Growth performance and TOR pathway gene expression of juvenile blunt snout bream, Megalobrama amblycephala, fed with diets replacing fish meal with cottonseed meal

文献类型: 外文期刊

第一作者: Zhou, Qun-Lan

作者: Zhou, Qun-Lan;Habte-Tsion, Habte-Michael;Ge, Xianping;Zhou, Qun-Lan;Ge, Xianping;Liu, Bo;Xie, Jun;Ren, Mingchun;Miao, Linghong;Pan, Liangkun

作者机构:

关键词: blunt snout bream;cottonseed meal;growth performance;gene expression;target of rapamycin path way

期刊名称:AQUACULTURE RESEARCH ( 影响因子:2.082; 五年影响因子:2.415 )

ISSN:

年卷期:

页码:

收录情况: SCI

摘要: A 16-week feeding trial was conducted to assess the effects of replacing fish meal (FM) with cottonseed meal (CM) on the growth performance, feed utilization, plasma biochemical composition and target of rapamycin (TOR) pathway gene expression of juvenile blunt snout bream (Megalobrama amblycephala). Five isonitrogenous (36% crude protein) and isoenergetic (16MJkg(-1)) diets with graded replacing levels of CM (replacing 0, 25, 50, 75 and 100% FM with CM) and similar lysine and methionine concentrations were fed to triplicate groups of fish. Results revealed that specific growth rate (SGR), feed intake and protein efficiency ratio (PER) of group fed with diets replacing FM with CM up to 50% were significantly higher than others (P<0.05). However, final body weight and feed conversion ratio (FCR) remained similar up to 25% and thereafter significantly decreased and increased, respectively, as the replacement level increased (P<0.05). Replacement levels significantly decreased hepatosomatic index and viscerosomatic index (P<0.05), but did not significantly affect condition factor and whole body compositions. Free gossypol mainly accumulated in liver and significantly increased in diets CM75 and CM100 than CM0 (P<0.05). Replacement significantly influenced plasma urea contents (P<0.05). Meanwhile, increasing replacement of FM with CM in diets increased insulin-like growth factor I (IGF-1) gene expression in liver of blunt snout bream. Target of rapamycin (TOR) gene expression in diet CM100 was significantly lower than that in diets CM0 and CM75, while the eukaryotic translation initiation factor 4E-binding protein 2 (4E-BP2) gene expression was not affected by the replacement level of CM in diets. Therefore, based on final body weight and FCR, it suggested that up to 25% of FM (150gkg(-1) in basal diet) could be replaced by CM in diets, which was 112.5gkg(-1) FM and 192.9gkg(-1) CM, for juvenile blunt snout bream.

分类号: S9

  • 相关文献

[1]Effects of dietary folic acid on the growth, digestive enzyme activity, immune response and antioxidant enzyme activity of blunt snout bream (Megalobrama amblycephala) fingerling. Sesay, Daniella Fatmata,Habte-Tsion, Habte-Michael,Zhou, Qunlan,Ren, Mingchun,Xie, Jun,Liu, Bo,Zhou, Qunlan,Ren, Mingchun,Xie, Jun,Liu, Bo,Chen, Ruli,Pan, Liangkun.

[2]Dietary arginine requirement of juvenile blunt snout bream, Megalobrama amblycephala. Ren, Mingchun,Xie, Jun,Liu, Bo,Zhou, Qunlan,Ge, Xianping,Pan, Liangkun,Chen, Ruli,Liao, Yingjie,Xie, Jun,Liu, Bo,Ge, Xianping,Cui, Honghong. 2013

[3]Effects of dietary supplementation of fructooligosaccharide on growth performance, body composition, intestinal enzymes activities and histology of blunt snout bream (Megalobrama amblycephala) fingerlings. Wu, Y.,Liu, W. -B.,Xu, W. -N.,Li, X. -F.,Jiang, G. -Z.,Li, H. -Y.,He, J. -X..

[4]Dietary threonine requirement of juvenile blunt snout bream (Megalobrama amblycephala). Habte-Tsion, Habte-Michael,Liu, Bo,Ren, Mingchun,Ge, Xianping,Xie, Jun,Zhou, Qunlan,Liu, Bo,Ren, Mingchun,Ge, Xianping,Xie, Jun,Zhou, Qunlan,Miao, Linghong,Pan, Liangkun,Chen, Ruli.

[5]Ontogeny expression of ghrelin, neuropeptide Y and cholecystokinin in blunt snout bream, Megalobrama amblycephala. Ping, H. -C.,Feng, K.,Zhang, G. -R.,Wei, K. -J.,Wang, W. -M.,Zou, G. -W.. 2014

[6]The effect of dietary folic acid on biochemical parameters and gene expression of three heat shock proteins (HSPs) of blunt snout bream (Megalobrama amblycephala) fingerling under acute high temperature stress. Sesay, Daniella Fatmata,Habte-Tsion, Habte-Michael,Zhou, Qunlan,Ren, Mingchun,Xie, Jun,Liu, Bo,Sesay, Daniella Fatmata,Zhou, Qunlan,Ren, Mingchun,Xie, Jun,Liu, Bo,Chen, Ruli,Pan, Liangkun.

