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Featured researches published by Wang Liansheng.


Journal of Northeast Agricultural University | 2014

Effect of Dietary Alanyl-glutamine Supplementation on Growth Performance, Development of Intestinal Tract, Antioxidant Status and Plasma Non-specific Immunity of Young Mirror Carp (Cyprinus carpio L.)

Xu Hong; Zhu Qing; Wang Chang-an; Zhao Zhigang; Luo Ling; Wang Liansheng; Li Jinnan; Xu Qiyou

Exogenous alanyl-glutamine (Aln-Gln) was evaluated for its effects on growth performance, intestinal structure and function, antioxidant status and non-specific immunity of young carp (Cyprinus carpio L.). Six diets supplemented with 0, 2.5, 5.0, 7.5, 10.0, or 15.0 g · kg−1 of Aln-Gln were fed to fish for 12 weeks. Supplementation with 7.5, 10.0, or 15.0 g · kg−1 of Aln-Gln significantly increased weight gain rate (WGR), protein efficiency ratio (PER), but feed conservation rate (FCR) and survival were not affected (P>0.05). The intestinal fold height and number, digestive enzyme, Na+, K+-ATPase activities was found to be significantly high (P<0.05) with increasing dietary Aln-Gln supplementation up to 7.5 g · kg−1, but there were no significant differences for Aln-Gln supplementation from 7.5 to 15.0 g · kg−1. The glutathione peroxidase (GPX) activity, glutathione (GSH), superoxide dismutase (SOD) activity increased and malondialdehyde (MDA) levels decreased significantly (P<0.05) in the intestine, hepatopancreas, plasma and muscles. The plasma complement-3 (C3) and complement-4 (C4) levels were significantly (P<0.05) improved at 5.0 g · kg−1 level and decreased when over 7.5 g · kg−1. The plasma lysozyme (LSZ) activity increased significantly (P<0.05) at 7.5, 10.0, or 15.0 g · kg−1 level. In summary, the results showed that Aln-Gln improved growth performance, development and function of the intestine, the activity of the antioxidant defense system and the plasma non-specific immunity of the carps. The optimal Aln-Gln level was 8.24 g · kg−1 diet for WGR based on broken-line regression model analysis.


Journal of Northeast Agricultural University | 2014

Effects of Dietary Protein and Temperature on Growth and Flesh Quality of Songpu Mirror Carp

Wang Changan; Xu Qiyou; Zhao Zhigang; Li Jinnan; Wang Liansheng; Luo Liang

The study was conducted to demonstrate the effects of dietary protein and water temperature on growth and flesh quality of Songpu mirror carp (Cyprinus carpio) at an initial weight (165.24±5.08) g. Practical diets were formulated to contain five protein levels (29.12%, 31.46%, 34.49%, 38.17%, and 40.13%), and each diet was randomly assigned triplicate groups of 15 fishes at three temperatures (18°C, 22°C, and 26°C) in the recirculation system. Fishes were fed twice daily to apparent satiation for 56 days. Results indicated that fishes had higher weight gain rate at 22°C and 26°C than that at 18°C (P 0.05). Based on the weight gain rate, dietary protein level 29.12% could meet the requirement of the body at 18°C, 22°C, or 26°C. Crude protein, crude lipid, moisture and ash of muscle had no significant differences among those treatments (P>0.05). pH (after 24 h) of muscle was the highest at 18°C and the lowest at 22°C (P 0.05). No significant differences on shear force, water holding capacity, collagen, glycogen and lactate among all the treatments were found (P>0.05). It was concluded that when C. carpio fed to apparent satiation, the growth mainly depended upon temperature. Dietary protein could not significantly affect flesh quality, but temperature significantly affected pH of muscles. A dietary protein level 29.12% could meet the requirement of the body at 18°C, 22°C, or 26°C.


