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The Monothiol Glutaredoxin Grx4 Influences Iron Homeostasis and Virulence in Ustilago maydis
Sean W McCotter1, Matthias Kretschmer1, Christopher W J Lee1
1Michael Smith Laboratories, Department of Microbiology and Immunology, University of British Columbia, 301-2185 East Mall, Vancouver, BC V6T 1Z4, Canada.
Abstract:
The corn smut fungus, Ustilago maydis, is an excellent model for studying biotrophic plant-pathogen interactions, including nutritional adaptation to the host environment. Iron acquisition during host colonization is a key aspect of microbial pathogenesis yet less is known about this process for fungal pathogens of plants. Monothiol glutaredoxins are central regulators of key cellular functions in fungi, including iron homeostasis, cell wall integrity, and redox status via interactions with transcription factors, iron-sulfur clusters, and glutathione. In this study, the roles of the monothiol glutaredoxin Grx4 in the biology of U. maydis were investigated by constructing strains expressing a conditional allele of grx4 under the control of the arabinose-inducible, glucose-repressible promoter P1. The use of conditional expression was necessary because Grx4 appeared to be essential for U. maydis. Transcriptome and genetic analyses with strains depleted in Grx4 revealed that the protein participates in the regulation of iron acquisition functions and is necessary for the ability of U. maydis to cause disease on maize seedlings. Taken together, this study supports the growing appreciation of monothiol glutaredoxins as key regulators of virulence-related phenotypes in pathogenic fungi.
Insights
The corn smut fungus Grx4 protein is essential for iron acquisition and disease development in maize. This study reveals its critical role in regulating fungal virulence and host colonization.
Area of Science:
- Plant Pathology
- Mycology
- Molecular Biology
Background:
- Biotrophic plant-pathogen interactions, like those involving the corn smut fungus *Ustilago maydis*, are crucial for understanding host colonization.
- Iron acquisition is vital for microbial pathogenesis, yet poorly understood in plant fungal pathogens.
- Monothiol glutaredoxins regulate key fungal processes including iron homeostasis and virulence.
Purpose of the Study:
- To investigate the role of the monothiol glutaredoxin Grx4 in *Ustilago maydis* biology.
- To understand Grx4's function in iron acquisition and pathogenesis of maize.
Main Methods:
- Constructed conditional *grx4* mutant strains using an arabinose-inducible promoter.
- Performed transcriptome and genetic analyses on Grx4-depleted strains.
- Assessed the impact of Grx4 depletion on fungal virulence on maize seedlings.
Main Results:
- Grx4 is essential for *Ustilago maydis* survival and virulence.
- Grx4 regulates iron acquisition pathways in the fungus.
- Depletion of Grx4 significantly impairs the fungus's ability to cause disease on maize.
Conclusions:
- Monothiol glutaredoxins, exemplified by Grx4, are critical regulators of virulence in pathogenic fungi.
- Grx4 plays a key role in nutritional adaptation and pathogenesis of *Ustilago maydis*.
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