太阳辐射改变了沙漠蜜蜂的热平衡和体温调节。

IF 2.8 2区 生物学 Q2 BIOLOGY Journal of Experimental Biology Pub Date : 2025-01-01 Epub Date: 2025-01-07 DOI:10.1242/jeb.247335
Meredith G Johnson, Meghan Barrett, Jon F Harrison
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引用次数: 0

摘要

太阳辐射对陆地动物来说是一个重要的环境变量,但其对大型飞行昆虫热平衡的影响却鲜有研究。沙漠蜜蜂通过授粉服务对生态系统功能至关重要,它们暴露在高辐射负荷下。我们评估了太阳辐射在沙漠飞蜂Centris pallida热平衡中的作用,方法是在16至37 ˚C气温的阴天和晴天条件下,计算个体在呼吸计中的热预算,并比较大、小雄蜂和雌蜂的形态。太阳辐射占平均总得热量的 43% 至 54%。在阳光下飞行的蜜蜂胸部温度比在阴凉处飞行的蜜蜂高 1.7 ˚C,只有很小一部分入射辐射储存在身体组织中。在大多数情况下,在阳光下飞行的蜜蜂的飞行代谢率并没有受到抑制,但蒸发失水率却增加了一倍多。对太阳辐射最显著的反应是对流的增加,对流传导率增加了一倍多,从而在保存体内水分的同时实现了体温调节。在大形态的雄性和雌性中,阳光下对流传导的增加是通过增加胸部到腹部的热传导来实现的。由于对流在体温接近气温时受到限制,太阳辐射加上气温升高可能会使内热飞蜂达到一个临界点,在这个临界点上,为了生存,必须增加非持续性蒸发。
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Solar radiation alters heat balance and thermoregulation in a flying desert bee.

Solar radiation is an important environmental variable for terrestrial animals, but its impact on the heat balance of large flying insects has been poorly studied. Desert bees are critical to ecosystem function through their pollination services, and are exposed to high radiant loads. We assessed the role of solar radiation in the heat balance of flying desert Centris pallida bees by calculating heat budgets for individuals in a respirometer in shaded versus sunny conditions from 16 to 37°C air temperatures, comparing the large and small male morphs and females. Solar radiation was responsible for 43 to 54% of mean total heat gain. Bees flying in the sun had thorax temperatures 1.7°C warmer than bees flying in the shade, storing a very small fraction of incident radiation in body tissues. In most cases, flight metabolic rate was not suppressed for bees flying in the sun, but evaporative water loss rates more than doubled. The most dramatic response to solar radiation was an increase in convection, mediated by a more than doubling of convective conductance, allowing thermoregulation while conserving body water. In large morph males and females, the increased convective conductance in the sun was mediated by increased heat transfer from the thorax to abdomen. Because convection is limited as body temperatures approach air temperatures, solar radiation combined with warming air temperatures may cause endothermic flying bees to reach a tipping point at which increases in non-sustainable evaporation are necessary for survival.

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来源期刊
CiteScore
5.50
自引率
10.70%
发文量
494
审稿时长
1 months
期刊介绍: Journal of Experimental Biology is the leading primary research journal in comparative physiology and publishes papers on the form and function of living organisms at all levels of biological organisation, from the molecular and subcellular to the integrated whole animal.
期刊最新文献
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