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Thermoregulation in three species of Afrotropical subterranean mole-rats (Rodentia: Bathyergidae) from Zambia and Angola and scaling within the genusCryptomys

✍ Scribed by N. C. Bennett; G. H. Aguilar; J. U. M. Jarvis; C. G. Faulkes


Publisher
Springer-Verlag
Year
1994
Tongue
English
Weight
607 KB
Volume
97
Category
Article
ISSN
0029-8549

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✦ Synopsis


The thermoregulatory characteristics of three species of Cryptomys from Zambia and Angola are examined and, together with published data on four other species of Cryptomys from southern Africa, used to determine whether scaling occurs in this genus of subterranean rodents. The thermoregulatory properties of acclimated giant Zambian mole-rats, Cryptomys mechowi ([Formula: see text]=267 g), Angolan mole-rats, Cryptomys bocagei ([Formula: see text]=94 g) and Zambian common mole-rats Cryptomys hottentotus amatus ([Formula: see text]=77 g) are as follows. Mean resting metabolic rates (RMRs) within the respective thermoneutral zones were 0.60±0.08 cm O g h (n=12) for C. mechowi; 0.74±0.06 cm O g h (n=8) for C. bocagei and 0.63±0.06 cmO g h (n=21) for C. h. amatus. The thermoneutral zones (TNZs) of all three species are narrow: 29-30°C for C. mechowi; 31.5-32.5°C for C. bocagei and 28-32° C for C. h. amatus. The increase in mean RMR at the lowest temperatures tested (15° C for C. mechowi, 18° C for C. bocagei and C. h. amatus) was 2.35, 2.2 and 3.82 times their RMR in the TNZ respectively. Body temperatures are low, 34±0.53° C (n=24) for C. mechowi, 33.7±0.32° C (n=20) for C. bocagei and 33.8±0.43° C (n=40) for C. h amatus. At the lower limit of thermoneutrality, conductances are 0.09±0.01 cm O g h °C (n=30) in C. mechowi; 0.12±0.01 cm O g h °C (n=20) in C. bocagei and 0.12±0.03 cm O g h °C (n=32) in C. h. amatus. The range in mean body mass among the seven species of Cryptomys examined for scaling was 60 g (C. darlingi) to 267 g (C. mechowi). There is no clear relationship between RMR within the TNZ and body mass. The resultant relationship is represented by the power curve RMR=2.45 mass.