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红藻和褐藻核糖体RNA之间的I组内含子横向转移

Group I intron lateral transfer between red and brown algal ribosomal RNA.

作者信息

Bhattacarya D, Cannone J J, Gutell R R

机构信息

Department of Biological Sciences, University of Iowa, Iowa City 52242-1324, USA.

出版信息

Curr Genet. 2001 Aug;40(1):82-90. doi: 10.1007/s002940100227.

Abstract

How group I introns originate in nuclear ribosomal (r)RNA genes is an important question in evolutionary biology. Central to this issue is the multitude of group I introns present in evolutionarily distantly related plant, fungal, and protist lineages, together with an understanding of their origin and lateral transfer from one exon to another, between cell organelles, and between cells. These introns vary considerably in primary and secondary structure; and their provenance from a few or perhaps many mobile elements that have spread in rRNAs is unknown. Here we show that a novel lineage of group IC1 introns inserted at position 516 (Escherichia coli gene numbering) in the small subunit rRNA in bangiophyte red algae and a brown alga (Aureoumbra lagunensis) are specifically related, although their host cells are not. These bangiophyte and Aureoumbra introns are the only known cases that have a helical insertion in the P5b helix. The highly conserved primary and secondary structure of the extra P5b helix suggests that it is important, although its specific function is unknown. Our study attempts to understand the origin and movement of these IC1 introns.

摘要

第一类内含子如何在核糖核蛋白(r)RNA基因中起源是进化生物学中的一个重要问题。这个问题的核心在于,在进化关系遥远的植物、真菌和原生生物谱系中存在大量第一类内含子,同时要理解它们的起源以及从一个外显子横向转移到另一个外显子、在细胞器之间以及细胞之间的转移情况。这些内含子在一级和二级结构上差异很大;而且它们源自少数或可能许多在rRNA中传播的移动元件,这一点尚不清楚。在这里我们表明,在红毛菜纲红藻和一种褐藻(Aureoumbra lagunensis)的小亚基rRNA中插入在位置516(大肠杆菌基因编号)的一类新型IC1内含子谱系是特别相关的,尽管它们的宿主细胞并不相关。这些红毛菜纲和Aureoumbra内含子是已知仅有的在P5b螺旋中有螺旋插入的情况。额外的P5b螺旋高度保守的一级和二级结构表明它很重要,尽管其具体功能尚不清楚。我们的研究试图理解这些IC1内含子的起源和移动情况。

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