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首页> 外文期刊>Parasitology Research >Characterization of active ribosomal RNA harboring MITEs insertion in microsporidian Nosema bombycis genome.
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Characterization of active ribosomal RNA harboring MITEs insertion in microsporidian Nosema bombycis genome.

机译:表征在小孢子虫Nosema bombycis基因组中带有MITE插入的活性核糖体RNA。

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Microsporidia are a group of obligate intracellular parasites of medical and agricultural importance, which can infect almost all animals, including human beings. Using the genome data of Nosema bombycis, four families of miniature inverted-repeat transposable elements (MITEs) in ribosomal DNA (rDNA) were characterized in the microsporidian N. bombycis and were named LSUME1, ITSME1, SSUME1, and SSUME2, respectively. The genome-wide investigation of these MITEs shows that these MITEs families distribute randomly in N. bombycis genome. All insertion sequences have conserved characteristics of MITEs, the direct repeat sequence and terminal inverted-repeat sequence at both ends of each MITEs sequence. Additionally, using the CLC RNA Workbench Software, secondary structures of rRNA containing MITEs sequence have been predicted and were located in variable region or expansion segment. Furthermore, using two different probes, one is prepared by MITE sequence only (short probe) and the other is prepared by MITE sequence flanking partial rDNA sequence (long probe); northern blotting and dot blotting have been performed to detect the transcriptional and functional activity of the rDNA containing MITEs insertion. Fortunately, we found that the rDNA, which harbors the MITE, not only can be transcripted but also can form a complete ribosome. This is an interesting thing that one gene can keep active even when it has been inserted with another sequence. But the biological and structural significance of this observation is not readily apparent.
机译:微孢子虫是一组具有医学和农业重要性的专性细胞内寄生虫,可感染几乎所有动物,包括人类。利用Nosema bombycis的基因组数据,在小孢子虫N. bombycis中鉴定了核糖体DNA(rDNA)中的四个微型反向重复转座因子(MITE)家族,分别命名为LSUME1,ITSME1,SSUME1和SSUME2。这些MITE的全基因组研究表明,这些MITE家族在N. bombycis基因组中随机分布。所有插入序列均具有MITE的保守特征,即每个MITE序列两端的直接重复序列和末端反向重复序列。此外,使用CLC RNA Workbench软件,已预测了包含MITEs序列的rRNA的二级结构,并位于可变区或扩展段。此外,使用两种不同的探针,一种仅通过MITE序列制备(短探针),另一种通过侧翼部分rDNA序列的MITE序列制备(长探针);已经进行了RNA印迹和点印迹以检测含有MITE插入的rDNA的转录和功能活性。幸运的是,我们发现带有MITE的rDNA不仅可以转录,而且可以形成完整的核糖体。有趣的是,即使一个基因插入了另一个序列,它也可以保持活跃。但是这种观察的生物学和结构意义尚不明显。

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