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March 4, 20260 citationsOpen Access

Global population genomics redefines domestication and clinical diversity in the Aspergillus flavus–oryzae complex

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WPWalter P. PflieglerBNBálint NémethVBVeronika Bodnár

Key Points

  • To investigate the evolutionary relationship and population structure of Aspergillus flavus and A. oryzae.
  • Conducted global population genomic analysis of 639 isolates from various sources.
  • Analyzed isolates from clinical, environmental, and food fermentation contexts across multiple continents.
  • Identified clades and mosaic groups depicting evolutionary relationships and domestication events.
  • Detected well-separated clades and highly admixed mosaic groups.
  • Found evidence of multiple independent domestication events contributing to A. oryzae.
  • Clinical A. flavus isolates exhibited distribution overlapping with fermentation strains, indicating complexity in pathogen diversity.

Abstract

Aspergillus flavus is a globally important human pathogen and agricultural contaminant, while its domesticated relative A. oryzae is widely used in food fermentation and biotechnology. Despite their importance, the evolutionary relationship, population structure and domestication history of these fungi remain unresolved. Here, we present the first global population genomic analysis of 639 A. flavus and A. oryzae isolates from clinical, environmental and food-fermentation sources across multiple continents. Our analyses reveal a complex evolutionary landscape comprising well-separated clades interspersed with highly admixed mosaic groups and potential evidence for multiple independent domestication events giving rise to A. oryzae. Clinical A. flavus isolates are distributed across several clades and mosaic groups, some overlapping with fermentation strains, highlighting an apparent role of domestication and admixture in shaping pathogen diversity. These results challenge current species boundaries and provide a framework for understanding evolutionary history, taxonomy and pangenomic architecture in these fungi, with broad implications for pathogenicity, food safety, biocontrol and metagenomic surveillance.

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Cite This Study

Pfliegler et al. (2025) studied this question.

synapsesocial.com/papers/69a7cd9dd48f933b5eeda218https://doi.org/10.5281/zenodo.18808241
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