4.6 Article

ClaID: a Rapid Method of Clade-Level Identification of the Multidrug Resistant Human Fungal Pathogen Candida auris

期刊

MICROBIOLOGY SPECTRUM
卷 10, 期 2, 页码 -

出版社

AMER SOC MICROBIOLOGY
DOI: 10.1128/spectrum.00634-22

关键词

colony PCR; clade-specific sequences; sequence junctions; diagnostic method; antifungal resistance; evolution; fungi

资金

  1. Indian Council of Medical Research, Government of India (GoI) [AMR/149/2018-ECD-II]
  2. Science and Engineering Research Board (SERB), Dept. of Science and Technology (DST), GoI [JCB/2020/000021]
  3. JNCASR
  4. Department of Biotechnology (DBT), GoI [BT/INF/22/SP27679/2018]
  5. SERB, DST, GoI [PDF/2016/003256]
  6. Department of Atomic Energy, GoI

向作者/读者索取更多资源

This study identifies unique DNA sequence junctions specific to each of the four major clades of Candida auris, a multidrug-resistant fungal pathogen. A rapid and specific colony PCR-based clade-identification system is developed based on these unique sequences. The use of clade-specific sequences for clade-typing is proven to be effective.
Candida auris, the multidrug-resistant human fungal pathogen, emerged as four major distinct geographical clades (clade 1-clade 4) in the past decade. Though isolates of the same species, C. auris clinical strains exhibit clade-specific properties associated with virulence and drug resistance. In this study, we report the identification of unique DNA sequence junctions by mapping clade-specific regions through comparative analysis of whole-genome sequences of strains belonging to different clades. These unique DNA sequence stretches are used to identify C. auris isolates at the clade level in subsequent in silico and experimental analyses. We develop a colony PCR-based clade-identification system (ClaID), which is rapid and specific. In summary, we demonstrate a proof-of-concept for using unique DNA sequence junctions conserved in a clade-specific manner for the rapid identification of each of the four major clades of C. auris. IMPORTANCE C. auris was first isolated in Japan in 2009 as an antifungal drug-susceptible pathogen causing localized infections. Within a decade, it simultaneously evolved in different parts of the world as distinct clades exhibiting resistance to antifungal drugs at varying levels. Recent studies hinted the mixing of isolates belonging to different geographical clades in a single location, suggesting that the area of isolation alone may not indicate the clade status of an isolate. In this study, we compared the genomes of representative strains of the four major clades to identify clade-specific sequences, which were then used to design clade-specific primers. We propose the utilization of whole genome sequence data to extract clade-specific sequences for clade-typing. The colony PCR-based method employed can rapidly distinguish between the four major clades of C. auris, with scope for expanding the panel by adding more primer pairs.

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