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Rapid Pathway Evolution Facilitated by Horizontal Gene Transfers across Prokaryotic Lineages

机译:跨原核世系的水平基因转移促进了快速途径进化。

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摘要

The evolutionary history of biological pathways is of general interest, especially in this post-genomic era, because it may provide clues for understanding how complex systems encoded on genomes have been organized. To explain how pathways can evolve de novo, some noteworthy models have been proposed. However, direct reconstruction of pathway evolutionary history both on a genomic scale and at the depth of the tree of life has suffered from artificial effects in estimating the gene content of ancestral species. Recently, we developed an algorithm that effectively reconstructs gene-content evolution without these artificial effects, and we applied it to this problem. The carefully reconstructed history, which was based on the metabolic pathways of 160 prokaryotic species, confirmed that pathways have grown beyond the random acquisition of individual genes. Pathway acquisition took place quickly, probably eliminating the difficulty in holding genes during the course of the pathway evolution. This rapid evolution was due to massive horizontal gene transfers as gene groups, some of which were possibly operon transfers, which would convey existing pathways but not be able to generate novel pathways. To this end, we analyzed how these pathways originally appeared and found that the original acquisition of pathways occurred more contemporaneously than expected across different phylogenetic clades. As a possible model to explain this observation, we propose that novel pathway evolution may be facilitated by bidirectional horizontal gene transfers in prokaryotic communities. Such a model would complement existing pathway evolution models.
机译:生物途径的进化史引起了普遍的兴趣,尤其是在这个后基因组时代,因为它可能为了解如何组织基因组编码的复杂系统提供线索。为了解释途径如何从头进化,已经提出了一些值得注意的模型。但是,无论是在基因组规模上还是在生命树的深处,通路进化历史的直接重建都在估计祖先物种的基因含量方面受到了人工影响。最近,我们开发了一种算法,该算法可以有效地重建基因内容的进化而无需这些人工效应,并将其应用于该问题。基于160种原核生物的代谢途径而精心重建的历史证实,这种途径已经超越了随机获取单个基因的范围。途径获得迅速发生,可能消除了途径进化过程中保存基因的困难。这种快速的进化是由于大量的水平基因转移作为基因组,其中一些可能是操纵子转移,它可以传达现有的途径,但不能产生新的途径。为此,我们分析了这些途径最初是如何出现的,发现在不同的系统发生进化枝中,途径的最初获得比同时发生的时间要多。作为解释该观察结果的可能模型,我们建议通过原核生物社区中的双向水平基因转移可以促进新型途径的进化。这样的模型将补充现有的途径进化模型。

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  • 年度 2009
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