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Multiple Plasmid Vectors Mediate the Spread of fosA3 in Extended-Spectrum-β-Lactamase-Producing Enterobacterales Isolates from Retail Vegetables in China

机译:多种质粒载体介导FOSA3在延长光谱 - β-内酰胺酶的肠杆菌中的涂抹植物中的延长蔬菜

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The plasmid-mediated fosfomycin resistance gene fosA3 has been detected in Enterobacterales from various sources but has rarely been reported in vegetables. In this study, the aim was to investigate the prevalence of and, subsequently, to characterize fosA3 -positive Enterobacterales isolates from retail vegetables. Seventeen (7.3%) fosA3 -carrying strains were identified from 233 extended-spectrum-β-lactamase-producing Enterobacterales isolates from vegetables. All 17 isolates, including six Escherichia coli , seven Klebsiella pneumoniae , two Raoultella ornithinolytica , and two Citrobacter freundii isolates, carried bla CTX-M . S1-nuclease pulsed-field gel electrophoresis (S1-PFGE) and hybridization confirmed that the fosA3 genes in 16 isolates were located on plasmids ranging in size from ~40?kb to ~250?kb, except one located on chromosome of C. freundii . All the fosA3- carrying plasmids from 16 fosA3 -positive isolates were successfully transferred into the recipient bacteria by transformation or conjugation. In agreement with data determined with isolates from food animals, the IncHI2/ST3 and IncN-F33:A-:B-/F33:A-:B plasmids were the main vectors of fosA3 in E. coli . Additionally, F24:A-:B1, IncFII K -IncR, IncFII S , IncR, and two untypeable plasmids were found for the first time to be vectors for fosA3 in Enterobacterales . The genetic contexts of fosA3 in 15 Enterobacterales isolates differed due to insertion and/or loss of molecular modules mediated by mobile elements. However, all fosA3 genes were flanked by IS 26 , as commonly observed in other fosA3 -carrying plasmids. Here, we report a high rate of detection of fosA3 genes, mediated by multiple plasmid vectors, in ESBL-producing Enterobacterales from retail vegetables. FosA3-producing Enterobacterales could be transmitted to the human body by direct contact or consumption of vegetables, which might pose a potential threat to public health. IMPORTANCE This report provides important information on the transmission and epidemiology of fosA3 among Enterobacterales isolates from vegetables. The rate of occurrence of fosA3 in ESBL-producing Enterobacterales from retail vegetables is high, and fosA3 was found to be carried by diverse plasmids. Some novel genetic contexts of fosA3 and novel fosA3 -carrying plasmids, including several plasmid types common in K. pneumoniae , were identified, increasing the number of known transfer vectors for the fosA3 gene and reflecting the complexity of fosA3 transmission in Enterobacterales . The capture of fosA3 by the resident plasmid of K. pneumoniae will accelerate the spread of fosA3 in K. pneumoniae , one of the most pathogenic species in clinical medicine. Considering the clinical importance of fosfomycin, and the fact that vegetables are directly consumed, the fosfomycin resistance genes present a risk of transmission to the human body through the food chain and thus pose a threat to public health.
机译:质粒介导的福杂霉素抗性基因FOSA3已在来自各种来源的肠杆菌中检测到,但很少在蔬菜中报道。在这项研究中,目的是探讨患有零售蔬菜的FOSA3 - 阳性肠杆菌的患病率。从蔬菜中产生233个延长光谱-β-内酰胺酶的肠杆菌分离物,鉴定了17种(7.3%)FOSA3-烧伤菌株。所有17个分离株,包括六个大肠杆菌,七个克利布拉肺炎,两种Raoultella Ornithinolytica和两个柠檬杆菌Freundii分离物,携带BLA CTX-M。 S1-核酸酶脉冲场凝胶电泳(S1-PFGE)和杂交证实,16分离物中的FOSA3基因位于大小的质粒上,除了位于C.Freundii染色体上的〜250ΩkB之外的质粒。 。通过转化或缀合成功转移到16个FOSA3 - 阳性分离物中的所有FOSA3携带质粒成功转移到受体细菌中。同意,与食物动物的分离物测定的数据,INCHI2 / ST3和INCN-F33:A-:B- / F33:A-:B质粒是FOSA3在大肠杆菌中的主要载体。另外,F24:A-:B1,INCFII K-INCR,INCFII S,INCL和两个可下可删除的质粒在进肠菌中的FOSA3载体中发现。 FOSA3在15个肠杆菌的遗传背景下分离株由于移动元件介导的分子模块的插入和/或丧失而不同。然而,所有FOSA3基因都侧翼为26,如在其他FOSA3 - 烧焦质粒中常见。在这里,我们报告了由多种质粒载体介导的FOSA3基因的高度检测率,从零售蔬菜生产ESBL的肠杆菌。生产的肠杆菌可以通过直接接触或消费来传播给人体,这可能会对公共卫生构成潜在的威胁。重要性本报告提供了有关蔬菜分离物中FOSA3的传播和流行病学的重要信息。来自零售蔬菜的ESBL生产的肠杆菌中FOSA3的发生率很高,并且发现FOSA3由不同的质粒携带。鉴定了一些FOSA3和新型FOSA3 - 谱三种质粒的新型遗传背景,包括K.肺炎群中常见的几种质粒类型,增加了FOSA3基因的已知转移载体的数量,并反映了FOSA3在肠杆菌中的复杂性。 K.Pneumoniae的驻留质粒捕获FOSA3将加速临床医学中最致病性最致病性的肺炎肺炎的FOSA3。考虑到福辛霉素的临床重要性,以及蔬菜直接消耗的事实,福斯福霉素抗性基因呈现给人体通过食物链传播的风险,从而对公共卫生构成威胁。

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