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Advancement in the Breeding, Biotechnological and Genomic Tools towards Development of Durable Genetic Resistance against the Rice Blast Disease

回交 生物 爆发 生物技术 疾病 植物抗病性 爆发性疾病 标记辅助选择 抗性(生态学) 分子育种 疾病管理 遗传学 基因 遗传标记 农学 医学 病毒学 病理 帕金森病
作者
Parmeshwar K. Sahu,Richa Sao,Devendra Kumar Choudhary,Antra Thada,Vinay Kumar,Suvendu Mondal,Bikram Das,Ljupcho Jankuloski,Deepak Sharma
出处
期刊:Plants [Multidisciplinary Digital Publishing Institute]
卷期号:11 (18): 2386-2386 被引量:60
标识
DOI:10.3390/plants11182386
摘要

is a serious fungal disease and is considered one of the major threats to world rice production. This pathogen can infect the above-ground tissues of rice plants at any growth stage and causes complete crop failure under favorable conditions. Therefore, management of blast disease is essentially required to sustain global food production. When looking at the drawback of chemical management strategy, the development of durable, resistant varieties is one of the most sustainable, economic, and environment-friendly approaches to counter the outbreaks of rice blasts. Interestingly, several blast-resistant rice cultivars have been developed with the help of breeding and biotechnological methods. In addition, 146 R genes have been identified, and 37 among them have been molecularly characterized to date. Further, more than 500 loci have been identified for blast resistance which enhances the resources for developing blast resistance through marker-assisted selection (MAS), marker-assisted backcross breeding (MABB), and genome editing tools. Apart from these, a better understanding of rice blast pathogens, the infection process of the pathogen, and the genetics of the immune response of the host plant are very important for the effective management of the blast disease. Further, high throughput phenotyping and disease screening protocols have played significant roles in easy comprehension of the mechanism of disease spread. The present review critically emphasizes the pathogenesis, pathogenomics, screening techniques, traditional and molecular breeding approaches, and transgenic and genome editing tools to develop a broad spectrum and durable resistance against blast disease in rice. The updated and comprehensive information presented in this review would be definitely helpful for the researchers, breeders, and students in the planning and execution of a resistance breeding program in rice against this pathogen.
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