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Comprehensive survey and evolutionary analysis of genome-wide miRNA genes from ten diploid Oryza species

机译:十个二倍体稻种全基因组miRNA基因的全面调查和进化分析

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Background MicroRNAs (miRNAs) are non-coding RNAs that play versatile roles in post-transcriptional gene regulation. Although much is known about their biogenesis, and gene regulation very little is known about their evolutionary relation among the closely related species. Result All the orthologous miRNA genes of Oryza sativa ( japonica ) from 10 different Oryza species were identified, and the evolutionary changes among these genes were analysed. Significant differences in the expansion of miRNA gene families were observed across the Oryza species. Analysis of the nucleotide substitution rates indicated that the mature sequences show the least substitution rates among the different regions of miRNA genes, and also show a very much less substitution rates as compared to that of all protein-coding genes across the Oryza species. Evolution of miRNA genes was also found to be contributed by transposons. A non-neutral selection was observed at 80 different miRNA loci across Oryza species which were estimated to have lost ~87% of the sequence diversity during the domestication. The phylogenetic analysis revealed that O. longistaminata diverged first among the AA-genomes, whereas O. brachyantha and O. punctata appeared as the eminent out-groups. The miR1861 family organised into nine distinct compact clusters in the studied Oryza species except O . brachyantha . Further, the expression analysis showed that 11 salt-responsive miRNAs were differentially regulated between O. coarctata and O. glaberrima. Conclusion Our study provides the evolutionary dynamics in the miRNA genes of 10 different Oryza species which will support more investigations about the structural and functional organization of miRNA genes of Oryza species.
机译:背景MicroRNA(miRNA)是非编码RNA,在转录后基因调控中发挥多种作用。尽管对它们的生物发生了解很多,而对基因调节的了解却很少。结果鉴定了10个不同水稻品种的所有直系同源miRNA基因,并对这些基因之间的进化变化进行了分析。在整个Oryza物种中,观察到miRNA基因家族的扩增存在显着差异。核苷酸取代率的分析表明,成熟序列在miRNA基因不同区域中的取代率最低,并且与整个Oryza物种中所有蛋白质编码基因的取代率相比,其取代率也要低得多。还发现miRNA基因的进化是由转座子贡献的。在整个Oryza物种的80个不同的miRNA基因座上观察到非中性选择,估计它们在驯化过程中损失了约87%的序列多样性。系统发育分析表明,长稻O. longataminata在AA基因组中首先出现分歧,而短叶O. brachyantha和O. punctata则是最主要的群体。 miR1861家族除O以外,在研究的Oryza物种中分为9个不同的紧密簇。布兰科。此外,表达分析显示11种盐反应性miRNA在小球藻和干O. glaberrima之间被差异调节。结论我们的研究提供了10种不同Oryza物种的miRNA基因的进化动力学,这将支持对Oryza物种的miRNA基因的结构和功能组织进行更多研究。

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