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在工厂化循环水养殖系统中,将初始体质量为186 g±2.0 g的大菱鲆(Scophthalmus maximus)放养于低(9.4 kg/m~2±0.2 kg/m~2)、中(13.6 kg/m~2±0.8 kg/m~2)、高(19.1 kg/m~2±1.3 kg/m~2)3个养殖密度,以研究不同养殖密度对大菱鲆生长、消化酶和蛋白质代谢的影响。养殖120 d后,低、中、高试验组养殖密度分别增长至26.1 kg/m~2±1.2 kg/m~2、38.2 kg/m~2±2.5 kg/m~2、52.3 kg/m~2±3.6 kg/m~2。结果表明:低密度组和中密度组中大菱鲆增质量率、特定生长率、肥满度和蛋白质效率均显著(P0.05)高于高密度组;而饲料系数显著低于高密度组(P0.05)。低密度组和中密度组大菱鲆总蛋白酶和淀粉酶活力显著低于高密度组(P0.05);但脂肪酶活力在3个密度组之间无显著性差异。与低密度组相比,高密度组显著提高了谷氨酸脱氢酶活力,同时降低了谷草转氨酶和亮氨酸氨肽酶活力(P0.05),而对谷丙转氨酶活力无任何影响。综上所述,在工厂化循环水系统中,增加养殖密度能提高养殖的产量,但过高的养殖密度会对大菱鲆生长、消化酶活力以及蛋白质代谢产生不利的影响。  相似文献   
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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.  相似文献   
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我国常规的海带夏苗培育法,培育期比较长,成本较高,容易导致幼苗病烂。我们根据海带类在极地低温下能渡过漫长极夜的生态特性,改革了五十年代推广、沿用至今的夏苗培育法,即将生长良好的配子体贮存在0°~-2℃低温、无光、静水条件下,在出库下海前约70天将贮存的配子体恢复到常规夏苗培育条件时,便正常地生长发育为生产上所需要的健康  相似文献   
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