Back to search

Cordyceps, Caterpillar Fungus · 2025 · Journal Article

Medium relevance

Impact of the sterol O-acyltransferase gene (Cmare2) on morphology and stability of the mushroom Cordyceps militaris.

Ophiocordyceps sinensis

Energy & fatigueRespiratory
SpeciesCordyceps, Caterpillar Fungus
JournalInternational journal of biological macromolecules
Year2025

Key points

  • Strain degeneration in mushroom cultivation can lead to significant commercial losses, yet the genetic factors remain elusive
  • This study identified the sterol O-acyltransferase gene, Cmare2, which is associated with colony sectorization in Cordyceps militaris, using a T-DNA insertion-mutant library
  • Deletion of Cmare2 via CRISPR/Cas9 resulted in degenerative phenotypes, including colony sectorization, hyphal adhesion, reduced conidia production, and abnormal fruiting body development
  • Scanning electron microscopy revealed surface perforations, cobweb-like filaments connecting the adhering hyphae, and eventual hyphal impairment
  • Overexpression of Cmare2 via CRISPR/Cas9 led to a more stable strain with consistent morphology, reduced reactive oxygen species level, and robust mycelia during successive subculturing
  • This research integrates forward and reverse genetics to unravel the molecular mechanisms behind strain degeneration, providing valuable insights for developing stable, non-degenerative mushroom strains

Metadata-grounded summary

Citation abstract

Strain degeneration in mushroom cultivation can lead to significant commercial losses, yet the genetic factors remain elusive. This study identified the sterol O-acyltransferase gene, Cmare2, which is associated with colony sectorization in Cordyceps militaris, using a T-DNA insertion-mutant library. CmARE2 is conserved across Ascomycota and Basidiomycota. Deletion of Cmare2 via CRISPR/Cas9 resulted in degenerative phenotypes, including colony sectorization, hyphal adhesion, reduced conidia production, and abnormal fruiting body development. Scanning electron microscopy revealed surface perforations, cobweb-like filaments connecting the adhering hyphae, and eventual hyphal impairment. These phenotypes may be attributed to disturbance of sterol homeostasis, which impairs cell membrane fluidity and permeability. Overexpression of Cmare2 via CRISPR/Cas9 led to a more stable strain with consistent morphology, reduced reactive oxygen species level, and robust mycelia during successive subculturing. This research integrates forward and reverse genetics to unravel the molecular mechanisms behind strain degeneration, providing valuable insights for developing stable, non-degenerative mushroom strains.

Citation

Liu M, Zhang M, Huai M, Xu F, Meng G, Wang F, et al. (2025). Impact of the sterol O-acyltransferase gene (Cmare2) on morphology and stability of the mushroom Cordyceps militaris. International journal of biological macromolecules https://doi.org/10.1016/j.ijbiomac.2025.140522 PMID: 39904442

Open citation