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Fungal biofilm morphology impacts hypoxia fitness and disease progression.

Caitlin H Kowalski | Joshua D Kerkaert | Ko-Wei Liu | Matthew C Bond | Raimo Hartmann | Carey D Nadell | Jason E Stajich | Robert A Cramer
Nature microbiology | 2019

Microbial populations form intricate macroscopic colonies with diverse morphologies whose functions remain to be fully understood. Despite fungal colonies isolated from environmental and clinical samples revealing abundant intraspecies morphological diversity, it is unclear how this diversity affects fungal fitness and disease progression. Here we observe a notable effect of oxygen tension on the macroscopic and biofilm morphotypes of the human fungal pathogen Aspergillus fumigatus. A hypoxia-typic morphotype is generated through the expression of a subtelomeric gene cluster containing genes that alter the hyphal surface and perturb interhyphal interactions to disrupt in vivo biofilm and infection site morphologies. Consequently, this morphotype leads to increased host inflammation, rapid disease progression and mortality in a murine model of invasive aspergillosis. Taken together, these data suggest that filamentous fungal biofilm morphology affects fungal-host interactions and should be taken into consideration when assessing virulence and host disease progression of an isolated strain.

Pubmed ID: 31548684

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Associated grants

  • Agency: NIAID NIH HHS, United States
    Id: R01 AI130128
  • Agency: NIGMS NIH HHS, United States
    Id: P20 GM113132
  • Agency: NIAID NIH HHS, United States
    Id: R01 AI081838
  • Agency: NIGMS NIH HHS, United States
    Id: T32 GM008704
  • Agency: NIH HHS, United States
    Id: S10 OD016290
  • Agency: NIDDK NIH HHS, United States
    Id: P30 DK117469
  • Agency: NIAID NIH HHS, United States
    Id: F31 AI138354
  • Agency: NHLBI NIH HHS, United States
    Id: T32 HL134598

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