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A novel integrative conjugative element mediates genetic transfer from group g streptococcus to other ß-hemolytic streptococci

机译:一种新型的整合共轭元件介导了从g链球菌到其他ß-溶血性链球菌的遗传转移

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摘要

Lateral gene transfer is a significant contributor to the ongoing evolution of many bacterial pathogens, including ß-hemolytic streptococci. Here we provide the first characterization of a novel integrative conjugative element (ICE), ICESde3396, from Streptococcus dysgalactiae subsp. equisimilis (group G streptococcus [GGS]), a bacterium commonly found in the throat and skin of humans. ICESde3396 is 64 kb in size and encodes 66 putative open reading frames. ICESde3396 shares 38 open reading frames with a putative ICE from Strepto- coccus agalactiae (group B streptococcus [GBS]), ICESa2603. In addition to genes involves in conjugal pro- cesses, ICESde3396 also carries genes predicted to be involved in virulence and resistance to various metals. A major feature of ICESde3396 differentiating it from ICESa2603 is the presence of an 18-kb internal recombinogenic region containing four unique gene clusters, which appear to have been acquired from streptococcal and nonstreptococcal bacterial species. The four clusters include two cadmium resistance oper- ons, an arsenic resistance operon, and genes with orthologues in a group A streptococcus (GAS) prophage. Streptococci that naturally harbor ICESde3396 have increased resistance to cadmium and arsenate, indicating the functionality of genes present in the 18-kb recombinogenic region. By marking ICESde3396 with a kanamycin resistance gene, we demonstrate that the ICE is transferable to other GGS isolates as well as GBS and GAS. To investigate the presence of the ICE in clinical streptococcal isolates, we screened 69 isolates (30 GGS, 19 GBS, and 20 GAS isolates) for the presence of three separate regions of ICESde3396. Eleven isolates possessed all three regions, suggesting they harbored ICESde3396-like elements. Another four isolates pos- sessed ICESa2603-like elements. We propose that ICESde3396 is a mobile genetic element that is capable of acquiring DNA from multiple bacterial sources and is a vehicle for dissemination of this DNA through the wider ß-hemolytic streptococcal population.
机译:横向基因转移是许多细菌病原体(包括β-溶血性链球菌)持续进化的重要因素。在这里,我们提供了一个新的整合共轭元件(ICE),ICESde3396的首次表征,它来自dysgalactiae链球菌亚种。 equisimilis(G链球菌[GGS]组),一种常见于人类喉咙和皮肤的细菌。 ICESde3396的大小为64 kb,编码66个假定的开放阅读框。 ICESde3396与无乳链球菌(B型链球菌[GBS]),ICESa2603的推定ICE共有38个开放阅读框。除了涉及接合过程的基因之外,ICESde3396还携带被预测与毒力和对各种金属的抗性有关的基因。 ICESde3396与ICESa2603区别的一个主要特征是存在一个18 kb的内部重组区域,其中包含四个独特的基因簇,这些簇似乎是从链球菌和非链球菌中获得的。这四个集群包括两个抗镉操纵子,一个抗砷操纵子,以及在A组链球菌(GAS)噬菌体中带有直向同源基因的基因。天然包含ICESde3396的链球菌对镉和砷酸的抗性增强,表明存在于18kb重组区域的基因具有功能性。通过用卡那霉素抗性基因标记ICESde3396,我们证明了ICE可转移至其他GGS分离株以及GBS和GAS。为了调查临床链球菌分离物中ICE的存在,我们针对ICESde3396的三个独立区域的存在筛选了69个分离株(30 GGS,19 GBS和20 GAS分离株)。 11个分离株拥有所有三个区域,表明它们带有ICESde3396样元件。另外四个分离株具有ICESa2603样元件。我们提出,ICESde3396是一种可移动的遗传元件,能够从多个细菌来源获取DNA,并且是通过更广泛的ß-溶血性链球菌人群传播这种DNA的媒介。

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