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植物根特异性表达基因及其核心顺式调控元件的挖掘

Mining of Root-Specific Expression Genes and Their Core Cis-Regulatory Elements in Plants.

作者信息

Gao Shan, Chai Yi, Zhou Xinyue, Chen Suhui

机构信息

Shanghai Key Laboratory of Plant Molecular Sciences, College of Life Sciences, Shanghai Normal University, Shanghai 200234, China.

出版信息

Int J Mol Sci. 2025 Feb 18;26(4):1720. doi: 10.3390/ijms26041720.

Abstract

Mining tissue-specific genes is important for studying the processes of life activities within tissues, and it is a way of finding genes that regulate relevant traits. In recent years, the massive growth of expression data from various tissues has provided important opportunities for the large-scale analysis of tissue-specific genes. We found 489, 276, and 728 RTEGs (root tissue-specific expression genes) using 35 RNA-seq databases in 13 different tissues from three species of plants, e.g., Arabidopsis, rice, and maize, respectively, by bioinformatics methods. A total of 34 RTEGs in rice were found to be conserved in all three species, and 29 genes of them were unreported. Furthermore, 16 newly core cis-acting elements, named REM1-16 (root expression motif), were predicted by four well-known bioinformatics tools, which might determine the root tissue expression pattern. In particular, REM2 is conserved in not only Arabidopsis, but also rice. These cis-acting elements may be an important genetic resource that can be introduced into synthetic memory circuits to precisely regulate the spatiotemporal expression of genes in a user-defined manner.

摘要

挖掘组织特异性基因对于研究组织内的生命活动过程很重要,也是寻找调控相关性状基因的一种方式。近年来,来自各种组织的表达数据大量增长,为大规模分析组织特异性基因提供了重要契机。我们通过生物信息学方法,分别利用三种植物(拟南芥、水稻和玉米)13个不同组织中的35个RNA-seq数据库,找到了489个、276个和728个根组织特异性表达基因(RTEGs)。共发现水稻中有34个RTEGs在这三个物种中都是保守的,其中29个基因未见报道。此外,通过四种著名的生物信息学工具预测出16个新的核心顺式作用元件,命名为REM1 - 16(根表达基序),它们可能决定根组织的表达模式。特别地,REM2不仅在拟南芥中保守,在水稻中也保守。这些顺式作用元件可能是一种重要的遗传资源,可引入合成记忆回路,以用户定义的方式精确调控基因的时空表达。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a2d3/11855845/89052d4b4424/ijms-26-01720-g001.jpg

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