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- Title
Spatiotemporal persistence of multiple, diverse clades and toxins of Corynebacterium diphtheriae.
- Authors
Will, Robert C.; Ramamurthy, Thandavarayan; Sharma, Naresh Chand; Veeraraghavan, Balaji; Sangal, Lucky; Haldar, Pradeep; Pragasam, Agila Kumari; Vasudevan, Karthick; Kumar, Dhirendra; Das, Bhabatosh; Heinz, Eva; Melnikov, Vyacheslav; Baker, Stephen; Sangal, Vartul; Dougan, Gordon; Mutreja, Ankur
- Abstract
Diphtheria is a respiratory disease caused by the bacterium Corynebacterium diphtheriae. Although the development of a toxin-based vaccine in the 1930s has allowed a high level of control over the disease, cases have increased in recent years. Here, we describe the genomic variation of 502 C. diphtheriae isolates across 16 countries and territories over 122 years. We generate a core gene phylogeny and determine the presence of antimicrobial resistance genes and variation within the tox gene of 291 tox+ isolates. Numerous, highly diverse clusters of C. diphtheriae are observed across the phylogeny, each containing isolates from multiple countries, regions and time of isolation. The number of antimicrobial resistance genes, as well as the breadth of antibiotic resistance, is substantially greater in the last decade than ever before. We identified and analysed 18 tox gene variants, with mutations estimated to be of medium to high structural impact. Cases of diphtheria have increased in recent years. Here, the authors analyse the genomes of 502 Corynebacterium diphtheriae isolates across 16 countries and territories over 122 years, describing an increase in antimicrobial resistance genes and identifying toxin variants.
- Subjects
CORYNEBACTERIUM; GENES; TOXINS; DRUG resistance in microorganisms; DRUG resistance in bacteria; BACTERIAL toxins; MOLECULAR phylogeny
- Publication
Nature Communications, 2021, Vol 12, Issue 1, p1
- ISSN
2041-1723
- Publication type
Article
- DOI
10.1038/s41467-021-21870-5