Effect of long-term administration of dietary beta-1,3-glucan on growth, physiological, and immune responses in Litopenaeus vannamei (Boone, 1931)

文献类型: 外文期刊

第一作者: Zhao, Hong-Xia

作者: Zhao, Hong-Xia;Wang, An-Li;Ye, Chao-Xia;Zhao, Hong-Xia;Cao, Jun-Ming;Huang, Yan-Hua;Lan, Han-Bing;Zhou, Ting-Ting;Li, Guo-Li;Du, Zhen-Yu

作者机构:

关键词: beta-1;3-Glucans;Litopenaeus vannamei;Growth;Physiological response;Immune response;Nitrite stress

期刊名称:AQUACULTURE INTERNATIONAL ( 影响因子:2.235; 五年影响因子:2.616 )

ISSN:

年卷期:

页码:

收录情况: SCI

摘要: beta-1,3-Glucan at different dietary doses was administered to enhance the growth, immunity, and survival against nitrite stress in Pacific white shrimp, Litopenaeus vannamei. Four different diets supplemented with 0, 250, 500, or 1,000 mg of beta-1,3-glucan kg(-1) diets were fed to L. vannamei. Growth performance (weight gain and survival rate), physiological conditions (blood total protein, glucose, lactate, triacylglycerols, cholesterol levels) and immunological responses (superoxide dismutase, catalase, lysozyme, acid phosphatase, and alkaline phosphatase activities) of shrimp were recorded after 84-day feeding and 120 h after exposed to nitrite-N. After 84-day feeding, 250 mg kg(-1) beta-1,3-glucan diet resulted in better weight gain (P < 0.05). Before the nitrite stress, blood lactate, triacylglycerols, and cholesterol level in shrimp fed with 250 mg kg(-1) beta-1,3-glucan diet were significantly higher than those observed in shrimp fed with other diets (P < 0.05). Higher activities of catalase, lysozyme, and alkaline phosphatase were observed in shrimp fed with 500 or 1,000 mg kg(-1) beta-1,3-glucan diet as compared to those obtained in shrimp fed with other diets (P < 0.05). After 120-h nitrite stress, blood protein, lactate, superoxide dismutase, catalase, and alkaline phosphatase activities in shrimp fed with 500 or 1,000 mg kg(-1) beta-1,3-glucan were significantly higher than those observed in shrimp fed with other diets (P < 0.05). Glucose and triacylglycerol levels of shrimp fed with 500 or 1,000 mg kg(-1) beta-1,3-glucan were significantly lower than those observed in other diets (P < 0.05). In shrimp fed with 500 and 1,000 mg kg(-1) beta-1,3-glucan and 120-h after nitrite stress, the mortality was significantly lower than that observed in shrimp of control. Together, in this 84-day feeding trial, 250 mg kg(-1) beta-1,3-glucan improved growth, whereas 500 mg kg(-1) beta-1,3-glucan preferentially improved nitrite resistance, probably through accelerating energy metabolism and activating immune system.

分类号: S9

  • 相关文献

[1]Swimming ability and physiological response to swimming fatigue in whiteleg shrimp, Litopenaeus vannamei. Zhang, Peidong,Zhang, Xiumei,Li, Jian,Huang, Guoqiang.

[2]Cloning and characterization of a beta-1,3-glucan-binding protein from shrimp Fenneropenaeus chinensis. Lai, Xiaofang,Kong, Jie,Wang, Qingyin,Wang, Weiji,Meng, Xianhong,Lai, Xiaofang,Lai, Xiaofang.

[3]Effects of ammonia-N stress on metabolic and immune function via the neuroendocrine system in Litopenaeus vannamei. Cui, Yanting,Ren, Xianyun,Li, Jian,Zhai, Qianqian,Feng, Yanyan,Xu, Yang,Ma, Li,Cui, Yanting,Ren, Xianyun,Li, Jian,Zhai, Qianqian,Feng, Yanyan,Xu, Yang,Ma, Li,Feng, Yanyan,Xu, Yang,Ma, Li.

[4]Effect of dietary beta-1,3-glucan on the immune response of Litopenaeus vannamei exposed to nitrite-N. Zhao, H-X,Cao, J-M,Huang, Y-H,Li, G-L,Lan, H-B,Zhao, H-X,Wang, A-L,Tian, J-X,Du, Z-Y.

