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通过对拟南芥属物种的 I 型 MADS 框基因家族的分子进化分析揭示基因复制在基因组印迹进化中的重要性。

Importance of gene duplication in the evolution of genomic imprinting revealed by molecular evolutionary analysis of the type I MADS-box gene family in Arabidopsis species.

机构信息

Faculty of Life Science, Kyoto Sangyo University, Kyoto, Kyoto, Japan.

出版信息

PLoS One. 2013 Sep 5;8(9):e73588. doi: 10.1371/journal.pone.0073588. eCollection 2013.

Abstract

The pattern of molecular evolution of imprinted genes is controversial and the entire picture is still to be unveiled. Recently, a relationship between the formation of imprinted genes and gene duplication was reported in genome-wide survey of imprinted genes in Arabidopsis thaliana. Because gene duplications influence the molecular evolution of the duplicated gene family, it is necessary to investigate both the pattern of molecular evolution and the possible relationship between gene duplication and genomic imprinting for a better understanding of evolutionary aspects of imprinted genes. In this study, we investigated the evolutionary changes of type I MADS-box genes that include imprinted genes by using relative species of Arabidopsis thaliana (two subspecies of A. lyrata and three subspecies of A. halleri). A duplicated gene family enables us to compare DNA sequences between imprinted genes and its homologs. We found an increased number of gene duplications within species in clades containing the imprinted genes, further supporting the hypothesis that local gene duplication is one of the driving forces for the formation of imprinted genes. Moreover, data obtained by phylogenetic analysis suggested "rapid evolution" of not only imprinted genes but also its closely related orthologous genes, which implies the effect of gene duplication on molecular evolution of imprinted genes.

摘要

印迹基因分子进化模式存在争议,目前仍未完全揭示。最近,在对拟南芥印迹基因的全基因组研究中报道了印迹基因的形成与基因复制之间的关系。由于基因复制会影响复制基因家族的分子进化,因此有必要调查分子进化模式以及基因复制与基因组印迹之间的可能关系,以更好地了解印迹基因的进化方面。在这项研究中,我们通过使用拟南芥的相对物种(两个亚种的 A. lyrata 和三个亚种的 A. halleri)研究了包括印迹基因在内的 I 型 MADS 盒基因的进化变化。一个复制基因家族使我们能够比较印迹基因与其同源物之间的 DNA 序列。我们发现,在包含印迹基因的进化枝中,种内的基因重复数量增加,这进一步支持了局部基因重复是印迹基因形成的驱动力之一的假说。此外,通过系统发育分析获得的数据表明,不仅印迹基因,而且与其密切相关的直系同源基因也发生了“快速进化”,这意味着基因复制对印迹基因的分子进化有影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cedc/3764040/b87d4cc9712d/pone.0073588.g001.jpg

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