Global gene expression reveals stress-responsive genes in Aspergillus fumigatus mycelia

Hiroki Takahashi1,2, Yoko Kusuya3, Daisuke Hagiwara3

  • 1Medical Mycology Research Center, Chiba University, 1-8-1 Inohana, Chuo-ku, Chiba, 260-8673, Japan. hiroki.takahashi@chiba-u.jp.

BMC Genomics
|December 6, 2017
PubMed
Abstract

Insights

Aspergillus fumigatus adapts to environmental stresses through specific gene expression changes. This study identified key stress-responsive genes, including conserved ones, crucial for fungal survival and infection.

Area of Science:

  • Mycology
  • Molecular Biology
  • Genomics

Background:

  • Aspergillus fumigatus is a fungal pathogen causing aspergillosis in immunocompromised individuals.
  • Fungal adaptation to host environmental stresses is critical for infection.
  • Understanding transcriptional responses to stress is vital for elucidating fungal pathogenesis.

Purpose of the Study:

  • To investigate the adaptation mechanisms of Aspergillus fumigatus mycelia to environmental stresses.
  • To identify stress-responsive genes and transcriptional networks involved in fungal adaptation.

Main Methods:

  • Time series transcriptome analysis using RNA-sequencing (RNA-seq).
  • Exposure of A. fumigatus mycelia to heat, superoxide, and osmotic stresses.
  • Global gene expression profiling to identify stress-responsive genes.

Main Results:

  • Differential gene expression patterns observed in response to various stresses; transient for superoxide/osmotic, gradual for heat.
  • Identified 266 genes with drastically fluctuating expression across all tested stresses.
  • Discovered 77 conserved environmental stress response genes shared with S. cerevisiae, potentially indicating general adaptation mechanisms.
  • Revealed strong correlations in expression profiles of genes involved in rRNA processing.

Conclusions:

  • Time series transcriptome analysis successfully identified stress-responsive genes essential for A. fumigatus adaptation.
  • Findings provide insights into the regulatory networks governing stress adaptation in filamentous fungi.

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