a Department of Biological Sciences, and Alberta RNA Research and Training Institute , University of Lethbridge , Lethbridge , AB , Canada.
RNA Biol. 2018;15(10):1309-1318. doi: 10.1080/15476286.2018.1526561. Epub 2018 Oct 9.
Previous mRNA transcriptome studies of Euglena gracilis have shown that this organism possesses a large and diverse complement of protein coding genes; however, the study of non-coding RNA classes has been limited. The natural extensive fragmentation of the E. gracilis large subunit ribosomal RNA presents additional barriers to the identification of non-coding RNAs as size-selected small RNA libraries will be dominated by rRNA sequences. In this study we have developed a strategy to significantly reduce rRNA amplification prior to RNA-Seq analysis thereby producing a ncRNA library allowing for the identification of many new E. gracilis small RNAs. Library analysis reveals 113 unique new small nucleolar (sno) RNAs and a large collection of snoRNA isoforms, as well as the first significant collection of nuclear tRNAs in this organism. A 3' end AGAUGN consensus motif and conserved structural features can now be defined for E. gracilis pseudouridine guide RNAs. snoRNAs of both classes were identified that target modification of the 3' extremities of rRNAs utilizing predicted base-pairing interactions with internally transcribed spacers (ITS), providing insight into the timing of steps in rRNA maturation. Cumulatively, this represents the most comprehensive analysis of small ncRNAs in Euglena gracilis to date.
先前对眼虫藻的 mRNA 转录组的研究表明,该生物拥有大量多样的蛋白质编码基因;然而,非编码 RNA 类的研究一直受到限制。天然的眼虫藻大亚基核糖体 RNA 的广泛碎片化,给非编码 RNA 的鉴定带来了额外的障碍,因为大小选择的小 RNA 文库将主要由 rRNA 序列主导。在本研究中,我们开发了一种策略,可以在 RNA-Seq 分析之前显著减少 rRNA 的扩增,从而产生一个 ncRNA 文库,允许鉴定许多新的眼虫藻小 RNA。文库分析揭示了 113 个独特的新小核仁 (sno) RNA 和大量 snoRNA 同工型,以及该生物中第一个重要的核 tRNA 集合。现在可以为眼虫藻假尿嘧啶引导 RNA 定义 AGAUGN 3' 端保守基序和保守结构特征。鉴定了两类 snoRNA,它们利用与内部转录间隔区 (ITS) 的预测碱基配对相互作用,靶向 rRNA 的 3' 末端的修饰,深入了解 rRNA 成熟步骤的时间。总的来说,这代表了迄今为止对眼虫藻中小 ncRNA 最全面的分析。