首页> 美国卫生研究院文献>Proceedings of the Royal Society B: Biological Sciences >Environmental drivers of crocodyliform extinction across the Jurassic/Cretaceous transition
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Environmental drivers of crocodyliform extinction across the Jurassic/Cretaceous transition

机译:侏罗纪/白垩纪过渡时期鳄形灭绝的环境驱动因素

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摘要

Crocodyliforms have a much richer evolutionary history than represented by their extant descendants, including several independent marine and terrestrial radiations during the Mesozoic. However, heterogeneous sampling of their fossil record has obscured their macroevolutionary dynamics, and obfuscated attempts to reconcile external drivers of these patterns. Here, we present a comprehensive analysis of crocodyliform biodiversity through the Jurassic/Cretaceous (J/K) transition using subsampling and phylogenetic approaches and apply maximum-likelihood methods to fit models of extrinsic variables to assess what mediated these patterns. A combination of fluctuations in sea-level and episodic perturbations to the carbon and sulfur cycles was primarily responsible for both a marine and non-marine crocodyliform biodiversity decline through the J/K boundary, primarily documented in Europe. This was tracked by high extinction rates at the boundary and suppressed origination rates throughout the Early Cretaceous. The diversification of Eusuchia and Notosuchia likely emanated from the easing of ecological pressure resulting from the biodiversity decline, which also culminated in the extinction of the marine thalattosuchians in the late Early Cretaceous. Through application of rigorous techniques for estimating biodiversity, our results demonstrate that it is possible to tease apart the complex array of controls on diversification patterns in major archosaur clades.
机译:与现存的后代相比,鳄形目具有更丰富的进化历史,包括中生代几次独立的海洋和陆地辐射。但是,对其化石记录的异类采样掩盖了它们的宏观进化动力学,并混淆了调和这些模式的外部驱动因素的尝试。在这里,我们使用子采样和系统发育方法,通过侏罗纪/白垩纪(J / K)过渡对鳄形生物多样性进行了全面分析,并应用最大似然法来拟合外部变量模型,以评估是什么介导了这些模式。海平面的波动和对碳和硫循环的周期性扰动的共同作用是造成通过J / K边界的海洋和非海洋鳄形生物多样性下降的主要原因,这主要在欧洲记录。边界处的高灭绝率和白垩纪早期的始发率受到抑制,可以追踪到这一点。 Eusuchia和Notosuchia的多样化可能源于生物多样性下降导致的生态压力的减轻,这也导致了白垩纪晚期的海目动物灭绝。通过应用严格的技术估算生物多样性,我们的结果表明,有可能在主要的进化枝进化枝上梳理出多样化的控制模式。

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