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Unraveling the potential impact of climate change on the evolution and acceleration of antimicrobial resistance: mechanisms, consequences, and control strategies

delete2026-01-01
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PRE
AI
F
FNU Nahiduzzaman
M
Mst. Arjina Jannat Akhi
T
Tasnim Zarin
C
Chandra Shaker Chouhan
M
Md. Ashiqur Rahman
A
A. K. M. Anisur Rahman
M
Mst Minara Khatun
M
Md. Ariful Islam
D
Danishuddin
A
Azizul Haque *
DOI:10.1139/er-2025-0165delete
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Abstract

Abstract

En 中文
Climate change is an escalating global crisis that profoundly accelerates the development and dissemination of antimicrobial resistance (AMR), posing a severe threat to planetary health. This review elucidates the complex mechanisms through which climate change amplifies AMR across bacterial, fungal, and protozoal pathogens. We demonstrate that rising temperatures promote horizontal gene transfer, stress-induced mutagenesis, and efflux pump expression, with a 10 degrees C increase correlating with a 4%-17% rise in bacterial resistance. Concurrently, increased UV-B radiation enhances plasmid conjugation by 2-10-fold and facilitates the uptake of fragmented extracellular DNA, driving resistance evolution. The analysis extends to the emergence of antifungal and antiprotozoal resistance, where climate stressors co-select for resistance mechanisms, as seen in azole-resistant Aspergillus fumigatus and the simultaneous multi-continent emergence of multidrug-resistant Candida auris. Furthermore, ecological drivers, including extreme weather events that elevate antibiotic residues in floodwaters by up to 30 times, migratory birds that carry multidrug-resistant bacteria (with 38% MDR E. coli prevalence in some species), and intensified agricultural practices using over 200 fungicide compounds, create global hotspots for resistance exchange. Alarmingly, the rapid thawing of polar regions is mobilizing ancient resistomes, with metagenomic surveys revealing up to 944 distinct antibiotic resistance genes in glacial ice. These synergistic processes underscore the urgent need for a unified One Health approach that integrates climate-resilient policies, stringent antimicrobial stewardship, enhanced environmental surveillance, and innovative interventions to curb the global spread of AMR in an era of rapid environmental change.
Keywords:
climate change
horizontal gene transfer
heat stress
environmental adaptation
One Health

Journal

Environmental Reviews cover
Environmental Reviews
IF:
5.1
Papers:
100
Citations:
3.5K

Organization

B
bangladesh agricultural university (bau)
Scholars:
2.2K
Papers: 1.3K
Citations: 2
E
eastern university bangladesh
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11
Papers: 9
Citations: 0
Y
yeungnam university
Scholars:
1.3K
Papers: 879
Citations: 0
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