清脆的
生物
基因组编辑
粮食安全
生物技术
高粱
农学
农业
基因
生态学
遗传学
作者
Mercy Jocyline Namata,Jingyi Xu,Ephrem Habyarimana,Palakolanu Sudhakar Reddy,Lihua Wang,Jieqin Li
出处
期刊:The Plant Genome
[Crop Science Society of America]
日期:2025-05-05
卷期号:18 (2): e70038-e70038
被引量:6
摘要
Abstract The increasing changes in the climate patterns across the globe have deeply affected food systems where unparalleled and unmatched challenges are created. This jeopardizes food security due to an ever‐increasing population. The extreme efficiency of C 4 crops as compared to C 3 crops makes them incredibly significant in securing food safety. C 4 crops, maize ( Zea mays L.) and sorghum ( Sorghum bicolor L. Moench) in particular, have the ability to withstand osmotic stress induced by oxidative stress. Osmotic stress causes a series of physical changes in a plant thus facilitating reduced water uptake and photosynthesis inhibition, such as membrane tension, cell wall stiffness, and turgor changes. There has been a great advancement in plant breeding brought by introduction of clustered regularly interspaced short palindromic repeats (CRISPR) gene editing technology. This technology offers precise alterations to an organism's DNA through targeting specific genes for desired traits in a wide number of crop species. Despite its immense opportunities in plant breeding, it faces limitations such as effective delivery systems, editing efficiency, regulatory concerns, and off‐target effects. Future prospects lie in optimizing next‐generation techniques, such as prime editing, and developing novel genotype‐independent delivery methods. Overall, the transformative role of CRISPR/Cas9 in sorghum and maize breeding underscores the need for responsible and sustainable utilization to address global food security challenges.
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