Archive | 2016

不同蛋白质源饲料中添加α-酮戊二酸对杂交鲟幼鱼肝脏谷氨酰胺含量、抗氧化能力及生长激素、胰岛素样生长因子-I基因表达的影响

王连生; Wang Liansheng; 徐奇友; Xu Qiyou; 陈迪; Chen Di; 郑荣宁; Zheng Rongning

本试验旨在研究不同蛋白质源饲料中添加α-酮戊二酸对杂交鲟(Acipenser schrenckii♀×Acipenser baeri♂)幼鱼肝脏谷氨酰胺(Gln)含量、抗氧化能力及生长激素(GH)、胰岛素样生长因子-Ⅰ(IGF-Ⅰ)基因表达的影响。分别以大豆浓缩蛋白和大豆浓缩蛋白+鱼粉为蛋白质源,设2个α-酮戊二酸(AKG)添加量(0和1%),配制4种试验饲料。选取平均体重为(7.65±0.04)g的杂交鲟幼鱼500尾,随机分为4组,每组5个重复,每个重复25尾,养殖周期为8周。结果表明:饲料中添加1% AKG显著提高肝脏Gln含量和谷氨酰氨合成酶(GS)活性(P<0.05),对肝脏碱性磷酸酶(ALP)活性无显著影响(P>0.05)。蛋白质源对肝脏Gln含量、GS活性和ALP活性无显著影响(P>0.05),且蛋白质源和AKG添加量对肝脏Gln含量、GS活性和ALP活性无显著交互作用(P>0.05)。饲料中添加1% AKG显著降低肝脏丙二醛(MDA)含量,显著提高肝脏还原型谷胱甘肽(GSH)含量(P<0.05)。与大豆浓缩蛋白+鱼粉作为蛋白质源相比,大豆浓缩蛋白作为蛋白质源显著提高肝脏GSH含量(P<0.05)。蛋白质源和AKG添加量对肝脏超氧化物歧化酶(SOD)和过氧化氢酶(CAT)活性均无显著影响(P>0.05),且蛋白质源和AKG添加量对肝脏各抗氧化指标无显著交互作用(P>0.05)。饲料中添加1% AKG显著提高肝脏GH、IGF-Ⅰ基因的相对表达量(P<0.05)。与大豆浓缩蛋白+鱼粉作为蛋白质源相比,大豆浓缩蛋白作为蛋白质源显著提高肝脏IGF-Ⅰ和GH基因的相对表达量(P<0.05)。蛋白质源和AKG添加量对肝脏GH、IGF-Ⅰ基因的相对表达量无显著交互作用(P>0.05)。综上所述,杂交鲟幼鱼饲料中添加1% AKG可以通过提高肝脏中GS的活性进而提高Gln的含量,通过提高肝脏中GSH的含量进而降低MDA的含量,并可提高肝脏中生长相关基因GH、IGF-Ⅰ的表达。


Archive | 2015

Detection primer and detection method for detecting glycometabolism genes PEPCK and GK of cyprinoids via fluorescence quantitative PCR as well as application of detection primer

Li Jinnan; Xu Qiyou; Wang Chang An; Wang Liansheng; Zhao Zhigang; Luo Liang; Du Xue


Archive | 2017

Method for improving water quality of cyprinoid breeding pond

Zhao Zhigang; Xu Qiyou; Luo Liang; Wang Changan; Li Jinnan; Wang Liansheng; Du Xue


Archive | 2017

Regulation and control method for improving breeding efficiency of Songpu cyprinus carpio

Zhao Zhigang; Xu Qiyou; Luo Liang; Wang Changan; Li Jinnan; Wang Liansheng; Du Xue


Archive | 2017

Small -size fish feed ingredient vibrations screening device

Wang Liansheng; Xu Qiyou


Archive | 2017

Novel feed ingredient stirring device

Wang Liansheng; Xu Qiyou


Archive | 2016

Fish-meal-free sturgeon feed additive, preparation method and use method thereof

Wang Liansheng; Xu Qiyou; Wang Changan; Li Jinnan; Zhao Zhigang; Luo Liang; Dou Xue


Archive | 2016

Application of alpha-ketoglutaric acid and use method thereof

Xu Qiyou; Wang Liansheng; Song Fangjie; Wang Changan; Zhao Zhigang; Luo Liang; Li Jinnan; Dou Xue

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Xu Qiyou

Chinese Academy of Fishery Sciences

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Li Jinnan

Chinese Academy of Fishery Sciences

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Zhao Zhigang

Chinese Academy of Fishery Sciences

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Luo Liang

Chinese Academy of Fishery Sciences

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Wang Changan

Northeast Forestry University

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Luo Ling

Chinese Academy of Fishery Sciences

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Wang Chang-an

Chinese Academy of Fishery Sciences

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Xu Hong

Chinese Academy of Fishery Sciences

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Zhu Qing

Chinese Academy of Fishery Sciences

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