首页> 美国卫生研究院文献>other >Distinct Genomic Features Characterize Two Clades of Corynebacterium diphtheriae: Proposal of Corynebacterium diphtheriae Subsp. diphtheriae Subsp. nov. and Corynebacterium diphtheriae Subsp. lausannense Subsp. nov.
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Distinct Genomic Features Characterize Two Clades of Corynebacterium diphtheriae: Proposal of Corynebacterium diphtheriae Subsp. diphtheriae Subsp. nov. and Corynebacterium diphtheriae Subsp. lausannense Subsp. nov.

机译:不同的基因组特征表征白喉棒状杆菌的两个进化枝:白喉棒状杆菌亚种的提议。白喉亚种十一月和白喉棒状杆菌亚种。 lausannense Subsp.。十一月

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摘要

Corynebacterium diphtheriae is the etiological agent of diphtheria, a disease caused by the presence of the diphtheria toxin. However, an increasing number of records report non-toxigenic C. diphtheriae infections. Here, a C. diphtheriae strain was recovered from a patient with a past history of bronchiectasis who developed a severe tracheo-bronchitis with multiple whitish lesions of the distal trachea and the mainstem bronchi. Whole-genome sequencing (WGS), performed in parallel with PCR targeting the toxin gene and the Elek test, provided clinically relevant results in a short turnaround time, showing that the isolate was non-toxigenic. A comparative genomic analysis of the new strain (CHUV2995) with 56 other publicly available genomes of C. diphtheriae revealed that the strains CHUV2995, CCUG 5865 and CMCNS703 share a lower average nucleotide identity (ANI) (95.24 to 95.39%) with the C. diphtheriae NCTC 11397T reference genome than all other C. diphtheriae genomes (>98.15%). Core genome phylogeny confirmed the presence of two monophyletic clades. Based on these findings, we propose here two new C. diphtheriae subspecies to replace the lineage denomination used in previous multilocus sequence typing studies: C. diphtheriae subsp. lausannense subsp. nov. (instead of lineage-2), regrouping strains CHUV2995, CCUG 5865, and CMCNS703, and C. diphtheriae subsp. diphtheriae subsp. nov, regrouping all other C. diphtheriae in the dataset (instead of lineage-1). Interestingly, members of subspecies lausannense displayed a larger genome size than subspecies diphtheriae and were enriched in COG categories related to transport and metabolism of lipids (I) and inorganic ion (P). Conversely, they lacked all genes involved in the synthesis of pili (SpaA-type, SpaD-type and SpaH-type), molybdenum cofactor and of the nitrate reductase. Finally, the CHUV2995 genome is particularly enriched in mobility genes and harbors several prophages. The genome encodes a type II-C CRISPR-Cas locus with 2 spacers that lacks csn2 or cas4, which could hamper the acquisition of new spacers and render strain CHUV2995 more susceptible to bacteriophage infections and gene acquisition through various mechanisms of horizontal gene transfer.
机译:白喉棒状杆菌是白喉的病原体,白喉是由白喉毒素的存在引起的疾病。但是,越来越多的记录报道了非毒素的白喉衣原体感染。在此,从具有支气管扩张病史的患者中回收了白喉衣原体菌株,该患者发展为严重的气管支气管炎,远端气管和主干支气管有多处白色损伤。全基因组测序(WGS)与靶向毒素基因的PCR和Elek检验同时进行,在较短的周转时间内提供了临床相关结果,表明该分离物无毒。对新菌株(CHUV2995)与其他56个公开的白喉衣原体基因组的比较基因组分析显示,菌株CHUV2995,CCUG 5865和CMCNS703与C.共享较低的平均核苷酸同一性(ANI)(95.24至95.39%)。白喉NCTC 11397 T 参考基因组比其他所有白喉衣原体基因组(> 98.15%)高。核心基因组系统发育证实了两个单系进化枝的存在。基于这些发现,我们在这里提出了两个新的白喉衣原体亚种,以取代先前的多基因座序列分型研究中使用的谱系名称:白喉衣原体亚种。老萨纳斯亚种十一月(而不是沿袭2),重组菌株CHUV2995,CCUG 5865和CMCNS703,以及白喉衣原体亚种。白喉亚种nov,将数据集中的所有其他白喉衣原体重新分组(而不是沿袭1)。有趣的是,劳森亚种的成员显示出比白喉亚种更大的基因组大小,并且富含与脂质(I)和无机离子(P)的运输和代谢有关的COG类。相反,他们缺乏参与菌毛合成的所有基因(SpaA型,SpaD型和SpaH型),钼辅因子和硝酸还原酶。最后,CHUV2995基因组中的迁移性基因特别丰富,并带有多个噬菌体。基因组编码一个II型C CRISPR-Cas基因座,带有2个缺少csn2或cas4的间隔区,这可能会阻碍新间隔区的获取,并使CHUV2995菌株更易于通过水平基因转移的各种机制进行噬菌体感染和基因获取。

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