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Proterozoic and early Cambrian protists: evidence for accelerating evolutionary tempo.

机译:元古代和寒武纪早期生物:加速发展速度的证据。

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摘要

In rocks of late Paleoproterozoic and Mesoproterozoic age (ca. 1700-1000 million years ago), probable eukaryotic microfossils are widespread and well preserved, but assemblage and global diversities are low and turnover is slow. Near the Mesoproterozoic-Neoproterozoic boundary (1000 million years ago), red, green, and chromophytic algae diversified; molecular phylogenies suggest that this was part of a broader radiation of "higher" eukaryotic phyla. Observed diversity levels for protistan microfossils increased significantly at this time, as did turnover rates. Coincident with the Cambrian radiation of marine invertebrates, protistan microfossils again doubled in diversity and rates of turnover increased by an order of magnitude. Evidently, the Cambrian diversification of animals strongly influenced evolutionary rates, within clades already present in marine communities, implying an important role for ecology in fueling a Cambrian explosion that extends across kingdoms.
机译:在古元古代和中元古代的岩石中(大约1700-1000百万年前),可能的真核微化石广泛存在并且保存完好,但是集合和全球多样性很低,周转也很缓慢。在中元古生界-新元古界附近(十亿年前),红色,绿色和发色藻类多样化。分子系统发育研究表明,这是“较高”真核生物门的广泛辐射的一部分。此时,观察到的Protistan微化石的多样性水平显着提高,周转率也显着提高。与海洋无脊椎动物的寒武纪辐射相吻合,原生动物微化石的多样性再次翻倍,周转率提高了一个数量级。显然,在海洋群落中已经存在的进化枝中,寒武纪动物的多样性极大地影响了进化速度,这暗示着生态学在推动寒武纪跨越整个王国的爆炸中起着重要作用。

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