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Genetic diversity and antimicrobial resistance  inStreptococcus agalactiae strains recovered from female carriersin the Bucharest area

机译:遗传多样性和抗药性从女性携带者中回收无乳链球菌菌株在布加勒斯特地区

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摘要

For the first time, we used multilocus sequence typing (MLST) to understand how Romanian group B streptococcus (GBS) strains fit into the global GBS population structure. Colonising isolates recovered from adult human females were tested for antibiotic resistance, were molecularly serotyped based on the capsular polysaccharide synthesis (cps) gene cluster and further characterised using a set of molecular markers (surface protein genes, pilus-encoded islands and mobile genetic elements inserted in the scpB-lmb intergenic region). Pulsed-field gel electrophoresis was used to complement the MLST clonal distribution pattern of selected strains. Among the 55 strains assigned to six cps types (Ia, Ib, II-V), 18 sequence types (STs) were identified by MLST. Five STs represented new entries to the MLST database. The prevalent STs were ST-1, ST-17, ST-19 and ST-28. Twenty molecular marker profiles were identified. The most common profiles (rib+GBSi1+PI-1, rib+GBSi1+PI-1, PI-2b and alp2/3+PI-1, PI-2a) were associated with the cps III/ST-17 and cps V/ST-1 strains. A cluster of fluoroquinolone-resistant strains was detected among the cps V/ST-19 members; these strains shared alp1and IS1548 and carried PI-1, PI-2a or both. Our resultssupport the usefulness of implementing an integrated genotyping system at thereference laboratory level to obtain the reliable data required to make comparisonsbetween countries.
机译:我们首次使用多基因座序列分型(MLST)来了解罗马尼亚B组链球菌(GBS)菌株如何适应全球GBS种群结构。测试了从成年女性中回收的定殖分离株的抗生素抗性,并基于荚膜多糖合成(cps)基因簇进行了分子血清分型,并使用了一系列分子标记(表面蛋白基因,菌毛编码的岛和插入的移动遗传元件)进行了进一步表征在scpB-lmb基因间区域)。脉冲场凝胶电泳用于补充所选菌株的MLST克隆分布模式。 MLST鉴定了55种菌株,这些菌株被分配给6种cps类型(Ia,Ib,II-V),其中18种序列类型(STs)被鉴定出来。五个ST代表MLST数据库的新条目。流行的ST是ST-1,ST-17,ST-19和ST-28。鉴定了二十种分子标记物谱。最常见的配置文件(rib + GBSi1 + PI-1,rib + GBSi1 + PI-1,PI-2b和alp2 / 3 + PI-1,PI-2a)与cps III / ST-17和cps V相关/ ST-1菌株。在cps V / ST-19成员中检测到一簇耐氟喹诺酮菌株;这些菌株共享alp1和IS1548,并携带PI-1,PI-2a或两者。我们的结果支持在该机构实施综合基因分型系统的有用性参考实验室水平以获得进行比较所需的可靠数据国家之间。

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