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Updated: Aug 27, 2026

Using Ustilago maydis as a Trojan Horse for In Situ Delivery of Maize Proteins
Published on: February 8, 2019
An ste20 homologue in Ustilago maydis plays a role in mating and pathogenicity
David G Smith1, Maria D Garcia-Pedrajas, Wei Hong
1Department of Biology, University of Louisville, Louisville, Kentucky 40208, USA.
Abstract:
The mitogen-activated protein kinase (MAPK) pathways are conserved from fungi to humans and have been shown to play important roles in mating and filamentous growth for both Saccharomyces cerevisiae and dimorphic fungi and in infectivity for pathogenic fungi. STE20 encodes a protein kinase of the p21-activated protein kinase family that regulates more than one of these cascades in yeasts. We hypothesized that an Ste20p homologue would play a similar role in the dimorphic plant pathogen Ustilago maydis. The full-length copy of the U. maydis gene was obtained from a genomic library; it lacked introns and was predicted to encode a protein of 826 amino acids, whose sequence confirmed its identity as the first Ste20p homologue to be isolated from a plant pathogen. The predicted protein contained both an N-terminal regulatory Cdc42-Rac interactive binding domain and a C-terminal catalytic kinase domain. Disruption of the gene smu1 resulted in a delayed mating response in a mating-type-specific manner and also in a severe reduction in disease production on maize. Unlike the Ustilago bypass of cyclase (ubc) mutations previously identified in genes in the pheromone-responsive MAPK cascade, mutation of smu1 does not by itself act as an extragenic suppressor of the filamentous phenotype of a uac1 mutant. Thus, the direct connection of Smu1p to MAPK cascade function has yet to be established. Even so, Smu1, though not absolutely required for mating, is necessary for wild-type mating and pathogenicity.
Insights
Researchers identified a Ste20p homologue in Ustilago maydis, a plant pathogen. This gene, smu1, is crucial for mating and disease development, highlighting its role in fungal pathogenicity.
Area of Science:
- Molecular Biology
- Mycology
- Plant Pathology
Background:
- Mitogen-activated protein kinase (MAPK) pathways are vital in fungal processes like mating, growth, and pathogenicity.
- STE20 gene products regulate MAPK pathways in various yeasts.
Purpose of the Study:
- To investigate the role of an Ste20p homologue in the dimorphic plant pathogen Ustilago maydis.
- To determine if this homologue influences mating and pathogenicity.
Main Methods:
- Isolated the full-length U. maydis gene (smu1) lacking introns.
- Predicted the protein sequence and identified key domains (Cdc42-Rac interactive binding and catalytic kinase).
- Disrupted the smu1 gene to observe effects on mating and disease production.
Main Results:
- The smu1 gene encodes the first identified Ste20p homologue in a plant pathogen.
- Disruption of smu1 caused mating delays and significantly reduced disease severity on maize.
- smu1 mutation did not suppress the filamentous phenotype of uac1 mutants, suggesting a distinct role.
Conclusions:
- Smu1p is essential for wild-type mating and pathogenicity in Ustilago maydis.
- While not absolutely required, Smu1p plays a necessary role in these processes.
- The direct link between Smu1p and MAPK cascade function requires further investigation.
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