The signalling mucin Msb2 regulates surface sensing and host penetration via BMP1 MAP kinase signalling in Botrytis
Michaela Leroch1, Nathalie Mueller1, Isabel Hinsenkamp1
1Department of Biology, University of Kaiserslautern, 67653, Kaiserslautern, Germany.
Abstract:
Botrytis cinerea is a necrotrophic fungus that infects a wide range of fruit, vegetable and flower crops. Penetration of the host cuticle occurs via infection structures that are formed in response to appropriate plant surface signals. The differentiation of these structures requires a highly conserved mitogen-activated protein (MAP) kinase cascade including the MAP kinase BMP1. In yeast and several plant-pathogenic fungi, the signalling mucin Msb2 has been shown to be involved in surface recognition and MAP kinase activation. In this study, a B. cinerea msb2 mutant was generated and characterized. The mutant showed normal growth, sporulation, sclerotia formation and stress resistance. In the absence of nutrients, abnormal germination with multiple germ tubes was observed. In the presence of sugars, normal germination occurred, but msb2 germlings were almost unable to form appressoria or infection cushions on hard surfaces. Nevertheless, the msb2 mutant showed only a moderate delay in lesion formation on different host plants, and formed expanding lesions similar to the wild-type. Although the wild-type showed increasing BMP1 phosphorylation during the first hours of germination on hard surfaces, the phosphorylation levels in the msb2 mutant were strongly reduced. Several genes encoding secreted proteins were found to be co-regulated by BMP1 and Msb2 during germination. Taken together, B. cinerea Msb2 is likely to represent a hard surface sensor of germlings and hyphae that triggers infection structure formation via the activation of the BMP1 MAP kinase pathway.
Insights
Botrytis cinerea uses the Msb2 protein to sense hard surfaces, triggering the BMP1 MAP kinase pathway for infection structure development. This finding is crucial for understanding fungal pathogenicity.
Area of Science:
- Plant Pathology
- Mycology
- Molecular Biology
Background:
- Botrytis cinerea is a major fungal pathogen affecting numerous crops.
- Infection requires specialized structures formed upon sensing plant surfaces.
- A conserved MAP kinase cascade, including BMP1, is vital for this process.
Purpose of the Study:
- To investigate the role of the signaling mucin Msb2 in Botrytis cinerea.
- To determine Msb2's involvement in surface sensing and infection structure formation.
- To elucidate the relationship between Msb2 and the BMP1 MAP kinase pathway.
Main Methods:
- Generation and characterization of a Botrytis cinerea msb2 mutant.
- Microscopic analysis of fungal germination and infection structure development.
- Assessment of pathogenicity on host plants.
- Analysis of BMP1 phosphorylation levels and gene expression.
Main Results:
- The msb2 mutant exhibited normal growth but impaired appressoria and infection cushion formation on hard surfaces.
- BMP1 phosphorylation was significantly reduced in the msb2 mutant during germination on hard surfaces.
- Msb2 and BMP1 co-regulated several secreted protein genes during germination.
- The msb2 mutant showed only a moderate delay in lesion development on host plants.
Conclusions:
- Botrytis cinerea Msb2 acts as a sensor for hard surfaces.
- Msb2 initiates infection structure formation by activating the BMP1 MAP kinase pathway.
- This pathway is critical for B. cinerea's pathogenicity.
Related Concept Videos
Regulation of Bacterial Virulence
Microbe-Plant Interactions
Cell Signaling in Plants
MAPK Signaling Cascades
Cell Motility through Blebbing
Blebbing Through the Matrix
In multicellular...
TGF - β Signaling Pathway


