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The high diversity of snoRNAs in plants: identification and comparative study of 120 snoRNA genes from Oryza sativa

机译:植物中snoRNA的高度多样性:水稻中120个snoRNA基因的鉴定和比较研究

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Using a powerful computer‐assisted analysis strategy, a large‐scale search of small nucleolar RNA (snoRNA) genes in the recently released draft sequence of the rice genome was carried out. This analysis identified 120 different box C/D snoRNA genes with a total of 346 gene variants, which were predicted to guide 135 2′‐O‐ribose methylation sites in rice rRNAs. Though not exhaustive, this analysis has revealed that rice has the highest number of known box C/D snoRNAs among eukaryotes. Interestingly, although many snoRNA genes are conserved between rice and Arabidopsis, almost half of the identified snoRNA genes are rice specific, which may highlight further the differences in rRNA methylation patterns between monocotyledons and dicotyledons. In addition to 76 singletons, 70 clusters involving 270 snoRNA genes were also found in rice. The large number of the novel snoRNA polycistrons found in the introns of rice protein‐coding genes is in contrast to the one‐snoRNA‐per‐intron organization of vertebrates and yeast, and of Arabidopsis in which only a few intronic snoRNA gene clusters were identified. Furthermore, due to a high degree of gene duplication, rice snoRNA genes are clearly redundant and exhibit great sequence variation among isoforms, allowing generation of new snoRNAs for selection. Thus, the large snoRNA gene family in plants can serve as an excellent model for a rapid and functional evolution.
机译:使用强大的计算机辅助分析策略,对水稻基因组最新发布的草案序列中的小核仁RNA(snoRNA)基因进行了大规模搜索。该分析鉴定了120个不同的盒C / D snoRNA基因,共346个基因变体,据预测它们可指导水稻rRNA中的135个2'-O-核糖甲基化位点。尽管不是详尽无遗,但这项分析表明,在真核生物中,水稻中已知的盒C / D snoRNA数量最多。有趣的是,尽管水稻和拟南芥之间保留了许多snoRNA基因,但已鉴定的snoRNA基因中几乎有一半是水稻特异的,这可能进一步突出了单子叶植物和双子叶植物在rRNA甲基化模式上的差异。除了76个单例,在水稻中还发现了涉及270个snoRNA基因的70个簇。在水稻蛋白质编码基因的内含子中发现了大量新颖的snoRNA多顺反子,这与脊椎动物和酵母以及拟南芥中仅鉴定出几个内含子snoRNA基因簇的单内含子组织形成鲜明对比。 。此外,由于高度的基因重复,水稻snoRNA基因显然是多余的,并且在同工型之间表现出很大的序列变异,从而允许产生新的snoRNA供选择。因此,植物中较大的snoRNA基因家族可以作为快速和功能进化的优良模型。

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