McCue M D, Bennett A F, Hicks J W
Department of Ecology and Evolutionary Biology, University of California, Irvine, 92697-2525, USA.
Physiol Biochem Zool. 2005 Mar-Apr;78(2):182-92. doi: 10.1086/427049. Epub 2005 Feb 25.
We quantified the specific dynamic action (SDA) resulting from the ingestion of various meal types in Burmese pythons (Python molurus) at 30 degrees C. Each snake was fed a series of experimental meals consisting of amino acid mixtures, simple proteins, simple or complex carbohydrates, or lipids as well as meals of whole animal tissue (chicken breast, beef suet, and mouse). Rates of oxygen consumption were measured for approximately 4 d after feeding, and the increment above standard metabolic rate was determined and compared to energy content of the meals. While food type (protein, carbohydrate, and lipid) had a general influence, SDA was highly dependent on meal composition (i.e., amino acid composition and carbohydrate structure). For chicken breast and simple carbohydrates, the SDA coefficient was approximately one-third the energetic content of the meal. Lard, suet, cellulose, and starch were not digested and did not produce measurable SDA. We conclude that the cost of de novo protein synthesis is an important component of SDA after ingestion of protein meals because (1) simple proteins, such as gelatin and collagen, did not stimulate levels of SDA attained after consumption of complete protein, (2) incomplete mixtures of amino acids failed to elicit the SDA of a complete mixture, and (3) the inhibition of de novo protein synthesis with the drug cycloheximide caused a more than 70% decrease in SDA. Stomach distension and mechanical digestion of intact prey did not cause measurable SDA.
我们对缅甸蟒(Python molurus)在30摄氏度下摄入各种类型食物后产生的特殊动力作用(SDA)进行了量化。每条蛇都被投喂了一系列实验性食物,包括氨基酸混合物、简单蛋白质、简单或复杂碳水化合物、脂质,以及全动物组织食物(鸡胸肉、牛脂和小鼠)。喂食后约4天测量耗氧率,确定高于标准代谢率的增加值,并与食物的能量含量进行比较。虽然食物类型(蛋白质、碳水化合物和脂质)有普遍影响,但SDA高度依赖于食物组成(即氨基酸组成和碳水化合物结构)。对于鸡胸肉和简单碳水化合物,SDA系数约为食物能量含量的三分之一。猪油、牛脂、纤维素和淀粉未被消化,也未产生可测量的SDA。我们得出结论,摄入蛋白质类食物后,从头合成蛋白质的成本是SDA的一个重要组成部分,因为(1)明胶和胶原蛋白等简单蛋白质不会刺激摄入完整蛋白质后达到的SDA水平,(2)氨基酸的不完全混合物无法引发完整混合物的SDA,(3)用药物放线菌酮抑制从头合成蛋白质会导致SDA下降超过70%。胃扩张和完整猎物的机械消化不会产生可测量的SDA。