), apolipoproteinB (ApoB), and adiponectin was significantly higher in AA broilers than in BJY broilers. In both breeds, BW, PAF, SFS, NEFA and TG were increased with increasing supplementation from 0 to 60mgNA/kg, but then decreased slightly with 120mg added NA/kg. With increasing supplementation, hepatic expression and plasma concentrations of adiponectin decreased from 0 to 60mg added NA/kg and then increased with 120mg added NA/kg. The expression of ApoA-I and ApoB mRNA showed linear response to dietary supplementation with NA. These findings indicate that: (i) supplementation of NA influenced the lipid metabolism and related gene expression; (ii) when supplemented with 120mgNA/kg, some pharmacologic actions on lipid metabolism appeared; and (iii) changes in BW and fat deposition appeared to be associated with hepatic expression of adiponectin.

分类号: S8

  • 相关文献

[1]Effect of dietary supplemental nicotinic acid on growth performance, carcass characteristics and meat quality in three genotypes of chicken. Wen, J.. 2011

[2]Neuropeptide Y content in the hypothalamic paraventricular nucleus responds to fasting and refeeding in broiler chickens. Zhou, WD,Murakami, M,Hasegawa, S,Yoshizawa, F,Sugahara, K.

[3]Effects of Dietary Genistein on Plasma and Liver Lipids, Hepatic Gene Expression, and Plasma Metabolic Profiles of Hamsters with Diet-Induced Hyperlipidemia. Tang, Chaohua,Zhang, Kai,Zhao, Qingyu,Zhang, Junmin.

[4]A novel nitrilase from Ralstonia eutropha H16 and its application to nicotinic acid production. Fan, Haiyang,Chen, Lifeng,Wang, Hualei,Ren, Yuhong,Wei, Dongzhi,Sun, Huihui.

[5]CIDE gene expression in adipose tissue, liver, and skeletal muscle from obese and lean pigs. Qiu, Yue-qin,Yang, Xue-fen,Ma, Xian-yong,Xiong, Yun-xia,Tian, Zhi-mei,Fan, Qiu-li,Wang, Li,Jiang, Zong-yong. 2017

[6]A comprehensive microRNA expression profile of the backfat tissue from castrated and intact full-sib pair male pigs. Bai, Ying,Huang, Jin-Ming,Liu, Gang,Zhang, Ji-Bin,Liu, Cheng-Kun,Fang, Mei-Ying,Huang, Jin-Ming,Wang, Jian-Ying. 2014

[7]Effects of flavones of sea buckthorn fruits on growth performance, carcass quality, fat deposition and lipometabolism for broilers. Ma, J. S.,Chang, W. H.,Liu, G. H.,Zhang, S.,Zheng, A. J.,Li, Y.,Xie, Q.,Liu, Z. Y.,Cai, H. Y..

[8]Fat deposition pattern and mechanism in response to dietary lipid levels in grass carp, Ctenopharyngodon idellus. Yuan, Xiaochen,Liang, Xu-Fang,Liu, Liwei,Fang, Jinguang,Li, Jiao,Li, Aixuan,Cai, Wenjing,Wang, Qingchao,Xue, Min,Wang, Jia.

[9]Identification and characterization of long non-coding RNAs in subcutaneous adipose tissue from castrated and intact full-sib pair Huainan male pigs. Wang, Jing,Hua, Liushuai,Chen, Junfeng,Zhang, Jiaqing,Bai, Xianxiao,Gao, Binwen,Shi, Zhihai,Sheng, Weidong,Xing, Baosong,Li, Congjun,Gao, Yuan. 2017

[10]Differential regulation of mRNAs and lncRNAs related to lipid metabolism in two pig breeds. Huang, Wanlong,Zhang, Xiuxiu,Li, Ai,Xie, Lingli,Miao, Xiangyang. 2017

[11]Reconstitution of UCP1 using CRISPR/Cas9 in the white adipose tissue of pigs decreases fat deposition and improves thermogenic capacity. Zheng, Qiantao,Huang, Jiaojiao,Zhang, Hongyong,Zhang, Rui,Cao, Chunwei,Qin, Guosong,Yao, Jing,Song, Ruigao,Jia, Qitao,Wang, Xiao,Li, Yongshun,Zhang, Nan,Wang, Hongmei,Zhou, Qi,Zhao, Jianguo,Zheng, Qiantao,Huang, Jiaojiao,Zhang, Hongyong,Zhang, Rui,Cao, Chunwei,Qin, Guosong,Yao, Jing,Song, Ruigao,Jia, Qitao,Wang, Xiao,Wang, Hongmei,Zhou, Qi,Jin, Wanzhu,Zhao, Jianguo,Lin, Jun,Song, Ruigao,Ye, Rongcai,Jin, Wanzhu,Lin, Jun,Ye, Rongcai,Zhang, Xueying,Speakman, John R.,Hambly, Catherine,Speakman, John R.,Piao, Zhengyu,Wang, Yanfang.

