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Hibernation and daily torpor minimize mammalian extinctions

机译:冬眠和每天的酷刑减少了哺乳动物的灭绝

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Small mammals appear to be less vulnerable to extinction than large species, but the underlying reasons are poorly understood. Here, we provide evidence that almost all (93.5%) of 61 recently extinct mammal species were homeothermic, maintaining a constant high body temperature and thus energy expenditure, which demands a high intake of food, long foraging times, and thus exposure to predators. In contrast, only 6.5% of extinct mammals were likely heterothermic and employed multi-day torpor (hibernation) or daily torpor, even though torpor is widespread within more than half of all mammalian orders. Torpor is characterized by substantial reductions of body temperature and energy expenditure and enhances survival during adverse conditions by minimizing food and water requirements, and consequently reduces foraging requirements and exposure to predators. Moreover, because life span is generally longer in heterothermic mammals than in related homeotherms, heterotherms can employ a ‘sit-and-wait’ strategy to withstand adverse periods and then repopulate when circumstances improve. Thus, torpor is a crucial but hitherto unappreciated attribute of small mammals for avoiding extinction. Many opportunistic heterothermic species, because of their plastic energetic requirements, may also stand a better chance of future survival than homeothermic species in the face of greater climatic extremes and changes in environmental conditions caused by global warming. Keywords Energy expenditure - Foraging requirements - Survival rates - Global warming - Unpredictable climate Dedicated to the memory of Donald W. Thomas
机译:与大型物种相比,小型哺乳动物似乎更不容易灭绝,但是其根本原因却鲜为人知。在这里,我们提供的证据表明,在最近灭绝的61种哺乳动物中,几乎所有(93.5%)都是恒温动物,维持了恒定的高体温,因此保持了能量消耗,这需要大量摄入食物,长时间觅食并因此暴露于食肉动物。相比之下,尽管绝热的哺乳动物在所有哺乳动物订单中有超过一半的分布,但仅6.5%的绝种哺乳动物可能是异温的,并使用了多日的托普尔(冬眠)或每日托普尔。 Torpor的特点是大大降低了体温和能量消耗,并通过最大限度地减少食物和水的需求来提高了恶劣条件下的生存能力,因此减少了觅食的需求和与食肉动物的接触。而且,由于异热哺乳动物的寿命通常比相关的等温线更长,因此异种可以采用“静观其变”的策略来承受不利时期,然后在情况改善时重新繁殖。因此,对于避免灭绝,小哺乳动物是至关重要的但迄今为止尚未得到重视的属性。面对更大的气候极端因素和全球变暖导致的环境条件变化,许多机会性异热物种由于其塑性能的需求,也可能比同温物种具有更好的未来生存机会。关键词能源支出-觅食要求-成活率-全球变暖-不可预测的气候致敬Donald W. Thomas

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