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贝氏疏螺旋体基因转移因子:进化、功能及在宿主适应中的作用。

Bartonella gene transfer agent: Evolution, function, and proposed role in host adaptation.

机构信息

Biozentrum, University of Basel, Basel, Switzerland.

出版信息

Cell Microbiol. 2019 Nov;21(11):e13068. doi: 10.1111/cmi.13068. Epub 2019 Jul 9.

Abstract

The processes underlying host adaptation by bacterial pathogens remain a fundamental question with relevant clinical, ecological, and evolutionary implications. Zoonotic pathogens of the genus Bartonella constitute an exceptional model to study these aspects. Bartonellae have undergone a spectacular diversification into multiple species resulting from adaptive radiation. Specific adaptations of a complex facultative intracellular lifestyle have enabled the colonisation of distinct mammalian reservoir hosts. This remarkable host adaptability has a multifactorial basis and is thought to be driven by horizontal gene transfer (HGT) and recombination among a limited genus-specific pan genome. Recent functional and evolutionary studies revealed that the conserved Bartonella gene transfer agent (BaGTA) mediates highly efficient HGT and could thus drive this evolution. Here, we review the recent progress made towards understanding BaGTA evolution, function, and its role in the evolution and pathogenesis of Bartonella spp. We notably discuss how BaGTA could have contributed to genome diversification through recombination of beneficial traits that underlie host adaptability. We further address how BaGTA may counter the accumulation of deleterious mutations in clonal populations (Muller's ratchet), which are expected to occur through the recurrent transmission bottlenecks during the complex infection cycle of these pathogens in their mammalian reservoir hosts and arthropod vectors.

摘要

细菌病原体宿主适应的潜在过程仍然是一个具有重要临床、生态和进化意义的基本问题。巴尔通体属的人畜共患病原体是研究这些方面的一个特殊模型。巴尔通体经历了壮观的多样化,形成了适应性辐射的多个物种。复杂兼性细胞内生活方式的特定适应使它们能够定殖于不同的哺乳动物宿主。这种显著的宿主适应性具有多因素基础,被认为是由水平基因转移(HGT)和有限的属特异性泛基因组之间的重组驱动的。最近的功能和进化研究表明,保守的巴尔通体基因转移因子(BaGTA)介导了高效的 HGT,因此可以驱动这种进化。在这里,我们回顾了近年来在理解 BaGTA 进化、功能及其在巴尔通体属进化和发病机制中的作用方面取得的进展。我们特别讨论了 BaGTA 如何通过重组有益性状来促进基因组多样化,这些性状是宿主适应性的基础。我们进一步探讨了 BaGTA 如何对抗在这些病原体在其哺乳动物宿主和节肢动物媒介中的复杂感染周期中反复发生的传播瓶颈导致的克隆种群(穆勒棘轮)中有害突变的积累。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cccb/6899734/185bbc6f5feb/CMI-21-na-g001.jpg

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