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三种对水的依赖程度不同的非洲羚羊物种表现出相似的选择性脑冷却现象。

Three African antelope species with varying water dependencies exhibit similar selective brain cooling.

作者信息

Strauss W Maartin, Hetem Robyn S, Mitchell Duncan, Maloney Shane K, Meyer Leith C R, Fuller Andrea

机构信息

School of Physiology, Faculty of Health Sciences, University of the Witwatersrand, Johannesburg, South Africa.

Department of Environmental Sciences, University of South Africa, Johannesburg, South Africa.

出版信息

J Comp Physiol B. 2016 May;186(4):527-40. doi: 10.1007/s00360-016-0968-2. Epub 2016 Feb 26.

Abstract

The use of selective brain cooling, where warm arterial blood destined for the brain is cooled in the carotid rete via counter-current heat exchange when in close proximity to cooler venous blood, contributes to the conservation of body water. We simultaneously measured carotid blood and hypothalamic temperature in four gemsbok, five red hartebeest and six blue wildebeest to assess the extent to which these free-living animals, with varying water dependency, routinely rely on selective brain cooling. We investigated the hypothesis that innate differences in selective brain cooling exist in large, sympatric artiodactyls with varying water dependency. All three species used selective brain cooling, without any discernible differences in three selective brain cooling indices. GLMMs revealed no species differences in the threshold temperature for selective brain cooling (z = 0.79, P = 0.43), the magnitude (z = -0.51, P = 0.61), or the frequency of selective brain cooling use (z = -0.47, P = 0.64), after controlling for carotid blood temperature and black globe temperature. Comparison of anatomical attributes of the carotid retes of the three species revealed that the volume (F 2,9 = 5.54, P = 0.03) and height (F 2,9 = 5.43, P = 0.03) of the carotid rete, per kilogram body mass, were greater in the red hartebeest than in the blue wildebeest. Nevertheless, intraspecific variability in the magnitude, the frequency of use, and the threshold temperature for selective brain cooling exceeded any interspecific variability in the three indices of selective brain cooling. We conclude that the three species have similar underlying ability to make use of selective brain cooling in an environment with freely available water. It remains to be seen to what extent these three species would rely on selective brain cooling, as a water conservation mechanism, when challenged by aridity, a condition likely to become prevalent throughout much of southern Africa under future climate change scenarios.

摘要

选择性脑冷却的作用是,当温暖的动脉血靠近较凉的静脉血时,通过颈动脉网中的逆流热交换对流向大脑的动脉血进行冷却,这有助于保存身体水分。我们同时测量了4只南非大羚羊、5只红麋羚和6只黑尾牛羚的颈动脉血和下丘脑温度,以评估这些对水依赖程度不同的自由生活动物日常依赖选择性脑冷却的程度。我们研究了这样一个假设:在对水依赖程度不同的大型同域偶蹄动物中,存在选择性脑冷却的先天差异。所有三个物种都使用了选择性脑冷却,在三个选择性脑冷却指标上没有任何明显差异。广义线性混合模型显示,在控制了颈动脉血温和黑球温度后,三个物种在选择性脑冷却的阈值温度(z = 0.79,P = 0.43)、幅度(z = -0.51,P = 0.61)或使用选择性脑冷却的频率(z = -0.47,P = 0.64)上没有物种差异。对这三个物种颈动脉网的解剖学特征进行比较后发现,每千克体重的颈动脉网体积(F 2,9 = 5.54,P = 0.03)和高度(F 2,9 = 5.43,P = 0.03),红麋羚比黑尾牛羚更大。然而,选择性脑冷却的幅度、使用频率和阈值温度在种内的变异性超过了选择性脑冷却三个指标中的任何种间变异性。我们得出结论,在有自由可用水的环境中,这三个物种利用选择性脑冷却的潜在能力相似。在未来气候变化情景下,干旱可能在非洲南部大部分地区变得普遍,这三种物种在面临干旱时,作为一种节水机制,将在多大程度上依赖选择性脑冷却还有待观察。

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