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家短尾负鼠在冷暴露后运输成本增加:低效训练。

Cost of transport is increased after cold exposure in Monodelphis domestica: training for inefficiency.

作者信息

Schaeffer Paul J, Villarin Jason J, Pierotti David J, Kelly Daniel P, Lindstedt Stan L

机构信息

Department of Biological Sciences, Physiology and Functional Morphology Group, Northern Arizona University, Flagstaff, AZ 86011, USA.

出版信息

J Exp Biol. 2005 Aug;208(Pt 16):3159-67. doi: 10.1242/jeb.01703.

Abstract

Monodelphis domestica (Didelphidae: Marsupialia) lacks brown adipose tissue and thus relies on skeletal muscle as its primary thermogenic organ. Following cold exposure, the aerobic capacity of skeletal muscle in these animals is greatly increased. We investigated the effects of this plastic response to thermogenesis on locomotion and muscle mechanics. In cold-exposed animals, cost of transport was 15% higher than in controls but was unaffected by exercise training. Twitch kinetics in isolated semitendinosus muscles of cold-exposed animals were characteristic of slow-oxidative fiber types. Both time-to-peak tension and half-relaxation time were longer and maximal shortening velocity was slower following cold exposure compared to either thermoneutral controls or exercise-trained animals. Further, muscles from the cold-exposed animals had greater fatigue resistance than either control or exercise-trained animals, indicating greater oxidative capacity. Finally, we identified an uncoupling protein 3 homologue, whose gene expression was upregulated in skeletal muscle of cold-exposed Monodelphis domestica. Cold exposure provided a potent stimulus for muscle plasticity, driving a fast-to-slow transition more effectively than exercise training. However, linked to the dramatic shift in muscle properties is an equally dramatic increase in whole animal muscle energetics during locomotion, suggesting an uncoupled state, or 'training for inefficiency'.

摘要

家短尾负鼠(袋鼬科:有袋目)缺乏棕色脂肪组织,因此依赖骨骼肌作为其主要的产热器官。在暴露于寒冷环境后,这些动物骨骼肌的有氧能力大幅提高。我们研究了这种对产热的适应性反应对运动和肌肉力学的影响。在暴露于寒冷环境的动物中,运输成本比对照组高15%,但不受运动训练的影响。暴露于寒冷环境的动物分离出的半腱肌的抽搐动力学具有慢氧化纤维类型的特征。与处于热中性的对照组或经过运动训练的动物相比,暴露于寒冷环境后,达到峰值张力的时间和半松弛时间都更长,最大缩短速度更慢。此外,暴露于寒冷环境的动物的肌肉比对照组或经过运动训练的动物具有更强的抗疲劳能力,表明其氧化能力更强。最后,我们鉴定出一种解偶联蛋白3同源物,其基因表达在暴露于寒冷环境的家短尾负鼠的骨骼肌中上调。寒冷暴露为肌肉可塑性提供了强大的刺激,比运动训练更有效地驱动了从快肌纤维到慢肌纤维的转变。然而,与肌肉特性的巨大变化相关的是,在运动过程中整个动物肌肉能量消耗同样大幅增加,这表明处于一种解偶联状态,或者说是“低效训练”。

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