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The influence of body size and net diversification rate on molecular evolution during the radiation of animal phyla

机译:动物门辐射过程中体型和净多样化率对分子进化的影响

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Background Molecular clock dates, which place the origin of animal phyla deep in the Precambrian, have been used to reject the hypothesis of a rapid evolutionary radiation of animal phyla supported by the fossil record. One possible explanation of the discrepancy is the potential for fast substitution rates early in the metazoan radiation. However, concerted rate variation, occurring simultaneously in multiple lineages, cannot be detected by "clock tests", and so another way to explore such variation is to look for correlated changes between rates and other biological factors. Here we investigate two possible causes of fast early rates: change in average body size or diversification rate of deep metazoan lineages. Results For nine genes for phylogenetically independent comparisons between 50 metazoan phyla, orders, and classes, we find a significant correlation between average body size and rate of molecular evolution of mitochondrial genes. The data also indicate that diversification rate may have a positive effect on rates of mitochondrial molecular evolution. Conclusion If average body sizes were significantly smaller in the early history of the Metazoa, and if rates of diversification were much higher, then it is possible that mitochondrial genes have undergone a slow-down in evolutionary rate, which could affect date estimates made from these genes.
机译:背景技术分子时钟日期将动物门的起源放置在前寒武纪的深处,已被用来拒绝化石记录支持的动物门快速进化辐射的假说。差异的一种可能解释是在后生辐射早期可能有快速替代率。但是,在多个谱系中同时发生的协调的速率变化无法通过“时钟测试”检测到,因此探索这种变化的另一种方法是寻找速率与其他生物学因素之间的相关变化。在这里,我们调查了两种可能的快速早期发病原因:平均体型变化或后生深部谱系的多样化率。结果对于九个基因,用于在50个后生动物门,阶和类之间进行系统发育独立比较,我们发现平均体长与线粒体基因的分子进化速率之间存在显着相关性。数据还表明,多样化速率可能对线粒体分子进化速率具有积极影响。结论如果后生动物早期的平均体形明显变小,并且多样化的速率更高,则线粒体基因的进化速率可能会降低,这可能会影响从这些基因得出的数据基因。

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