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整合性和接合性元件的系统发育地理多样性与镶嵌性

Phylogeographic diversity and mosaicism of the integrative and conjugative elements.

作者信息

Delahay Robin M, Croxall Nicola J, Stephens Amberley D

机构信息

1Nottingham Digestive Diseases Centre and National Institute for Health Research (NIHR) Nottingham Biomedical Research Centre, Nottingham University Hospitals NHS Trust and University of Nottingham, Nottingham, UK.

2Present Address: Chemical Engineering and Biotechnology, University of Cambridge, Philippa Fawcette Drive, West Cambridge, Cambridge, CB3 0AS UK.

出版信息

Mob DNA. 2018 Jan 26;9:5. doi: 10.1186/s13100-018-0109-4. eCollection 2018.

Abstract

BACKGROUND

The genome of the gastric pathogen is characterised by considerable variation of both gene sequence and content, much of which is contained within three large genomic islands comprising the pathogenicity island (PAI) and two mobile integrative and conjugative elements (ICEs) termed and . All three islands are implicated as virulence factors, although whereas the PAI is well characterised, understanding of how the elements influence interactions with different human hosts is significantly confounded by limited definition of their distribution, diversity and structural representation in the global population.

RESULTS

To gain a global perspective of ICE population dynamics we established a bioinformatics workflow to extract and precisely define the full pan-gene content contained within a global collection of 221 draft and complete genome sequences. Complete (ca. 35-55kbp) and remnant ICE clusters were reconstructed from a dataset comprising > 12,000 genes, from which orthologous gene complements and distinct alleles descriptive of different ICE types were defined and classified in comparative analyses. The genetic variation within defined ICE modular segments was subsequently used to provide a complete description of ICE diversity and a comprehensive assessment of their phylogeographic context. Our further examination of the apparent ICE modular types identified an ancient and complex history of ICE residence, mobility and interaction within particular phylogeographic lineages and further, provided evidence of both contemporary inter-lineage and inter-species ICE transfer and displacement.

CONCLUSIONS

Our collective results establish a clear view of ICE diversity and phylogeographic representation in the global population, and provide a robust contextual framework for elucidating the functional role of the ICEs particularly as it relates to the risk of gastric disease associated with different ICE genotypes.

摘要

背景

胃病原体的基因组具有基因序列和含量的显著变异,其中大部分包含在三个大的基因组岛中,包括致病性岛(PAI)和两个称为和的移动整合和接合元件(ICEs)。尽管PAI已得到充分表征,但这三个岛均被认为是毒力因子,然而,由于对其在全球种群中的分布、多样性和结构表现的定义有限,对元件如何影响与不同人类宿主的相互作用的理解存在显著混淆。

结果

为了全面了解ICE种群动态,我们建立了一个生物信息学工作流程,以提取并精确界定全球221个草图和完整基因组序列集合中包含的全部泛基因内容。从一个包含超过12,000个基因的数据集重建了完整(约35 - 55kbp)和残余的ICE簇,在比较分析中定义并分类了描述不同ICE类型的直系同源基因互补体和不同等位基因。随后,利用定义的ICE模块片段内的遗传变异,全面描述了ICE的多样性,并对其系统地理背景进行了综合评估。我们对明显的ICE模块类型的进一步研究确定了ICE在特定系统地理谱系内的古老而复杂的居留、移动和相互作用历史,此外,还提供了当代谱系间和种间ICE转移和置换的证据。

结论

我们的综合结果清晰呈现了全球种群中ICE的多样性和系统地理表现,并为阐明ICE的功能作用提供了一个强大的背景框架,特别是与不同ICE基因型相关的胃病风险。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b257/5785829/03a364206525/13100_2018_109_Fig1_HTML.jpg

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