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Updated: Jun 7, 2026

Genome-wide Analysis of Histone Modifications Distribution using the Chromatin Immunoprecipitation Sequencing Method in Magnaporthe oryzae
Published on: June 2, 2021
Proteomic changes associated with deletion of the Magnaporthe oryzae conidial morphology-regulating gene COM1
Vijai Bhadauria1, Li-Xia Wang, You-Liang Peng
1State Key Laboratory of Agrobiotechnology and MOA Key Laboratory of Molecular Plant Pathology, China Agricultural University, Beijing 100193, China.
Background:
The rice blast disease caused by Magnaporthe oryzae is a major constraint on world rice production. The conidia produced by this fungal pathogen are the main source of disease dissemination. The morphology of conidia may be a critical factor in the spore dispersal and virulence of M. oryzae in the field. Deletion of a conidial morphology regulating gene encoding putative transcriptional regulator COM1 in M. oryzae resulted in aberrant conidial shape, reduced conidiation and attenuated virulence.
Results:
In this study, a two-dimensional gel electrophoresis/matrix assisted laser desorption ionization- time of flight mass spectrometry (2-DE/MALDI-TOF MS) based proteomics approach was employed to identify the cellular and molecular components regulated by the COM1 protein (COM1p) that might contribute to the aberrant phenotypes in M. oryzae. By comparing the conidial proteomes of COM1 deletion mutant and its isogenic wild-type strain P131, we identified a potpourri of 31 proteins that exhibited statistically significant alterations in their abundance levels. Of these differentially regulated proteins, the abundance levels of nine proteins were elevated and twelve were reduced in the Δcom1 mutant. Three proteins were detected only in the Δcom1 conidial proteome, whereas seven proteins were apparently undetectable. The data obtained in the study suggest that the COM1p plays a key role in transcriptional reprogramming of genes implicated in melanin biosynthesis, carbon and energy metabolism, structural organization of cell, lipid metabolism, amino acid metabolism, etc. Semi-quantitative RT-PCR analysis revealed the down-regulation of genes encoding enzymes involved in melanin biosynthesis in the COM1 mutant.
Conclusions:
Our results suggest that the COM1p may regulate the transcription of genes involved in various cellular processes indispensable for conidial development and appressorial penetration. These functions are likely to contribute to the effects of COM1p upon the aberrant phenotypes of M. oryzae.
Insights
The COM1 protein regulates essential cellular processes in Magnaporthe oryzae, impacting conidial morphology and virulence. Deleting COM1 alters protein levels, affecting melanin biosynthesis and metabolism, crucial for rice blast disease development.
Area of Science:
- Plant Pathology
- Mycology
- Molecular Biology
Background:
- Rice blast disease, caused by Magnaporthe oryzae, significantly impacts global rice production.
- Conidia of M. oryzae are key for disease spread, with morphology influencing dispersal and virulence.
- The conidial morphology regulating gene COM1 is crucial for normal conidial development and virulence.
Purpose of the Study:
- To identify cellular and molecular components regulated by COM1 protein (COM1p) using proteomics.
- To understand COM1p's role in the aberrant phenotypes observed in M. oryzae mutants.
- To investigate the molecular mechanisms underlying COM1's function in conidial development.
Main Methods:
- Proteomics approach using two-dimensional gel electrophoresis/matrix assisted laser desorption ionization-time of flight mass spectrometry (2-DE/MALDI-TOF MS).
- Comparative proteome analysis between COM1 deletion mutant (Δcom1) and wild-type strain P131.
- Semi-quantitative RT-PCR to validate gene expression changes.
Main Results:
- Identified 31 proteins with significantly altered abundance levels in the Δcom1 mutant.
- Observed changes in proteins involved in melanin biosynthesis, metabolism, and cellular organization.
- Demonstrated down-regulation of melanin biosynthesis genes in the COM1 mutant.
Conclusions:
- COM1p plays a vital role in regulating genes essential for conidial development and appressorial penetration.
- COM1p influences transcriptional reprogramming of various cellular processes.
- These functions contribute to COM1p's impact on M. oryzae's aberrant phenotypes and virulence.
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