State Key Laboratory of Plant Genomics, Institute of Genetics and Developmental Biology, The Innovative Academy of Seed Design, Chinese Academy of Sciences, Beijing, 100101, China.
College of Advanced Agricultural Sciences, University of Chinese Academy of Sciences, Beijing, 100039, China.
Nat Commun. 2024 Sep 18;15(1):8212. doi: 10.1038/s41467-024-52510-3.
The rice paddy-direct seeding system has been widely adopted due to its low cost and convenience, whereas its application is mainly constrained by low seedling vigor, cold sensitivity, eventually resulting in reduced grain yield. Here, we show vig1a and vig1b, two allelic mutants of OsbZIP01, that both demonstrate greatly enhanced seedling vigor and chilling tolerance but differ in final grain production. The vig1a phenotype can be obtained via simultaneous mutation of the genes OsbZIP01 and OsbZIP18, or by selectively manipulating the basic region of OsbZIP01. Destroying the leucine zipper region of OsbZIP01 in vig1a turns vig1a to be vig1b. Further analysis reveals that OsbZIP01 and OsbZIP18 function cooperatively in diverse crucial biological programs that determine seedling establishment, chilling tolerance, and grain yield through their interactions. These findings provide a strategy toward simultaneously improving seedling vigor, chilling tolerance, and grain yield for rice production.
水稻直播系统由于其低成本和便利性而被广泛采用,但由于其幼苗活力低、对冷敏感,最终导致粮食产量降低。在这里,我们展示了 vig1a 和 vig1b,这是 OsbZIP01 的两个等位基因突变体,它们都表现出显著增强的幼苗活力和耐寒性,但最终的谷物产量不同。vig1a 表型可以通过同时突变基因 OsbZIP01 和 OsbZIP18 或选择性地操纵 OsbZIP01 的碱性区域获得。破坏 vig1a 中的 OsbZIP01 亮氨酸拉链区域会将 vig1a 转变为 vig1b。进一步的分析表明,OsbZIP01 和 OsbZIP18 协同作用于多种关键的生物学程序中,通过它们的相互作用来决定幼苗的建立、耐寒性和谷物产量。这些发现为提高水稻生产中幼苗活力、耐寒性和谷物产量提供了一种策略。