Dorado-Morales Pedro, Lambérioux Morgan, Mazel Didier
Institut Pasteur, Université de Paris, Unité Plasticité du Génome Bactérien, et CNRS, UMR3525, Paris, France.
Mol Microbiol. 2024 Sep;122(3):273-283. doi: 10.1111/mmi.15147. Epub 2023 Sep 2.
In recent decades, there has been a rapid increase in the prevalence of multidrug-resistant pathogens, posing a challenge to modern antibiotic-based medicine. This has highlighted the need for novel treatments that can specifically affect the target microorganism without disturbing other co-inhabiting species, thus preventing the development of dysbiosis in treated patients. Moreover, there is a pressing demand for tools to effectively manipulate complex microbial populations. One of the approaches suggested to address both issues was to use conjugation as a tool to modify the microbiome by either editing the genome of specific bacterial species and/or the removal of certain taxonomic groups. Conjugation involves the transfer of DNA from one bacterium to another, which opens up the possibility of introducing, modifying or deleting specific genes in the recipient. In response to this proposal, there has been a significant increase in the number of studies using this method for gene delivery in bacterial populations. This MicroReview aims to provide a detailed overview on the use of conjugation for microbiome engineering, and at the same time, to initiate a discussion on the potential, limitations and possible future directions of this approach.
近几十年来,多重耐药病原体的流行率迅速上升,给现代抗生素医学带来了挑战。这凸显了对新型治疗方法的需求,这种方法能够特异性地影响目标微生物,而不干扰其他共生物种,从而防止接受治疗的患者出现生态失调。此外,迫切需要有效操控复杂微生物群落的工具。为解决这两个问题而提出的一种方法是将接合作用用作一种工具,通过编辑特定细菌物种的基因组和/或去除某些分类群来改变微生物组。接合作用涉及DNA从一种细菌转移到另一种细菌,这为在受体中引入、修饰或删除特定基因提供了可能性。针对这一建议,使用这种方法在细菌群体中进行基因传递的研究数量显著增加。本微型综述旨在详细概述接合作用在微生物组工程中的应用,同时引发关于该方法的潜力、局限性和可能的未来方向的讨论。