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基于基因共表达网络的系统发生分析揭示了功能模块的进化。

Phylogenomic analysis of gene co-expression networks reveals the evolution of functional modules.

机构信息

Max Planck Institute of Molecular Plant Physiology, Am Muehlenberg 1, 14476, Potsdam, Germany.

Instituto Gulbekian De Ciencia, Rua da Quinta Grande 6, 2780-156, Oeiras, Portugal.

出版信息

Plant J. 2017 May;90(3):447-465. doi: 10.1111/tpj.13502. Epub 2017 Mar 23.

DOI:10.1111/tpj.13502
PMID:28161902
Abstract

Molecular evolutionary studies correlate genomic and phylogenetic information with the emergence of new traits of organisms. These traits are, however, the consequence of dynamic gene networks composed of functional modules, which might not be captured by genomic analyses. Here, we established a method that combines large-scale genomic and phylogenetic data with gene co-expression networks to extensively study the evolutionary make-up of modules in the moss Physcomitrella patens, and in the angiosperms Arabidopsis thaliana and Oryza sativa (rice). We first show that younger genes are less annotated than older genes. By mapping genomic data onto the co-expression networks, we found that genes from the same evolutionary period tend to be connected, whereas old and young genes tend to be disconnected. Consequently, the analysis revealed modules that emerged at a specific time in plant evolution. To uncover the evolutionary relationships of the modules that are conserved across the plant kingdom, we added phylogenetic information that revealed duplication and speciation events on the module level. This combined analysis revealed an independent duplication of cell wall modules in bryophytes and angiosperms, suggesting a parallel evolution of cell wall pathways in land plants. We provide an online tool allowing plant researchers to perform these analyses at http://www.gene2function.de.

摘要

分子进化研究将基因组和系统发育信息与生物体新特征的出现联系起来。然而,这些特征是由功能模块组成的动态基因网络的结果,而基因组分析可能无法捕捉到这些特征。在这里,我们建立了一种方法,将大规模的基因组和系统发育数据与基因共表达网络相结合,广泛研究苔藓植物Physcomitrella patens 以及被子植物拟南芥和水稻(水稻)中模块的进化构成。我们首先表明,年轻的基因比年老的基因注释得少。通过将基因组数据映射到共表达网络上,我们发现来自同一进化时期的基因往往相互连接,而年老和年轻的基因往往相互断开。因此,该分析揭示了在植物进化的特定时期出现的模块。为了揭示在植物界中保守的模块的进化关系,我们添加了显示模块水平上的复制和物种形成事件的系统发育信息。这种综合分析揭示了苔藓植物和被子植物中细胞壁模块的独立复制,表明陆地植物中细胞壁途径的平行进化。我们提供了一个在线工具,允许植物研究人员在 http://www.gene2function.de 上执行这些分析。

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