首页> 美国卫生研究院文献>Proceedings of the Royal Society B: Biological Sciences >Temperature- versus precipitation-limitation shape local temperature tolerance in a Holarctic freshwater crustacean
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Temperature- versus precipitation-limitation shape local temperature tolerance in a Holarctic freshwater crustacean

机译:北极淡水甲壳类动物的温度与降水限制形状局部温度容限

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摘要

Species with wide geographical distributions are often adapted locally to the prevailing temperatures. To understand how they respond to ongoing climatic change, we must appreciate the interplay between temperature, seasonality and the organism's life cycle. The temperature experienced by many organisms results from an often-overlooked combination of climate and phenology. Summer-active (high latitude) populations are expected to adapt to local summer temperatures, but this is not expected for populations that outlive the summer in their dormant stage (low latitude, precipitation-limited). We recorded reproduction and survival in genotypes from 123 Holarctic populations of Daphnia magna during a multi-generation thermal ramp experiment. Genotypes from summer-active populations showed a positive relationship between heat tolerance and local summer temperature, whereas winter-active populations did not. These findings are consistent with the hypothesis that D. magna adapts to the local temperatures the animals experience during their planktonic phase. We conclude that predicting local temperature adaptation, in particular in the light of climate change, needs to consider the phenology of geographically wide-ranging species.
机译:具有广泛地理分布的物种通常会在当地适应当前的温度。要了解它们如何应对持续的气候变化,我们必须欣赏温度,季节性和有机体生命周期之间的相互作用。许多生物体经历的温度是气候和物候学经常被忽视的结果。预计夏季活跃(高纬度)人口会适应当地的夏季温度,但是对于处于休眠期(低纬度,降水有限)的夏季而言,这不是预期的。在多代热梯度实验中,我们记录了来自大型蚤的123个嗜盐菌种群的基因型的繁殖和存活。来自夏季活动种群的基因型显示耐热性与当地夏季温度之间呈正相关,而冬季活动种群则没有。这些发现与假单胞菌适应动物浮游期所经历的局部温度这一假设相一致。我们得出结论,特别是根据气候变化,预测局部温度适应性需要考虑地理范围广泛的物种的物候。

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