Department of Medical Microbiology and Infectious Diseases, Canisius Wilhelmina Hospital, Nijmegen, The Netherlands.
Centre of Expertise in Mycology, Radboud University Medical Center/Canisius Wilhelmina Hospital, Nijmegen, The Netherlands.
Microbiol Spectr. 2022 Oct 26;10(5):e0264522. doi: 10.1128/spectrum.02645-22. Epub 2022 Oct 3.
Candida auris is an easily transmissible yeast with resistance to different antifungal compounds. Outbreaks of C. auris are mostly observed in intensive care units. To take adequate measures during an outbreak, it is essential to understand the transmission route, which requires isolate genotyping. In 2019, a short tandem repeat (STR) genotyping analysis was developed for C. auris. To determine the discriminatory power of this method, we performed STR analysis of 171 isolates with known whole-genome sequencing (WGS) data using Illumina reads, and we compared their resolutions. We found that STR analysis separated the 171 isolates into four clades (clades I to IV), as was also seen with WGS analysis. Then, to improve the separation of isolates in clade IV, the STR assay was optimized by the addition of 2 STR markers. With this improved STR assay, a total of 32 different genotypes were identified, while all isolates with differences of >50 single-nucleotide polymorphisms (SNPs) were separated by at least 1 STR marker. Altogether, we optimized and validated the C. auris STR panel for clades I to IV and established its discriminatory power, compared to WGS SNP analysis using Illumina reads. The emerging fungal pathogen Candida auris poses a threat to public health, mainly causing outbreaks in intensive care units. Genotyping is essential for investigating potential outbreaks and preventing further spread. Previously, we developed a STR genotyping scheme for rapid and high-resolution genotyping, and WGS SNP outcomes for some isolates were compared to STR data. Here, we compared WGS SNP and STR outcomes for a larger sample cohort. Also, we optimized the resolution of this typing scheme with the addition of 2 STR markers. Altogether, we validated and optimized this rapid, reliable, and high-resolution typing scheme for C. auris.
耳念珠菌是一种具有抗药性的易传播酵母,主要在重症监护病房中爆发。为了在爆发期间采取适当的措施,了解传播途径至关重要,这需要对分离株进行基因分型。2019 年,开发了一种用于耳念珠菌的短串联重复(STR)基因分型分析方法。为了确定该方法的区分能力,我们使用 Illumina 读数对具有已知全基因组测序(WGS)数据的 171 个分离株进行了 STR 分析,并比较了它们的分辨率。我们发现 STR 分析将 171 个分离株分为四个分支(分支 I 至 IV),与 WGS 分析结果一致。然后,为了提高分支 IV 中分离株的分离度,通过添加 2 个 STR 标记对 STR 分析进行了优化。使用这种改进的 STR 分析,总共确定了 32 种不同的基因型,而所有差异>50 个单核苷酸多态性(SNP)的分离株至少通过 1 个 STR 标记进行了分离。总之,我们对耳念珠菌 I 至 IV 分支的 STR 面板进行了优化和验证,并与使用 Illumina 读数的 WGS SNP 分析比较了其区分能力。新出现的真菌病原体耳念珠菌对公共健康构成威胁,主要在重症监护病房引起爆发。基因分型对于调查潜在的爆发和防止进一步传播至关重要。之前,我们开发了一种 STR 基因分型方案,用于快速和高分辨率基因分型,并且比较了一些分离株的 WGS SNP 结果与 STR 数据。在这里,我们比较了更大样本队列的 WGS SNP 和 STR 结果。此外,我们通过添加 2 个 STR 标记来优化这种分型方案的分辨率。总之,我们验证并优化了这种快速、可靠且高分辨率的耳念珠菌分型方案。