Cui Xiao, Xu Si Min, Mu Dao Shuai, Yang Zhi Min
Department of Biochemistry and Molecular Biology, College of Life Science, Nanjing Agricultural University, Nanjing, 210095, China.
Gene. 2009 Feb 15;431(1-2):61-6. doi: 10.1016/j.gene.2008.11.016. Epub 2008 Nov 24.
MicroRNAs (miRNAs) are endogenous single-stranded non-coding small RNAs with a length of about 21 nt, that negatively regulate development and stresses. Rice miRNAs are representative of the monocot miRNAs, and many of them are non-conserved in Arabidopsis and the other plant species. Previous studies have shown that a majority of plant miRNAs are expressed from independent transcription units, whereas some others are transcribed with their host genes. Despite of the fact that a growing number of rice miRNAs are discovered, little is known about the transcriptional regulation of miRNA genes. In this study, we performed genomic analysis of rice miRNA transcripts surrounding the regions of promoter/transcription start site (TSS) and TATA-box, and organization of miRNA clusters. We detected 249 promoters for 212 rice pre-miRNA sequences via bioinformatics approach and found that the conserved rice miRNA genes have a greater proportion of promoters than the non-conserved miRNA genes. We further globally analyzed the genomic organization of pri-miRNAs and found that 52 rice miRNA genes appear in 18 clusters. Alignment of the miRNA sequences in these clusters shows a number of miRNA paralogs within the cluster. The data obtained may aid our understanding of the specific sequences upstream of pre-miRNAs and the functional implications of miRNA clusters in rice plants.
微小RNA(miRNA)是一类长度约为21个核苷酸的内源性单链非编码小RNA,对发育和胁迫具有负调控作用。水稻miRNA是单子叶植物miRNA的代表,其中许多在拟南芥和其他植物物种中并不保守。先前的研究表明,大多数植物miRNA由独立的转录单元表达,而其他一些则与其宿主基因一起转录。尽管已发现越来越多的水稻miRNA,但对miRNA基因的转录调控却知之甚少。在本研究中,我们对水稻miRNA转录本启动子/转录起始位点(TSS)和TATA框区域周围进行了基因组分析,并分析了miRNA簇的组织情况。我们通过生物信息学方法检测到212个水稻前体miRNA序列的249个启动子,发现保守的水稻miRNA基因的启动子比例高于非保守miRNA基因。我们进一步对初级miRNA的基因组组织进行了全局分析,发现52个水稻miRNA基因出现在18个簇中。这些簇中miRNA序列的比对显示簇内存在许多miRNA旁系同源物。所获得的数据可能有助于我们了解前体miRNA上游的特定序列以及水稻中miRNA簇的功能意义。