Back to search

Reishi, Lingzhi · 2022 · Journal Article

Medium relevance

A methyltransferase LaeA regulates ganoderic acid biosynthesis in Ganoderma lingzhi.

Ganoderma lucidum

OncologyImmune supportMetabolic healthLiver support
SpeciesReishi, Lingzhi
JournalFrontiers in microbiology
Year2022

Key points

  • The methyltransferase LaeA is a global regulator involved in the biosynthesis of secondary metabolites by ascomycete fungi
  • In this study, the laeA gene was identified in the basidiomycete Ganoderma lingzhi and its function in regulating the biosynthesis of anti-tumor ganoderic acids was evaluated
  • A laeA deletion (ΔlaeA) Ganoderma strain exhibited significantly reduced concentration of ganoderic acids. qRT-PCR analysis further revealed that the transcription levels of genes involved in the biosynthesis of ganoderic acids were drastically lower in the ΔlaeA strain
  • Moreover, deletion of laeA resulted in decreased accumulation of intermediates and abundances of asexual spores in liquid static culture of G. lingzhi
  • In contrast, constitutive overexpression of laeA resulted in increased concentration of ganoderic acids
  • These results demonstrate an essential role of LaeA in the regulation of ganoderic acid biosynthesis in Ganoderma

Metadata-grounded summary

Citation abstract

The methyltransferase LaeA is a global regulator involved in the biosynthesis of secondary metabolites by ascomycete fungi. However, little is known of its regulatory role in basidiomycete fungi. In this study, the laeA gene was identified in the basidiomycete Ganoderma lingzhi and its function in regulating the biosynthesis of anti-tumor ganoderic acids was evaluated. A laeA deletion (ΔlaeA) Ganoderma strain exhibited significantly reduced concentration of ganoderic acids. qRT-PCR analysis further revealed that the transcription levels of genes involved in the biosynthesis of ganoderic acids were drastically lower in the ΔlaeA strain. Moreover, deletion of laeA resulted in decreased accumulation of intermediates and abundances of asexual spores in liquid static culture of G. lingzhi. In contrast, constitutive overexpression of laeA resulted in increased concentration of ganoderic acids. These results demonstrate an essential role of LaeA in the regulation of ganoderic acid biosynthesis in Ganoderma.

Citation

Luo Q, Li N, Xu JW (2022). A methyltransferase LaeA regulates ganoderic acid biosynthesis in Ganoderma lingzhi. Frontiers in microbiology https://doi.org/10.3389/fmicb.2022.1025983 PMID: 36312944

Open citation