MoWsc1, MoWsc2, and MoMid2 recognize host surface signals and regulate appressorium-mediated infection by Magnaporthe

Kailun Lu1, Ru Xin1, Xiuyun Ju1

  • 1The Key Laboratory of Biotechnology for Medicinal Plant of Jiangsu Province, School of Life Sciences, Jiangsu Normal University, Xuzhou 221116, China.

Plant Physiology
|February 24, 2026
PubMed

Insights

Cell wall integrity (CWI) sensors MoWsc1, MoWsc2, and MoMid2 are vital for the phytopathogenic fungus Magnaporthe oryzae. MoWsc2 is particularly crucial for appressorium formation, impacting pathogenicity.

Area of Science:

  • Mycology
  • Plant Pathology
  • Molecular Biology

Background:

  • Cell wall integrity (CWI) sensors regulate fungal cell wall biosynthesis.
  • Limited knowledge exists on CWI sensor functions in phytopathogenic fungi.
  • Magnaporthe oryzae possesses three putative CWI sensors: MoWsc1, MoWsc2, and MoMid2.

Purpose of the Study:

  • To investigate the biological roles of MoWsc1, MoWsc2, and MoMid2 in M. oryzae.
  • To determine the contribution of these CWI sensors to fungal pathogenicity and development.

Main Methods:

  • Construction and analysis of single, double, and triple knockout mutants for MoWsc1, MoWsc2, and MoMid2.
  • Assessment of pathogenicity, appressorium formation, and invasive growth.
  • Investigation of surface hydrophobicity recognition and binding assays with rice surface substances.

Main Results:

  • Double (ΔMowsc2 ΔMomid2) and triple (ΔMowsc1 ΔMowsc2 ΔMomid2) mutants showed significantly reduced virulence.
  • These mutants exhibited defects in appressorium formation on hydrophobic surfaces and plant tissues.
  • MoWsc1 and MoWsc2 are involved in hydrophobicity recognition; MoWsc2 and MoMid2 recognize rice surface substances.
  • Impaired appressorium penetration and invasive growth contributed to reduced virulence.
  • Individual gene deletions had minor effects, but MoWsc1, MoWsc2, and MoMid2 play independent roles in growth, sporulation, and stress responses, with MoWsc2 being key for appressorium formation.

Conclusions:

  • CWI sensors are critical for M. oryzae vegetative growth, conidiation, cell wall integrity, and pathogenicity.
  • MoWsc1, MoWsc2, and MoMid2 exhibit overlapping functions, but MoWsc2 plays a pivotal role in regulating appressorium formation and subsequent infection processes.

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