CADIC: (Centro Austral de Investigaciones Científicas - CONICET), Ushuaia, Tierra del Fuego, Bernardo Houssay 200, Argentina.
Comp Biochem Physiol A Mol Integr Physiol. 2010 Jun;156(2):247-54. doi: 10.1016/j.cbpa.2010.02.006. Epub 2010 Feb 16.
The influence of temperature on the aerobic metabolism and the energetic cost of food intake (Specific Dynamic Action; SDA) have been investigated in four species of Sub-Antarctic teleosts. The species were the notothenioids Paranotothenia magellanica, Patagonotothen sima and Harpagifer bispinis and the zoarcid Austrolycus depressiceps. Individuals were captured in the vicinity of Ushuaia Bay. Experimental temperatures were 10, 4 and 2 degrees C, which correspond to summer, winter and extreme winter respectively. Individual respirometry chambers and calorimetric techniques were used. Different food items were provided: crustaceans (isopods and amphipods) and Argentinean hake muscle. Interspecific analysis was done on species fed with isopods. A rapid increase in oxygen consumption was registered after meals, indicating a typical SDA response. The Duration of the SDA was longer at low temperatures. The extra energy spent during the process itself, and when expressed as a percentage of consumed food energy, decreased with decreasing temperature. The SDA Coefficient was higher for H. bispinis that were fed with isopods. We suggest that decreases in temperature diminish the metabolic cost and extend SDA. Energy-saving mechanisms could be an evolutionary advantage to minimize the energetic cost of living at low sub-Antarctic temperatures. A general model of exponential decay is suggested for the duration of SDA and Temperature, based on the present study and compiled from literature data.
本研究调查了四种亚南极鱼类的温度对需氧代谢和食物摄入的能量成本(特殊动力作用;SDA)的影响。这四个物种分别为南极鳕鱼 Paranotothenia magellanica、拟庸鲽 Patagonotothen sima 和双棘鱼 Harpagifer bispinis 以及深海鳕 Austrolycus depressiceps。研究人员在乌斯怀亚湾附近捕获了这些个体。实验温度分别为 10°C、4°C 和 2°C,分别对应夏季、冬季和极冬季。使用个体呼吸测量室和量热技术。提供了不同的食物:甲壳类动物(等足目和端足目)和阿根廷无须鳕肌肉。对喂食等足目动物的物种进行了种间分析。饭后会迅速增加耗氧量,表明存在典型的 SDA 反应。在低温下,SDA 的持续时间更长。在过程本身中消耗的额外能量,以及当表示为消耗食物能量的百分比时,随着温度的降低而减少。喂食等足目动物的 H. bispinis 的 SDA 系数更高。我们认为,温度降低会降低代谢成本并延长 SDA。节能机制可能是一种进化优势,可以最大限度地降低在亚南极低温下生活的能量成本。根据本研究和文献数据,提出了一种用于 SDA 和温度持续时间的指数衰减通用模型。