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The rise and fall of species: implications for macroevolutionary and macroecological studies

机译:物种的兴衰:对宏观进化和宏观生态学研究的启示

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摘要

Knowing the geographic extents of species is crucial for understanding the causes of diversity distributions and modes of speciation and extinction. Species geographic ranges are often viewed as approximately constant in size in geological time, even though climate change studies have shown that historical and modern species geographic distributions are not static. Here, we use an extensive global microfossil database to explore the temporal trajectories of geographic extents over the entire lifespan of marine nannoplankton, diatom, planktic foraminifer and radiolarian species. We show that geographic extents are not static over geological time-scales. Temporal trajectories of species geographic ranges are asymmetric: the rise is quicker than the fall. We propose that once a species has overcome its initial difficulties in geographic establishment, it rises to its peak geographic extent. However, once this peak value is reached, it will also have a maximal number of species to interact with. The negative of these biotic interactions could then cause a gradual geographic decline. We discuss the multiple implications of our findings with reference to macroecological and macroevolutionary studies.
机译:了解物种的地理范围对于理解多样性分布的原因以及物种形成和灭绝的方式至关重要。尽管气候变化研究表明历史和现代物种的地理分布不是静态的,但在地理时代,物种的地理范围通常被视为大小近似恒定。在这里,我们使用广泛的全球微化石数据库来探索海洋浮游生物,硅藻,浮游有孔虫和放射虫物种整个生命周期中地理范围的时间轨迹。我们表明,地理范围在地质时间尺度上不是静态的。物种地理范围的时间轨迹是不对称的:上升快于下降。我们建议,一旦某个物种克服了在地理上的建立的最初困难,它就会上升到其地理上的高峰。但是,一旦达到该峰值,它也将具有与之相互作用的最大物种数。这些生物相互作用的负面影响可能会导致地理逐渐下降。我们将参考宏观生态学和宏观进化论研究讨论我们发现的多重含义。

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