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基因组学揭示克雷伯氏菌属中 CRISPR 质粒的分布、骨架结构、抗生素耐药性和毒力决定因子特征

Genomic Insights into CRISPR-Harboring Plasmids in the Klebsiella Genus: Distribution, Backbone Structures, Antibiotic Resistance, and Virulence Determinant Profiles.

机构信息

College of Public Health, Zhengzhou University, Zhengzhou, Henan, People's Republic of China.

Department of Clinical Microbiology, People's Hospital of Zhengzhou University, Zhengzhou, Henan, People's Republic of China.

出版信息

Antimicrob Agents Chemother. 2023 Mar 16;67(3):e0118922. doi: 10.1128/aac.01189-22. Epub 2023 Feb 15.

Abstract

CRISPR systems are often encoded by many prokaryotes as adaptive defense against mobile genetic elements (MGEs), but several MGEs also recruit CRISPR components to perform additional biological functions. Type IV-A systems are identified in Klebsiella plasmids, yet the distribution, characterization, and role of these plasmids carrying CRISPR systems in the whole Klebsiella genus remain unclear. Here, we performed large-scale comparative analysis of these plasmids using publicly available plasmid genomes. CRISPR-harboring plasmids were mainly distributed in Klebsiella pneumoniae (9.09%), covering 19.23% of sequence types, but sparse in Klebsiella species outside Klebsiella pneumoniae (3.92%). Plasmid genome comparison reiterated that these plasmids often carried the cointegrates of IncFIB and IncHI1B replicons, occasionally linked to other replicons, such as IncFIA, IncFII, IncR, IncQ, and IncU. Comparative genome analysis showed that CRISPR-carrying Klebsiella plasmids shared a conserved pNDM-MAR-like conjugation module as their backbones and served as an important vector for the accretion of antibiotic resistance genes (ARGs) and even virulence genes (VGs). Moreover, compared with CRISPR-negative IncFIB/IncHIB plasmids, CRISPR-positive IncFIB/IncHIB plasmids displayed high divergences in terms of ARGs, VGs, GC content, plasmid length, and backbone structures, suggesting their divergent evolutionary paths. The network analysis revealed that CRISPR-positive plasmids yielded fierce competitions with other plasmid types, especially conjugative plasmids, thereby affecting the dynamics of plasmid transmission. Overall, our study provides valuable insights into the role of CRISPR-positive plasmids in the spread of ARGs and VGs in Klebsiella genus.

摘要

CRISPR 系统通常被许多原核生物编码为针对移动遗传元件 (MGE) 的适应性防御系统,但一些 MGE 也招募 CRISPR 组件来执行其他生物学功能。IV-A 型系统在克雷伯氏菌质粒中被鉴定出来,但这些携带 CRISPR 系统的质粒在整个克雷伯氏菌属中的分布、特征和作用仍不清楚。在这里,我们使用公开的质粒基因组对这些质粒进行了大规模的比较分析。CRISPR 承载质粒主要分布在肺炎克雷伯菌(9.09%)中,涵盖了 19.23%的序列类型,但在肺炎克雷伯菌以外的克雷伯氏菌中则较为稀疏(3.92%)。质粒基因组比较再次表明,这些质粒通常携带 IncFIB 和 IncHI1B 复制子的共整合体,偶尔与其他复制子如 IncFIA、IncFII、IncR、IncQ 和 IncU 相连。比较基因组分析表明,携带 CRISPR 的克雷伯氏菌质粒共享一个保守的 pNDM-MAR 样接合模块作为其骨架,并作为抗生素耐药基因(ARGs)甚至毒力基因(VGs)积累的重要载体。此外,与 CRISPR 阴性 IncFIB/IncHIB 质粒相比,CRISPR 阳性 IncFIB/IncHIB 质粒在 ARGs、VGs、GC 含量、质粒长度和骨架结构方面表现出高度的差异,表明它们具有不同的进化路径。网络分析表明,CRISPR 阳性质粒与其他质粒类型,特别是接合质粒之间存在激烈的竞争,从而影响质粒传播的动态。总的来说,我们的研究为 CRISPR 阳性质粒在克雷伯氏菌属中 ARGs 和 VGs 的传播中的作用提供了有价值的见解。

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