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塑造水稻和拟南芥管家基因与组织特异性同源基因密码子使用模式的差异选择限制

Differential selective constraints shaping codon usage pattern of housekeeping and tissue-specific homologous genes of rice and arabidopsis.

作者信息

Mukhopadhyay Pamela, Basak Surajit, Ghosh Tapash Chandra

机构信息

Bioinformatics Centre, Bose Institute, P 1/12, C.I.T. Scheme VII M, Kolkata 700 054, India.

出版信息

DNA Res. 2008 Dec;15(6):347-56. doi: 10.1093/dnares/dsn023. Epub 2008 Sep 30.

Abstract

Intra-genomic variation between housekeeping and tissue-specific genes has always been a study of interest in higher eukaryotes. To-date, however, no such investigation has been done in plants. Availability of whole genome expression data for both rice and Arabidopsis has made it possible to examine the evolutionary forces in shaping codon usage pattern in both housekeeping and tissue-specific genes in plants. In the present work, we have taken 4065 rice-Arabidopsis homologous gene pairs to study evolutionary forces responsible for codon usage divergence between housekeeping and tissue-specific genes. In both rice and Arabidopsis, it is mutational bias that regulates error minimization in highly expressed genes of both housekeeping and tissue-specific genes. Our results show that, in comparison to tissue-specific genes, housekeeping genes are under strong selective constraint in plants. However, in tissue-specific genes, lowly expressed genes are under stronger selective constraint compared with highly expressed genes. We demonstrated that constraint acting on mRNA secondary structure is responsible for modulating codon usage variations in rice tissue-specific genes. Thus, different evolutionary forces must underline the evolution of synonymous codon usage of highly expressed genes of housekeeping and tissue-specific genes in rice and Arabidopsis.

摘要

管家基因和组织特异性基因之间的基因组内变异一直是高等真核生物中备受关注的研究领域。然而,迄今为止,尚未在植物中开展过此类研究。水稻和拟南芥全基因组表达数据的可得性,使得研究塑造植物管家基因和组织特异性基因密码子使用模式的进化力量成为可能。在本研究中,我们选取了4065对水稻-拟南芥同源基因对,以研究导致管家基因和组织特异性基因密码子使用差异的进化力量。在水稻和拟南芥中,突变偏向性均调控着管家基因和组织特异性基因中高表达基因的错误最小化。我们的结果表明,与组织特异性基因相比,植物中的管家基因受到更强的选择约束。然而,在组织特异性基因中,低表达基因比高表达基因受到更强的选择约束。我们证明,作用于mRNA二级结构的约束负责调节水稻组织特异性基因中的密码子使用变异。因此,不同的进化力量必然是水稻和拟南芥中管家基因和组织特异性基因高表达基因同义密码子使用进化的基础。

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