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首页> 外文期刊>The Journal of Experimental Biology >Microclimate buffering and thermal tolerance across elevations in a tropical butterfly
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Microclimate buffering and thermal tolerance across elevations in a tropical butterfly

机译:在热带蝴蝶中的微节缓冲和热容差

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Microclimatic variability in tropical forests plays a key role in shaping species distributions and their ability to cope with environmental change, especially for ectotherms. Nonetheless, currently available climatic datasets lack data from the forest interior and, furthermore, our knowledge of thermal tolerance among tropical ectotherms is limited. We therefore studied natural variation in the microclimate experienced by tropical butterflies in the genus Heliconius across their Andean range in a single year. We found that the forest strongly buffers temperature and humidity in the understorey, especially in the lowlands, where temperatures are more extreme. There were systematic differences between our yearly records and macroclimate databases (WorldClim2), with lower interpolated minimum temperatures and maximum temperatures higher than expected. We then assessed thermal tolerance of 10 Heliconius butterfly species in the wild and found that populations at high elevations had significantly lower heat tolerance than those at lower elevations. However, when we reared populations of the widespread H. erato from high and low elevations in a common-garden environment, the difference in heat tolerance across elevations was reduced, indicating plasticity in this trait. Microclimate buffering is not currently captured in publicly available datasets, but could be crucial for enabling upland shifting of species sensitive to heat such as highland Heliconius. Plasticity in thermal tolerance may alleviate the effects of global warming on some widespread ectotherm species, but more research is needed to understand the long-term consequences of plasticity on populations and species.
机译:热带森林中的微凸型变异性在塑造物种分布和它们应对环境变化的能力方面发挥着关键作用,特别是对于ectotherms。尽管如此,目前可用的气候数据集缺乏来自森林内部的数据,而且,我们对热带异常的热耐受的知识有限。因此,我们研究了在一年中,他们的Andean系列中热带蝴蝶在Heliconius中的热带蝴蝶所经历的自然变化。我们发现森林强烈地缓冲了温度和湿度,特别是在低地,温度更加极端。我们的年度记录和宏观流动数据库(WorldClim2)之间存在系统差异,内插的最小温度较低,最高温度高于预期。然后,我们在野外评估了10 Heliconius蝴蝶物种的热耐受性,发现高凸起的群体显着降低了耐热性低于较低升高的耐热性。然而,当我们从共同园区环境中饲养广泛和低海拔的广泛普遍存在的人口时,抬高升高的耐热性差异,表明该特征中的可塑性。目前没有在公开的数据集中捕获微节缓冲,但对于使高地转移对高地Heliconius等敏感的物种来说,可能是至关重要的。热耐受的可塑性可能减轻全球变暖对一些普遍的异调物种的影响,但需要更多的研究来了解植物和物种的可塑性的长期后果。

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