Physiol Biochem Zool. 2021 Sep-Oct;94(5):338-352. doi: 10.1086/716042.
AbstractBasal metabolic rate (BMR) represents the lowest level of aerobic metabolism in a resting, postabsorptive endotherm as measured within the thermoneutral zone. By contrast, maximal metabolic rate ([Formula: see text]max) reflects the upper limit of aerobic metabolism achieved during intensive exercise. As BMR and [Formula: see text]max define the boundaries of the possible levels of aerobic metabolism expressed by a normothermic individual, a key question is whether BMR and [Formula: see text]max are correlated. In the present study, we took repeated paired measurements of thermoneutral resting metabolic rate (RMR) and [Formula: see text]max on 165 white-footed mice (). Over a single summer (May-October), repeatability ( ± SE) was low but statistically significant ([Formula: see text]) for both RMR and [Formula: see text]max ([Formula: see text] for RMR; [Formula: see text] for [Formula: see text]max). Willingness to run during the forced-exercise trials was also significantly repeatable ([Formula: see text]). At the residual level (within individual), RMR and [Formula: see text]max tended to be positively correlated ([Formula: see text], [Formula: see text]), suggesting the presence of correlated phenotypic plasticity. By contrast, RMR and [Formula: see text]max were significantly negatively correlated at the among-individual level ([Formula: see text]). To the extent that variation in RMR reflects variation in BMR, the negative among-individual correlation does not corroborate the idea that a costly metabolic machinery is needed to support a high [Formula: see text]max. Future research should investigate the (genetic) relationship between RMR (and BMR) and other energetically expensive behaviors and activities to better understand how energy is allocated within individuals.
摘要基础代谢率(BMR)代表在热中性区内休息、吸收后恒温动物的最低有氧代谢水平。相比之下,最大代谢率([Formula: see text]max)反映了在剧烈运动期间实现的有氧代谢的上限。由于 BMR 和 [Formula: see text]max 定义了恒温个体所能表达的有氧代谢水平的边界,一个关键问题是 BMR 和 [Formula: see text]max 是否相关。在本研究中,我们对 165 只白足鼠()进行了重复的热中性静息代谢率(RMR)和 [Formula: see text]max 的配对测量。在一个单一的夏季(5 月至 10 月),RMR 和 [Formula: see text]max 的可重复性(± SE)较低,但具有统计学意义([Formula: see text])(RMR 的 [Formula: see text];[Formula: see text]max 的 [Formula: see text])。在强制运动试验中,跑步的意愿也具有显著的可重复性([Formula: see text])。在个体内的剩余水平上,RMR 和 [Formula: see text]max 往往呈正相关([Formula: see text],[Formula: see text]),表明存在相关的表型可塑性。相比之下,RMR 和 [Formula: see text]max 在个体间水平上呈显著负相关([Formula: see text])。在 RMR 变化反映 BMR 变化的程度上,个体间的负相关并不支持需要昂贵的代谢机制来支持高 [Formula: see text]max 的观点。未来的研究应该调查 RMR(和 BMR)与其他高能耗行为和活动之间的(遗传)关系,以更好地理解个体内部如何分配能量。