Duan Sumei, Ai Hao, Liu Shengqin, Zhou Aifeng, Cao Yuhong, Huang Xianzhong
Center for Crop Biotechnology, College of Agriculture, Anhui Science and Technology University, Chuzhou, China.
Anhui Xin Fu Xiang Tian Ecological Agriculture Co. Ltd., Ma'anshan, China.
Front Plant Sci. 2024 Nov 19;15:1488210. doi: 10.3389/fpls.2024.1488210. eCollection 2024.
More than half of the world's population relies on rice as their staple food for three meals a day. From a dietary perspective, rice can be considered the most important grain in the world. With the continuous improvement of people's living standards, the demand for food has gradually shifted from being full and eating well to being nutritious and healthy. Developing functional nutritional rice has become an important research direction and strategic initiative for developing a major food concept. In this paper, we review the current progress in the breeding of functional nutritional rice and mineral-biofortified rice. This review focuses on the following aspects: (i) the concept, rice basic structure, nutritional components, and categorization of functional nutritional rice; (ii) genes that have been applied and identified so far, including nutritional functional rice genes, mineral bioenhancement-related genes, and their regulatory mechanisms; (iii) based on the history and technical mainline of rice breeding, research progress in nutritional functional rice using conventional breeding, a combination of conventional breeding and marker-assisted breeding, mutagenesis breeding, genetic engineering technology, and gene editing technology. Based on the current research and industrialization issues, we highlight an outlook of the problems and future developmental directions in nutritional functional rice research.
世界上一半以上的人口将大米作为一日三餐的主食。从饮食角度来看,大米可被视为世界上最重要的谷物。随着人们生活水平的不断提高,食物需求已逐渐从吃饱、吃好转变为营养健康。开发功能性营养大米已成为发展大食物观的重要研究方向和战略举措。本文综述了功能性营养大米和矿物质生物强化大米育种的当前进展。本综述聚焦于以下几个方面:(i)功能性营养大米的概念、水稻基本结构、营养成分及分类;(ii)迄今为止已应用和鉴定的基因,包括营养功能性水稻基因、矿物质生物强化相关基因及其调控机制;(iii)基于水稻育种的历史和技术主线,利用常规育种、常规育种与分子标记辅助育种相结合、诱变育种、基因工程技术和基因编辑技术在营养功能性水稻方面的研究进展。基于当前的研究和产业化问题,我们着重展望了营养功能性水稻研究中的问题及未来发展方向。