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寒冷气候蜥蜴的热敏感性及分布范围的重要性。

Thermal sensitivity of cold climate lizards and the importance of distributional ranges.

作者信息

Bonino Marcelo F, Moreno Azócar Débora L, Schulte James A, Abdala Cristian S, Cruz Félix B

机构信息

Laboratorio de Fotobiología, Instituto de Investigaciones en Biodiversidad y Medioambiente (INIBIOMA), CONICET-UNCOMA, Quintral 1250, Bariloche 8400, Río Negro, Argentina.

Laboratorio de Fotobiología, Instituto de Investigaciones en Biodiversidad y Medioambiente (INIBIOMA), CONICET-UNCOMA, Quintral 1250, Bariloche 8400, Río Negro, Argentina.

出版信息

Zoology (Jena). 2015 Aug;118(4):281-90. doi: 10.1016/j.zool.2015.03.001. Epub 2015 May 7.

Abstract

One of the fundamental goals in macroecology is to understand the relationship among species' geographic ranges, ecophysiology, and climate; however, the mechanisms underlying the distributional geographic patterns observed remain unknown for most organisms. In the case of ectotherms this is particularly important because the knowledge of these interactions may provide a robust framework for predicting the potential consequences of climate change in these organisms. Here we studied the relationship of thermal sensitivity and thermal tolerance in Patagonian lizards and their geographic ranges, proposing that species with wider distributions have broader plasticity and thermal tolerance. We predicted that lizard thermal physiology is related to the thermal characteristics of the environment. We also explored the presence of trade-offs of some thermal traits and evaluated the potential effects of a predicted scenario of climate change for these species. We examined sixteen species of Liolaemini lizards from Patagonia representing species with different geographic range sizes. We obtained thermal tolerance data and performance curves for each species in laboratory trials. We found evidence supporting the idea that higher physiological plasticity allows species to achieve broader distribution ranges compared to species with restricted distributions. We also found a trade-off between broad levels of plasticity and higher optimum temperatures of performance. Finally, results from contrasting performance curves against the highest environmental temperatures that lizards may face in a future scenario (year 2080) suggest that the activity of species occurring at high latitudes may be unaffected by predicted climatic changes.

摘要

宏观生态学的一个基本目标是了解物种地理分布范围、生态生理学和气候之间的关系;然而,对于大多数生物来说,观察到的分布地理模式背后的机制仍然未知。对于变温动物来说,这一点尤为重要,因为了解这些相互作用可能为预测气候变化对这些生物的潜在影响提供一个有力的框架。在这里,我们研究了巴塔哥尼亚蜥蜴的热敏感性和热耐受性与其地理分布范围之间的关系,提出分布范围更广的物种具有更大的可塑性和热耐受性。我们预测蜥蜴的热生理学与环境的热特征有关。我们还探讨了一些热性状的权衡取舍,并评估了预测的气候变化情景对这些物种的潜在影响。我们研究了来自巴塔哥尼亚的16种利奥蜥属蜥蜴,这些蜥蜴代表了具有不同地理分布范围大小的物种。我们在实验室试验中获得了每个物种的热耐受性数据和性能曲线。我们发现有证据支持这样一种观点,即与分布范围受限的物种相比,更高的生理可塑性使物种能够实现更广泛的分布范围。我们还发现了广泛的可塑性水平与更高的最佳性能温度之间的权衡。最后,将性能曲线与蜥蜴在未来情景(2080年)可能面临的最高环境温度进行对比的结果表明,高纬度地区物种的活动可能不受预测气候变化的影响。

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