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养殖密度对陆基工厂化循环水养殖系统中大菱鲆(Scophthalmus maximus)幼鱼生长和胁迫反应的影响研究
引用本文:刘宝良,贾瑞,赵奎峰,王国文,雷霁霖,黄滨.养殖密度对陆基工厂化循环水养殖系统中大菱鲆(Scophthalmus maximus)幼鱼生长和胁迫反应的影响研究[J].海洋学报(英文版),2017,36(10):31-38.
作者姓名:刘宝良  贾瑞  赵奎峰  王国文  雷霁霖  黄滨
作者单位:中国水产科学研究院黄海水产研究所;农业部海洋渔业可持续发展重点实验室;青岛市海水鱼类种子工程与生物技术重点实验室;青岛 266071, 中国,中国水产科学研究院黄海水产研究所;农业部海洋渔业可持续发展重点实验室;青岛市海水鱼类种子工程与生物技术重点实验室;青岛 266071, 中国;南京农业大学无锡渔业学院, 无锡 214081, 中国,山东东方海洋科技股份有限公司, 烟台 264000, 中国,山东东方海洋科技股份有限公司, 烟台 264000, 中国,中国水产科学研究院黄海水产研究所;农业部海洋渔业可持续发展重点实验室;青岛市海水鱼类种子工程与生物技术重点实验室;青岛 266071, 中国;南京农业大学无锡渔业学院, 无锡 214081, 中国,中国水产科学研究院黄海水产研究所;农业部海洋渔业可持续发展重点实验室;青岛市海水鱼类种子工程与生物技术重点实验室;青岛 266071, 中国
摘    要:Stocking density is widely recognized as a critical factor in aquaculture and a potential source of long-term stress.The influence of stocking density on growth and stress response of juvenile turbot(Scophthalmus maximus, ~3–75g, initial to final weight) was examined in fish held under low(LD, ~0.21–5.31 kg/m~2, initial to final density),medium(MD, ~0.42–10.81 kg/m~2) and high stocking density(HD, ~0.63–14.27 kg/m~2) for 120 days in a recirculating aquaculture system(RAS). In this trial, the growth curve for weight of juvenile turbot in RAS, all fitted by the Schnute model. No significant difference was found in growth performance among the three densities until at the final sampling(Day 120). The final weight and body weight increase(BWI) in the HD group were significantly lower than in other groups(P0.05, weight:(75.83±2.49) g,(75.39±2.08) g,(65.72±2.86) g and BWI:(2 436.12±28.10)%,(2 421.29±4.64)%,(2 097.88±20.99)% in LD, MD and HD groups, respectively). Similarly, the specific growth rate(SGR), feed conversion ratio(FCR) and coefficient of variation for weight(CV_w) were adversely affected by high stocking density(P0.05). However, there was no difference in survival and Fulton's condition factor(K) of turbot among the different groups. Physiological analyses demonstrated a clear increase in the plasma cortisol level and an obvious decrease in growth hormone(GH) concentration in the HD group on Day120(P0.05). There was no significant effect of stocking density on plasma glucose, Cl– and protein levels. All these findings would provide a reference for selecting the optimal stocking density of juvenile turbot in RAS.

关 键 词:生长表现  循环水养殖系统  大菱鲆  养殖密度  应激生理
收稿时间:2016/5/24 0:00:00

Stocking density effects on growth and stress response of juvenile turbot (Scophthalmus maximus) reared in land-based recirculating aquaculture system
LIU Baoliang,JIA Rui,ZHAO Kuifeng,WANG Guowen,LEI Jilin and HUANG Bin.Stocking density effects on growth and stress response of juvenile turbot (Scophthalmus maximus) reared in land-based recirculating aquaculture system[J].Acta Oceanologica Sinica,2017,36(10):31-38.
Authors:LIU Baoliang  JIA Rui  ZHAO Kuifeng  WANG Guowen  LEI Jilin and HUANG Bin
Institution:Yellow Sea Fisheries Research Institute, Chinese Academy of Fishery Sciences;Key Laboratory of Sustainable Development of Marine Fisheries, Ministry of Agriculture;Qingdao Key Laboratory for Marine Fish Breeding and Biotechnology, Qingdao 266071, China,Yellow Sea Fisheries Research Institute, Chinese Academy of Fishery Sciences;Key Laboratory of Sustainable Development of Marine Fisheries, Ministry of Agriculture;Qingdao Key Laboratory for Marine Fish Breeding and Biotechnology, Qingdao 266071, China;Wuxi Fisheries College, Nanjing Agricultural University, Wuxi 214081, China,Shandong Oriental Ocean Sci-Tech Co., Ltd, Yantai 264000, China,Shandong Oriental Ocean Sci-Tech Co., Ltd, Yantai 264000, China,Yellow Sea Fisheries Research Institute, Chinese Academy of Fishery Sciences;Key Laboratory of Sustainable Development of Marine Fisheries, Ministry of Agriculture;Qingdao Key Laboratory for Marine Fish Breeding and Biotechnology, Qingdao 266071, China;Wuxi Fisheries College, Nanjing Agricultural University, Wuxi 214081, China and Yellow Sea Fisheries Research Institute, Chinese Academy of Fishery Sciences;Key Laboratory of Sustainable Development of Marine Fisheries, Ministry of Agriculture;Qingdao Key Laboratory for Marine Fish Breeding and Biotechnology, Qingdao 266071, China
Abstract:Stocking density is widely recognized as a critical factor in aquaculture and a potential source of long-term stress. The influence of stocking density on growth and stress response of juvenile turbot (Scophthalmus maximus,~3-75 g, initial to final weight) was examined in fish held under low (LD,~0.21-5.31 kg/m2, initial to final density), medium (MD,~0.42-10.81 kg/m2) and high stocking density (HD,~0.63-14.27 kg/m2) for 120 days in a recirculating aquaculture system (RAS). In this trial, the growth curve for weight of juvenile turbot in RAS, all fitted by the Schnute model. No significant difference was found in growth performance among the three densities until at the final sampling (Day 120). The final weight and body weight increase (BWI) in the HD group were significantly lower than in other groups (P<0.05, weight:(75.83±2.49) g, (75.39±2.08) g, (65.72±2.86) g and BWI:(2 436.12±28.10)%, (2 421.29±4.64)%, (2 097.88±20.99)% in LD, MD and HD groups, respectively). Similarly, the specific growth rate (SGR), feed conversion ratio (FCR) and coefficient of variation for weight (CVw) were adversely affected by high stocking density (P<0.05). However, there was no difference in survival and Fulton''s condition factor (K) of turbot among the different groups. Physiological analyses demonstrated a clear increase in the plasma cortisol level and an obvious decrease in growth hormone (GH) concentration in the HD group on Day 120 (P<0.05). There was no significant effect of stocking density on plasma glucose, Cl- and protein levels. All these findings would provide a reference for selecting the optimal stocking density of juvenile turbot in RAS.
Keywords:growth performance  recirculating aquaculture system  Scophthalmus maximus  stress physiology  stocking density
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