Bacteria of the order Burkholderiales are original environmental hosts of type II trimethoprim resistance genes (dfrB)

David Kneis, Faina Tskhay, Magali de la Cruz Barron, Thomas U Berendonk
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Abstract

It is consensus that clinically relevant antibiotic resistance genes have their origin in environmental bacteria, including the large pool of primarily benign species. Yet, for the vast majority of acquired antibiotic resistance genes, the original environmental host(s) have not been identified to date. Closing this knowledge gap could improve our understanding of how antimicrobial resistance proliferates in the bacterial domain and shed light on the crucial step of initial resistance gene mobilization in particular. Here, we combine information from publicly available long- and short-read environmental metagenomes as well as whole-genome sequences to identify the original environmental hosts of dfrB, a family of genes conferring resistance to trimethoprim. Although this gene family stands in the shadow of the more widespread, structurally different dfrA, it has recently gained attention through the discovery of several new members. Based on the genetic context of dfrB observed in long-read metagenomes, we predicted bacteria of the order Burkholderiales to function as original environmental hosts of the predominant gene variants in both soil and freshwater. The predictions were independently confirmed by whole-genome datasets and statistical correlations between dfrB abundance and taxonomic composition of environmental bacterial communities. Our study suggests that Burkholderiales in general and the family Comamonadaceae in particular represent environmental origins of dfrB genes, some of which now contribute to the acquired resistome of facultative pathogens. We propose that our workflow centered around long-read environmental metagenomes allows for the identification of the original hosts of further clinically relevant antibiotic resistance genes.
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伯克氏菌目细菌是II型甲氧苄氨嘧啶耐药基因(dfrB)的原始环境宿主。
人们一致认为,临床相关的抗生素耐药基因起源于环境细菌,包括大量主要良性物种。然而,对于绝大多数获得性抗生素耐药基因,其原始环境宿主迄今尚未确定。缩小这一知识差距可以提高我们对抗菌素耐药性如何在细菌领域扩散的理解,并特别阐明初始抗性基因动员的关键步骤。在这里,我们结合了来自公开的长读和短读环境宏基因组以及全基因组序列的信息,以确定dfrB的原始环境宿主,dfrB是一种赋予甲氧苄氨嘧啶抗性的基因家族。虽然这个基因家族处于更广泛的、结构不同的dfrA的阴影之下,但最近通过发现几个新成员而引起了人们的注意。基于在长读宏基因组中观察到的dfrB遗传背景,我们预测Burkholderiales细菌是土壤和淡水中优势基因变异的原始环境宿主。这些预测得到了全基因组数据集和dfrB丰度与环境细菌群落分类组成之间的统计相关性的独立证实。我们的研究表明,Burkholderiales和Comamonadaceae家族代表了dfrB基因的环境起源,其中一些基因现在有助于获得性兼性病原体的抗性组。我们提出,我们的工作流程以长读环境宏基因组为中心,允许进一步鉴定临床相关抗生素耐药基因的原始宿主。
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