Large retrospective WGS study describes three major sequence types of S. aureus in India and reveals two novel multi-drug resistant sub-lineages of S. aureus Clonal Complex 22
Abrudan, M.; Shamanna, V.; Prasanna, A.; Underwood, A.; Argimon, S.; Nagaraj, G.; Gregorio, S. D.; Govindan, V.; Kodlipet, A.; Sravani, D.; Kekre, M.; Aanensen, D.; L, R. K.
Show abstract
BackgroundS. aureus is a major pathogen in India, causing nosocomial infections, but little is known about its molecular epidemiology and mechanisms of resistance in hospital settings. Here, we use WGS to characterize 508 S. aureus clinical isolates collected across India and analyze them in a global context. MethodsWhole-genome sequencing was performed on 508 clinical isolates of S. aureus collected from 17 sentinel sites across India between 2014 and 2019 with the Illumina platform. AMR genotypes were predicted using Staphopia. Isolates carrying novel SCCmec cassettes were further characterized using long-read sequencing. A temporal analysis of clonal complex (CC) 22 global isolates from 14 different studies was performed using BactDating. ResultsSequencing results confirmed 478 isolates as S. aureus. ST22, ST772 & ST239 were the major clones identified. An in-depth analysis of the 175 CC22 Indian isolates identifies two novel ST22 MRSA clones, PVL+ and one harboring the tsst-1 gene. Temporal analysis showed that these two ST22 clusters shared a common ancestor in the 1980s and they became widespread after the year 2000 in India. Analyzing these in a global context, we found evidence of transmission of the two Indian clones to other parts of the world. ConclusionOur study describes a large retrospective S. aureus sampled from India. By comparing the Indian isolates globally we show the evidence of the international transmission of ST22 Indian isolates. Even though the two of the major dominant clones (ST772 and ST239) using WGS have been reported, this is the first study that describes the third dominant clone (ST22) in India. Impact statementStaphylococcus aureus is an opportunistic pathogen listed as a high-priority pathogen by WHO. It is a leading cause of nosocomial infections in India and worldwide. Our study is the first study to describe the epidemiology of S. aureus in India with a large sample set of 478. Here we describe a collection of 478 S. aureus genomes, isolated from 17 sentinel sites in India, between 2014 and 2019. With the focus on understanding sequence types, AMR profiles, SCCmec types, and spa types and discuss these in the context of previous molecular studies on S. aureus conducted in India. We also conducted an in-depth analysis of the Clonal Complex 22 Indian isolates and we identified two novel ST22 MRSA clones, both PVL+ and one harboring the tsst-1 gene. Temporal analysis shows that these two ST22 clusters originated around 2010 in India. Analyzing these in a global context, we found evidence of transmission of the two Indian clones in other parts of the world. Analysis of a cluster of 33 isolates belonging to ST239 from a single hospital in Bangalore indicates an outbreak that persisted over the period of three years from a single contamination source. The novel SCCmec types identified in our study are characterized using long reads to understand their genetic structure. Data SummaryO_LIIllumina read files of the strains used in the study have been deposited in European Nucleotide Archive, BioProject PRJEB29740 (https://www.ebi.ac.uk/ena/browser/view/PRJEB29740?show=reads). A full list of accession numbers for all sequence read files is provided in Supplementary table 2. C_LIO_LINanopore reads are submitted to ENA under the BioProject PRJEB50484. C_LIO_LIMetadata and other related information on the strains are provided in the microreact project with different views in this link microreact.org/s.aureus_ghru_analysis. C_LIO_LIStrain information for the ST22 samples used from other studies is provided in microreact at this link: https://microreact.org/project/2xDvKQhriNveJ4kiVYsmSQ-s-aureus-wgs-study. The authors confirm all supporting data, code and protocols have been provided within the article or the supporting data repository. C_LI
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- A species-wide genetic atlas of antimicrobial resistance in Clostridioides difficile 97%
- Diversity of carbapenem-resistant Acinetobacter baumannii and bacteriophage-mediated spread of the Oxa23 carbapenemase 96%
- Global evolutionary dynamics and resistome analysis of Clostridioides difficile ribotype 017 96%
Similar papers in this journal
- Escherichia marmotae - a human pathogen easily misidentified as Escherichia coli 95%
- Global dissemination of tet(X3) and tet(X6) among livestock-associated Acinetobacter is sporadically mediated by highly diverse plasmidomes 95%
- Limited adaptive evolution of Staphylococcus aureus during transition from colonization to invasive infection 94%
Similar papers in this journal
- Acquired fluoroquinolone resistance genes in corneal isolates of Pseudomonas aeruginosa 95%
- Pseudomonas putida group species serve as reservoirs of conjugative plasmids disseminating Tn402-like class 1 integrons carrying blaVIM-2 metallo-β-lactamase genes 94%
- Evolutionary epidemiology of Streptococcus iniae: linking mutation rate dynamics with adaptation to novel immunological landscapes 93%
Similar papers in this journal
- Salmonella Infantis, the emerging human multidrug resistant pathogen - a One Health perspective 94%
- Retrospective Study of Bacteremia Caused by Alistipes Species in Japan, 2016–2023 93%
- Putative conjugative plasmids with tcdB and cdtAB genes in clinical Clostridium difficile strains 2 from MLST clades C-I, 2 and 4 92%
Similar papers in this journal
- Genomic and phenotypic diversity of Enterococcus faecalis isolated from endophthalmitis 96%
- Molecular investigations on a chimeric strain of Staphylococcus aureus sequence type 80 94%
- Whole genome sequences of multi-drug resistant Escherichia coli isolated in a Pastoralist Community of Western Uganda: Phylogenomic changes, virulence and resistant genes 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.