Kovac Helmut, Stabentheiner Anton, Brodschneider Robert
Institute of Zoology, University of Graz, Universitätsplatz 2, 8010, Graz, Austria.
J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2015 Nov;201(11):1043-52. doi: 10.1007/s00359-015-1033-4. Epub 2015 Aug 19.
Vespine wasps (Vespula sp.) are endowed with a pronounced ability of endothermic heat production. To show how they balance energetics and thermoregulation under variable environmental conditions, we measured the body temperature and respiration of sucrose foragers (1.5 M, unlimited flow) under variable ambient temperature (T a = 20-35 °C) and solar radiation (20-570 W m(-2)). Results revealed a graduated balancing of metabolic efforts with thermoregulatory needs. The thoracic temperature in the shade depended on ambient temperature, increasing from ~37 to 39 °C. However, wasps used solar heat gain to regulate their thorax temperature at a rather high level at low T a (mean T thorax ~ 39 °C). Only at high T a they used solar heat to reduce their metabolic rate remarkably. A high body temperature accelerated the suction speed and shortened foraging time. As the costs of foraging strongly depended on duration, the efficiency could be significantly increased with a high body temperature. Heat gain from solar radiation enabled the wasps to enhance foraging efficiency at high ambient temperature (T a = 30 °C) by up to 63 %. The well-balanced change of economic strategies in response to environmental conditions minimized costs of foraging and optimized energetic efficiency.
胡蜂(胡蜂属)具有显著的产热能力。为了展示它们在变化的环境条件下如何平衡能量与体温调节,我们测量了在不同环境温度(Ta = 20 - 35°C)和太阳辐射(20 - 570 W m(-2))下,蔗糖采集蜂(1.5 M,无限制流量)的体温和呼吸情况。结果显示,代谢努力与体温调节需求之间存在渐进的平衡。阴凉处的胸部温度取决于环境温度,从约37°C升至39°C。然而,在低温环境下,胡蜂利用太阳热量获取将胸部温度调节在相当高的水平(平均胸部温度约39°C)。只有在高温环境下,它们才利用太阳热量显著降低代谢率。较高的体温加快了吸食速度并缩短了觅食时间。由于觅食成本强烈依赖于持续时间,较高的体温可显著提高效率。太阳辐射带来的热量获取使胡蜂在高环境温度(Ta = 30°C)下的觅食效率提高了63%。经济策略随环境条件的良好平衡变化将觅食成本降至最低,并优化了能量效率。