Penetration Peg Formation and Invasive Hyphae Development Require Stage-Specific Activation of MoGTI1 in Magnaporthe
Yang Li1,2, Guanghui Wang1, Jin-Rong Xu2
11 State Key Laboratory of Crop Stress Biology for Arid Areas, College of Plant Protection, Northwest A&F University, Yangling, Shaanxi, China;
Abstract:
The hemibiotrophic pathogen Magnaporthe oryzae causes one of the most destructive diseases in cultivated rice. Complex infection-related morphogenesis and production of various effectors are known to be important for successful colonization and disease development. In this study, we characterized the activation of the MoGTI1 transcription factor and its role in infection-related morphogenesis and effector gene expression. The Mogti1 mutant was nonpathogenic, although it was normal in appressorium formation and turgor generation. Close examination showed that Mogti1 was defective in penetration and growth of normal invasive hyphae. Deletion of MoGTI1 affected the expression of the majority of effector genes. The expression of MoGti1 appeared to be controlled by the Mps1 but not Pmk1 mitogen-activated protein kinase (MAPK), and the mps1 and Mogti1 mutants had similar phenotypes in plant infection and cell wall integrity defects. However, lack of MAPK phosphorylation sites and dispensability of the putative MAPK docking site suggested that MoGti1 is not a direct target of Mps1. Site-specific mutagenesis analyses showed that the putative protein kinase A phosphorylation site was not essential for localization of MoGti1 to the nucleus but important for its normal function. Although the cyclin-dependent kinase (CDK) phosphorylation site of MoGti1 is dispensable during vegetative growth and appressorium formation, the S77A mutation affected penetration and invasive growth. Localization of MoGti1(S77A)-green fluorescent protein to the nucleus in late stages of appressorium formation and during invasive growth was not observed, suggesting a stage-specific CDK phosphorylation of MoGti1. Overall, our data indicate that Mps1 may indirectly regulate the expression of MoGti1 in maintaining cell wall integrity, conidiation, and plant infection. MoGti1 is likely a stage-specific target of CDK and plays a crucial role in effector gene expression and morphogenesis related to the development of penetration pegs and invasive hyphae.
Insights
The transcription factor MoGTI1 is crucial for rice blast fungus Magnaporthe oryzae to infect plants by regulating effector genes and invasive growth. Its function is linked to cell wall integrity and may be indirectly controlled by Mps1 MAPK signaling.
Area of Science:
- Molecular Plant Pathology
- Fungal Pathogenesis
- Rice Blast Disease
Background:
- Magnaporthe oryzae causes destructive rice blast disease.
- Successful infection requires complex morphogenesis and effector production.
- Transcription factors regulate these essential pathogenic processes.
Purpose of the Study:
- To characterize the MoGTI1 transcription factor's role in Magnaporthe oryzae.
- To investigate MoGTI1's involvement in infection-related morphogenesis and effector gene expression.
- To elucidate the regulatory pathways controlling MoGTI1 activation and function.
Main Methods:
- Generation and characterization of a Mogti1 deletion mutant.
- Analysis of effector gene expression in the mutant.
- Site-specific mutagenesis to study phosphorylation sites (PKA, CDK) and MAPK interactions (Mps1, Pmk1).
- Fluorescent protein tagging for subcellular localization studies.
Main Results:
- Mogti1 mutant is nonpathogenic, defective in penetration and invasive hyphal growth, but forms appressoria normally.
- MoGTI1 regulates the expression of most effector genes.
- Mps1 mitogen-activated protein kinase (MAPK) indirectly regulates MoGTI1 expression; MoGTI1 is not a direct Mps1 target.
- CDK phosphorylation at S77 is crucial for MoGTI1 function during penetration and invasive growth, suggesting stage-specific regulation.
Conclusions:
- MoGTI1 is essential for rice blast fungus pathogenicity, specifically for penetration and invasive growth.
- MoGTI1 plays a key role in regulating effector gene expression.
- Mps1 MAPK indirectly influences MoGTI1, and CDK phosphorylation provides stage-specific control of MoGTI1 function.
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