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重建转座元件的演化历史。

Reconstructing the evolutionary history of transposable elements.

机构信息

Laboratoire Évolution, Génomes, Spéciation, CNRS-LEGS-UPR9034, CNRS-IDEEV-FR3284, Gif sur Yvette, France.

出版信息

Genome Biol Evol. 2013;5(1):77-86. doi: 10.1093/gbe/evs130.

Abstract

The impact of transposable elements (TEs) on genome structure, plasticity, and evolution is still not well understood. The recent availability of complete genome sequences makes it possible to get new insights on the evolutionary dynamics of TEs from the phylogenetic analysis of their multiple copies in a wide range of species. However, this source of information is not always fully exploited. Here, we show how the history of transposition activity may be qualitatively and quantitatively reconstructed by considering the distribution of transposition events in the phylogenetic tree, along with the tree topology. Using statistical models developed to infer speciation and extinction rates in species phylogenies, we demonstrate that it is possible to estimate the past transposition rate of a TE family, as well as how this rate varies with time. This methodological framework may not only facilitate the interpretation of genomic data, but also serve as a basis to develop new theoretical and statistical models.

摘要

转座元件 (TEs) 对基因组结构、可塑性和进化的影响仍未被很好地理解。最近完整基因组序列的出现使得从广泛物种中 TE 的多个拷贝的系统发育分析中,有可能获得关于 TE 进化动态的新见解。然而,这种信息来源并不总是被充分利用。在这里,我们展示了如何通过考虑转座事件在系统发育树中的分布,以及树拓扑结构,来定性和定量地重建转座活性的历史。使用为推断物种发生和灭绝率而开发的统计模型,我们证明了估算 TE 家族过去的转座率以及该速率随时间变化的情况是可能的。这种方法框架不仅可以促进对基因组数据的解释,而且还可以作为开发新的理论和统计模型的基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/28f6/3595040/82e8c2ab6a8e/evs130f1p.jpg

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