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首页> 外文期刊>The Journal of Experimental Biology >Developmental plasticity of physiology and morphology in diet-restricted European shag nestlings (Phalacrocorax aristotelis)
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Developmental plasticity of physiology and morphology in diet-restricted European shag nestlings (Phalacrocorax aristotelis)

机译:限制饮食的欧洲粗毛雏鸟(Phalacrocorax aristotelis)的生理和形态发育发育可塑性

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Growing animals may exhibit developmental plasticity as an adaptation to variability in the environmental conditions during development. We examined physiological and morphological responses to short-term food shortage of 12-16-day-old European shag nestlings kept under laboratory conditions. After 4 days on a weight maintenance diet, the resting metabolic rate (RMR) of diet-restricted nestlings was 36.5% lower compared with control fed nestlings, after controlling for body mass. This response was accompanied by a reduction in body temperature (T(b)) and by reductions in the size of several visceral organs, muscles and lipid stores, while the overall structural growth was maintained almost in line with the age-specific growth rate of controls. Hence, the pattern of energy allocation reflected a very high priority to structural growth at the expense of visceral organs, lipid deposits and muscles. The reduced T(b) and size of the liver served as important physiological processes behind the observed reductions in RMR. We discuss the possible adaptive significance of this differential developmental plasticity during temporal food shortage. This is the first study of avian developmental plasticity to report substantial energy saving in combination with a high structural growth rate.
机译:生长中的动物可能表现出发育可塑性,以适应发育过程中环境条件的变化。我们检查了在实验室条件下饲养的12-16天大的欧洲粗毛雏鸭对短期食物短缺的生理和形态反应。在控制体重后,维持体重饮食4天后,饮食控制的雏鸟的静息代谢率(RMR)与对照组的雏鸟相比降低了36.5%。这种反应伴随着体温(T(b))的降低以及几个内脏器官,肌肉和脂质存储体的大小的减少,而总体结构的增长几乎保持了与特定年龄段的增长率相同的水平。控制。因此,能量分配模式反映了以内脏器官,脂质沉积物和肌肉为代价的结构增长的高度优先。降低的T(b)和肝脏大小是观察到的RMR降低的重要生理过程。我们讨论了暂时性食物短缺期间这种差异发育可塑性的可能适应意义。这是第一项关于鸟类发育可塑性的研究,报告其大量节能并结合了高结构增长率。

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