Enault François, Briet Arnaud, Bouteille Léa, Roux Simon, Sullivan Matthew B, Petit Marie-Agnès
Clermont Université, Université Blaise Pascal, Laboratoire 'Microorganismes: Génome et Environnement', Clermont-Ferrand, France.
CNRS UMR 6023, LMGE, Aubière, France.
ISME J. 2017 Jan;11(1):237-247. doi: 10.1038/ismej.2016.90. Epub 2016 Jun 21.
Antibiotic resistance genes (ARGs) are pervasive in gut microbiota, but it remains unclear how often ARGs are transferred, particularly to pathogens. Traditionally, ARG spread is attributed to horizontal transfer mediated either by DNA transformation, bacterial conjugation or generalized transduction. However, recent viral metagenome (virome) analyses suggest that ARGs are frequently carried by phages, which is inconsistent with the traditional view that phage genomes rarely encode ARGs. Here we used exploratory and conservative bioinformatic strategies found in the literature to detect ARGs in phage genomes, and experimentally assessed a subset of ARG predicted using exploratory thresholds. ARG abundances in 1181 phage genomes were vastly overestimated using exploratory thresholds (421 predicted vs 2 known), due to low similarities and matches to protein unrelated to antibiotic resistance. Consistent with this, four ARGs predicted using exploratory thresholds were experimentally evaluated and failed to confer antibiotic resistance in Escherichia coli. Reanalysis of available human- or mouse-associated viromes for ARGs and their genomic context suggested that bona fide ARG attributed to phages in viromes were previously overestimated. These findings provide guidance for documentation of ARG in viromes, and reassert that ARGs are rarely encoded in phages.
抗生素抗性基因(ARGs)在肠道微生物群中普遍存在,但ARGs的转移频率,尤其是向病原体的转移频率仍不清楚。传统上,ARGs的传播归因于由DNA转化、细菌接合或广义转导介导的水平转移。然而,最近的病毒宏基因组(病毒组)分析表明,ARGs经常由噬菌体携带,这与噬菌体基因组很少编码ARGs的传统观点不一致。在这里,我们使用文献中发现的探索性和保守性生物信息学策略来检测噬菌体基因组中的ARGs,并通过实验评估了使用探索性阈值预测的一部分ARGs。使用探索性阈值时,1181个噬菌体基因组中的ARGs丰度被高估了很多(预测有421个,而已知的只有2个),原因是与抗生素抗性无关的蛋白质的相似性和匹配度较低。与此一致的是,对使用探索性阈值预测的四个ARGs进行了实验评估,结果它们在大肠杆菌中未能赋予抗生素抗性。对现有的与人类或小鼠相关的病毒组进行ARGs及其基因组背景的重新分析表明,病毒组中归因于噬菌体的真正ARGs之前被高估了。这些发现为病毒组中ARGs的记录提供了指导,并再次强调ARGs很少在噬菌体中编码。