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基因和加工的假基因共存于植物的线粒体中。

Genes and processed paralogs co-exist in plant mitochondria.

机构信息

Botanical Garden, Natural History Museum of Denmark, University of Copenhagen, Sølvgade 83 Opg. S, 1307, Copenhagen K, Denmark.

出版信息

J Mol Evol. 2012 Apr;74(3-4):158-69. doi: 10.1007/s00239-012-9496-1. Epub 2012 Apr 7.

Abstract

RNA-mediated gene duplication has been proposed to create processed paralogs in the plant mitochondrial genome. A processed paralog may retain signatures left by the maturation process of its RNA precursor, such as intron removal and no need of RNA editing. Whereas it is well documented that an RNA intermediary is involved in the transfer of mitochondrial genes to the nucleus, no direct evidence exists for insertion of processed paralogs in the mitochondria (i.e., processed and un-processed genes have never been found simultaneously in the mitochondrial genome). In this study, we sequenced a region of the mitochondrial gene nad1, and identified a number of taxa were two different copies of the region co-occur in the mitochondria. The two nad1 paralogs differed in their (a) presence or absence of a group II intron, and (b) number of edited sites. Thus, this work provides the first evidence of co-existence of processed paralogs and their precursors within the plant mitochondrial genome. In addition, mapping the presence/absence of the paralogs provides indirect evidence of RNA-mediated gene duplication as an essential process shaping the mitochondrial genome in plants.

摘要

RNA 介导的基因复制被认为是植物线粒体基因组中产生加工后的基因的原因。加工后的基因可能保留了其 RNA 前体成熟过程留下的特征,例如内含子的去除和不需要 RNA 编辑。虽然已经有充分的证据表明 RNA 中间体参与了线粒体基因向细胞核的转移,但目前还没有直接证据表明加工后的基因插入到线粒体中(即,从未同时在线粒体基因组中发现过加工和未加工的基因)。在这项研究中,我们对线粒体基因 nad1 的一个区域进行了测序,并发现了一些分类群中同时存在该区域的两个不同拷贝。这两个 nad1 基因的差异在于:(a)是否存在 II 型内含子,和(b)编辑位点的数量。因此,这项工作首次提供了植物线粒体基因组中加工后的基因及其前体共存的证据。此外,对基因的存在/缺失进行映射提供了 RNA 介导的基因复制作为塑造植物线粒体基因组的基本过程的间接证据。

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