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The correlated evolution of Runx2 tandem repeats, transcriptional activity, and facial length in Carnivora

机译:食肉动物中Runx2串联重复序列,转录活性和面部长度的相关进化

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摘要

To assess the ability of protein-coding mutations to contribute to subtle, inter-specific morphologic evolution, here, we test the hypothesis that mutations within the protein-coding region of runt-related transcription factor 2 (Runx2) have played a role in facial evolution in 30 species from a naturally evolving group, the mammalian order Carnivora. Consistent with this hypothesis, we find significant correlations between changes in Runx2 glutamine-alanine tandem-repeat ratio, and both Runx2 transcriptional activity and carnivoran facial length. Furthermore, we identify a potential evolutionary mechanism for the correlation between Runx2 tandem repeat ratio and facial length. Specifically, our results are consistent with the Runx2 tandem repeat system providing a flexible genetic mechanism to rapidly change the timing of ossification. These heterochronic changes, in turn, potentially act on existing allometric variation in carnivoran facial length to generate the disparity in adult facial lengths observed among carnivoran species. Our results suggest that despite potentially great pleiotropic effects, changes to the protein-coding regions of genes such as Runx2 do occur and have the potential to affect subtle morphologic evolution across a diverse array of species in naturally evolving lineages.
机译:为了评估蛋白质编码突变有助于微妙的种间形态演化的能力,在这里,我们测试了假说相关的转录因子2(Runx2)的蛋白质编码区域内的突变在面部中起作用的假说进化自自然进化的哺乳动物食肉目(Carnivora)中的30种。与此假设相符,我们发现Runx2谷氨酰胺-丙氨酸串联重复率的变化与Runx2转录活性和食肉动物面部长度之间存在显着相关性。此外,我们确定了Runx2串联重复率与面部长度之间相关性的潜在进化机制。具体而言,我们的结果与Runx2串联重复系统一致,该系统提供了灵活的遗传机制来快速改变骨化的时间。这些异时变化反过来可能会影响食肉动物面部长度的现有异速变化,从而在食肉动物物种之间观察到成年面部长度的差异。我们的研究结果表明,尽管潜在的多效性效应很大,但诸如Runx2之类的基因的蛋白质编码区域确实发生了改变,并有可能影响自然进化谱系中多种物种的细微形态演变。

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