首页> 外文期刊>International journal of applied mechanics >Ab Initio Construction and Evolutionary Analysis of Protein-Coding Gene Families with Partially Homologous Relationships: Closely Related Drosophila Genomes as a Case Study
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Ab Initio Construction and Evolutionary Analysis of Protein-Coding Gene Families with Partially Homologous Relationships: Closely Related Drosophila Genomes as a Case Study

机译:蛋白质编码基因家族的AB Initio构建和进化分析,具有部分同源关系:密切相关的果蝇基因组作为案例研究

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How have genes evolved within a well-known genome phylogeny? Many protein-coding genes should have evolved as a whole at the gene level, and some should have evolved partly through fragments at the subgene level. To comprehensively explore such complex homologous relationships and better understand gene family evolution, here, with de novo-identified modules, the subgene units which could consecutively cover proteins within a set of closely related species, we applied a new phylogeny-based approach that considers evolutionary models with partial homology to classify all protein-coding genes in nine Drosophila genomes. Compared with two other popular methods for gene family construction, our approach improved practical gene family classifications with a more reasonable view of homology and provided a much more complete landscape of gene family evolution at the gene and subgene levels. In the case study, we found that most expanded gene families might have evolved mainly through module rearrangements rather than gene duplications and mainly generated single-module genes through partial gene duplication, suggesting that there might be pervasive subgene rearrangement in the evolution of protein-coding gene families. The use of a phylogeny-based approach with partial homology to classify and analyze protein-coding gene families may provide us with a more comprehensive landscape depicting how genes evolve within a well-known genome phylogeny.
机译:基因如何在众所周知的基因组系统中进化?许多蛋白质编码基因应该在基因水平上作为整体发展,并且一些应该部分地通过亚生物水平的片段部分进化。为了全面探索这种复杂的同源关系,更好地了解基因家族演化,这里有De Novo鉴定的模块,可以连续覆盖一组密切相关的物种内的蛋白质,我们应用了一种基于新的基于系统的方法,认为进化的方法具有部分同源性的模型,以分类九个果蝇基因组中的所有蛋白质编码基因。与两种其他流行的基因家族建设方法相比,我们的方法改善了实用的基因家族分类,具有更合理的同源性观点,并在基因和亚生物水平下提供了基因家族演化的更完整的景观。在案例研究中,我们发现,大多数扩展的基因家族可能主要通过模块重排而不是通过部分基因重复产生的基因重复和主要产生单模块基因,表明蛋白质编码的演化中可能存在普遍存在的emgene重新排列基因家庭。使用基于系统的方法与分析和分析蛋白质编码基因家族的局部同源性可以为我们提供更全面的景观,描绘了基因在众所周知的基因组中如何进化。

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