Attachment and germination of Entomophaga maimaiga conidia on host and non-host larval cuticle

Ann E Hajek1, Callie C Eastburn

  • 1Department of Entomology, Cornell University, Comstock Hall, Ithaca, NY 14853-0901, USA. aeh4@cornell.edu

Insights

Entomophaga maimaiga fungus infects gypsy moth larvae but not cuculliine moths. This difference is due to cuculliine larval cuticle properties, including a mucous film and lower hydrophobicity, preventing fungal attachment and germination.

Area of Science:

  • Entomology
  • Plant Pathology
  • Chemical Ecology

Background:

  • Entomophaga maimaiga is a fungal pathogen specific to Lepidoptera, highly virulent against Lymantria dispar (gypsy moth).
  • Species in the subfamily Cuculliinae (Family Noctuidae) exhibit resistance to E. maimaiga, attributed to the fungus's inability to penetrate their larval cuticle.

Purpose of the Study:

  • To compare conidial attachment and germination of E. maimaiga on susceptible L. dispar and resistant cuculliine species.
  • To investigate the role of larval cuticle properties, including hydrophobicity and chemical composition, in E. maimaiga infection resistance.

Main Methods:

  • Bioassays and scanning electron microscopy (SEM) were used to examine conidial attachment and germination on larvae.
  • Goniometry measured the relative hydrophobicity of larval cuticles.
  • Sequential cuticle extractions (hexane, chloroform, methanol) followed by conidial germination assays on coated glass slides were performed.

Main Results:

  • Conidia adhered well and germinated at high percentages on L. dispar cuticle, but formed loose aggregations on cuculliine cuticles, often covered by a mucous film.
  • L. dispar cuticle was more hydrophobic than cuculliine cuticle.
  • Methanol extracts of cuculliine cuticle significantly reduced conidial germination compared to L. dispar extracts, while hexane and chloroform extracts induced secondary conidia formation in cuculliines.

Conclusions:

  • A combination of factors, including a mucous film on the cuticle, lower hydrophobicity, and inhibitory chemical compounds in the methanol extract of cuculliine cuticle, prevents E. maimaiga infection in these species.
  • Larval cuticle surface properties play a critical role in host specificity of E. maimaiga.

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