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.
Background:
Aspergillus fumigatus is a human fungal pathogen that causes aspergillosis in immunocompromised hosts. A. fumigatus is believed to be exposed to diverse environmental stresses in the host cells. The adaptation mechanisms are critical for infections in human bodies. Transcriptional networks in response to diverse environmental challenges remain to be elucidated. To gain insights into the adaptation to environmental stresses in A. fumigatus mycelia, we conducted time series transcriptome analyses.
Results:
With the aid of RNA-seq, we explored the global gene expression profiles of mycelia in A. fumigatus upon exposure to diverse environmental changes, including heat, superoxide, and osmotic stresses. From the perspective of global transcriptomes, transient responses to superoxide and osmotic stresses were observed while responses to heat stresses were gradual. We identified the stress-responsive genes for particular stresses, and the 266 genes whose expression levels drastically fluctuated upon exposure to all tested stresses. Among these, the 77 environmental stress response genes are conserved in S. cerevisiae, suggesting that these genes might be more general prerequisites for adaptation to environmental stresses. Finally, we revealed the strong correlations among expression profiles of genes related to 'rRNA processing'.
Conclusions:
The time series transcriptome analysis revealed the stress-responsive genes underlying the adaptation mechanisms in A. fumigatus mycelia. These results will shed light on the regulatory networks underpinning the adaptation of the filamentous fungi.
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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