bioRxiv · 10.64898/2026.07.02.736111
Opportunistic pathogenicity in fungi can transcend species boundaries
Abstract
Multiple fungal lineages have independently evolved the ability to opportunistically infect humans, imposing a major burden on public health. Opportunistic pathogenicity requires the confluence of pre-existing fungal traits that facilitate host colonization (e.g., the ability to grow at 37{degrees}C) and host immune filters that permit the survival of some colonizers (e.g., inborn errors of immunity). Numerous studies have shown that fungal pathogens can exhibit extensive strain-to-strain variation in the ability to cause disease. Moreover, it is also well established that non-pathogenic fungi can occasionally cause severe infections. Together, these observations raise the question: What differentiates opportunistic fungal pathogens from non-pathogens? To address this empirically, we compared phenotypic, metabolomic, and genomic variation between Aspergillus fumigatus, an organism responsible for more than 300,000 infections per year, and Aspergillus fischeri, a close relative that is not considered clinically relevant. By examining 26 phenotypic traits across 16 representative strains of A. fumigatus and 16 of A. fischeri, we found that infection-relevant traits measured under in vitro monoculture conditions showed species-specific distributions, whereas traits measured under in vitro coculture with murine macrophages overlapped. Strikingly, strains of the two species also overlapped in their virulence profiles in an immunocompromised murine model of pulmonary aspergillosis; three strains of A. fischeri exhibited lethality rates of >50% while two A. fumigatus strains were among the least virulent of all 32 strains tested. Consistent with this overlap, we could not associate virulence variation with the presence of specific genomic elements, phenotypic traits, or secondary metabolites. Our results raise the hypothesis that opportunistic pathogenicity can extend beyond the boundaries of individual species. We propose a conceptual model in which the opportunistic pathogenic potential of any fungal strain is the product of complex interactions among numerous genomic, ecological, and host immunity factors.
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Rinker, D., Sauters, T. J. C., Gumilang, A., Riedling, O. L., Steffen, K., Pinzan, C. F., Reis, T., de Castro, P. A., Rangel-Grimaldo, M., Raja, H. A., Gibbons, J. G., Goldman, G., Oberlies, N. H., Rokas, A.. 2026-07-03. Opportunistic pathogenicity in fungi can transcend species boundaries. https://doi.org/10.64898/2026.07.02.736111
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