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新兴病原体 spp. 的全基因组序列与属的比较基因组分析:对其遗传多样性和潜在毒力特征的深入了解。

Complete genome sequence of the emerging pathogen spp. and comparative genomic analysis with genus : Insights into its genetic diversity and potential virulence traits.

机构信息

Department of Clinical Laboratory, The First Affiliated Hospital of Wenzhou Medical University; Key Laboratory of Clinical Laboratory Diagnosis and Translational Research of Zhejiang Province, Wenzhou, ZhejiangProvince, China.

School of Basic Medical Sciences, Wenzhou Medical University, Wenzhou, Zhejiang Province, China.

出版信息

Virulence. 2023 Dec;14(1):2214416. doi: 10.1080/21505594.2023.2214416.

Abstract

Cysteiniphilum is a newly discovered genus in 2017 and is phylogenetically closely related to highly pathogenic . Recently, it has become an emerging pathogen in humans. However, the complete genome sequence of genus Cysteiniphilum is lacking, and the genomic characteristics of genetic diversity, evolutionary dynamics, and pathogenicity have not been characterized. In this study, the complete genome of the first reported clinical isolate QT6929 of genus Cysteiniphilum was sequenced, and comparative genomics analyses to Francisella genus were conducted to unveil the genomic landscape and diversity of the genus Cysteiniphilum. Our results showed that the complete genome of QT6929 consists of one 2.61 Mb chromosome and a 76,819 bp plasmid. The calculated average nucleotide identity and DNA-DNA hybridization values revealed that two clinical isolates QT6929 and JM-1 should be reclassified as two novel species in genus Cysteiniphilum. Pan-genome analysis revealed genomic diversity within the genus Cysteiniphilum and an open pan-genome state. Genomic plasticity analysis exhibited abundant mobile genetic elements including genome islands, insertion sequences, prophages, and plasmids on Cysteiniphilum genomes, which facilitated the broad exchange of genetic material between Cysteiniphilum and other genera like Francisella and Legionella. Several potential virulence genes associated with lipopolysaccharide/lipooligosaccharide, capsule, and haem biosynthesis specific to clinical isolates were predicted and might contribute to their pathogenicity in humans. Incomplete Francisella pathogenicity island was identified in most Cysteiniphilum genomes. Overall, our study provides an updated phylogenomic relationship of members of the genus Cysteiniphilum and comprehensive genomic insights into this rare emerging pathogen.

摘要

硫杆状菌是 2017 年新发现的属,在系统发育上与高致病性的弗朗西斯菌属密切相关。最近,它已成为人类中的一种新兴病原体。然而,硫杆状菌属的全基因组序列尚不清楚,其遗传多样性、进化动态和致病性的基因组特征尚未得到描述。在本研究中,我们对首个报道的临床分离株 QT6929 进行了全基因组测序,并对弗朗西斯菌属进行了比较基因组学分析,以揭示硫杆状菌属的基因组景观和多样性。我们的结果表明,QT6929 的全基因组由一条 2.61 Mb 的染色体和一条 76819 bp 的质粒组成。计算的平均核苷酸同一性和 DNA-DNA 杂交值表明,两个临床分离株 QT6929 和 JM-1 应重新分类为硫杆状菌属中的两个新种。泛基因组分析揭示了硫杆状菌属内的基因组多样性和开放的泛基因组状态。基因组可塑性分析显示,硫杆状菌基因组上存在丰富的移动遗传元件,包括基因组岛、插入序列、噬菌体和质粒,这促进了硫杆状菌与弗朗西斯菌属和军团菌属等其他属之间遗传物质的广泛交换。预测到与临床分离株相关的几个潜在毒力基因,这些基因与脂多糖/脂寡糖、荚膜和血红素生物合成有关,可能有助于它们在人类中的致病性。大多数硫杆状菌基因组中都存在不完整的弗朗西斯菌致病岛。总的来说,我们的研究提供了硫杆状菌属成员的最新系统发育关系,并全面了解了这种罕见的新兴病原体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ef1a/10228398/9b71ffb6e806/KVIR_A_2214416_F0001_OC.jpg

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