首页> 美国卫生研究院文献>Nucleic Acids Research >Microsporidian Encephalitozoon cuniculi a unicellular eukaryote with an unusual chromosomal dispersion of ribosomal genes and a LSU rRNA reduced to the universal core.
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Microsporidian Encephalitozoon cuniculi a unicellular eukaryote with an unusual chromosomal dispersion of ribosomal genes and a LSU rRNA reduced to the universal core.

机译:微孢子虫脑型脑病一种单核细胞真核生物具有不常见的核糖体基因染色体分散和LSU rRNA减少到通用核心。

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摘要

Microsporidia are eukaryotic parasites lacking mitochondria, the ribosomes of which present prokaryote-like features. In order to better understand the structural evolution of rRNA molecules in microsporidia, the 5S and rDNA genes were investigated in Encephalitozoon cuniculi . The genes are not in close proximity. Non-tandemly arranged rDNA units are on every one of the 11 chromosomes. Such a dispersion is also shown in two other Encephalitozoon species. Sequencing of the 5S rRNA coding region reveals a 120 nt long RNA which folds according to the eukaryotic consensus structural shape. In contrast, the LSU rRNA molecule is greatly reduced in length (2487 nt). This dramatic shortening is essentially due to truncation of divergent domains, most of them being removed. Most variable stems of the conserved core are also deleted, reducing the LSU rRNA to only those structural features preserved in all living cells. This suggests that the E.cuniculi LSU rRNA performs only the basic mechanisms of translation. LSU rRNA phylogenetic analysis with the BASEML program favours a relatively recent origin of the fast evolving microsporidian lineage. Therefore, the prokaryote-like ribosomal features, such as the absence of ITS2, may be derived rather than primitive characters.
机译:微孢子虫是缺乏线粒体的真核寄生虫,其线粒体具有原核生物样特征。为了更好地了解小孢子虫中rRNA分子的结构演变,在钩形脑病中研究了5S和rDNA基因。这些基因不是很接近。非串联排列的rDNA单元位于11条染色体的每条染色体上。这种分散体还显示在另外两个脑头菌种中。 5S rRNA编码区的测序揭示了一个120 nt长的RNA,它根据真核共有结构折叠。相反,LSU rRNA分子的长度大大减少(2487 nt)。这种急剧的缩短本质上是由于不同域的截断,其中大部分已被删除。保守核的大多数可变茎也被删除,从而将LSU rRNA还原为仅保留在所有活细胞中的那些结构特征。这表明,大肠杆菌LSU rRNA仅执行翻译的基本机制。使用BASEML程序对LSU rRNA进行系统发育分析,有利于快速发展的微孢子虫谱系的较近起源。因此,可能会衍生出原核生物样的核糖体特征,例如缺少ITS2,而不是原始特征。

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