您好,欢迎访问中国水产科学研究院 机构知识库!

Effect of guava leaves on growth and the non-specific immune response of Penaeus monodon

文献类型: 外文期刊

作者: Yin, Xiao-Li 1 ; Li, Zhuo-Jia 1 ; Yang, Keng 1 ; Lin, Hei-Zhao 1 ; Guo, Zhi-Xun 1 ;

作者机构: 1.Chinese Acad Fishery Sci, South China Sea Fisheries Res Inst, Guangzhou 510300, Guangdong, Peoples R China

2.Shanghai Ocean Univ, Coll Fisheries & Life Sci, Shanghai 210306, Peoples R China

关键词: Psidium guajava L;Penaeus monodon;Growth performance;Immune response

期刊名称:FISH & SHELLFISH IMMUNOLOGY ( 影响因子:4.581; 五年影响因子:4.851 )

ISSN:

年卷期:

页码:

收录情况: SCI

摘要: Guava (Psidium guajava L.) leaf extracts have antiviral and antibacterial activity against shrimp pathogens such as yellow-head virus (YHV), white spot syndrome virus (WSSV), and Vibrio harveyi, which make it a potential water disinfectant for use in shrimp culture. In this study, the safety of guava leaf supplementation in shrimp was evaluated by studying its influence on growth and the non-specific immune response of Penaeus monodon. Six diets containing different levels of guava leaves (0% [basal diet], 0.025% [G1], 0.05% [G2], 0.1% [G3], 0.2% [G4], and 0.4% [G5]) were fed to groups of shrimp (1.576 +/- 0.011 g body weight) in triplicate for 56 days. Growth performance (final body weight, WG, PWG, SGR) of shrimp fed guava leaf diets was significantly higher (P < 0.05) than that of shrimp fed on the basal diet. The G1 diet resulted in the highest body weight gain (308.44%), followed by the G2 (295.45%), G3 (283.05%), G5 (281.29%), G4 (276.11%), and finally the basal diet (214.58%). Survival of shrimp in the G1 diet group was higher than that of shrimp in the control and the other experimental groups; however, no statistical differences (P > 0.05) were found. Dietary supplementation with guava leaf improved the activities of prophenoloxidase (PO) and nitric oxide synthase (NOS) in serum, and of superoxide dismutase (SOD), acid phosphatase (ACP), alkaline phosphatase (AMP), and lysozyme (LSZ) both in serum and hepatopancreas of shrimp. In the experimental groups, the activities of these enzymes followed a similar pattern of change; they increased initially at low levels of dietary supplementation and then decreased with increasing concentrations of dietary guava leaf. Serum PO and SOD activities in shrimp fed the G1 diet reached 7.50 U ml(-1) and 178.33 U ml(-1), respectively, with PO activity being significantly higher than in controls. In shrimp fed the G1 diet, SOD, ACP, and AMP activities in hepatopancreas were significantly higher than in the controls, reaching 57.32 U g(-1), 23.28 U g(-1), and 19.35 U g(-1) protein, respectively. The highest activities of serum ACP, AMP, LSZ, and of hepatopancreas LSZ, were observed in the G3 diet group. Total nitric oxide synthase (TNOS) activity was highest (64.80 U ml(-1)) in the G4 diet group, which was significantly higher than that observed in the control group. These results suggest that dietary guava leaf supplementation could enhance the growth performance and non-specific immune response of P. monodon. Therefore, guava leaf is considered safe for use as a water disinfectant in shrimp culture

  • 相关文献

[1]Effect of seven carbohydrate sources on juvenile Penaeus monodon growth performance, nutrient utilization efficiency and hepatopancreas enzyme activities of 6-phosphogluconate dehydrogenase, hexokinase and amylase. Niu, Jin,Lin, Hei-Zhao,Jiang, Shi-Gui,Chen, Xu,Wu, Kai-Chang,Tian, Li-Xia,Liu, Yong-Jian.

[2]Effects of different levels of dietary wakame (Undaria pinnatifida) on growth, immunity and intestinal structure of juvenile Penaeus monodon. Niu, Jin,Chen, Xu,Lu, Xue,Jiang, Shi-Gui,Lin, Hei-Zhao,Huang, Zhong,Wang, Jun,Wang, Yun,Liu, Yong-Jian,Tian, Li-Xia.

[3]Effect of biofloc technology on growth, digestive enzyme activity, hematology, and immune response of genetically improved farmed tilapia (Oreochromis niloticus). Long, Lina,Yang, Jing,Guan, Chongwu,Wu, Fan,Li, Yuan.

[4]Dietary leucine modulates growth performance, Nrf2 antioxidant signaling pathway and immune response of juvenile blunt snout bream (Megalobrama amblycephala). Liang, Hualiang,Mokrani, Ahmed,Ji, Ke,Ge, Xianping,Ren, Mingchun,Xie, Jun,Liu, Bo,Ge, Xianping,Ren, Mingchun,Xie, Jun,Liu, Bo,Xi, Bingwen,Zhou, Qunlan. 2018

[5]Effect of Dietary Marine Red Yeast Rhodotorula mucilaginosa on the Growth Performance, and also Non-Specific Immune Responses of Juvenile Golden Pompano Trachinotus Ovatus when Challenged with Vibrio Harveyi. Zhou, Chuanpeng,Lin, Heizhao,Xia, Dongmei,Yang, Keng,Yang, Yingying,Huang, Zhong,WeiYu,Zhou, Chuanpeng,Lin, Heizhao,Xia, Dongmei,Yang, Keng,Yang, Yingying,Huang, Zhong,WeiYu,Lin, Heizhao,Huang, Zhong,WeiYu. 2016

[6]Effects of probiotics dietary supplementation on growth performance; innate immunity and digestive enzymes of silver pomfret, Pampas argenteus. Gao, Quanxin,Xiao, Changfeng,Min, Minghua,Zhang, Chenjie,Peng, Shiming,Shi, Zhaohong,Xiao, Changfeng.

