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Tree-hugging koalas demonstrate a novel thermoregulatory mechanism for arboreal mammals

机译:树拥抱考拉展示了树栖哺乳动物的新型热调节机制

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How climate impacts organisms depends not only on their physiology, but also whether they can buffer themselves against climate variability via their behaviour. One of the way species can withstand hot temperatures is by seeking out cool microclimates, but only if their habitat provides such refugia. Here, we describe a novel thermoregulatory strategy in an arboreal mammal, the koala Phascolarctos cinereus. During hot weather, koalas enhanced conductive heat loss by seeking out and resting against tree trunks that were substantially cooler than ambient air temperature. Using a biophysical model of heat exchange, we show that this behaviour greatly reduces the amount of heat that must be lost via evaporative cooling, potentially increasing koala survival during extreme heat events. While it has long been known that internal temperatures of trees differ from ambient air temperatures, the relevance of this for arboreal and semi-arboreal mammals has not previously been explored. Our results highlight the important role of tree trunks as aboveground 'heat sinks', providing cool local microenvironments not only for koalas, but also for all tree-dwelling species.
机译:气候影响的气候如何不仅取决于他们的生理学,还取决于他们是否可以通过他们的行为缓冲气候变异性。这种种类的一种可以承受热温是通过寻求凉爽的微观亚麻盐,但只有他们的栖息地提供这种避难所。在这里,我们描述了Koala Phascolarctos interyus的树栖哺乳动物中的一种新型热调节策略。在炎热的天气期间,考拉通过寻找和靠在基本上冷却的树干而不是环境空气温度来增强导电热量损失。使用热交换的生物物理模型,我们表明这种行为大大减少了通过蒸发冷却必须损失的热量,可能在极端热事件期间潜在地增加考拉存活。虽然已经众所周知,树木的内部温度与环境空气温度不同,但以前尚未探讨这种树栖和半树栖哺乳动物的相关性。我们的结果突出了树干作为上面的“散热器”的重要作用,不仅为考拉而提供酷地方微环境,还提供所有树立居住的物种。

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