首页> 外文期刊>The Journal of Experimental Biology >Summit metabolism and metabolic expansibility in Wahlberg's epauletted fruit bats (Epomophorus wahlbergi): seasonal acclimatisation and effects of captivity
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Summit metabolism and metabolic expansibility in Wahlberg's epauletted fruit bats (Epomophorus wahlbergi): seasonal acclimatisation and effects of captivity

机译:Wahlberg epa脚的果蝠(Epomophorus wahlbergi)的顶峰代谢和代谢可扩展性:季节性适应和人工饲养的影响

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Summit metabolism (M-sum), the maximum rate of resting metabolic thermogenesis, has been found to be broadly correlated with climatic variables and the use of heterothermy in some endotherms. Far less is known about Msum and metabolic expansibility [ME, the ratio of Msum to basal metabolic rate (BMR)] in bats compared with many other endotherm taxa. We measured BMR and Msum during winter and summer in captive and wild populations of a pteropodid from the southern subtropics, Wahlberg's epauletted fruit bat (Epomophorus wahlbergi) in Pretoria, South Africa. The Msum of fruit bats ranged from 5.178 +/- 0.611 W (captive, summer) to 6.006 +/- 0.890 W (captive, winter), and did not vary significantly between seasons. In contrast, BMR decreased by 17-25% in winter. The combination of seasonally stable Msum but flexible BMR resulted in ME being significantly higher in winter than in summer, ranging from 7.24 +/- 1.49 (wild, summer) to 13.11 +/- 2.14 (captive, winter). The latter value is well above the typical mammalian range. Moreover, both Msum and ME were significantly higher in captive bats than in wild individuals; we speculate this represents a phenotypic response to a reduction in exercise-associated heat production while in captivity. Our data for E. wahlbergi, combined with those currently available for other chiropterans, reveal that Msum in bats is highly variable compared with allometrically expected values for other mammals.
机译:最高峰代谢(M-sum),即静止代谢热生成的最大速率,已发现与气候变量和在某些吸热中使用异热作用广泛相关。与许多其他吸热类群相比,关于蝙蝠中Msum和代谢扩展性[ME,Msum与基础代谢率(BMR)的比率]知之甚少。我们在冬季和夏季测量了来自南部亚热带的翼足类(Palopodod)的圈养和野生种群中的BMR和Msum,这是南非比勒陀利亚的Wahlberg坟墓的蝙蝠(Epomophorus wahlbergi)。蝙蝠的Msum在5.178 +/- 0.611 W(俘虏,夏季)到6.006 +/- 0.890 W(俘虏,冬季)之间,并且在各个季节之间变化不大。相比之下,冬季的BMR下降了17-25%。季节性稳定的Msum和灵活的BMR相结合,导致冬季的ME明显高于夏季,范围从7.24 +/- 1.49(野生,夏季)到13.11 +/- 2.14(俘虏,冬季)。后者的值远高于典型的哺乳动物范围。此外,圈养蝙蝠的Msum和ME均显着高于野生个体。我们推测这代表了在囚禁时对运动相关热量产生减少的表型反应。我们对华氏大肠杆菌的数据,再加上目前可用于其他翼手动物的数据,表明与其他哺乳动物的异速测量期望值相比,蝙蝠中的Msum高度可变。

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