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DNA从细菌到真核生物的转移。

Transfer of DNA from Bacteria to Eukaryotes.

作者信息

Lacroix Benoît, Citovsky Vitaly

机构信息

Department of Biochemistry and Cell Biology, State University of New York, Stony Brook, New York, USA

Department of Biochemistry and Cell Biology, State University of New York, Stony Brook, New York, USA.

出版信息

mBio. 2016 Jul 12;7(4):e00863-16. doi: 10.1128/mBio.00863-16.

Abstract

Historically, the members of the Agrobacterium genus have been considered the only bacterial species naturally able to transfer and integrate DNA into the genomes of their eukaryotic hosts. Yet, increasing evidence suggests that this ability to genetically transform eukaryotic host cells might be more widespread in the bacterial world. Indeed, analyses of accumulating genomic data reveal cases of horizontal gene transfer from bacteria to eukaryotes and suggest that it represents a significant force in adaptive evolution of eukaryotic species. Specifically, recent reports indicate that bacteria other than Agrobacterium, such as Bartonella henselae (a zoonotic pathogen), Rhizobium etli (a plant-symbiotic bacterium related to Agrobacterium), or even Escherichia coli, have the ability to genetically transform their host cells under laboratory conditions. This DNA transfer relies on type IV secretion systems (T4SSs), the molecular machines that transport macromolecules during conjugative plasmid transfer and also during transport of proteins and/or DNA to the eukaryotic recipient cells. In this review article, we explore the extent of possible transfer of genetic information from bacteria to eukaryotic cells as well as the evolutionary implications and potential applications of this transfer.

摘要

从历史上看,土壤杆菌属的成员一直被认为是唯一能够自然地将DNA转移并整合到其真核宿主基因组中的细菌物种。然而,越来越多的证据表明,这种遗传转化真核宿主细胞的能力在细菌界可能更为普遍。事实上,对不断积累的基因组数据的分析揭示了从细菌到真核生物的水平基因转移案例,并表明这是真核物种适应性进化中的一股重要力量。具体而言,最近的报告表明,除土壤杆菌外的其他细菌,如汉赛巴尔通体(一种人畜共患病原体)、根瘤菌(一种与土壤杆菌相关的植物共生细菌),甚至大肠杆菌,在实验室条件下都有遗传转化其宿主细胞的能力。这种DNA转移依赖于IV型分泌系统(T4SSs),该分子机器在接合质粒转移过程中以及在将蛋白质和/或DNA运输到真核受体细胞的过程中运输大分子。在这篇综述文章中,我们探讨了从细菌到真核细胞的遗传信息可能转移的程度,以及这种转移的进化意义和潜在应用。

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