Understanding the Dynamics of Blast Resistance in Rice-Magnaporthe oryzae Interactions

Author:

Devanna Basavantraya N.ORCID,Jain Priyanka,Solanke Amolkumar U.ORCID,Das Alok,Thakur Shallu,Singh Pankaj K.ORCID,Kumari Mandeep,Dubey Himanshu,Jaswal Rajdeep,Pawar Deepak,Kapoor Ritu,Singh Jyoti,Arora Kirti,Saklani Banita Kumari,AnilKumar ChandrappaORCID,Maganti Sheshu MadhavORCID,Sonah HumiraORCID,Deshmukh RupeshORCID,Rathour Rajeev,Sharma Tilak Raj

Abstract

Rice is a global food grain crop for more than one-third of the human population and a source for food and nutritional security. Rice production is subjected to various stresses; blast disease caused by Magnaporthe oryzae is one of the major biotic stresses that has the potential to destroy total crop under severe conditions. In the present review, we discuss the importance of rice and blast disease in the present and future global context, genomics and molecular biology of blast pathogen and rice, and the molecular interplay between rice–M. oryzae interaction governed by different gene interaction models. We also elaborated in detail on M. oryzae effector and Avr genes, and the role of noncoding RNAs in disease development. Further, rice blast resistance QTLs; resistance (R) genes; and alleles identified, cloned, and characterized are discussed. We also discuss the utilization of QTLs and R genes for blast resistance through conventional breeding and transgenic approaches. Finally, we review the demonstrated examples and potential applications of the latest genome-editing tools in understanding and managing blast disease in rice.

Funder

Department of Science and Technology

Publisher

MDPI AG

Subject

Plant Science,Ecology, Evolution, Behavior and Systematics,Microbiology (medical)

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