Wenwen Liu , Yawen Yu , Yuting Wang , Ting Yang , Yingying Kong , Xinyou Xie , Jun Zhang
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For phylogenomic analysis, publicly available </span></span></span><em>M. hominis</em><span><span> genomes were retrieved from NCBI GenBank database. Whole genome sequencing data showed that the </span>genome size of </span><em>M. hominis</em> MH4246 was calculated as 679,746 bp, with 558 protein-coding sequences and a G + C content of 26.9%. <em>M. hominis</em><span><span><span> MH4246 is resistant to fluoroquinolones and </span>macrolides<span>, harboring mutations in the quinolone resistance-determining regions (QRDRs) (GyrA S153L, ParC S91I and ParE V417I) and </span></span>23S rRNA gene (G280A, C1500T, T1548C and T2218C). Multiple virulence determinants, such as </span><em>tuf</em>, <em>hlyA</em>, <em>vaa</em>, <em>oppA</em>, <em>MHO_0730</em> and <em>alr</em><span> genes, were identified. Phylogenetic analysis showed that the closest relative of </span><em>M. hominis</em><span><span> MH4246 was the strain MH-1 recovered from China, which differed by 3490 SNPs. Overall, this study contributes to the comprehension of genomic characteristics, antimicrobial resistance patterns, and the mechanisms underlying the </span>pathogenicity<span> of this pathogen.</span></span></p></div>","PeriodicalId":51022,"journal":{"name":"Drug Resistance Updates","volume":"72 ","pages":"Article 101029"},"PeriodicalIF":15.8000,"publicationDate":"2023-11-30","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Deciphering the genetic basis of resistome and virulome diversity among multidrug-resistant Mycoplasma hominis\",\"authors\":\"Wenwen Liu , Yawen Yu , Yuting Wang , Ting Yang , Yingying Kong , Xinyou Xie , Jun Zhang\",\"doi\":\"10.1016/j.drup.2023.101029\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<div><p><span><em>Mycoplasma hominis</em></span><span>, a commensal bacterium that commonly inhabits the genital tract, leading to infections in both the genitourinary and extragenital regions. However, the antimicrobial resistance and pathogenic mechanisms of </span><em>M. hominis</em> isolated from extra-urogenital cystic abscess is largely unknown. This study reports the genomic epidemiological characteristics of a <em>M. hominis</em><span> isolate recovered from a pelvic abscess<span><span> sample in China. Genomic DNA was extracted and sequenced using Illumina HiSeq X Ten platform. De novo assembly was performed and </span>in silico<span> analysis was accomplished by multiple bioinformatics tools. For phylogenomic analysis, publicly available </span></span></span><em>M. hominis</em><span><span> genomes were retrieved from NCBI GenBank database. 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引用次数: 0
摘要
人支原体,一种常见于生殖道的共生细菌,可导致泌尿生殖系统和生殖器外区域的感染。然而,从泌尿生殖道外囊性脓肿分离的人支原体的耐药性和致病机制在很大程度上是未知的。本研究报告了从中国骨盆脓肿样本中分离的人支原体的基因组流行病学特征。提取基因组DNA,使用Illumina HiSeq X Ten平台进行测序。通过多种生物信息学工具进行从头组装和计算机分析。为了进行系统基因组学分析,从NCBI GenBank数据库中检索了公开可用的人支原体基因组。全基因组测序结果显示,原人m.s hominis MH4246基因组大小为679,746 bp,编码蛋白558个,G + C含量为26.9%。人分枝杆菌MH4246对氟喹诺酮类药物和大环内酯类药物耐药,在喹诺酮类药物耐药决定区(qrdr) (GyrA S153L、ParC S91I和ParE V417I)和23s rRNA基因(G280A、C1500T、T1548C和T2218C)中存在突变。鉴定出tuf、hlyA、vaa、oppA、MHO_0730和alr等多个毒力决定因素。系统发育分析表明,与人原分枝杆菌MH4246最近的亲缘菌株是中国产的MH-1,两者有3490个snp差异。总的来说,这项研究有助于理解该病原体的基因组特征、抗微生物药物耐药性模式和致病性机制。
Deciphering the genetic basis of resistome and virulome diversity among multidrug-resistant Mycoplasma hominis
Mycoplasma hominis, a commensal bacterium that commonly inhabits the genital tract, leading to infections in both the genitourinary and extragenital regions. However, the antimicrobial resistance and pathogenic mechanisms of M. hominis isolated from extra-urogenital cystic abscess is largely unknown. This study reports the genomic epidemiological characteristics of a M. hominis isolate recovered from a pelvic abscess sample in China. Genomic DNA was extracted and sequenced using Illumina HiSeq X Ten platform. De novo assembly was performed and in silico analysis was accomplished by multiple bioinformatics tools. For phylogenomic analysis, publicly available M. hominis genomes were retrieved from NCBI GenBank database. Whole genome sequencing data showed that the genome size of M. hominis MH4246 was calculated as 679,746 bp, with 558 protein-coding sequences and a G + C content of 26.9%. M. hominis MH4246 is resistant to fluoroquinolones and macrolides, harboring mutations in the quinolone resistance-determining regions (QRDRs) (GyrA S153L, ParC S91I and ParE V417I) and 23S rRNA gene (G280A, C1500T, T1548C and T2218C). Multiple virulence determinants, such as tuf, hlyA, vaa, oppA, MHO_0730 and alr genes, were identified. Phylogenetic analysis showed that the closest relative of M. hominis MH4246 was the strain MH-1 recovered from China, which differed by 3490 SNPs. Overall, this study contributes to the comprehension of genomic characteristics, antimicrobial resistance patterns, and the mechanisms underlying the pathogenicity of this pathogen.
期刊介绍:
Drug Resistance Updates serves as a platform for publishing original research, commentary, and expert reviews on significant advancements in drug resistance related to infectious diseases and cancer. It encompasses diverse disciplines such as molecular biology, biochemistry, cell biology, pharmacology, microbiology, preclinical therapeutics, oncology, and clinical medicine. The journal addresses both basic research and clinical aspects of drug resistance, providing insights into novel drugs and strategies to overcome resistance. Original research articles are welcomed, and review articles are authored by leaders in the field by invitation.
Articles are written by leaders in the field, in response to an invitation from the Editors, and are peer-reviewed prior to publication. Articles are clear, readable, and up-to-date, suitable for a multidisciplinary readership and include schematic diagrams and other illustrations conveying the major points of the article. The goal is to highlight recent areas of growth and put them in perspective.
*Expert reviews in clinical and basic drug resistance research in oncology and infectious disease
*Describes emerging technologies and therapies, particularly those that overcome drug resistance
*Emphasises common themes in microbial and cancer research