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被毛隔热和环境温度对幼年西伯利亚仓鼠能量摄入和生长的影响。

Influence of pelage insulation and ambient temperature on energy intake and growth of juvenile Siberian hamsters.

机构信息

Department of Integrative Biology, University of California, Berkeley, CA 94720, USA.

出版信息

Physiol Behav. 2010 Oct 5;101(3):376-80. doi: 10.1016/j.physbeh.2010.07.001. Epub 2010 Jul 8.

Abstract

Both growth and thermoregulation are energetically costly, and many studies implicate an energetic tradeoff between them. Moreover, fur is known to ameliorate thermoregulatory costs in adult mammals, but its role in maintaining energy balance during growth is unclear. This study tested for an energetic tradeoff between growth and thermoregulation in juvenile Siberian hamsters (Phodopus sungorus) and the effect of an insulative pelage on intrinsic growth rate. Hamsters weaned at 18 days of age and left fully furred or deprived of all dorsal fur by shaving at 20 days of age, were housed at 10 degrees C or 23 degrees C. Body mass, length, and food consumption were measured until hamsters were 35 days old. Thermal challenge, whether by low ambient temperature or shaving, resulted in increased food intake and decreased efficiency at converting food into body mass. Body mass and length were not affected by the thermal challenges. These results suggest that there is no mandatory tradeoff between growth and thermoregulation in this species, particularly when food is in abundant supply. Although fur was not necessary for normal growth to proceed, it ameliorated energetic costs associated with thermoregulation, and may play a role in maintaining energy balance under conditions of limited food availability.

摘要

生长和体温调节都需要消耗大量的能量,许多研究表明它们之间存在能量权衡关系。此外,毛发被认为可以减轻成年哺乳动物的体温调节成本,但它在维持生长期间的能量平衡中的作用尚不清楚。本研究测试了幼年沙鼠(Phodopus sungorus)的生长和体温调节之间是否存在能量权衡关系,以及绝缘皮毛对内在生长率的影响。沙鼠在 18 天大时断奶,并在 20 天大时通过剃毛剥夺所有背部皮毛,然后在 10°C 或 23°C 下饲养。在 35 天大之前,测量体重、体长和食物摄入量。无论是通过环境温度低还是剃毛,都会导致食物摄入量增加和将食物转化为体重的效率降低。体温挑战对体重和体长没有影响。这些结果表明,在这个物种中,生长和体温调节之间没有强制性的权衡关系,尤其是在食物供应充足的情况下。尽管毛发对于正常生长的进行不是必需的,但它可以减轻与体温调节相关的能量成本,并且在食物供应有限的情况下可能在维持能量平衡方面发挥作用。

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