Aug 2026· International Journal of Molecular Sciences· Vol 27· 0 citations· 76 references
Medicine
TL;DR
Findings indicate that resistance gene distribution was closely associated with lineage structure and support integrated genomic surveillance of A. baumannii across animal and environmental reservoirs.
Abstract
Acinetobacter (A.) baumannii is an important multidrug-resistant pathogen increasingly recognized across animal and environmental settings, and carbapenem-resistant A. baumannii (CRAB) is classified as a critical-priority pathogen by the World Health Organization. This study investigated the antimicrobial resistance (AMR) and genomic characteristics of 122 A. baumannii isolates comprising 72 veterinary and 50 environmental isolates collected in Andhra Pradesh, India. Antimicrobial susceptibility testing, whole-genome sequencing (WGS), resistance and virulence gene profiling, multilocus sequence typing (MLST), core-genome analysis, single nucleotide polymorphism (SNP) phylogeny, and pan-genome analysis were performed. Overall, 58.2% of isolates were multidrug-resistant (MDR), and 41.8% were extensively drug-resistant (XDR). Sequence type (ST) 52 predominated among veterinary isolates, whereas ST2 was more frequent among environmental isolates. The presence of carbapenem-resistant isolates along with the ST2 lineage enhances the similarity to clinical A. baumannii. Several intrinsic resistance genes, including blaOXA-23, armA, aph(3″)-Ib, aph(6)-Id, tet(B), mph(E), and msr(E), were more prevalent in the ST2-associated population. Virulence-associated determinants were widely conserved. Core-genome MLST (cgMLST) and core-genome SNP (cgSNP) analyses identified highly related isolates within both lineages, while pairwise SNP differences were 0–7. Pan-genome analysis identified 4204 gene clusters and distinct accessory gene patterns between ST2 and ST52. These findings indicate that resistance gene distribution was closely associated with lineage structure and support integrated genomic surveillance of A. baumannii across animal and environmental reservoirs.
OBJECTIVE
Acinetobacter baumannii (A. baumannii) has emerged as a critical multidrug-resistant (MDR) pathogen with the capacity to persist in diverse ecological niches. Environmental reservoirs in densely populated settings such as Dhaka, Bangladesh, may play a significant role in sustaining and disseminating antimicro...
Spencer Mark Mondol, Mohammed Aziz Hossain, F. Haque· Journal of Global Antimicrob...· 0 citations
Background: K. pneumoniae is a major opportunistic pathogen recognized by the World Health Organization as a critical-priority antimicrobial-resistant pathogen. This study characterized isolates for antibiotic resistance determinants, virulence-associated genes, mobile genetic elements, and population structure of the...
Fatemah Alatar, S. Boswihi, Hussain A. Safar et al.· Antibiotics· 0 citations
The findings underscore the complex interplay between ARGs, VFs, and MGEs in the genomic evolution of CRAB, expanding current understanding of CRAB adaptation and may contribute toward enhanced surveillance, antimicrobial stewardship, and exploration of alternative therapeutic targets.
Sara Pearl, A. Anbarasu· Frontiers in Cellular and In...· 0 citations
Background Acinetobacter non-baumannii (Anb) species are reported worldwide to cause infections in both adults and neonates, although less frequently than Acinetobacter baumannii. However, limited information is available on their genomic diversity, resistance mechanisms, and virulence potential. This study investigate...
Subhasree Roy, Daichi Morita, Tanusree Das et al.· Frontiers in Microbiology· 0 citations
Aeromonas
spp. are increasingly recognized opportunistic pathogens of humans, yet integrated genomic and phenotypic data from clinical, extra-intestinal isolates remain limited. We characterized 74 non-duplicate
Aeromonas
isolates recovered from extra-intestinal clinical specimens at a tertiary hospital in Nin...
Qi-Feng Jiang, Xing-Bei Weng· Frontiers in Microbiology· 0 citations
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