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首页> 外文期刊>The Italian Journal of Zoology >Capacity for thermal acclimation and winter mortality of sea bass Dicentrarchus labrax in freshwater earthen ponds
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Capacity for thermal acclimation and winter mortality of sea bass Dicentrarchus labrax in freshwater earthen ponds

机译:淡水土池鲈鱼鲈的热适应能力和冬季死亡率

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Some fish species exhibit a biochemical response to low winter temperatures. For example, after a period of cold acclimation, an increase in enzyme activity occurs. This can result in at least partial compensation in the rate of biochemical reactionsof aerobic metabolism. Sea bass (Dicentrarchus labrax L. 1758) is a commercially important fish for the Mediterranean mariculture industry, which can grow satisfactorily in both freshwater (FW) and seawater (SW) conditions. The purpose of the present work was to evaluate the survival and growth of sea bass in FW earthen ponds. The experiment was initiated in September 2003 in order to avoid the water temperature highs during spring-summer and allow several weeks for acclimation before the winter temperature lows. Fish growth occurred for several months, but by the end of December 200; ambient water temperature reached levels below 5deg C and mass mortality occurred. The capacity of sea bass for thermal compensation was evaluated by monitoring the activity of cytochrome c oxidase (CCO) of red axial muscle. The activity of CCO initially increased from 6.4 ( + 0.98) in September (ambient water temperature 19deg C) to 10.4 (+ 1.49) in October (ambient temperature 15.4deg C), but decreased again to 8.8 (+1.45) in November (ambient temperature 12.3deg C). A similar trend was exhibited by the glycolytic enzyme lactate dehydrogenase in white muscle. The results do not indicate a capacity of thermal acclimation in FW ponds with low temperature (<13deg C) forsea bass. Evidently, seasonally extremely low temperature is a challenge for the production of sea bass.
机译:一些鱼类对冬季的低温表现出生化反应。例如,经过一段时间的冷驯化,酶活性就会增加。这可以导致有氧代谢的生化反应速率的至少部分补偿。鲈鱼(Dicentrarchus labrax L. 1758)是地中海海水养殖业的重要商业鱼类,在淡水(FW)和海水(SW)条件下均可令人满意地生长。本工作的目的是评估鲈鱼在FW土池中的生存和生长。该实验始于2003年9月,目的是避免春季夏季水温升高,并在冬季温度低之前适应数周。鱼的生长持续了几个月,但到了200年12月底才开始。环境水温达到低于5摄氏度的水平,并且发生了质量死亡。通过监测红色轴肌的细胞色素c氧化酶(CCO)的活性来评估鲈鱼的热补偿能力。 CCO的活性最初从9月的6.4(+ 0.98)(环境温度19摄氏度)上升到10月的10.4(+1.49)(环境温度15.4摄氏度),但在11月(环境温度)再次下降至8.8(+1.45)。温度12.3℃。糖酵解酶乳酸脱氢酶在白肌肉中表现出相似的趋势。结果没有表明在低温(<13℃)海鲈鱼的FW池塘中有热适应能力。显然,季节性极低的温度是鲈鱼生产的一个挑战。

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