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粪肠球菌ST192德国临床分离株的群体结构及vanB耐药决定簇的获得情况

Population structure and acquisition of the vanB resistance determinant in German clinical isolates of Enterococcus faecium ST192.

作者信息

Bender Jennifer K, Kalmbach Alexander, Fleige Carola, Klare Ingo, Fuchs Stephan, Werner Guido

机构信息

National Reference Centre for Staphylococci and Enterococci, Robert Koch Institute, Department of Infectious Diseases, Wernigerode, 38855, Germany.

出版信息

Sci Rep. 2016 Feb 23;6:21847. doi: 10.1038/srep21847.

Abstract

In the context of the global action plan to reduce the dissemination of antibiotic resistances it is of utmost importance to understand the population structure of resistant endemic bacterial lineages and to elucidate how bacteria acquire certain resistance determinants. Vancomycin resistant enterococci represent one such example of a prominent nosocomial pathogen on which nation-wide population analyses on prevalent lineages are scarce and data on how the bacteria acquire resistance, especially of the vanB genotype, are still under debate. With respect to Germany, an increased prevalence of VRE was noted in recent years. Here, invasive infections caused by sequence type ST192 VRE are often associated with the vanB-type resistance determinant. Hence, we analyzed 49 vanB-positive and vanB-negative E. faecium isolates by means of whole genome sequencing. Our studies revealed a distinct population structure and that spread of the Tn1549-vanB-type resistance involves exchange of large chromosomal fragments between vanB-positive and vanB-negative enterococci rather than independent acquisition events. In vitro filter-mating experiments support the hypothesis and suggest the presence of certain target sequences as a limiting factor for dissemination of the vanB element. Thus, the present study provides a better understanding of how enterococci emerge into successful multidrug-resistant nosocomial pathogens.

摘要

在全球减少抗生素耐药性传播行动计划的背景下,了解耐药性本地细菌谱系的种群结构以及阐明细菌如何获得某些耐药决定因素至关重要。耐万古霉素肠球菌就是这样一种突出的医院病原体,目前缺乏对其流行谱系的全国性种群分析,而且关于细菌如何获得耐药性的数据,尤其是vanB基因型的耐药性数据仍存在争议。就德国而言,近年来耐万古霉素肠球菌的患病率有所上升。在这里,由序列类型ST192耐万古霉素肠球菌引起的侵袭性感染通常与vanB型耐药决定因素有关。因此,我们通过全基因组测序分析了49株vanB阳性和vanB阴性粪肠球菌分离株。我们的研究揭示了一种独特的种群结构,并且Tn1549 - vanB型耐药性的传播涉及vanB阳性和vanB阴性肠球菌之间大的染色体片段交换,而不是独立的获得事件。体外滤膜接合实验支持了这一假设,并表明某些靶序列的存在是vanB元件传播的限制因素。因此,本研究有助于更好地理解肠球菌如何演变成成功的多重耐药医院病原体。

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