[12]A novel single nucleotide polymorphism in exon 7 of LPL gene and its association with carcass traits and visceral fat deposition in yak (Bos grunniens) steers. Ding, X. Z.,Liang, C. N.,Guo, X.,Xing, C. F.,Bao, P. J.,Chu, M.,Pei, J.,Zhu, X. S.,Yan, P.. 2012

[13]Effect of FTO Expression and Polymorphism on Fat Deposition in Suzhong Pigs. Fu, Yanfeng,Ren, Shouwen,Lil, Lan,Lil, Lan. 2013

[14]Postnatal expression pattern of PPAR gamma gene in pigs. Jiang, Junfang,Jiang, Yongqing,Zhu, Zhigang,Xu, Zirong. 2009

[15]Conjugated linoleic acid differentially regulates fat deposition in backfat and longissimus muscle of finishing pigs. Jiang, Z. Y.,Zhong, W. J.,Zheng, C. T.,Lin, Y. C.,Jiang, S. Q.,Zhong, W. J.,Yang, L..

[16]Castration-induced changes in the expression profiles and promoter methylation of the GHR gene in Huainan male pigs. Wang, Jing,Chen, Junfeng,Zhang, Jiaqing,Gao, Binwen,Bai, Xianxiao,Lan, Yali,Lin, Ping,Guo, Hongxia,Xing, Baosong,Gao, Yuan.

[17]Deep Sequencing Analysis of miRNA Expression in Breast Muscle of Fast-Growing and Slow-Growing Broilers. Ouyang, Hongjia,He, Xiaomei,Li, Guihuan,Xu, Haiping,Jia, Xinzheng,Nie, Qinghua,Zhang, Xiquan,Ouyang, Hongjia,He, Xiaomei,Li, Guihuan,Xu, Haiping,Jia, Xinzheng,Nie, Qinghua,Zhang, Xiquan,Ouyang, Hongjia,He, Xiaomei,Li, Guihuan,Xu, Haiping,Jia, Xinzheng,Nie, Qinghua,Zhang, Xiquan. 2015

[18]Molecular epidemiology of hydropericardium syndrome outbreak-associated serotype 4 fowl adenovirus isolates in central China. Zhang, Teng,Zhang, Teng,Jin, Qianyue,Ding, Peiyang,Chai, Yongxiao,Li, Yafei,Liu, Xiao,Luo, Jun,Zhang, Gaiping,Chai, Yongxiao,Liu, Xiao,Zhang, Gaiping,Ding, Peiyang,Li, Yafei,Wang, Yinbiao,Jin, Qianyue,Zhang, Gaiping. 2016

[19]A premature stop codon within the tvb receptor gene results in decreased susceptibility to infection by avian leukosis virus subgroups B, D, and E. Chen, WeiGuo,Liu, Yang,Li, Xinjian,Li, Hongxing,Dai, Zhenkai,Yan, Yiming,Zhang, Xinheng,Lin, Wencheng,Ma, Jingyun,Xie, Qingmei,Chen, WeiGuo,Liu, Yang,Li, Xinjian,Li, Hongxing,Dai, Zhenkai,Yan, Yiming,Zhang, Xinheng,Lin, Wencheng,Ma, Jingyun,Xie, Qingmei,Li, Aijun,Shu, Dingming,Zhang, Huanmin,Chen, WeiGuo,Liu, Yang,Li, Xinjian,Li, Hongxing,Dai, Zhenkai,Yan, Yiming,Zhang, Xinheng,Lin, Wencheng,Ma, Jingyun,Xie, Qingmei,Chen, WeiGuo,Lin, Wencheng,Ma, Jingyun,Xie, Qingmei. 2017

[20]Differential expression of L-FABP and L-BABP between fat and lean chickens. Zhang, Q.,Shi, H.,Liu, W.,Wang, Y.,Wang, Q.,Li, H.,Zhang, Q.,Shi, H.,Liu, W.,Wang, Y.,Li, H.,Wang, Q.. 2013

作者其他论文 更多>>