A novel mitochondrial regulon for ferroptosis during fungal pathogenesis

Qing Shen1, Madiha Natchi Samu Shihabdeen1, Fan Yang1

  • 1Temasek Life Sciences Laboratory, 1 Research Link, Singapore.

Autophagy
|August 12, 2025
PubMed

Insights

Ferroptosis, a cell death process, is crucial for fungal pathogen Magnaporthe oryzae development. Mitophagy maintains mitochondria for ferroptosis, impacting fungal pathogenesis and rice blast disease.

Area of Science:

  • Cell Biology
  • Mycology
  • Biochemistry

Background:

  • Ferroptosis, an iron- and lipid peroxide-driven cell death, is vital in diseases and immunity but remains understudied.
  • The fungal pathogen Magnaporthe oryzae utilizes ferroptosis in spore cells for infectious development.

Purpose of the Study:

  • To elucidate the mechanisms of ferroptosis in Magnaporthe oryzae spores.
  • To investigate the interplay between ferroptosis and autophagy-mediated mitochondrial degradation (mitophagy).

Main Methods:

  • Chemical cell biology, molecular genetics, and biochemical analyses were employed.
  • Pharmacological disruption of electron transport chain and membrane potential were utilized.
  • Mitochondrial coenzyme Q biosynthesis inhibition and ferroptosis inhibitors were used.

Main Results:

  • Mitophagy is essential for ferroptosis by maintaining metabolically active mitochondria.
  • Mitochondrial membrane potential and ATP synthesis are critical regulators of ferroptosis.
  • Mitochondrial metabolism, including TCA cycle and iron homeostasis, is linked to ferroptosis.

Conclusions:

  • A bioenergetics- and redox-based mitochondrial regulon is essential for intrinsic ferroptosis in fungi.
  • This ferroptosis pathway plays a precise role in Magnaporthe oryzae pathogenesis, leading to rice blast disease.

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