首页> 美国卫生研究院文献>Proceedings of the Royal Society B: Biological Sciences >An analysis of dinosaurian biogeography: evidence for the existence of vicariance and dispersal patterns caused by geological events.
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An analysis of dinosaurian biogeography: evidence for the existence of vicariance and dispersal patterns caused by geological events.

机译:恐龙生物地理分析:证据表明存在由地质事件引起的变异和扩散模式。

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摘要

As the supercontinent Pangaea fragmented during the Mesozoic era, dinosaur faunas were divided into isolated populations living on separate continents. It has been predicted, therefore, that dinosaur distributions should display a branching ('vicariance') pattern that corresponds with the sequence and timing of continental break-up. Several recent studies, however, minimize the importance of plate tectonics and instead suggest that dispersal and regional extinction were the main controls on dinosaur biogeography. Here, in order to test the vicariance hypothesis, we apply a cladistic biogeographical method to a large dataset on dinosaur relationships and distributions. We also introduce a methodological refinement termed 'time-slicing', which is shown to be a key step in the detection of ancient biogeographical patterns. These analyses reveal biogeographical patterns that closely correlate with palaeogeography. The results provide the first statistically robust evidence that, from Middle Jurassic to mid-Cretaceous times, tectonic events had a major role in determining where and when particular dinosaur groups flourished. The fact that evolutionary trees for extinct organisms preserve such distribution patterns opens up a new and fruitful direction for palaeobiogeographical research.
机译:在中生代时代,超大陆Pangea支离破碎,因此恐龙动物被分为居住在不同大陆的孤立种群。因此,据预测,恐龙的分布应该表现出与大陆分裂的顺序和时机相对应的分支(“变异”)模式。然而,最近的几项研究使板块构造学的重要性降到最低,相反,它们表明散布和区域灭绝是恐龙生物地理学的主要控制因素。在这里,为了检验方差假设,我们将进化生物地理学方法应用于有关恐龙关系和分布的大型数据集。我们还介绍了一种称为“时间切片”的方法改进,该方法被证明是检测古代生物地理模式的关键步骤。这些分析揭示了与古地理密切相关的生物地理模式。该结果提供了第一个统计上可靠的证据,表明从中侏罗纪到白垩纪中期,构造事件在确定特定恐龙群何时何地繁荣中起着重要作用。灭绝生物的进化树保留了这种分布方式这一事实为古生物地理研究开辟了一个新的,富有成果的方向。

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