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在患者体内和实验室培养环境中呈现出基因组多样性。

exhibits genomic diversity within patients and laboratory culture.

作者信息

Bouda E, Peng Y, Williams M M, Cassiday P K, Skoff T H, Ju H, Fueston H, Kurien D, Morales D, Cole M, Travanty E A, Santoro D, Snippes Vagnone P M, Mitchell K, Martinez M, Unoarumhi Y, Bentz M, Nobles S, Heuser J, Tondella M L, Pawloski L C, Weigand M R

机构信息

Division of Bacterial Diseases, National Center for Immunization and Respiratory Diseases, Centers for Disease Control and Prevention, Atlanta, Georgia, USA.

ASRT, Inc., Atlanta, Georgia, USA.

出版信息

mSystems. 2025 Jul 22;10(7):e0171724. doi: 10.1128/msystems.01717-24. Epub 2025 Jun 17.

Abstract

UNLABELLED

Over the past decade, genomic characterization of isolates recovered from US pertussis patients has unveiled noteworthy structural gene order variations. Whole-genome sequencing (WGS) shows that although exhibits little gene sequence variation, genomes from clinical isolates frequently differ in gene order through rearrangement between insertion sequence elements. To better understand rates of genome rearrangement and single nucleotide polymorphism (SNP) in , intra-patient genomic diversity was examined. Five states submitted, on average, five isolates per patient specimen following culture confirmation to the US Centers for Disease Control and Prevention for molecular characterization. Analysis of 149 patient specimen sets revealed only rare SNP variation, while isolate sets from 12 patients included genomic rearrangements that did not impact vaccine antigen production. To investigate the frequency and stability of such rearrangements during laboratory culture, replicate cultures of two pairs of isolates differing by duplication and inversion were subcultured for eight serial passages. WGS confirmed the initial presence of rare duplication mutations that became dominant in later passages, as well as the stable maintenance of a large, inverted genomic region during passage. These findings suggest that exhibits genomic diversity within a single clinical diagnostic specimen and acquires genomic variations during serial laboratory passages, indicative of bacterial genomic plasticity. Importantly, these rearrangements did not impact the frequency or distribution of SNPs. These results underscore the importance of minimizing the laboratory passaging of clinical isolates used for infectious disease surveillance.

IMPORTANCE

The whooping cough-causing bacterium can alter its genetic structure while conserving areas essential for vaccine efficacy. By examining from infected patients, we demonstrate the significance of reducing laboratory manipulation of bacteria to maintain reliable monitoring data from laboratory cultures. Public health officials can use these data to develop efficient disease control tactics and better understand 's adaptability. This study highlights the importance of immunizations and the necessity of thorough genetic surveillance in the fight against this chronic and avoidable respiratory illness.

摘要

未标注

在过去十年中,对从美国百日咳患者身上分离出的菌株进行的基因组特征分析揭示了值得注意的结构基因顺序变异。全基因组测序(WGS)表明,尽管该菌株的基因序列变异很小,但临床分离株的基因组在基因顺序上经常因插入序列元件之间的重排而有所不同。为了更好地了解该菌株基因组重排和单核苷酸多态性(SNP)的发生率,研究了患者体内的基因组多样性。五个州平均每个患者标本提交五株培养确认后的菌株给美国疾病控制与预防中心进行分子特征分析。对149个患者标本集的分析仅发现罕见的SNP变异,而来自12名患者的菌株集包含不影响疫苗抗原产生的基因组重排。为了研究此类重排在实验室培养过程中的频率和稳定性,对两对因重复和倒位而不同的菌株进行了重复培养,并连续传代八次。WGS证实了最初存在的罕见重复突变在后续传代中占主导地位,以及在传代过程中一个大的倒位基因组区域的稳定维持。这些发现表明,该菌株在单个临床诊断标本中表现出基因组多样性,并在连续实验室传代过程中获得基因组变异,这表明细菌基因组具有可塑性。重要的是,这些重排并未影响SNP的频率或分布。这些结果强调了尽量减少用于传染病监测的临床分离株实验室传代次数的重要性。

重要性

引起百日咳的细菌在保留对疫苗效力至关重要的区域的同时可以改变其遗传结构。通过检查感染患者的该菌株,我们证明了减少对细菌的实验室操作以维持来自实验室培养的可靠监测数据的重要性。公共卫生官员可以利用这些数据制定有效的疾病控制策略,并更好地了解该菌株的适应性。这项研究强调了免疫接种的重要性以及在对抗这种慢性且可避免的呼吸道疾病中进行全面基因监测的必要性。

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