BSL-3 Laboratory (Guangdong), Guangdong Provincial Key Laboratory of Tropical Disease Research, School of Public Health, Southern Medical University, Guangzhou, China.
Dermatology Hospital, Southern Medical University, Guangzhou, China.
J Infect Dis. 2024 Oct 16;230(4):857-867. doi: 10.1093/infdis/jiae163.
Chlamydia trachomatis is the causative agent of the most prevalent bacterial sexually transmitted infections globally. Whole genome sequencing is essential for molecular Chlamydia surveillance; however, its application is hampered by the pathogen's low abundance in clinical specimens and the expensive labor-intensive nature of existing enrichment methodologies for Chlamydia.
We developed a targeted whole genome amplification tool termed SWITCH by integrating phi29 DNA polymerase-mediated amplification with meticulously designed primer sets to enrich the C trachomatis genome, followed by whole genome sequencing. This method underwent evaluation through testing synthetic and clinical specimens.
SWITCH demonstrated robust ability to achieve up to 98.3% genomic coverage of C trachomatis from as few as 26.4 genomic copies present in synthetic specimens, and it exhibited excellent performance across diverse C trachomatis serovars. Utilizing SWITCH, we directly generated 21 Chlamydia genomes from 26 clinical samples, enabling us to gain insights into the genetic relationships and phylogeny of current Chlamydia strains circulating in the country. Remarkably, this study marked the first instance of generating Chinese Chlamydia genomes directly from clinical samples.
SWITCH represents a practical cost-efficient approach to enrich the Chlamydia genome directly from clinical specimens, offering an efficient avenue for molecular surveillance of Chlamydia.
沙眼衣原体是全球最常见的细菌性性传播感染的病原体。全基因组测序对于分子衣原体监测至关重要;然而,由于病原体在临床标本中的丰度低,以及现有的衣原体富集方法繁琐且劳动强度大,其应用受到了阻碍。
我们开发了一种称为 SWITCH 的靶向全基因组扩增工具,该工具通过整合 phi29 DNA 聚合酶介导的扩增与精心设计的引物集来富集沙眼衣原体基因组,然后进行全基因组测序。该方法通过对合成和临床标本的测试进行了评估。
SWITCH 能够从合成标本中仅存在 26.4 个基因组拷贝的情况下,实现高达 98.3%的沙眼衣原体基因组覆盖率,表现出强大的能力,并且在不同的沙眼衣原体血清型中表现出色。利用 SWITCH,我们直接从 26 个临床样本中生成了 21 个衣原体基因组,使我们能够深入了解当前在我国流行的衣原体菌株的遗传关系和系统发育。值得注意的是,本研究首次直接从临床样本中生成了中国衣原体基因组。
SWITCH 是一种从临床标本中直接富集衣原体基因组的实用且具有成本效益的方法,为衣原体的分子监测提供了一种有效的途径。