Bennett N C, Aguilar G H, Jarvis J U M, Faulkes C G
Department of Zoology, University of Cape Town, Rondebosch, 7700, Cape Town, RSA.
Institute of Zoology, Regent's Park, NW1 4RY, London, UK.
Oecologia. 1994 Mar;97(2):222-227. doi: 10.1007/BF00323153.
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.
对来自赞比亚和安哥拉的三种隐鼠属动物的体温调节特征进行了研究,并结合已发表的关于来自南部非洲的其他四种隐鼠属动物的数据,以确定这种地下啮齿动物属是否存在异速生长现象。对适应环境的巨型赞比亚鼹形鼠(Cryptomys mechowi,[公式:见正文] = 267克)、安哥拉鼹形鼠(Cryptomys bocagei,[公式:见正文] = 94克)和赞比亚普通鼹形鼠(Cryptomys hottentotus amatus,[公式:见正文] = 77克)的体温调节特性如下。在各自的热中性区内,C. mechowi的平均静息代谢率(RMRs)为0.60±0.08厘米³氧气/克·小时(n = 12);C. bocagei为0.74±0.06厘米³氧气/克·小时(n = 8),C. h. amatus为0.63±0.06厘米³氧气/克·小时(n = 21)。这三个物种的热中性区(TNZs)都很窄:C. mechowi为29 - 30°C;C. bocagei为31.5 - 32.5°C,C. h. amatus为28 - 32°C。在测试的最低温度下(C. mechowi为15°C,C. bocagei和C. h. amatus为18°C),平均RMR的增加分别是它们在热中性区RMR的2.35倍、2.2倍和3.82倍。体温较低,C. mechowi为34±0.53°C(n = 24),C. bocagei为33.7±0.32°C(n = 20),C. h amatus为33.8±0.43°C(n = 40)。在热中性区下限,C. mechowi的传导率为0.09±0.01厘米³氧气/克·小时·°C(n = 30);C. bocagei为0.12±0.01厘米³氧气/克·小时·°C(n = 20),C. h. amatus为0.12±0.03厘米³氧气/克·小时·°C(n = 32)。在研究异速生长的七种隐鼠属物种中,平均体重范围为60克(C. darlingi)至267克(C. mechowi)。热中性区内的RMR与体重之间没有明显关系。得到的关系由幂曲线RMR = 2.45×体重表示。