生物
清脆的
粮食安全
主食
基因组编辑
生物技术
非生物成分
人口
非生物胁迫
基因组
世界人口
农业
生态学
遗传学
基因
社会学
人口学
发展中国家
作者
Akshaya Kumar Biswal,Satendra K. Mangrauthia,M. Raghurami Reddy,Poli Yugandhar
标识
DOI:10.1016/j.semcdb.2019.04.005
摘要
Rice is a staple food crop, which ensures the calorie requirement of half of the world's population. With the continued increase in population, rice will play a key role in achieving the food security. However, in the constantly shrinking scenario of rice fields, the necessity of these extra grains of rice must be met by reducing the yield loss due to various abiotic and biotic stresses. The adverse effects of climate impact both quality and quantity of rice production. One of the most desirable applications of CRISPR/Cas technology would be to develop climate smart rice crop to sustain and enhance its productivity in the changing environment. In this review, we analyze the desirable phenotypes and responsible genetic factors, which can be utilized to develop tolerance against major abiotic stresses imposed by climate change through genome engineering. The possibility of utilizing the information from wild resources to engineer the corresponding alleles of cultivated rice has been presented. We have also shed light on available resources for generating genome edited rice lines. The CRISPR/Cas mediated genome editing strategies for engineering of novel genes were proposed to create a plant phenotype, which can face the adversities of climate change. Further, challenges of off-targets and undesirable phenotype were discussed.
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