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Mohan, B.

Publications and source records attributed to Mohan, B..

2 recordsLinked to original sources

Aeromonas: Genomic Insights into an Environmental Pathogen and Reservoir of Antimicrobial Resistance

Aeromonads are an ecologically versatile group of bacteria that cause infection in aquatic animals and are recognised as an emerging human pathogen. Despite this, our understanding of Aeromonas diversity, especially the relationship between clinical and environmental strains, remains limited. Here, we present a complete view of the Aeromonas genus, comprising 1,853 genomes, and a detailed comparison of clinical and environmental strains from South Asia, including 996 newly sequenced genomes from Bangladesh and India. Phylogenetic analyses revealed that Aeromonas is a highly diverse genus, with no distinct clade separating clinical and environmental isolates. We identified 28 Aeromonas species and 905 novel sequence types, comprising 72.5% of the genomes. Notably, we show a high incidence of AMR genes across all isolates, including against front and last-line antibiotics. Finally, we highlight frequent misidentification of Aeromonas as Vibrio cholerae, key to cholera-endemic regions where both genera co-exist and are associated with diarrhoeal disease. Our study underscores Aeromonas as an important environmental AMR reservoir and emerging multi-species pathogen capable of spilling over into human populations.

genomics↗

Sequence types of Enteroaggregative Escherichia coli strains recovered from human, animal, and environmental sources, India.

ObjectivesIn the current study, we report whole genome sequencing (WGS) data on EAEC strains from India to identify lineages and different sequence types (STs) in our geographical regions across North India. Material and methodsWe performed WGS comparative genomics characterization to examine the diversity of 122 EAEC strains collected from a large geographic area from clinical (Human sources) and non-clinical sources (animal and environmental sources). M-PCR for 21 virulence genes was performed. A triplex PCR detected phylogenetic groups A, B1, B2, and Dwas done. All strains were genome-sequenced, and bioinformatics analysis was performed. ResultsEAEC isolates belonged to 29 sequence types, further clustered into 11 clonal complexes, among which CC38 was the largest, containing 38 isolates mainly belonging to two ST types (ST38 and ST315). CC10 was the most diverse group, comprising 8 STs (ST43, ST2706, ST1286, ST 10, ST167, ST34, ST227, and ST4305). The most frequently detected virulence gene among the 96 clinical EAEC isolates was astA (87.5%), followed by ORF3 (62.5%), and aap (54.1%). ConclusionThese findings indicate the high diversity of EAEC and different sources of unique ST types of EAEC. Such genetic relatedness may be a favorable factor in exchanging virulence factors and other genes. The results of this study provide genetic evidence that farmed animals may act as a reservoir of EAEC.

genomics↗