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Current Status of Conventional and Molecular Interventions for Blast Resistance in Rice

Current Status of Conventional and Molecular Interventions for Blast Resistance in Rice

作     者:Deepti SRIVASTAVA Md SHAMIM Mahesh KUMAR Anurag MISHRA Pramila PANDEY Deepak KUMAR Prashant YADAV Mohammed Harrish SIDDIQUI Kapildeo Narayan SINGH 

作者机构:Integral Institute of Agricultural Science and Technology Integral University Lucknow 226021 India Department of Molecular Biology and Genetic Engineering Dr. Kalam Agricultural College Bihar Agricultural University Sabour Bhagalpur Bihar 813210India Department of Agriculture Biotechnology Sardar Vallabhbhai Patel University of Agriculture and Technology Modipuram Meerut 250110 India Department of Plant Molecular Biology and Genetic Engineering Narendra Deva University of Agriculture and Technology Kumarganj Faizabad 224229 India Indian Council of Agricultural Research Directerate of Rapeseed mustard Research Bharatpur Rajasthan 321303 India 

出 版 物:《Rice science》 (水稻科学(英文版))

年 卷 期:2017年第24卷第6期

页      面:299-321页

核心收录:

学科分类:09[农学] 0904[农学-植物保护] 090401[农学-植物病理学] 090402[农学-农业昆虫与害虫防治] 

主  题:backcross breeding gene pyramiding allele mining transgenic technology rice blast resistance CRISPR/Cas9 molecular breeding bioinformatics approach 

摘      要:Pyricularia oryzae anamorph of Magnaporthe oryzae is one of the most notorious fungal pathogens causing severe economic loss in rice production worldwide. Various methods, viz. cultural, biological and molecular approaches, are utilized to counteract this pathogen. Moreover, some tolerant or resistant rice varieties have been developed with the help of breeding programmes. Isolation and molecular characterization of different blast resistance genes now open the gate for new possibilities to elucidate the actual allelic variants of these genes via various molecular breeding and transgenic approaches. However, the behavioral pattern of this fungus breakups the resistance barriers in the resistant or tolerant rice varieties. This host-pathogen barrier will be possibly countered in future research by comparative genomics data from available genome sequence data of rice and M. oryzae for durable resistance. Present review emphasized fascinating recent updates, new molecular breeding approaches, transgenic and genomics approaches(i.e. mi RNA and genome editing) for the management of blast disease in rice. The updated information will be helpful for the durable, resistance breeding programme in rice against blast pathogen.

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