裸鼹鼠(Heterocephalus glaber)和大鼠(Fukomys damarensis)亚极大运动的代谢消耗。

IF 2.8 2区 生物学 Q2 BIOLOGY
Journal of Experimental Biology Pub Date : 2025-06-15 Epub Date: 2025-06-25 DOI:10.1242/jeb.249875
Jack E Thirkell, Nigel C Bennett, Daniel W Hart, Chris G Faulkes, Monica A Daley, Steven J Portugal
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引用次数: 0

摘要

尽管对地下啮齿类动物的生理学进行了广泛的研究,但相对而言,与它们的运动能量学相关的能量学记录较少。与挖洞相关的能量消耗是巨大的,这在一定程度上解释了为什么地下物种经常在几代人之间保持它们的洞穴和隧道。事实上,5只非洲鼹鼠的挖掘代谢率已被确定为比它们各自的静息代谢率高3到5倍,但非挖掘运动(即步行)的能量消耗尚未被记录。在大多数地下物种中,挖掘往往会导致前肢和牙齿的专业化,这可能会显著影响与非挖掘运动相关的能量消耗。与许多同等大小的挖洞和挖隧道的哺乳动物不同,非洲鼹鼠的不同之处在于,至少从表面上看,它们的前肢和后肢几乎完全相同。本研究探讨了与持续亚最大运动(即快速步行;在两种非洲鼹鼠(F. damarensis和H. glaber)中进行10cm秒1),利用开放流呼吸仪和小型动物跑步机。达马弧菌的平均运动能率比静息代谢率高近1倍(91.4%),比格雷伯弧菌高2倍(203.2%)。glaber的净运输成本(ml O2 kg-1 m-1)总体上高于F. damarensis(2.4±0.5)。在挖掘的肢体专业化和经济运动之间可能存在一种权衡,因此对于大多数专为地下生活的物种来说,运动代表着一种能量投资。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Metabolic expenditure of submaximal locomotion in naked mole-rats (Heterocephalus glaber) and Damaraland mole-rats (Fukomys damarensis).

Despite extensive studies on the physiology of subterranean rodents, there is comparatively little work documenting the energetics specifically associated with their locomotory energetics. The energetic cost associated with burrowing is great and, in part, explains why subterranean species often maintain their burrows and tunnels across generations. Indeed, the digging metabolic rate of five African mole-rats has been determined to be between three and five times higher than their respective resting metabolic rate, yet the energetic cost of non-digging locomotion (i.e. walking) has not been recorded. Digging in most subterranean species tends to lead to specialisation of the forelimbs and teeth, which may significantly affect the energetic cost associated with non-digging locomotion. Unlike many comparably sized burrowing and tunnelling mammals, African mole-rats appear, superficially at least, to have almost identical forelimbs and hindlimbs. This study explored the locomotory energetics associated with sustained submaximal locomotion (i.e. fast walking; 10 cm s-1) in two African mole-rat species (Fukomys damarensis and Heterocephalus glaber), utilising open-flow respirometry and a small animal treadmill. The mean locomotory energetic rate for F. damarensis was a near 1-fold increase (91.4%) above resting metabolic rate and a 2-fold increase (203.2%) for H. glaber. Net cost of transport was higher overall for H. glaber (2.9±0.6 ml O2 kg-1 m-1) than for F. damarensis (2.4±0.5 ml O2 kg-1 m-1). A trade-off likely exists between limb specialisation for digging and economic locomotion, and thus for most obligately subterranean species, locomotion represents an energetic investment.

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来源期刊
CiteScore
5.50
自引率
10.70%
发文量
494
审稿时长
1 months
期刊介绍: Journal of Experimental Biology is the leading primary research journal in comparative physiology and publishes papers on the form and function of living organisms at all levels of biological organisation, from the molecular and subcellular to the integrated whole animal.
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