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首页> 外文期刊>The Journal of Experimental Biology >Maximal metabolic rates during voluntary exercise, forced exercise, and cold exposure in house mice selectively bred for high wheel-running
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Maximal metabolic rates during voluntary exercise, forced exercise, and cold exposure in house mice selectively bred for high wheel-running

机译:选择性饲养家养小鼠以提高车轮行驶速度的自愿运动,强迫运动和冷暴露期间的最大代谢率

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Selective breeding for high wheel-running activity has generated four lines of laboratory house mice (S lines) that run about 170% more than their control counterparts (C lines) on a daily basis, mostly because they run faster. We tested whether maximum aerobic metabolic rates (V(O2)max) have evolved in concert with wheel-running, using 48 females from generation 35. Voluntary activity and metabolic rates were measured on days 5+6 of wheel access (mimicking conditions during selection), using wheels enclosed in metabolic chambers. Following this, V(O2)max was measured twice on a motorized treadmill and twice during cold-exposure in a heliox atmosphere (He-O-2). Almost all measurements, except heliox V(O2)max, were significantly repeatable. After accounting for differences in body mass (S < C) and variation in age at testing, S and C did not differ in V-O2max during forced exercise or in heliox nor in maximal running speeds on the treadmill. However, running speeds and V-O2max during voluntary exercise were significantly higher in S lines. Nevertheless, S mice never voluntarily achieved the V-O2max elicited during their forced treadmill trials, suggesting that aerobic capacity per se is not limiting the evolution of even higher wheel-running speeds in these lines. Our results support the hypothesis that S mice have genetically higher motivation for wheel-running and they demonstrate that behavior can sometimes evolve independently of performance capacities. We also discuss the possible importance of domestication as a confounding factor to extrapolate results from this animal model to natural populations.
机译:高轮转活动的选择性育种已经产生了四只实验鼠(S系),它们每天比对照鼠(C系)多运行170%,这主要是因为它们运行得更快。我们测试了35名48岁女性的最大有氧代谢率(V(O2)max)是否与车轮行驶同步发展。在车轮进入的第5 + 6天(选择期间的模拟条件)测量了自愿活动和代谢率),使用封闭在新陈代谢室中的轮子。此后,在电动跑步机上两次测量V(O2)max,在氦氧混合气(He-O-2)中冷暴露期间两次测量V(O2)max。除了Heliox V(O2)max外,几乎所有测量都可以重复。在考虑了体重差异(S

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