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首页> 外文期刊>BMC Genomics >The dnd operon for DNA phosphorothioation modification system in Escherichia coli is located in diverse genomic islands
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The dnd operon for DNA phosphorothioation modification system in Escherichia coli is located in diverse genomic islands

机译:大肠杆菌DNA硫代磷酸化修饰系统的dnd操纵子位于不同的基因组岛中

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Strains of Escherichia coli that are non-typeable by pulsed-field gel electrophoresis (PFGE) due to in-gel degradation can influence their molecular epidemiological data. The DNA degradation phenotype (Dnd+) is mediated by the dnd operon that encode enzymes catalyzing the phosphorothioation of DNA, rendering the modified DNA susceptible to oxidative cleavage during a PFGE run. In this study, a PCR assay was developed to detect the presence of the dnd operon in Dnd+ E. coli strains and to improve their typeability. Investigations into the genetic environments of the dnd operon in various E. coli strains led to the discovery that the dnd operon is harboured in various diverse genomic islands. The dndBCDE genes (dnd operon) were detected in all Dnd+ E. coli strains by PCR. The addition of thiourea improved the typeability of Dnd+ E. coli strains to 100% using PFGE and the Dnd+ phenotype can be observed in both clonal and genetically diverse E. coli strains. Genomic analysis of 101 dnd operons from genome sequences of Enterobacteriaceae revealed that the dnd operons of the same bacterial species were generally clustered together in the phylogenetic tree. Further analysis of dnd operons of 52 E. coli genomes together with their respective immediate genetic environments revealed a total of 7 types of genetic organizations, all of which were found to be associated with genomic islands designated dnd-encoding GIs. The dnd-encoding GIs displayed mosaic structure and the genomic context of the 7 islands (with 1 representative genome from each type of genetic organization) were also highly variable, suggesting multiple recombination events. This is also the first report where two dnd operons were found within a strain although the biological implication is unknown. Surprisingly, dnd operons were frequently found in pathogenic E. coli although their link with virulence has not been explored. Genomic islands likely play an important role in facilitating the horizontal gene transfer of the dnd operons in E. coli with 7 different types of islands discovered so far.
机译:由于凝胶内降解而无法通过脉冲场凝胶电泳(PFGE)进行分型的大肠杆菌菌株可能会影响其分子流行病学数据。 DNA降解表型(Dnd +)由dnd操纵子介导,该操纵子编码催化DNA的硫代磷酸化的酶,使修饰的DNA易于在PFGE运行期间被氧化裂解。在这项研究中,开发了一种PCR检测法来检测Dnd +大肠杆菌菌株中dnd操纵子的存在并提高其可分型性。对各种大肠杆菌菌株中dnd操纵子的遗传环境的调查导致发现dnd操纵子存在于各种不同的基因组岛中。通过PCR在所有Dnd +大肠杆菌菌株中检​​测到dndBCDE基因(dnd操纵子)。使用PFGE加入硫脲可将Dnd +大肠杆菌菌株的可打字性提高到100%,并且在克隆和遗传多样的大肠杆菌菌株中均可观察到Dnd +表型。从肠杆菌科的基因组序列对101个dnd操纵子进行基因组分析表明,同一细菌种类的dnd操纵子通常在系统树中聚在一起。对52个大肠杆菌基因组的dnd操纵子及其各自直接的遗传环境的进一步分析揭示了总共7种类型的遗传组织,所有这些基因组都与指定为dnd编码GI的基因组岛有关。 dnd编码的GIs显示出镶嵌结构,并且7个岛(每个遗传组织类型都有1个代表性基因组)的基因组背景也高度可变,表明存在多个重组事件。这也是首次报告,尽管在生物学上尚不清楚,但在一个菌株中发现了两个dnd操纵子。令人惊讶的是,尽管尚未探究dnd操纵子与致病性的联系,但在致病性大肠杆菌中经常发现它们。基因组岛可能在促进大肠杆菌中dnd操纵子的水平基因转移方面起着重要作用,迄今为止已发现7种不同类型的岛。

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