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口腔微生物群中的细菌进化:接合元件与水平基因转移的作用

Bacterial evolution in the oral microbiome: the role of conjugative elements and horizontal gene transfer.

作者信息

Renno Allison J, Shields Robert C, McLellan Lisa K

机构信息

Department of Biological Sciences, Purdue University Fort Wayne, Fort Wayne, Indiana, USA.

Department of Biological Sciences, Arkansas State University, Jonesboro, Arkansas, USA.

出版信息

J Bacteriol. 2025 Jul 24;207(7):e0006625. doi: 10.1128/jb.00066-25. Epub 2025 Jul 1.

Abstract

As one of the most diverse bacterial populations within the human body, the oral microbiome encodes a wealth of genetic information. Horizontal gene transfer, driven by mobile genetic elements, takes advantage of this information to influence bacterial evolution and the spread of phenotypes (antibiotic resistances, virulence attributes, and metabolic capabilities) among oral microbes. Although widespread within microbial communities, fundamental aspects of the mobile elements that drive horizontal gene transfer within the oral cavity remain poorly understood. In this review, we explore what is known about the role of horizontal gene transfer in bacterial evolution within the oral microbiome and the elements that facilitate this transfer, with a specific focus on conjugative DNA transfer. Conjugative elements are found in virtually all bacterial phylogenetic clades, and some can mediate genetic exchange between distantly related organisms. This is of particular interest in the diverse microcosm of the oral cavity, specifically how it drives the evolution and virulence of dental pathogens. Finally, we highlight advances in our understanding of the unique biology within dental plaque and how these might influence our understanding of bacterial gene transfer, and thus human health and disease.

摘要

作为人体内最多样化的细菌群体之一,口腔微生物群编码了丰富的遗传信息。由移动遗传元件驱动的水平基因转移利用这些信息来影响细菌进化以及口腔微生物之间表型(抗生素抗性、毒力属性和代谢能力)的传播。尽管在微生物群落中广泛存在,但驱动口腔内水平基因转移的移动元件的基本方面仍知之甚少。在这篇综述中,我们探讨了关于水平基因转移在口腔微生物群中细菌进化中的作用以及促进这种转移的元件的已知情况,特别关注接合性DNA转移。接合元件几乎存在于所有细菌系统发育分支中,有些可以介导远缘相关生物体之间的基因交换。这在口腔这个多样的微观世界中尤其令人感兴趣,特别是它如何驱动牙菌斑病原体的进化和毒力。最后,我们强调了我们对牙菌斑内独特生物学的理解方面的进展,以及这些进展可能如何影响我们对细菌基因转移的理解,进而影响人类健康和疾病。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8c41/12288475/443fbb2109c9/jb.00066-25.f001.jpg

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