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Maximum thermal tolerance trades off with chronic tolerance of high temperature in contrasting thermal populations of Radix balthica

机译:最大的热耐受性与苦参的热种群之间的权衡取舍

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Abstract Thermal adaptation theory predicts that thermal specialists evolve in environments with low temporal and high spatial thermal variation, whereas thermal generalists are favored in environments with high temporal and low spatial variation. The thermal environment of many organisms is predicted to change with globally increasing temperatures and thermal specialists are presumably at higher risk than thermal generalists. Here we investigated critical thermal maximum (CT max ) and preferred temperature ( T p ) in populations of the common pond snail ( Radix balthica ) originating from a small-scale system of geothermal springs in northern Iceland, where stable cold (ca. 7???°C) and warm (ca. 23???°C) habitats are connected with habitats following the seasonal thermal variation. Irrespective of thermal origin, we found a common T p for all populations, corresponding to the common temperature optimum ( T opt ) for fitness-related traits in these populations. Warm-origin snails had lowest CT max . As our previous studies have found higher chronic temperature tolerance in the warm populations, we suggest that there is a trade-off between high temperature tolerance and performance in other fitness components, including tolerance to chronic thermal stress. T p and CT max were positively correlated in warm-origin snails, suggesting a need to maintain a minimum ?¢????warming tolerance?¢???? (difference in CT max and habitat temperature) in warm environments. Our results highlight the importance of high mean temperature in shaping thermal performance curves.
机译:摘要热适应理论预测,热专家会在时间和空间变化较小的环境中发展,而热通才在时间和空间变化较小的环境中会受到青睐。预计许多生物的热环境会随着全球温度的升高而改变,并且热专家的风险可能要高于热专家。在这里,我们调查了常见池塘蜗牛(Radix balthica)种群的临界热最大值(CT max)和优选温度(T p),这些种群来自冰岛北部的小型地热温泉系统,在该地区稳定的寒冷(大约7?温度随温度变化而变化的环境与温暖的栖息地(约23°C)联系在一起。无论热源如何,我们都为所有人群找到了一个共同的T p,对应于这些人群中与健身相关的性状的共同的温度最优(T opt)。温暖的蜗牛的CT max最低。由于我们先前的研究发现温暖人群的慢性温度耐受性较高,因此我们建议在高温耐受性与其他适应性组件的性能(包括对慢性热应激的耐受性)之间进行权衡。 T p和CT max在温暖起源的蜗牛中呈正相关,这表明需要保持最低的“耐温性”。 (CT最大值和栖息地温度的差异)在温暖的环境中。我们的结果强调了在形成热性能曲线时高平均温度的重要性。

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