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Updated: Apr 28, 2026

Temporal Quantification of MAPK Induced Expression in Single Yeast Cells
Published on: October 4, 2013
MAPK Signaling Pathway May Directly Regulate the Expression of Hydrophobin Genes in Flammulina filiformis
Qianhui Huang1,2, Zongjun Tong3, Xiaoling Guan1,2
1College of Biosience and Engineering, Ningde Normal University, Ningde 352100, China.
Abstract:
Fungal hydrophobins reduce the surface tension of hyphae so that hyphae can grow into the air. Reduced expression of hydrophobin genes results in abnormal morphogenesis of both hyphae and the fruiting body of Flammulina filiformis. Previous studies showed that filamentous-growth MAPK signaling pathway directly modulates pseudohyphae formation in budding yeast, so we hypothesized that the specific transcription factor in this pathway may also directly regulate the expression of hydrophobin genes in F. filiformis. Downstream of the G protein, the cAMP/PKA signaling pathway is parallel with the filamentous-growth MAPK signaling pathway in regulating the filamentous growth of fungi. Thus, the cAMP addition test was carried out to exclude the involvement of the PKA/cAMP signaling pathway in aerial-hyphae deficiency of the three mutants used in our previous study. Transcriptomic analysis showed common changes in the MAPK signaling pathway of the three mutants, including 6 downregulated and 3 upregulated genes in common. Transcription factor Tec1 was one of the upregulated genes, and it is a pathway-specific transcription factor for filamentous growth. Motif prediction showed that putative binding sites of Tec1 and Ste12 existed in the promoter region of the three chosen hydrophobin genes mentioned in our previous study, and DAP-seq analysis suggested that putative binding sites of Tec1 and Ste12 were located in 10 hydrophobin genes, respectively, and there were 8 in common for both the transcription factors. These results gave suggestive evidence supporting our hypothesis. We have identified a potential regulatory connection between the filamentous-growth MAPK signaling pathway and hydrophobin genes through Tec1 and Ste12. However, functional validation is required to confirm direct regulation between both the transcription factors and the downstream genes.
Insights
Researchers investigated how fungal hydrophobins affect aerial hyphae growth in *Flammulina filiformis*. They found the filamentous-growth MAPK pathway, specifically transcription factors Tec1 and Ste12, may regulate hydrophobin genes, impacting fungal development.
Area of Science:
- Mycology
- Molecular Biology
- Biochemistry
Background:
- Fungal hydrophobins are crucial for aerial hyphae development by reducing surface tension.
- Abnormal hydrophobin gene expression in *Flammulina filiformis* leads to developmental defects.
- The filamentous-growth MAPK signaling pathway is known to regulate fungal filamentous growth.
Purpose of the Study:
- To investigate the potential role of the filamentous-growth MAPK signaling pathway in regulating hydrophobin gene expression in *F. filiformis*.
- To identify specific transcription factors involved in this regulatory connection.
Main Methods:
- Transcriptomic analysis of fungal mutants to identify common gene expression changes.
- cAMP addition test to exclude the involvement of the PKA/cAMP signaling pathway.
- Motif prediction and DAP-seq analysis to identify transcription factor binding sites in hydrophobin gene promoters.
Main Results:
- Transcriptomic analysis revealed common alterations in the MAPK signaling pathway, with transcription factor Tec1 being upregulated.
- Motif prediction and DAP-seq analysis indicated potential binding sites for Tec1 and Ste12 in the promoter regions of multiple hydrophobin genes.
- Eight hydrophobin genes showed common potential binding sites for both Tec1 and Ste12.
Conclusions:
- A potential regulatory link between the filamentous-growth MAPK pathway and hydrophobin genes, mediated by Tec1 and Ste12, was identified.
- Further functional validation is necessary to confirm the direct regulatory roles of Tec1 and Ste12 on these hydrophobin genes.
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