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Adaptive thermoregulation during summer in two populations of an arid-zone passerine

机译:夏季两个干旱区雀形目种群的适应性温度调节

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Heterothermy plays an important role in lowering the costs of thermoregulation in endotherms by reducing water and energy requirements. We tested predictions that birds in arid habitats should express fine-scale variation in their thermoregulatory patterns as a function of prevailing climatic conditions. We assessed effects of air temperature (Tair) and water vapor pressure deficit (D) on body temperature (Tb) in free-living White-browed Sparrow-Weavers (Plocepasser mahali) during summer in two arid habitats in the Kalahari Desert, South Africa, using data from a dry period at a hot, desert site (n = 7 birds), and during a dry period (n=4 birds) and a wet period (n=5 birds) at a milder, semi-desert site. The desert birds maintained a significantly higher set-point Tb (41.5° ± 0.2°C, mean ° SD) than semi-desert birds (40.2° ± 0.2°C). During the warmest part of day (12:00-18:00 hours), Tb increased significantly during periods of high Tair and/or high humidity, and mean and maximum Tb were up to 1.48 and 2.3°C, respectively, above normal levels. However, as Tair increased, birds at the desert site maintained Tb at or below set-point levels for a greater proportion of the time than birds at the semi-desert site. Birds at the desert site also expressed a greater magnitude of daily heterothermy (heterothermy index, HI = 2.4° ± 0.3°C, mean ° SD) than birds at the semi-desert site: the latter population showed a greater magnitude of heterothermy during a dry period (HI = 2.1° ± 0.3°C) than during a wet period (HI = 1.6° ± 0.2°C). Birds continued foraging throughout the warmest part of the day, despite the fact that heat dissipation (percentage of time spent panting and wing-spreading) increased significantly with increasing Tair. Our findings reveal that populations can vary in their thermoregulatory responses in both space and time and suggest that small changes in Tair can have significant effects on thermoregulation in free-ranging desert birds, even when Tair < Tb. These data have important implications for assessing vulnerability of species to climate change, suggesting that sensitivity should be assessed at the population, rather than species, level.
机译:异源热通过降低水和能源的需求,在降低吸热中的温度调节成本方面起着重要作用。我们测试了以下预测:干旱栖息地的鸟类应根据主要气候条件在其温度调节模式中表现出细微的变化。我们评估了夏季在南非卡拉哈里沙漠的两个干旱生境中,自由生活的白眉麻雀(Plocepasser mahali)的气温(Tair)和水蒸气压力亏缺(D)对体温(Tb)的影响。 ,使用来自炎热,沙漠地区(n = 7羽)的干旱时期,干燥时期(n = 4羽)和潮湿时期(温和半沙漠)的数据(n = 5羽)的数据。沙漠鸟类比半沙漠鸟类(40.2°±0.2°C)的设定点Tb(41.5°±0.2°C,平均°SD)明显更高。在一天中最温暖的部分(12:00-18:00),Tb在较高的Tair和/或高湿度期间显着增加,并且平均Tb和最大Tb分别比正常水平高出1.48和2.3°C。 。但是,随着Tair的增加,与半沙漠地区的鸟类相比,沙漠地区的鸟类将Tb维持在设定点水平或以下的时间更长。与半沙漠地区的鸟类相比,沙漠地区的鸟类还表现出更高的日均热度(体温指数,HI = 2.4°±0.3°C,平均°SD):后者在半干旱地区表现出更大的异源性。干燥期(HI = 2.1°±0.3°C)比潮湿期(HI = 1.6°±0.2°C)高。尽管散热量(花在气喘和机翼伸展上的时间所占的百分比)随着Tair的增加而显着增加,但在一天中最温暖的部分仍继续觅食。我们的发现表明,种群在时空上的温度调节反应会有所不同,这表明即使在Tair

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