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.

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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