MoDHX35, a DEAH-Box Protein, Is Required for Appressoria Formation and Full Virulence of the Rice Blast Fungus, Magnaporthe oryzae

Author:

Ying Shumin,Zhang Zhen,Zhang Yanan,Hao Zhongna,Chai Rongyao,Qiu Haiping,Wang Yanli,Zhu XuemingORCID,Wang JiaoyuORCID,Sun Guochang,Lin Fucheng

Abstract

The DExD/H-box protein family encompasses a large number of RNA helicases that are involved in RNA metabolism and a variety of physiological functions in different species. However, there is limited knowledge of whether DExD/H-box proteins play a role in the pathogenicity of plant fungal pathogens. In the present work, the DExD/H-box protein MoDHX35, which belongs to the DEAH subfamily, was shown to be crucial in appressoria formation and full virulence of the rice blast fungus, Magnaporthe oryzae. The predicted protein sequence of MoDHX35 had typical DEAH-box domains, showed 47% identity to DHX35 in Homo species, but had no orthologs in Saccharomyces cerevisiae. Deletion of the MoDHX35 gene resulted in reduced tolerance of the mutants to doxorubicin, a nucleic acid synthesis disturbing agent, suggesting the involvement of MoDHX35 in RNA metabolism. MoDHX35-deleted mutants exhibited normal vegetative growth, conidia generation and conidial germination, but showed a reduced appressorium formation rate and attenuated virulence. Our work demonstrates the involvement of DEAH-box protein functions in the pathogenicity of plant fungal pathogens.

Funder

Natural Science Foundation of Zhejiang Province of China

Publisher

MDPI AG

Subject

Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Computer Science Applications,Spectroscopy,Molecular Biology,General Medicine,Catalysis

Reference42 articles.

1. Rice Diseases;Ou,1985

2. The Top 10 fungal pathogens in molecular plant pathology

3. The rice leaf blast pathogen undergoes developmental processes typical of root-infecting fungi

4. Host range of some isolates of Magnaporthe grisea and their grouping into forma-specialis;Arun;Indian Phytopathol.,1995

5. Having a blast: exploring the pathogenicity of Magnaporthe grisea

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