[7]Threonine affects digestion capacity and hepatopancreatic gene expression of juvenile blunt snout bream (Megalobrama amblycephala). Habte-Tsion, Habte-Michael,Ren, Mingchun,Liu, Bo,Xie, Jun,Ge, Xianping,Zhou, Qunlan,Habte-Tsion, Habte-Michael,Ren, Mingchun,Liu, Bo,Xie, Jun,Ge, Xianping,Chen, Ruli,Zhou, Qunlan,Pan, Liangkun.

[8]A deficiency or an excess of dietary threonine level affects weight gain, enzyme activity, immune response and immune-related gene expression in juvenile blunt snout bream (Megalobrama amblycephala). Habte-Tsion, Habte-Michael,Ge, Xianping,Liu, Bo,Xie, Jun,Ren, Mingchun,Zhou, Qunlan,Ge, Xianping,Liu, Bo,Xie, Jun,Ren, Mingchun,Zhou, Qunlan,Miao, Linghong,Pan, Liangkun,Chen, Ruli.

[9]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.

[10]Chemical composition and in vitro antioxidant property of peptides produced from cottonseed meal by solid-state fermentation. Sun, Hong,Yao, Xiaohong,Wang, Xin,Wu, Yifei,Liu, Yong,Tang, Jiangwu,Feng, Jie. 2015

[11]Improvement of the Nutritional Quality of Cottonseed Meal by Bacillus subtilis and the Addition of Papain. Sun, Hong,Feng, Jie,Tang, Jiang-Wu,Yao, Xiao-Hong,Wu, Yi-Fei,Wang, Xin. 2012

[12]Protein-sparing effect of dietary lipid in practical diets for blunt snout bream (Megalobrama amblycephala) fingerlings: effects on digestive and metabolic responses. Li, Xiangfei,Jiang, Yangyang,Liu, Wenbin,Ge, Xianping. 2012

[13]Effects of different sources and levels of dietary gossypol on gossypol residues in plasma and milk of lactating cows. Wang, A. P.,Zhang, J. M.,Meng, Y. L.,Deng, L. Q.,Lv, Y. F.,Li, C.,Wang, J. Q.,Wang, A. P.,Lv, Y. F.. 2012

[14]DNA degradation of genetically modified cottonseed meal during feed processing. Guan, Qingfeng,Wang, Xiumin,Teng, Da,Yang, Yalin,Wang, Jianhua,Guan, Qingfeng,Wang, Xiumin,Teng, Da,Yang, Yalin,Wang, Jianhua.

[15]Partial or complete substitution of fish meal with soybean meal and cottonseed meal in Chinese mitten crab Eriocheir sinensis diets. Jiang, Hai-Bo,Chen, Li-Qiao,Li, Er-Chao,Yu, Na,Sun, Sheng-Ming,Jiang, Xue-Qin,Jiang, Hai-Bo,Qin, Jian-Guang,Gao, Lu-Jiao.

[16]Effect of soybean meal replacement by cottonseed meal on growth, feed utilization and some blood physiological/biochemical indices of juvenile black carp, Mylopharyngodon piceus. Hu, Yi,Huang, Yun,Zhong, Lei,Xiao, Tiaoyi,Feng, Fuxian,Ai, Qinghui,Wen, Hua,Hu, Yi.

[17]Partial or Total Replacement of Soybean Meal by Cottonseed Meal in Practical Diets for Chinese Mitten Crab (Eriocheir sinensis): Effects on Growth, Feed Utilization, and Body Composition. Jiang, Hai-Bo,Sun, Lu-Yu,Chen, Li-Qiao,Li, Er-Chao,Sun, Sheng-Ming,Jiang, Xue-Qin,Qin, Jian-Guang,Gao, Lu-Jiao. 2012

[18]Physicochemical and functional properties of protein isolate obtained from cottonseed meal. Mengting Ma,Du, Shuang-Kui,Kuang, Meng,Yanjing Ren,Wei Xie,Dayun Zhou,Shurong Tang,Meng Kuang,Yanqin Wang,Shuang-kui Du. 2018

[19]An evaluation of replacing fish meal with cottonseed meal in the diet of juvenile Ussuri catfish Pseudobagrus ussuriensis: Growth, antioxidant capacity, nonspecific immunity and resistance to Aeromonas hydrophila. Bu, Xianyong,Chen, Aijing,Lian, Xuqiu,Zhang, Ying,Yang, Yuhong,Chen, Fangyi,Muhammad, Ishfaq,Ge, Xianping.

[20]Effect of a mixture of steam-flaked corn and soybeans on health, growth, and selected blood metabolism of Holstein calves. Zhang, Y. Q.,Meng, Q. X.,Zhang, Y. Q.,He, D. Ch.. 2010

作者其他论文 更多>>