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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Genomewide analysis of box C/D and box H/ACA snoRNAs in Chlamydomonas reinhardtii reveals an extensive organization into intronic gene clusters.
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Genomewide analysis of box C/D and box H/ACA snoRNAs in Chlamydomonas reinhardtii reveals an extensive organization into intronic gene clusters.

机译:对莱茵衣藻盒C / D和盒H / ACA snoRNA进行全基因组分析,揭示了内含子基因簇的广泛组织。

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Chlamydomonas reinhardtii is a unicellular green alga, the lineage of which diverged from that of land plants >1 billion years ago. Using the powerful small nucleolar RNA (snoRNA) mining platform to screen the C. reinhardtii genome, we identified 322 snoRNA genes grouped into 118 families. The 74 box C/D families can potentially guide methylation at 96 sites of ribosomal RNAs (rRNAs) and snRNAs, and the 44 box H/ACA families can potentially guide pseudouridylation at 62 sites. Remarkably, 242 of the snoRNA genes are arranged into 76 clusters, of which 77% consist of homologous genes produced by small local tandem duplications. At least 70 snoRNA gene clusters are found within introns of protein-coding genes. Although not exhaustive, this analysis reveals that C. reinhardtii has the highest number of intronic snoRNA gene clusters among eukaryotes. The prevalence of intronic snoRNA gene clusters in C. reinhardtii is similar to that of rice but in contrast with the one-snoRNA-per-intron organization of vertebrates and fungi and with that of Arabidopsis thaliana in which only a few intronic snoRNA gene clusters were identified. This analysis of C. reinhardtii snoRNA gene organization shows the functional importance of introns in a single-celled organism and provides evolutionary insight into the origin of intron-encoded RNAs in the plant lineage.
机译:Reinhardtii衣藻是单细胞的绿藻,其谱系与10亿年前的陆地植物不同。使用强大的小核仁RNA(snoRNA)挖掘平台筛选莱茵衣藻基因组,我们鉴定了322个snoRNA基因,分为118个家族。 74个框C / D家族可以潜在地指导96个核糖体RNA(rRNA)和snRNA的甲基化,而44个框H / ACA家族可以潜在地指导62个位的假尿酸化。值得注意的是,242个snoRNA基因排列成76个簇,其中77%由小的局部串联重复产生的同源基因组成。在蛋白质编码基因的内含子中至少发现了70个snoRNA基因簇。尽管并非详尽无遗,但该分析表明,在真核生物中,莱茵衣藻中内含子snoRNA基因簇的数量最多。 Reinhardtii中内含子snoRNA基因簇的流行与水稻相似,但与脊椎动物和真菌的单内含子的单内含子组织以及拟南芥中仅几个内含子snoRNA基因簇的拟南芥相反。确定。对莱茵衣藻snoRNA基因组织的分析显示了内含子在单细胞生物中的功能重要性,并为植物谱系中内含子编码RNA的起源提供了进化见识。

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