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Microrefuges and the occurrence of thermal specialists: implications for wildlife persistence amidst changing temperatures

机译:微保护区和热学专家的出现:温度变化对野生生物持久性的影响

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BackgroundContemporary climate change is affecting nearly all biomes, causing shifts in animal distributions, phenology, and persistence. Favorable microclimates may buffer organisms against rapid changes in climate, thereby allowing time for populations to adapt. The degree to which microclimates facilitate the local persistence of climate-sensitive species, however, is largely an open question. We addressed the importance of microrefuges in mammalian thermal specialists, using the American pika ( Ochotona princeps ) as a model organism. Pikas are sensitive to ambient temperatures, and are active year-round in the alpine where conditions are highly variable. We tested four hypotheses about the relationship between microrefuges and pika occurrence: 1) Local-habitat Hypothesis (local-habitat conditions are paramount, regardless of microrefuge); 2) Surface-temperature Hypothesis (surrounding temperatures, unmoderated by microrefuge, best predict occurrence); 3) Interstitial-temperature Hypothesis (temperatures within microrefuges best predict occurrence), and 4) Microrefuge Hypothesis (the degree to which microrefuges moderate the surrounding temperature facilitates occurrence, regardless of other habitat characteristics). We examined pika occurrence at 146 sites across an elevational gradient. We quantified pika presence, physiographic habitat characteristics and forage availability at each site, and deployed paired temperature loggers at a subset of sites to measure surface and subterranean temperatures.ResultsWe found strong support for the Microrefuge Hypothesis. Pikas were more likely to occur at sites where the subsurface environment substantially moderated surface temperatures, especially during the warm season. Microrefugium was the strongest predictor of pika occurrence, independent of other critical habitat characteristics, such as forage availability.ConclusionsBy modulating surface temperatures, microrefuges may strongly influence where temperature-limited animals persist in rapidly warming environments. As climate change continues to manifest, efforts to understand the changing dynamics of animal-habitat relationships will be enhanced by considering the quality of microrefuges.
机译:背景技术当代的气候变化几乎影响到所有生物群落,导致动物分布,物候和持久性的变化。有利的小气候可能会缓冲生物抵御气候的快速变化,从而使人们有时间适应气候变化。但是,小气候在多大程度上促进了对气候敏感物种在当地的持久存在,在很大程度上是一个悬而未决的问题。我们将美洲皮卡(Ochotona princeps)用作模型生物,从而解决了哺乳动物热学专家中微型避难所的重要性。皮卡犬对环境温度敏感,在条件多变的高山地区常年活跃。我们测试了关于微庇护所和皮卡发生之间关系的四个假设:1)本地栖息地假说(无论微庇护所如何,本地栖息地条件都是最重要的); 2)表面温度假说(周围温度,不受避难所限制,最能预测发生情况); 3)间隙温度假说(微庇护所内的温度最能预测发生),以及4)微庇护假说(微庇护所缓和周围温度的程度有利于发生,而与其他栖息地特征无关)。我们检查了海拔梯度上146个地点的皮卡事件。我们量化了每个地点的鼠兔活体存在,生理生境特征和草料可用性,并在一部分地点部署了成对的温度记录器以测量地表和地下温度。结果我们发现了对微庇护假说的大力支持。在地下环境充分缓和了地表温度的地方,尤其是在温暖季节,更容易发生鼠兔。微庇护所是鼠兔发生的最强预测因子,与其他重要的栖息地特征(例如草料可利用性)无关。结论通过调节地表温度,微庇护所可能强烈影响温度受限的动物在快速变暖的环境中所处的位置。随着气候变化的继续显现,通过考虑微型庇护所的质量,人们将更加努力地了解动物与人居关系的动态变化。

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