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首页> 外文期刊>Aquaculture Research >Effects of different biofloc sizes on the short‐term stress of Japanese seabass, Lateolabrax japonicus (Cuvier), juveniles reared in biofloc aquaculture systems
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Effects of different biofloc sizes on the short‐term stress of Japanese seabass, Lateolabrax japonicus (Cuvier), juveniles reared in biofloc aquaculture systems

机译:不同生物絮凝体大小对日本鲈鱼(Lateolabrax japonicus,居维叶)幼鱼短期胁迫的影响

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Abstract A 5‐day short‐term stress response experiment was conducted to investigate the effects of different biofloc sizes on a culture of Japanese seabass, Lateolabrax japonicus (Cuvier), juveniles. The fish were divided into four groups: small particle size (SG), medium particle size (MG), large particle size (LG) and clear water control (CG) groups. The diameters of the median particle size and coarse telomere of the SG, MG and LG were 45.61 μm, 185.75 μm and 272.43 μm and 211.04 μm, 399.55 μm and 859.45 μm respectively. The cortisol content in the SG group increased during the experiment and was significantly different from those of the other three groups (p < 0.05); additionally, the total protein, blood glucose, triglyceride and total cholesterol levels were significantly different at different times during the study (p < 0.05). In most cases, the alkaline phosphatase activity of the SG group showed a downward trend, which is contrary to the superoxide dismutase and catalase activities observed in the SG and MG. The gill lamellae of the SG, MG and LG were damaged to a certain extent. Overall, the results showed that bioflocs with small particle size exerted the most negative effect on Japanese seabass juveniles as short‐term stressors.
机译:摘要 为研究不同大小的生物絮凝体对日本鲈鱼(Lateolabrax japonicus,居维叶)幼鱼养殖的影响,进行了为期5 d的短期胁迫响应实验。将鱼类分为4组:小粒径(SG)、中粒径(MG)、大粒径(LG)和清水对照(CG)组。SG、MG和LG的中位粒径和粗端粒直径分别为45.61 μm、185.75 μm和272.43 μm,分别为211.04 μm、399.55 μm和859.45 μm。SG组皮质醇含量在实验过程中增加,与其他3组差异有统计学意义(p < 0.05);此外,在研究期间的不同时间,总蛋白、血糖、甘油三酯和总胆固醇水平存在显著差异(P < 0.05)。在大多数情况下,SG组的碱性磷酸酶活性呈下降趋势,这与SG组和MG组的超氧化物歧化酶和过氧化氢酶活性相反。SG、MG和LG的鳃片受到一定程度的破坏。结果表明,小粒径生物絮凝体作为短期胁迫源对鲈鱼幼鱼的负面影响最大。

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