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Isolation of Culturable Yeasts and Molds from Soils to Investigate Fungal Population Structure
Published on: May 27, 2022
Genetic structure of Aspergillus flavus populations in human and avian isolates
1Laboratoire de Biologie Moléculaire Parasitaire et Fongique, Faculté de Médecine de Sfax, Rue Magida Boulila, 3029 Sfax, Tunisia.
Abstract:
Aspergillus flavus is the second leading cause of allergic, invasive, and colonizing fungal diseases in humans, and also the second most frequent organism associated with avian infections. Currently, it is not known whether there is a link between the environmental isolates and/or human isolates of A. flavus and those responsible for aspergillosis in birds. Microsatellite typing was used to analyze 29 A. flavus clinical and environmental avian isolates and 63 human clinical isolates collected from patients with a variety of aspergillosis diseases. The combination of all six markers yielded 77 different genotypes with a 0.98 D value. A. flavus genotypes obtained from avian isolates were compared with those obtained from human clinical and environmental samples. The standardized indices of association I (A) and rBarD were significantly different from zero (p < 0.01), suggesting a prevailing clonal reproduction. There was high genetic diversity between the hospital and poultry environments of A. flavus isolates. The human environmental population was significantly differentiated from environmental and clinical avian populations (F (st) > 0.25). The avian clinical subpopulation exchanged few strains with the environmental human (N (m) = 7.24) and avian (N (m) = 6.60) populations. The minimum spanning tree analysis identified three A. flavus genotype clusters that were highly structured according to the isolation source (p < 10(-4)).
Insights
Aspergillus flavus strains from human and avian sources show distinct genetic profiles, indicating limited exchange between human and avian populations. This research clarifies the genetic diversity and population structure of Aspergillus flavus.
Area of Science:
- Medical Mycology
- Fungal Genetics
- Population Biology
Background:
- Aspergillus flavus is a significant pathogen causing human and avian diseases.
- The relationship between environmental, human, and avian A. flavus isolates remains unclear.
- Understanding A. flavus population genetics is crucial for disease control.
Purpose of the Study:
- To investigate the genetic relationship between human and avian Aspergillus flavus isolates.
- To determine the population structure and genetic diversity of A. flavus from various sources.
- To assess potential strain exchange between human and avian environments.
Main Methods:
- Microsatellite typing was employed to analyze A. flavus isolates.
- Seventy-seven distinct genotypes were identified using six microsatellite markers.
- Population genetic analyses, including Fst and minimum spanning tree, were performed.
Main Results:
- Significant genetic differentiation was observed between human and avian A. flavus populations.
- High genetic diversity was found within hospital and poultry environments.
- Limited strain exchange was detected between avian clinical and environmental populations.
Conclusions:
- Human and avian A. flavus populations are genetically distinct, suggesting limited cross-transmission.
- Aspergillus flavus exhibits clonal reproduction with significant genetic diversity.
- Isolation source is a key factor structuring A. flavus genotypes.
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