首页> 美国卫生研究院文献>Philosophical Transactions of the Royal Society B: Biological Sciences >Integrating phylogeography and physiology reveals divergence of thermal traits between central and peripheral lineages of tropical rainforest lizards
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Integrating phylogeography and physiology reveals divergence of thermal traits between central and peripheral lineages of tropical rainforest lizards

机译:综合的植物学和生理学揭示了热带雨林蜥蜴的中央和外围血统之间的热性状差异

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摘要

Tropical ectotherms are regarded as being especially threatened by global warming, but the extent to which populations vary in key thermal physiological traits is little known. In general, central and peripheral populations are most likely to differ where divergent selection pressures are un-opposed by gene flow. This leads to the prediction that persistent and long-isolated lineages in peripheral regions, as revealed by phylogeography, may differ physiologically from larger centrally located lineages. We test this prediction through comparative assays of critical thermal limits (minimum and maximum critical thermal limits, CTmin, CTmax) and optimal performance parameters (B80 and Topt) across central and peripheral lineages of three species of ground-dwelling skinks endemic to the rainforests of northeast Australia. Peripheral lineages show significantly increased optimal performance temperatures (Topt) relative to central populations as well as elevated CTmin, with the latter trait also inversely related to elevation. CTmax did not vary between central and peripheral lineages, but was higher in a forest edge species than in the forest interior species. The results suggest that long-isolated populations in peripheral rainforests harbour genotypes that confer resilience to future warming, emphasizing the need to protect these as well as larger central habitats.
机译:热带外热被认为特别受全球变暖的威胁,但是人们对主要热生理特征变化的程度知之甚少。总的来说,在基因选择不能抵抗不同选择压力的情况下,中央和外围群体最有可能发生差异。这导致了这样的预测,即通过系统学揭示的外围区域的持久性和长期分离的世系在生理上可能与较大的位于中心的世系有所不同。我们通过对三种热带雨林特有的居住于地面的石龙子的中心和外围世系的临界热极限(最小和最大临界热极限,CTmin,CTmax)和最佳性能参数(B80和Topt)进行比较分析来测试此预测东北澳大利亚。外围血统显示,相对于中心人群,最佳表现温度(Topt)显着增加,并且CTmin升高,后者的特征也与海拔高度成反比。 CTmax在中央谱系和外围谱系之间没有变化,但是在森林边缘物种中比在森林内部物种中更高。结果表明,外围雨林中长期孤立的种群具有赋予未来变暖适应力的基因型,强调需要保护这些以及更大的中央栖息地。

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