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ICESsuHN105 a Novel Multiple Antibiotic Resistant ICE in Streptococcus suis Serotype 5 Strain HN105

机译:ICESsuHN105猪链球菌血清型5菌株HN105的新型多重抗生素抗性ICE

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摘要

Streptococcus suis serotype 5, an emerging zoonosis bacterial pathogen, has been isolated from infections in both pigs and humans. In this study, we sequenced the first complete genome of a virulent, multidrug-resistant SS5 strain HN105. The strain HN105 displayed enhanced pathogenicity in zebrafish and BABL/c mouse infection models. Comparative genome analysis identified a novel 80K integrative conjugative element (ICE), ICESsuHN105, as required for the multidrug resistance phenotype. Six corresponding antibiotic resistance genes in this ICE were identified, namely tet (O), tet (M), erm (two copies), aph, and spc. Phylogenetic analysis classified the element as a homolog of the ICESa2603 family, containing the typical family backbone and insertion DNA. DNA hybrids mediated by natural transformation between HN105 and ZY05719 verified the antibiotic resistant genes of ICESsuHN105 that could be transferred successfully, while they were dispersedly inserted with a single gene in different genomic locations of ZY05719(HN105) transformants. To further identify the horizontal transfer of ICESsuHN105 as a whole mobile genetic element, a circular intermediate form of ICESsuHN105 was detected by PCR. However, the effective conjugation using serotype 2 S. suis as recipients was not observed in current assays in vitro. Further studies confirmed the presence of the complete lantibiotic locus encoded in ICESsuHN105 that effectively inhibits the growth of other streptococci. In summary, this study demonstrated the presence of antibiotic resistance genes in ICE that are able to transfer between different clinical isolates and adapt to a broader range of Streptococcus serotype or species.
机译:猪链球菌血清型5(一种新兴的人畜共患病细菌病原体)已从猪和人的感染中分离出来。在这项研究中,我们对有毒,耐多药的SS5菌株HN105的第一个完整基因组进行了测序。 HN105菌株在斑马鱼和BABL / c小鼠感染模型中显示出增强的致病性。比较基因组分析确定了一种新型的80K整合缀合元件(ICE),ICESsuHN105,这是多药耐药表型所必需的。在该ICE中鉴定出六个相应的抗生素抗性基因,即tet(O),tet(M),erm(两个副本),aph和spc。系统发生分析将该元素归类为ICESa2603家族的同系物,包含典型的家族骨架和插入DNA。 HN105和ZY05719之间自然转化介导的DNA杂合体证实了ICESsuHN105的抗生素抗性基因可以成功转移,而它们却与单个基因分散插入ZY05719(HN105)转化子的不同基因组位置。为了进一步确定ICESsuHN105的水平转移是整个移动遗传元件,通过PCR检测了ICESsuHN105的圆形中间形式。但是,在目前的体外测定中未观察到使用血清型2型猪链球菌作为受体的有效结合。进一步的研究证实,ICESsuHN105中编码的完整羊毛硫抗生素基因座的存在有效地抑制了其他链球菌的生长。总而言之,这项研究证明了ICE中存在抗生素抗性基因,这些基因能够在不同的临床分离株之间转移并适应更广泛的链球菌血清型或物种。

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