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Dynamics of Aspergillus fumigatus in Azole Fungicide-Containing Plant Waste in the Netherlands (2016-2017)
Jianhua Zhang1, Lidia Lopez Jimenez2, Eveline Snelders2
1Laboratory of Genetics, Wageningen University, Wageningen, the Netherlands jianhua.zhang@wur.nl.
Abstract:
The treatment of patients suffering from Aspergillus diseases is hampered due to infections with Aspergillus fumigatus that are already resistant to medical azoles. Previous work has suggested that A. fumigatus likely gains resistance through environmental azole exposure in so-called hot spots. Here, we investigated A. fumigatus resistance dynamics over time at three sites at which farmers used azole fungicides for crop protection. Over 16 months, 114 samples were taken from stockpiles of decaying plant waste. A. fumigatus and azole fungicide residues were ubiquitously present in the plant waste. On average, 105A. fumigatus CFU/g was recovered, of which roughly half were itraconazole and tebuconazole resistant. Similar tandem repeat-mediated resistance mechanisms were found in colonies cultured from plant waste as reported in clinical azole-resistant isolates. Our results show a consistent high burden of azole-resistant A. fumigatus in azole-containing plant waste and underscores the need to further investigate resistance-reducing interventions and transmission routes.IMPORTANCEAspergillus fumigatus is consistently present independently on season at a high abundance in plant waste material throughout the sampling period. Our study confirmed that long-term storage sites of azole-containing decaying plant material can indeed be considered hot spots, which can sustain resistance development and maintenance in A. fumigatus Roughly half of individual isolates were azole resistant and carried genetic mutations that are highly similar to those found in patients with azole-resistant invasive aspergillosis. Our work suggests that environmental sources of azole resistance in A. fumigatus may be important, underscoring the need for further studies on environment-to-patient transmission routes.
Insights
Azole-resistant Aspergillus fumigatus is common in decaying plant waste, posing a threat to patient treatment. This study highlights environmental "hot spots" as reservoirs for resistant fungal strains.
Area of Science:
- Medical Mycology
- Environmental Microbiology
- Antifungal Resistance
Background:
- Azole resistance in Aspergillus fumigatus complicates treatment of aspergillosis.
- Environmental exposure to azoles is a suspected driver of A. fumigatus resistance.
- Fungal resistance hot spots may exist in agricultural settings.
Purpose of the Study:
- To investigate the dynamics of A. fumigatus azole resistance over time.
- To assess the prevalence of resistant A. fumigatus in plant waste treated with azole fungicides.
- To identify potential environmental reservoirs for azole-resistant A. fumigatus.
Main Methods:
- Sampling of decaying plant waste from three agricultural sites over 16 months.
- Quantification of A. fumigatus colony-forming units (CFU/g).
- Testing of A. fumigatus isolates for resistance to itraconazole and tebuconazole.
- Analysis of resistance mechanisms in cultured colonies.
Main Results:
- A. fumigatus and azole fungicide residues were ubiquitous in plant waste.
- High abundance of A. fumigatus (10^5 CFU/g) was consistently found.
- Approximately 50% of A. fumigatus isolates exhibited resistance to itraconazole and tebuconazole.
- Identified resistance mechanisms similar to those in clinical azole-resistant isolates.
Conclusions:
- Decaying plant waste treated with azole fungicides acts as a significant reservoir for azole-resistant A. fumigatus.
- Environmental azole resistance in A. fumigatus is a substantial issue.
- Further research into resistance-reducing interventions and environment-to-patient transmission is crucial.
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