Published May 27, 2025 | Version v1

Patterns of genotype-specific interactions in an obligate host-specific insect pathogenic fungus

  • 1. Wageningen University & Research
  • 2. University of Copenhagen
  • 3. Swedish University of Agricultural Sciences

Description

Host-pathogen infections and possible effects on co-evolutionary patterns depend on the genotypes of both host and pathogen. Obligate fungal pathogens of plants are often characterised by host-pathogen genotype-by-genotype (GxG) interactions, but whether these patterns exist in obligate-insect fungal pathogens are unclear. We take advantage of the obligate insect pathogenic fungus Entomophthora muscae, where individual isolates are specific to different dipteran host species in nature but can cross-infect multiple fly species in the laboratory. We collected three new isolates of E. muscae from Drosophila species. Phylogenetic analysis showed that Drosophila-isolated E. muscae represent a distinct geographically widespread Drosophila-lineage compared to house fly (Musca domestica) or Delia species-isolated E. muscae. We used the three new E. muscae isolates from Drosophila spp. together with a genetically distinct E. muscae isolate from house flies and assessed their virulence in a cross-infection experiment using one house fly, three D. suzukii and two D. melanogaster genotypes as hosts. All fungal isolates successfully infected hosts, induced behavioural manipulation, sporulated in all fly hosts, and differed in virulence between host genotypes, revealing GxG interactions. While house flies were most susceptible to fungal infection with 99% mortality, we found a lower virulence of 49% and 25% mortality in D. melanogaster and D. suzukii genotypes, respectively. Furthermore, all isolates harboured a specific mycovirus (family Iflaviridae), but co-phylogenetic branching patterns did not support fungus-virus co-speciation. We show that the genetic makeup of both fungal pathogen and fly host influence E. muscae infectivity, confirming GxG interactions in obligate fly fungal pathogens.

Notes

Funding provided by: European Commission
ROR ID: https://ror.org/00k4n6c32
Award Number: 859850

Funding provided by: Danmarks Frie Forskningsfond
ROR ID: https://ror.org/05svhj534
Award Number: 8049-00086A

Funding provided by: Carlsberg Foundation
ROR ID: https://ror.org/01kpjmx04
Award Number: CF20-0609

Funding provided by: Danmarks Frie Forskningsfond
ROR ID: https://ror.org/05svhj534
Award Number: DFF - 7014-00188

Funding provided by: Villum Fonden
ROR ID: https://ror.org/05nqkay65
Award Number: 10122

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Additional details

Related works

Is source of
10.5061/dryad.g1jwstr1k (DOI)