首页> 外文期刊>Journal of Medical Microbiology: An Official Journal of the Pathological Society of Great Britain and Ireland >Oral cavities of healthy infants harbour high proportions of Streptococcus salivarius strains with phenotypic and genotypic resistance to multiple classes of antibiotics
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Oral cavities of healthy infants harbour high proportions of Streptococcus salivarius strains with phenotypic and genotypic resistance to multiple classes of antibiotics

机译:健康婴儿的口腔中含有大量比例的唾液链球菌菌株,它们对多种抗生素具有表型和基因型抗性

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Emerging antibiotic resistance in the oropharyngeal microbiota, of which Streptococcus salivarius is a prominent species, represents a challenge for treating paediatric populations. In this study, we investigated the role of Streptococcussalivarius as a reservoir for antibiotic resistance genes (ARG) in the oral microbiota by analysing 95 Streptococcussalivarius isolates from 22 healthy infants (2–16 months of age). MICs of penicillin G, amoxicillin, erythromycin, tetracycline, doxycycline and streptomycin were determined. ARG profiles were assessed in a subset of 21 strains by next-generation sequencing of genomes, followed by searches of assembled reads against the Comprehensive Antibiotic Resistance Database. Strains resistant to erythromycin, penicillins and tetracyclines were isolated from 83.3, 33.3 and 16.6?%, respectively, of infants aged 2 to 8 months with no prior antibiotic treatment. These percentages were100.0, 66.6 and 50.0?%, by 13 to 16 months of age. ARG or polymorphisms associated with antibiotic resistance were the most prevalent and involved genes for macrolide efflux (mel, mefA/E and macB), ribosomal protection [erm(B), tet(M) and tet(O)] and β-lactamase-like proteins. Phylogenetically related strains showing multidrug-resistant phenotypes harboured multidrug efflux ARG. Polymorphic genes associated with antibiotic resistance to drugs affecting DNA replication, folate synthesis, RNA/protein synthesis and regulators of antibiotic stress responses were detected. These data imply that Streptococcussalivarius strains established during maturation of the oral microbiota harbour a diverse array of functional ARG, even in the absence of antibiotic selective pressures, highlighting a potential role for this species in shaping antibiotic susceptibility profiles of oropharyngeal communities.
机译:唾液链球菌是其中的突出种,口咽微生物群中出现了新的抗生素耐药性,这对治疗儿科人群是一个挑战。在这项研究中,我们通过分析22例健康婴儿(2-16个月大)中的95株链球菌分离株,研究了链霉菌在口腔微生物群中作为抗生素抗性基因(ARG)的贮库的作用。测定了青霉素G,阿莫西林,红霉素,四环素,强力霉素和链霉素的MIC。通过下一代基因组测序对21个菌株的ARG谱进行评估,然后针对综合抗生素抗性数据库搜索组装的读数。在未接受抗生素治疗的2至8个月大的婴儿中,分别从83.3%,33.3%和16.6 %%分离出对红霉素,青霉素和四环素有抗药性的菌株。到13至16个月大时,这些百分比分别为100.0%,66.6和50.0%。与抗生素抗性相关的ARG或多态性是最常见的基因,涉及大环内酯外排基因(mel,mefA / E和macB),核糖体保护[erm(B),tet(M)和tet(O)]和β-内酰胺酶-像蛋白质。系统发育相关的菌株表现出多药耐药表型携带多药外排ARG。检测到与对DNA复制,叶酸合成,RNA /蛋白质合成和抗生素应激反应调节剂的药物具有抗生素抗性相关的多态性基因。这些数据表明,即使在没有抗生素选择压力的情况下,口腔微生物群成熟期间建立的链球菌菌株也具有多种功能性ARG,突出了该物种在塑造口咽群落抗生素敏感性方面的潜在作用。

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