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化石记录中灭绝选择性的环境决定因素。

Environmental determinants of extinction selectivity in the fossil record.

作者信息

Peters Shanan E

机构信息

Department of Geology & Geophysics, University of Wisconsin-Madison, Madison, Wisconsin 53706, USA.

出版信息

Nature. 2008 Jul 31;454(7204):626-9. doi: 10.1038/nature07032. Epub 2008 Jun 15.

Abstract

The causes of mass extinctions and the nature of biological selectivity during extinction events remain central questions in palaeobiology. Although many different environmental perturbations have been invoked as extinction mechanisms, it has long been recognized that fluctuations in sea level coincide with many episodes of biotic turnover. Recent work supports the hypothesis that changes in the areas of epicontinental seas have influenced the macroevolution of marine animals, but the extent to which differential environmental turnover has contributed to extinction selectivity remains unknown. Here I use a new compilation of the temporal durations of sedimentary rock packages to show that carbonate and terrigenous clastic marine shelf environments have different spatio-temporal dynamics and that these dynamics predict patterns of genus-level extinction, extinction selectivity and diversity among Sepkoski's Palaeozoic and modern evolutionary faunae. These results do not preclude a role for biological interactions or unusual physical events as drivers of macroevolution, but they do suggest that the turnover of marine shelf habitats and correlated environmental changes have been consistent determinants of extinction, extinction selectivity and the shifting composition of the marine biota during the Phanerozoic eon.

摘要

大规模灭绝的原因以及灭绝事件期间生物选择性的本质仍然是古生物学中的核心问题。尽管许多不同的环境扰动被认为是灭绝机制,但长期以来人们已经认识到海平面波动与许多生物更替事件相吻合。最近的研究支持了这样一种假说,即陆表海面积的变化影响了海洋动物的宏观演化,但不同环境更替对灭绝选择性的贡献程度仍然未知。在这里,我利用一个新编制的沉积岩包体时间持续时间数据集,表明碳酸盐和陆源碎屑海洋陆架环境具有不同的时空动态,并且这些动态预测了Sepkoski古生代和现代进化动物群中属级灭绝、灭绝选择性和多样性的模式。这些结果并不排除生物相互作用或异常物理事件作为宏观演化驱动力的作用,但它们确实表明,海洋陆架栖息地的更替以及相关的环境变化一直是显生宙期间灭绝、灭绝选择性和海洋生物群组成变化的决定性因素。

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