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A morphospace of planktonic marine diatoms. I. Two views of disparity through time

机译:浮游性海洋硅藻的形态空间。一,关于时间差距的两种观点

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摘要

Both molecular clocks and the first appearances of major groups in the fossil record suggest that most of the range of diatom morphologies observed today had evolved by the end of the Cretaceous Period. Despite this, a canonical reading of the Cenozoic fossil record suggests a dramatic rise in taxonomic diversity that can be interpreted as an explosion of morphological variety. We investigated this apparent discrepancy by using a discrete-character-based, empirical diatom morphospace, resolved by molecular phylogeny and by fossil occurrences through time. The morphospace shows little correspondence to phylogeny and little Cenozoic change in disparity as measured by mean pairwise distance. There is, however, an increase in the total volume of morphospace occupied. Although the increase in occupied volume through time ostensibly supports a conclusion of increasing morphological variety, sampling biases and other data suggest an underlying stationary pattern more consistent with molecular clock data.
机译:化石记录中的分子钟和主要族群的首次出现都表明,今天观察到的大多数硅藻形态范围是在白垩纪末期演化的。尽管如此,对新生代化石记录的规范阅读表明,分类学多样性急剧上升,这可以解释为形态多样性的爆炸式增长。我们通过使用基于离散字符的经验硅藻形态空间,通过分子系统发育和化石随时间的变化来解决这种明显的差异。通过平均成对距离测量,形态空间显示出与系统发育几乎没有对应关系,并且几乎没有新生代的视差变化。但是,占用的形态空间的总量有所增加。尽管随着时间的过去占用体积的增加表面上支持增加形态学变化的结论,但采样偏差和其他数据表明潜在的固定模式与分子时钟数据更加一致。

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