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AbaR 型基因组岛的比较分析揭示了具有不同骨架元件的遗传特征的明显模式。

Comparative Analysis of AbaR-Type Genomic Islands Reveals Distinct Patterns of Genetic Features in Elements with Different Backbones.

机构信息

Department of Pathology, Shanghai Tenth People's Hospital, Tongji University School of Medicine, Shanghai, China.

Department of Gastrointestinal Surgery, Shanghai Tenth People's Hospital, Tongji University School of Medicine, Shanghai, China.

出版信息

mSphere. 2020 May 27;5(3):e00349-20. doi: 10.1128/mSphere.00349-20.

Abstract

AbaR-type genomic islands (AbaRs) are prevalent and associated with multiple antimicrobial resistance in AbaRs feature varied structural configurations involving different but closely related backbones with acquisition of diverse mobile genetic elements (MGEs) and antimicrobial resistance genes. This study aimed to understand the structural modulation patterns of AbaRs. A total of 442 intact AbaRs, including nonresistance but closely related islands, were mapped to backbones Tn, Tn, Tn/Tn, and AbGRI1-0 followed by alien sequence characterization. Genetic configurations were then examined and compared. The AbaRs fall into 53 genetic configurations, among which 26 were novel, including one Tn-type, nine Tn-type, three Tn/Tn-type, nine AbGRI1-type, and four new transposons that could not be mapped to the known backbones. The newly identified genetic configurations involved insertions of novel MGEs like IS, IS, IS, and IS, novel structural modulations driven by known MGEs such as IS, Tn, and even another AbaR, and different backbone deletions. Recombination events in AbGRI1-type elements were also examined by identifying hybrid sequences from different backbones. Moreover, we found that the content and context features of AbaRs including the profiles of the MGEs driving the plasticity of these elements and the consequently acquired antimicrobial resistance genes, insertion sites, and clonal distribution displayed backbone-specific patterns. This study provides a comprehensive view of the genetic features of AbaRs. AbaR-type genomic islands (AbaRs) are well-known elements that can cause antimicrobial resistance in These elements contain diverse and complex genetic configurations involving different but related backbones with acquisition of diverse mobile genetic elements and antimicrobial resistance genes. Understanding their structural diversity is far from complete. In this study, we performed a large-scale comparative analysis of AbaRs, including nonresistance but closely related islands. Our findings offered a comprehensive and interesting view of their genetic features, which allowed us to correlate the structural modulation signatures, antimicrobial resistance patterns, insertion loci, as well as host clonal distribution of these elements to backbone types. This study provides insights into the evolution of these elements, explains the association between their antimicrobial resistance gene profiles and clonal distribution, and could facilitate establishment of a more proper nomenclature than the term "AbaR" that has been variously used.

摘要

AbaR 型基因组岛(AbaRs)普遍存在,并与多种抗生素耐药性相关。AbaRs 的特征是结构配置多样,涉及不同但密切相关的骨架,同时获得了多种移动遗传元件(MGEs)和抗生素耐药基因。本研究旨在了解 AbaRs 的结构调节模式。总共映射了 442 个完整的 AbaRs,包括非耐药但密切相关的岛屿,这些岛屿的骨架分别为 Tn、Tn、Tn/Tn 和 AbGRI1-0,随后对其外源序列进行了特征分析。然后检查和比较了遗传配置。AbaRs 分为 53 种遗传结构,其中 26 种是新的,包括一个 Tn 型、9 个 Tn 型、3 个 Tn/Tn 型、9 个 AbGRI1 型和 4 个不能映射到已知骨架的新型转座子。新鉴定的遗传结构涉及插入新型 MGEs,如 IS、IS、IS 和 IS,以及由已知 MGEs 驱动的新型结构调节,如 IS、Tn,甚至另一个 AbaR,以及不同骨架的缺失。还通过从不同骨架中识别杂交序列来检查 AbGRI1 型元件中的重组事件。此外,我们发现 AbaRs 的内容和上下文特征,包括驱动这些元件可塑性的 MGE 特征以及随后获得的抗生素耐药基因、插入位点和克隆分布,都表现出骨架特异性模式。本研究提供了 AbaRs 遗传特征的全面视图。AbaR 型基因组岛(AbaRs)是众所周知的能够引起抗生素耐药性的元素。这些元素包含不同但相关的骨架,其中包含多样化和复杂的遗传结构,同时获得了多种移动遗传元件和抗生素耐药基因。对它们的结构多样性的了解还远远不够。在这项研究中,我们对 AbaRs 进行了大规模的比较分析,包括非耐药但密切相关的岛屿。我们的研究结果提供了一个全面而有趣的视角,了解它们的遗传特征,这使我们能够将这些元素的结构调节特征、抗生素耐药模式、插入位点以及宿主克隆分布与骨架类型相关联。本研究为这些元素的进化提供了深入的了解,解释了它们的抗生素耐药基因谱与克隆分布之间的联系,并可能有助于建立一个比术语“ AbaR”更合适的命名法,因为“ AbaR”术语已经被各种不同的术语所使用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a973/7253598/f991e02540c2/mSphere.00349-20-f0001.jpg

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