[7]Effect of dietary astaxanthin on the growth performance, non-specific immunity, and antioxidant capacity of pufferfish (Takifugu obscurus) under high temperature stress. Cheng, Chang-Hong,Guo, Zhi-Xun,Cheng, Chang-Hong,Guo, Zhi-Xun,Ye, Chao-Xia,Wang, An-Li,Ye, Chao-Xia,Wang, An-Li. 2018

[8]Growth performance and immune responses of gibel carp, Carassius auratus gibelio, fed with graded level of rare earth-chitosan chelate. Zhou, Qun-lan,Xie, Jun,Ge, Xian-ping,Liu, Bo,Ren, Mingchun,Zhou, Qun-lan,Habte-Tsion, H. Michael.

[9]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.

[10]南海西北部水域斑节对虾资源的调查研究. 钟振如,李辉权,张月平,陈敏. 1999

[11]Gene characteristics, immune and stress responses of PmPrx1 in black tiger shrimp (Penaeus monodon): Insights from exposure to pathogenic bacteria and toxic environmental stressors. Bu, Ruiqian,Wang, Pengfei,Zhao, Chao,Qiu, Lihua,Bu, Ruiqian,Bu, Ruiqian,Wang, Pengfei,Zhao, Chao,Qiu, Lihua,Qiu, Lihua,Bao, Weiyang.

[12]Characterization, expression and silencing by RNAi of p53 from Penaeus monodon. Dai, Wenting,Qiu, Lihua,Zhao, Chao,Fu, Mingjun,Ma, Zhenhua,Zhou, Falin,Yang, Qibin,Qiu, Lihua,Zhao, Chao,Fu, Mingjun,Ma, Zhenhua,Zhou, Falin,Yang, Qibin,Dai, Wenting,Yang, Qibin.

[13]Molecular cloning, characterization and expression analysis of thrombospondin gene from Penaeus monodon. Zhou, FaLin,Zheng, Liming,Zhang, Dianchang,Huang, JianHua,Qiu, Lihua,Yang, QiBin,Jiang, ShiGui,Zhou, FaLin,Zheng, Liming.

[14]Estimates of heritability and genetic correlations for growth-related traits in the tiger prawn Penaeus monodon. Sun, Miao Miao,Huang, Jian Hua,Jiang, Shi Gui,Yang, Qi Bin,Zhou, Fa Lin,Zhu, Cai Yan,Yang, Li Shi,Su, Tian Feng.

[15]Cloning, characterization, expression analysis and RNAi of Retinoblastoma-like gene from black tiger shrimp (Penaeus monodon). Xie, Bobo,Wang, Pengfei,Zhao, Chao,Qiu, Lihua,Xie, Bobo,Xie, Bobo,Wang, Pengfei,Zhao, Chao,Qiu, Lihua,Qiu, Lihua.

[16]Molecular cloning and mRNA expression of M-phase phosphoprotein 6 gene in black tiger shrimp (Penaeus monodon). Zhou, Jun,Qiu, Lihua,Jiang, Shigui,Zhou, Falin,Huang, Jianhua,Yang, Lishi,Su, Tianfeng,Zhang, Dianchang,Zhou, Jun,Qiu, Lihua,Jiang, Shigui,Zhou, Falin,Huang, Jianhua,Yang, Lishi,Su, Tianfeng,Zhang, Dianchang.

[17]Observations of reproductive development and maturation of male Penaeus monodon reared in tidal and earthen ponds. Jiang, Shi-Gui,Huang, Jian-Hua,Zhou, Fa-Lin,Chen, Xu,Yang, Qj-Bing,Wen, Wei-Geng,Ma, Zi-Ming.

[18]Characterization of complement 1q binding protein of tiger shrimp, Penaeus monodon, and its C1q binding activity. Yang, Lishi,Liu, Xianjun,Liu, Wenjing,Li, Xiaolan,Qiu, Lihua,Huang, Jianhua,Jiang, Shigui,Liu, Xianjun,Liu, Wenjing,Li, Xiaolan. 2013

[19]Characterization of Argonaute2 gene from black tiger shrimp (Penaeus monodon) and its responses to immune challenges. Yang, Lishi,Li, Xiaolan,Jiang, Song,Qiu, Lihua,Zhou, Falin,Liu, Wenjing,Jiang, Shigui,Li, Xiaolan. 2014

[20]The response of glutathione peroxidase 1 and glutathione peroxidase 7 under different oxidative stresses in black tiger shrimp, Penaeus monodon. Liu, Wei,Zhao, Chao,Wang, Pengfei,Qiu, Lihua,Liu, Wei,Lin, Heizhao,Qiu, Lihua,Wang, Shu. 2018

作者其他论文 更多>>