[5]Excess dietary cholesterol may have an adverse effect on growth performance of early post-larval Litopenaeus vannamei. Niu, Jin,Lin, Hei-Zhao,Chen, Peng-Fei,Tian, Li-Xia,Liu, Yong-Jian,Yang, Hui-Jun,Liang, Gui-Ying. 2012

[6]Effects of bioflocs on water quality, and survival, growth and digestive enzyme activities of Litopenaeus vannamei (Boone) in zero-water exchange culture tanks. Xu, Wu Jie,Pan, Lu Qing,Sun, Xiao Hua,Huang, Jie. 2013

[7]Effects of seawater potassium concentration on the dietary potassium requirement of Litopenaeus vannamei. Zhu, Chang-Bo,Dong, Shuang-Lin,Wang, Fang,Zhang, Han-Hua. 2006

[8]Effect of periodic light color change on the molting frequency and growth of Litopenaeus vannamei. Guo, Biao,Wang, Fang,Dong, Shuanglin,Guo, Biao,Mu, Yingchun. 2012

[9]Effects of dietary chitosan on growth, survival and stress tolerance of postlarval shrimp, Litopenaeus vannamei. Niu, J.,Liu, Y-J,Yang, H-J,Liang, G-Y,Tian, L-X,Niu, J.,Lin, H-Z,Mai, K-S. 2011

[10]Effects of dietary medicinal herbs and Bacillus on survival, growth, body composition, and digestive enzyme activity of the white shrimp Litopenaeus vannamei. Yu, Ming-Chao,Li, Zhuo-Jia,Lin, Hei-Zhao,Wen, Guo-Liang,Ma, Shen.

[11]Artificial substrates in zero-water-exchange culture system regulate the rearing performance of Pacific white shrimp Litopenaeus vannamei (Boone, 1931) under the winter indoor condition. Zhang, Jiasong,Chen, Liangliang,Dong, Hongbiao,Duan, Yafei,Li, Zhuojia,Wen, Guoliang,Chen, Jianguang,Feng, Zhenhua,Chen, Liangliang,Xu, WenJun,Xie, JianJun.

[12]The interaction of salinity and Na/K ratio in seawater on growth, nutrient retention and food conversion of juvenile Litopenaeus vannamei. Zhu, CB,Dong, SL,Wang, F. 2006

[13]Preliminary investigation into the contribution of bioflocs on protein nutrition of Litopenaeus vannamei fed with different dietary protein levels in zero-water exchange culture tanks. Xu, Wu-Jie,Pan, Lu-Qing,Zhao, Da-Hu,Huang, Jie.

[14]Effects of replacement of fish meal with fermented cottonseed meal on growth performance, body composition and haemolymph indexes of Pacific white shrimp, Litopenaeus vannamei Boone, 1931. Sun, Hong,Tang, Jiang-wu,Yao, Xiao-Hong,Wu, Yi-fei,Wang, Xin,Liu, Yong.

[15]Effect of salinity on survival, growth, oxygen consumption and ammonia-N excretion of juvenile whiteleg shrimp, Litopenaeus vannamei. Zhang, Peidong,Zhang, Xiumei,Gao, Tianxiang,Zhang, Peidong,Li, Jian.

[16]Dietary supplementation of probiotic Bacillus PC465 isolated from the gut of Fenneropenaeus chinensis improves the health status and resistance of Litopenaeus vannamei against white spot syndrome virus. Chai, Peng-Cheng,Song, Xiao-Ling,Xu, Hua,Huang, Jie,Huang, Jie,Chen, Guo-Fu.

[17]Effects of dietary supplementation of A3 alpha peptidoglycan on the growth, immune response and defence of sea cucumber. Zhang, C. Y.,Chen, G. F.,Wang, C. C.,Xu, Z.,Song, X. L.,Wang, Y. G.. 2014

[18]Growth, feed intake and immune responses of orange-spotted grouper (Epinephelus coioides) exposed to low infectious doses of ectoparasite (Cryptocaryon irritans). Yin, Fei,Sun, Peng,Shi, Zhao-Hong,Gao, Quan-Xin,Peng, Shi-Ming,Dan, Xue-Ming,Li, An-Xing. 2014

[19]Effects of anthraquinone extract from Rheum officinale Bail on the physiological responses and HSP70 gene expression of Megalobrama amblycephala under Aeromonas hydrophila infection. Liu, Bo,Ge, Xianping,Xie, Jun,Xu, Pao,Cui, Yanting,Ming, Jianhua,Liu, Bo,Ge, Xianping,Xie, Jun,Xu, Pao,He, Yijin,Zhou, Qunlan,Pan, Liangkun. 2012

[20]Effects of Piper sarmentosum extract on the growth performance, antioxidant capability and immune response in weaned piglets. Wang, D. F.,Zhou, L. L.,Zhou, H. L.,Hou, G. Y.,Zhou, X.,Li, W.,Li, W..

作者其他论文 更多>>