Perga M E, Gerdeaux D
Station d'Hydrobiologie Lacustre, INRA, 75, Av. de Corzent B.P. 511, 74203, Thonon les Bains Cedex, France.
Oecologia. 2005 Aug;144(4):598-606. doi: 10.1007/s00442-005-0069-5. Epub 2005 May 11.
Isotope turnover in muscle of ectotherms depends primarily on growth rather than on metabolic replacement. Ectotherms, such as fish, have a discontinuous pattern of growth over the year, so the isotopic signature of muscle (delta13C and delta15N) may only reflect food consumed during periods of growth. In contrast, the liver is a regulatory tissue, with a continuous protein turnover. Therefore, the isotopic composition of liver should respond year round to changes in the isotopic signature of food sources. Therefore, we predicted that (1) Whitefish in Lake Geneva would have larger seasonal variation in the isotopic variation of the liver compared to that of the muscle tissue, and (2) the isotope composition of fish muscle would reflect a long-term image of the isotope composition of the food consumed only throughout the growth period. To test these expectations, we compared the isotope compositions of Whitefish muscle, liver and food in a 20-month study. We found that the seasonal amplitude of isotope variation was two to three times higher in liver compared to muscle tissue. During the autumn and winter, when growth was limited, only the isotopic signature of liver responded to changes in the isotope composition of the food sources. The delta13C and delta15N of muscle tissue only reflected the food consumed during the spring and summer growth period.
变温动物肌肉中的同位素周转率主要取决于生长,而非代谢更替。变温动物,如鱼类,一年中的生长模式是不连续的,所以肌肉的同位素特征(δ13C和δ15N)可能仅反映生长期间所消耗的食物。相比之下,肝脏是一个具有连续蛋白质周转的调节组织。因此,肝脏的同位素组成应全年对食物来源的同位素特征变化做出反应。因此,我们预测:(1)与肌肉组织相比,日内瓦湖中的白鲑肝脏的同位素变化的季节性差异会更大;(2)鱼类肌肉的同位素组成仅会反映整个生长期间所消耗食物的同位素组成的长期情况。为了验证这些预期,我们在一项为期20个月的研究中比较了白鲑肌肉、肝脏和食物的同位素组成。我们发现,肝脏中同位素变化的季节性幅度比肌肉组织高两到三倍。在秋季和冬季,当生长受限的时候,只有肝脏的同位素特征会对食物来源的同位素组成变化做出反应。肌肉组织的δ13C和δ15N仅反映春季和夏季生长期间所消耗的食物。