Green Fluorescent Protein Transformation Sheds More Light on a Widespread Mycoparasitic Interaction

Márk Z Németh1, Alexandra Pintye1, Áron N Horváth1

  • 11Plant Protection Institute, Centre for Agricultural Research, Hungarian Academy of Sciences, H-1525 Budapest, Hungary.

Phytopathology
|March 23, 2019
PubMed

Insights

This study used genetically modified Ampelomyces fungi to track their survival and parasitic activity against powdery mildews. Results show Ampelomyces persists on plants and in soil, acting as a mycoparasite.

Area of Science:

  • Plant Pathology
  • Mycology
  • Biocontrol

Background:

  • Powdery mildews are significant plant pathogens.
  • Mycoparasitic fungi, such as Ampelomyces, naturally control powdery mildews.
  • Some Ampelomyces strains are commercially used as biocontrol agents.

Purpose of the Study:

  • To develop stable, fluorescently tagged Ampelomyces strains for enhanced visualization.
  • To investigate the environmental persistence and mycoparasitic interactions of Ampelomyces.
  • To establish a molecular genetic framework for the Ampelomyces genus.

Main Methods:

  • Agrobacterium tumefaciens-mediated transformation (ATMT) to create GFP-expressing Ampelomyces.
  • Fluorescence microscopy for detecting Ampelomyces structures in various samples.
  • Environmental fate studies in phyllosphere, soil, and decomposing leaf litter.

Main Results:

  • GFP tagging significantly improved the detection of Ampelomyces hyphae.
  • Ampelomyces strains persisted for up to 21 days on mildew-free plant surfaces.
  • Ampelomyces survived as saprobes in soil and leaf litter, developing hyphae but not sporulating.

Conclusions:

  • Ampelomyces strains occupy a specific phyllosphere niche, primarily functioning as mycoparasites.
  • The study provides a foundation for molecular genetic tools in Ampelomyces research.
  • Understanding Ampelomyces' environmental fate is crucial for optimizing biocontrol strategies.

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