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Fossilization causes organisms to appear erroneously primitive by distorting evolutionary trees

机译:僵化通过扭曲进化树而使生物错误地显示为原始

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摘要

Fossils are vital for calibrating rates of molecular and morphological change through geological time, and are the only direct source of data documenting macroevolutionary transitions. Many evolutionary studies therefore require the robust phylogenetic placement of extinct organisms. Here, we demonstrate that the inevitable bias of the fossil record to preserve just hard, skeletal morphology systemically distorts phylogeny. Removal of soft part characters from 78 modern vertebrate and invertebrate morphological datasets resulted in significant changes to phylogenetic signal; it caused individual taxa to drift from their original position, predominately downward toward the root of their respective trees. This last bias could systematically inflate evolutionary rates inferred from molecular data because first fossil occurrences will not be recognised as such. Stem-ward slippage, whereby fundamental taphonomic biases cause fossils to be interpreted as erroneously primitive, is therefore a ubiquitous problem for all biologists attempting to infer macroevolutionary rates or sequences.
机译:化石对于通过地质时间校准分子和形态变化的速率至关重要,并且是记录宏观演化转变的唯一直接数据来源。因此,许多进化研究要求对灭绝生物进行稳健的系统发育定位。在这里,我们证明了化石记录不可避免地偏向于仅保留坚硬的骨骼形态会系统地扭曲系统发育。从78个现代脊椎动物和无脊椎动物形态学数据集中删除了软部分特征后,系统发生信号发生了显着变化。它导致单个分类单元从其原始位置偏移,主要是向下移动到其各自树木的根部。最后的偏差可能会系统性地提高从分子数据推断出的进化速率,因为不会首先识别出化石的出现。因此,茎向滑移是基本的系统偏差导致化石被错误地理解为原始的滑移,因此对于所有试图推断宏观进化速率或序列的生物学家来说都是一个普遍存在的问题。

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