Li Xuezhong, Dong Jingfang, Zhu Wen, Zhao Junliang, Zhou Lingyan
College of Agriculture and Biology, Zhongkai University of Agriculture and Engineering, Guangzhou, 510225 Guangdong China.
Rice Research Institute, Guangdong Academy of Agricultural Sciences/Guangdong Key Laboratory of New Technology in Rice Breeding/Guangdong Rice Engineering Laboratory, Guangzhou, 510640 China.
Mol Breed. 2023 May 24;43(6):46. doi: 10.1007/s11032-023-01388-y. eCollection 2023 Jun.
Rice is a major food crop in the world. Owing to the shortage of rural labor and the development of agricultural mechanization, direct seeding has become the main method of rice cultivation. At present, the main problems faced by direct seeding of rice are low whole seedling rate, serious weeds, and easy lodging of rice in the middle and late stages of growth. Along with the rapid development of functional genomics, the functions of a large number of genes have been confirmed, including seed vigor, low-temperature tolerance germination, low oxygen tolerance growth, early seedling vigor, early root vigor, resistance to lodging, and other functional genes related to the direct seeding of rice. A review of the related functional genes has not yet been reported. In this study, the genes related to direct seeding of rice are summarized to comprehensively understand the genetic basis and mechanism of action in direct seeding of rice and to lay the foundation for further basic theoretical research and breeding application research in direct seeding of rice.
水稻是世界主要粮食作物。由于农村劳动力短缺和农业机械化发展,直播已成为水稻种植的主要方式。目前,水稻直播面临的主要问题是全苗率低、杂草严重以及水稻生长中后期易倒伏。随着功能基因组学的快速发展,大量基因的功能已得到证实,包括种子活力、耐低温萌发、耐低氧生长、幼苗早期活力、根系早期活力、抗倒伏等与水稻直播相关的功能基因。但尚未见有关这些相关功能基因的综述报道。本研究对水稻直播相关基因进行总结,以全面了解水稻直播的遗传基础和作用机制,为水稻直播进一步的基础理论研究和育种应用研究奠定基础。