Melis Riccardo, Sanna Roberta, Braca Angela, Bonaglini Elia, Cappuccinelli Roberto, Slawski Hanno, Roggio Tonina, Uzzau Sergio, Anedda Roberto
Porto Conte Ricerche S. r. l., - S.P. 55 Porto Conte - Capo Caccia, Km 8.400, Loc. Tramariglio, Alghero, (SS), Italy.
Aller-Aqua, - Allervej 130, DK-6070 Christiansfeld, Denmark.
Comp Biochem Physiol A Mol Integr Physiol. 2017 Feb;204:129-136. doi: 10.1016/j.cbpa.2016.11.010. Epub 2016 Nov 19.
Biometric and metabolic responses of gilthead sea bream to cold challenge are described following a growth trial divided into three water temperature steps, namely cooling, cold maintenance and recovery. Experimental data provide a useful description of fish response to thermal stress at both zootechnical and molecular level. Although no mortality has been observed, Nuclear Magnetic Resonance-based metabolomics confirms the marked sensitivity of this fish species to low water temperature, and explains some key molecular events associated to fish response to cold. Increase in hepatosomatic index is associated to liver fat accumulation, as a consequence of lipid mobilization from muscle and other extrahepatic tissues, and metabolic rearrangements linked to homeoviscous adaptation of cellular membranes are observed. Following primary responses to descending temperature from 18°C to 11°C, the energetic metabolism (insulin signaling, glycolysis) is first clearly affected; then, at constant low water temperature (11°C), the most perturbed metabolic pathways are related to methionine cycle in liver, while osmoregulatory function is exerted by TMAO in muscle. Water temperature recovery from 11°C to 18°C stimulates gluconeogenesis and glycogen synthesis activities at hepatic level, although the rate of a thermo-compensatory response seems to be slower than that of the cooling phase. The obtained results are intended to guide novel high-performance feed formulations for gilthead sea bream reared during winter.
在一项分为三个水温阶段(即降温、低温维持和恢复)的生长试验之后,描述了金头鲷对冷应激的生物特征和代谢反应。实验数据在畜牧学和分子水平上对鱼类对热应激的反应提供了有益的描述。尽管未观察到死亡情况,但基于核磁共振的代谢组学证实了这种鱼类对低温的显著敏感性,并解释了一些与鱼类对寒冷反应相关的关键分子事件。肝体指数的增加与肝脏脂肪积累有关,这是肌肉和其他肝外组织脂质动员的结果,并且观察到与细胞膜的同型粘性适应相关的代谢重排。在对水温从18°C降至11°C的初始反应之后,能量代谢(胰岛素信号传导、糖酵解)首先受到明显影响;然后,在恒定低温(11°C)下,肝脏中受干扰最大的代谢途径与蛋氨酸循环有关,而肌肉中的三甲胺氧化物发挥渗透调节功能。水温从11°C恢复到18°C会刺激肝脏水平的糖异生和糖原合成活动,尽管热补偿反应的速率似乎比降温阶段慢。所得结果旨在指导冬季养殖金头鲷的新型高性能饲料配方。