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植物基因表达的变化受基因结构和启动子结构特性的影响。

Variation of gene expression in plants is influenced by gene architecture and structural properties of promoters.

机构信息

Molecular Biophysics Unit, Indian Institute of Science, Bangalore, Karnataka, India.

出版信息

PLoS One. 2019 Mar 25;14(3):e0212678. doi: 10.1371/journal.pone.0212678. eCollection 2019.

Abstract

In higher eukaryotes, gene architecture and structural properties of promoters have emerged as significant factors influencing variation in number of transcripts (expression level) and specificity of gene expression in a tissue (expression breadth), which eventually shape the phenotype. In this study, transcriptome data of different tissue types at various developmental stages of A. thaliana, O. sativa, S. bicolor and Z. mays have been used to understand the relationship between properties of gene components and its expression. Our findings indicate that in plants, among all gene architecture and structural properties of promoters, compactness of genes in terms of intron content is significantly linked to gene expression level and breadth, whereas in human an exactly opposite scenario is seen. In plants, for the first time we have carried out a quantitative estimation of effect of a particular trait on expression level and breadth, by using multiple regression analysis and it confirms that intron content of primary transcript (as %) is a powerful determinant of expression breadth. Similarly, further regression analysis revealed that among structural properties of the promoters, stability is negatively linked to expression breadth, while DNase1 sensitivity strongly governs gene expression breadth in monocots and gene expression level in dicots. In addition, promoter regions of tissue specific genes are found to be enriched with TATA box and Y-patch motifs. Finally, multi copy orthologous genes in plants are found to be longer, highly regulated and tissue specific.

摘要

在高等真核生物中,基因结构和启动子的结构特性已成为影响转录物数量(表达水平)和基因在组织中表达特异性(表达广度)的重要因素,这些因素最终影响表型。在这项研究中,我们使用拟南芥、水稻、高粱和玉米不同组织类型在不同发育阶段的转录组数据,来了解基因元件特性与其表达之间的关系。我们的研究结果表明,在植物中,在启动子的所有基因结构和结构特性中,基因的紧凑性(以内含子含量衡量)与基因的表达水平和广度显著相关,而在人类中则恰恰相反。在植物中,我们首次通过多元回归分析对特定性状对表达水平和广度的影响进行了定量估计,结果表明初级转录物的内含子含量(%)是表达广度的有力决定因素。同样,进一步的回归分析表明,在启动子的结构特性中,稳定性与表达广度呈负相关,而 DNase1 敏感性在单子叶植物中强烈影响基因表达广度,在双子叶植物中影响基因表达水平。此外,组织特异性基因的启动子区域富含 TATA 框和 Y 补丁基序。最后,植物中的多拷贝直系同源基因更长、高度调控且组织特异性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9e46/6433290/89726ea5c631/pone.0212678.g001.jpg

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