Infectious Diseases Translational Research Programme, Department of Medicine, Yong Loo Lin School of Medicine, National University of Singapore, Singapore.
Department of Laboratory Medicine, Tan Tock Seng Hospital, Singapore.
Microb Genom. 2021 Dec;7(12). doi: 10.1099/mgen.0.000688.
Group B (GBS; ) is the most common cause of neonatal meningitis and a rising cause of sepsis in adults. Recently, it has also been shown to cause foodborne disease. As with many other bacteria, the polysaccharide capsule of GBS is antigenic, enabling its use for strain serotyping. Recent advances in DNA sequencing have made sequence-based typing attractive (as has been implemented for several other bacteria, including , species complex, , and others). For GBS, existing WGS-based serotyping systems do not provide complete coverage of all known GBS serotypes (specifically including subtypes of serotype III), and none are simultaneously compatible with the two most common data types, raw short reads and assembled sequences. Here, we create a serotyping database (GBS-SBG, GBS Serotyping by Genome Sequencing), with associated scripts and running instructions, that can be used to call all currently described GBS serotypes, including subtypes of serotype III, using both direct short-read- and assembly-based typing. We achieved higher concordance using GBS-SBG on a previously reported data set of 790 strains. We further validated GBS-SBG on a new set of 572 strains, achieving 99.8% concordance with PCR-based molecular serotyping using either short-read- or assembly-based typing. The GBS-SBG package is publicly available and will hopefully accelerate and simplify serotyping by sequencing for GBS.
B 群链球菌(GBS; )是新生儿脑膜炎的最常见病因,也是成人败血症的上升原因。最近,它也被证明会引起食源性疾病。与许多其他细菌一样,GBS 的多糖荚膜具有抗原性,使其能够用于菌株血清型分型。最近 DNA 测序的进展使得基于序列的分型具有吸引力(包括其他几种细菌,包括 ,物种复合体, 和其他细菌)。对于 GBS,现有的基于 WGS 的血清分型系统不能完全涵盖所有已知的 GBS 血清型(特别是包括血清型 III 的亚型),并且没有一种系统同时与两种最常见的数据类型,原始短读和组装序列兼容。在这里,我们创建了一个血清分型数据库(GBS-SBG,基于基因组测序的 GBS 血清分型),附带相关脚本和运行说明,可用于使用直接短读和基于组装的分型来调用所有当前描述的 GBS 血清型,包括血清型 III 的亚型。我们在之前报道的 790 株菌株的数据集上使用 GBS-SBG 实现了更高的一致性。我们进一步在一组新的 572 株菌株上验证了 GBS-SBG,使用短读或组装基于分型的 PCR 分子血清分型,达到了 99.8%的一致性。GBS-SBG 软件包是公开的,有望加速和简化 GBS 的测序血清分型。