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开花植物中线粒体基因的广泛水平转移。

Widespread horizontal transfer of mitochondrial genes in flowering plants.

作者信息

Bergthorsson Ulfar, Adams Keith L, Thomason Brendan, Palmer Jeffrey D

机构信息

Department of Biology, Indiana University, Bloomington, Indiana 47405, USA.

出版信息

Nature. 2003 Jul 10;424(6945):197-201. doi: 10.1038/nature01743.

Abstract

Horizontal gene transfer--the exchange of genes across mating barriers--is recognized as a major force in bacterial evolution. However, in eukaryotes it is prevalent only in certain phagotrophic protists and limited largely to the ancient acquisition of bacterial genes. Although the human genome was initially reported to contain over 100 genes acquired during vertebrate evolution from bacteria, this claim was immediately and repeatedly rebutted. Moreover, horizontal transfer is unknown within the evolution of animals, plants and fungi except in the special context of mobile genetic elements. Here we show, however, that standard mitochondrial genes, encoding ribosomal and respiratory proteins, are subject to evolutionarily frequent horizontal transfer between distantly related flowering plants. These transfers have created a variety of genomic outcomes, including gene duplication, recapture of genes lost through transfer to the nucleus, and chimaeric, half-monocot, half-dicot genes. These results imply the existence of mechanisms for the delivery of DNA between unrelated plants, indicate that horizontal transfer is also a force in plant nuclear genomes, and are discussed in the contexts of plant molecular phylogeny and genetically modified plants.

摘要

水平基因转移——跨越交配屏障的基因交换——被认为是细菌进化中的一股主要力量。然而,在真核生物中,它仅在某些吞噬营养型原生生物中普遍存在,并且在很大程度上仅限于对细菌基因的古老获取。尽管最初有报道称人类基因组包含在脊椎动物进化过程中从细菌获得的100多个基因,但这一说法立即遭到了反复反驳。此外,除了在移动遗传元件的特殊情况下,动物、植物和真菌的进化过程中不存在水平转移。然而,我们在此表明,编码核糖体蛋白和呼吸蛋白的标准线粒体基因在亲缘关系较远的开花植物之间频繁发生进化水平转移。这些转移产生了多种基因组结果,包括基因重复、重新获得因转移到细胞核而丢失的基因,以及嵌合的半单子叶、半双子叶基因。这些结果意味着存在不相关植物之间DNA传递的机制,表明水平转移也是植物核基因组中的一股力量,并在植物分子系统发育和转基因植物的背景下进行了讨论。

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