首页> 美国卫生研究院文献>Proceedings of the Royal Society B: Biological Sciences >Mountain uplift explains differences in Palaeogene patterns of mammalian evolution and extinction between North America and Europe
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Mountain uplift explains differences in Palaeogene patterns of mammalian evolution and extinction between North America and Europe

机译:山隆起解释了北美和欧洲之间哺乳动物进化和灭绝的古近代模式的差异

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摘要

Patterns of late Palaeogene mammalian evolution appear to be very different between Eurasia and North America. Around the Eocene–Oligocene (EO) transition global temperatures in the Northern Hemisphere plummet: following this, European mammal faunas undergo a profound extinction event (the Grande Coupure), while in North America they appear to pass through this temperature event unscathed. Here, we investigate the role of surface uplift to environmental change and mammalian evolution through the Palaeogene (66–23 Ma). Palaeogene regional surface uplift in North America caused large-scale reorganization of precipitation patterns, particularly in the continental interior, in accord with our combined stable isotope and ecometric data. Changes in mammalian faunas reflect that these were dry and high-elevation palaeoenvironments. The scenario of Middle to Late Eocene (50–37 Ma) surface uplift, together with decreasing precipitation in higher-altitude regions of western North America, explains the enigma of the apparent lack of the large-scale mammal faunal change around the EO transition that characterized western Europe. We suggest that North American mammalian faunas were already pre-adapted to cooler and drier conditions preceding the EO boundary, resulting from the effects of a protracted history of surface uplift.
机译:晚古生代哺乳动物进化的模式在欧亚大陆和北美之间似乎非常不同。在始新世-渐新世(EO)过渡期间,北半球的全球温度骤降:随之而来的是,欧洲哺乳动物动物群经历了一次严重的灭绝事件(大事件),而在北美,它们似乎毫发无损地通过了这一温度事件。在这里,我们研究了古隆起(66-23 Ma)地表隆升对环境变化和哺乳动物进化的作用。根据我们综合的稳定同位素和生态数据,北美古近纪区域表面隆升导致了降水模式的大规模重组,特别是在大陆内部。哺乳动物区系的变化反映出它们是干旱和高海拔的古环境。中始新世(50-37 Ma)地表隆升的情景,以及北美西部高海拔地区降水的减少,解释了在EO过渡期间明显缺乏大规模哺乳动物区系变化的谜。具有西欧特色。我们认为,由于长期的表面隆起历史的影响,北美哺乳动物区系已经预先适应了EO边界之前的凉爽和干燥的条件。

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