Polymyxin Resistance in Salmonella: Exploring Mutations and Genetic Determinants of Non-Human Isolates
Thais Vieira1, Carla Adriana Dos Santos1, Amanda Maria de Jesus Bertani1
1Adolfo Lutz Institute, São Paulo 01246-000, SP, Brazil.
Abstract:
Until 2015, polymyxin resistance was primarily attributed to chromosomal mutations. However, with the first report of mobile colistin resistance (mcr-1) in commensal Escherichia coli from food animals in China, the landscape has changed. To evaluate the presence of polymyxin resistance in Salmonella spp., a drop screening test for colistin and polymyxin B was carried out on 1156 isolates of non-human origin (animals, food, and the environment), received in Brazil, between 2016 and 2021. Subsequently, 210 isolates with resistant results in the drop test were subjected to the gold-standard test (broth microdilution) for both colistin and polymyxin B. Whole-genome sequencing (WGS) of 102 resistant isolates was performed for a comprehensive analysis of associated genes. Surprisingly, none of the isolates resistant to colistin in the drop test harbored any of the mcr variants (mcr-1 to mcr-10). WGS identified that the most common mutations were found in pmrA (n= 22; T89S) and pmrB (n = 24; M15T, G73S, V74I, I83A, A111V). Other resistance determinants were also detected, such as the aac(6')-Iaa gene in 72 isolates, while others carried beta-lactamase genes (blaTEM-1blaCTX-M-2, blaCMY-2). Additionally, genes associated with fluoroquinolone resistance (qnrB19, qnrS1, oqxA/B) were detected in 11 isolates. Colistin and polymyxin B resistance were identified among Salmonella from non-human sources, but not associated with the mcr genes. Furthermore, the already-described mutations associated with polymyxin resistance were detected in only a small number of isolates, underscoring the need to explore and characterize unknown genes that contribute to resistance.
Insights
Polymyxin resistance in Salmonella from non-human sources in Brazil was studied. Unexpectedly, mobile colistin resistance (mcr) genes were absent; instead, chromosomal mutations in pmrA and pmrB were common, highlighting unknown resistance mechanisms.
Area of Science:
- Microbiology
- Antimicrobial Resistance
- Genomics
Background:
- Polymyxin resistance historically linked to chromosomal mutations.
- Emergence of mobile colistin resistance (mcr-1) in Escherichia coli shifted understanding.
- Need to assess polymyxin resistance in Salmonella spp. from non-human sources.
Purpose of the Study:
- To evaluate polymyxin resistance in Salmonella spp. from Brazilian non-human sources.
- To identify genetic determinants of polymyxin resistance in these isolates.
- To investigate the presence of mobile colistin resistance (mcr) genes.
Main Methods:
- Screening of 1156 Salmonella isolates (animals, food, environment) using colistin and polymyxin B drop tests.
- Confirmation of resistance via broth microdilution for 210 resistant isolates.
- Whole-genome sequencing (WGS) of 102 resistant isolates for genetic analysis.
Main Results:
- Polymyxin resistance detected in Salmonella, but no mcr variants (mcr-1 to mcr-10) were found.
- Common mutations identified in pmrA (T89S) and pmrB (multiple variants).
- Other resistance genes detected, including aac(6')-Iaa, beta-lactamases, and fluoroquinolone resistance genes.
Conclusions:
- Polymyxin resistance in Brazilian non-human Salmonella is not associated with mcr genes.
- Detected chromosomal mutations in pmrA/pmrB were infrequent.
- Further research is crucial to characterize novel genes contributing to polymyxin resistance.


