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昆虫物种形成历史揭示了长期云雾林对气候变暖的响应。

Long-term cloud forest response to climate warming revealed by insect speciation history.

机构信息

Island Ecology and Evolution Research Group, Institute of Natural Products and Agrobiology (IPNA-CSIC), La Laguna, 38206, Spain.

School of Doctoral and Postgraduate Studies, University of La Laguna, La Laguna, 38200, Spain.

出版信息

Evolution. 2021 Feb;75(2):231-244. doi: 10.1111/evo.14111. Epub 2020 Nov 1.

Abstract

Montane cloud forests are areas of high endemism, and are one of the more vulnerable terrestrial ecosystems to climate change. Thus, understanding how they both contribute to the generation of biodiversity, and will respond to ongoing climate change, are important and related challenges. The widely accepted model for montane cloud forest dynamics involves upslope forcing of their range limits with global climate warming. However, limited climate data provides some support for an alternative model, where range limits are forced downslope with climate warming. Testing between these two models is challenging, due to the inherent limitations of climate and pollen records. We overcome this with an alternative source of historical information, testing between competing model predictions using genomic data and demographic analyses for a species of beetle tightly associated to an oceanic island cloud forest. Results unequivocally support the alternative model: populations that were isolated at higher elevation peaks during the Last Glacial Maximum are now in contact and hybridizing at lower elevations. Our results suggest that genomic data are a rich source of information to further understand how montane cloud forest biodiversity originates, and how it is likely to be impacted by ongoing climate change.

摘要

山地云雾林是高特有性区域,也是对气候变化更为脆弱的陆地生态系统之一。因此,了解它们如何为生物多样性的产生做出贡献,以及如何应对正在发生的气候变化,是一个重要且相关的挑战。广泛接受的山地云雾林动态模型涉及到随着全球气候变暖,其范围限制的上坡强迫。然而,有限的气候数据为另一种模型提供了一些支持,即随着气候变暖,范围限制被下坡强迫。由于气候和花粉记录的固有局限性,在这两种模型之间进行测试具有挑战性。我们通过利用历史信息的替代来源来克服这一问题,使用基因组数据和对与海洋岛屿云雾林紧密相关的一种甲虫的种群动态分析来测试竞争模型的预测。结果明确支持替代模型:在上一个冰河时代,在较高海拔山峰隔离的种群现在在较低海拔地区接触并杂交。我们的研究结果表明,基因组数据是进一步了解山地云雾林生物多样性起源以及其可能受到当前气候变化影响的丰富信息来源。

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