College of Agronomy, Hunan Agricultural University, Changsha, 410128, China; Key Laboratory of Crop Physiological and Molecular Biology, Ministry of Education, Hunan Agricultural University, Changsha, 410128, China.
College of Agronomy, Hunan Agricultural University, Changsha, 410128, China; Agro-Tech Extension Center of Guangdong Province, Guangzhou, Guangdong, 510520, China.
Biochem Biophys Res Commun. 2023 Nov 19;682:335-342. doi: 10.1016/j.bbrc.2023.10.024. Epub 2023 Oct 9.
Seed dormancy and germination determine the beginning of the life cycle of plants, and the phytohormone ABA plays a crucial role in regulation of seed dormancy and germination. However, the upstream regulatory mechanism of ABA metabolism during dormancy releasing is still remain elusive. In this paper, we present a novel mechanism of OsNAC2 in controlling ABA metabolism and regulation of seed dormancy. OsNAC2 highly expressed during seed development and germination, and overexpression of OsNAC2 strengthened seed dormancy and suppressed germination. Moreover, exogenous phytohormone treatment showed that OsNAC2 acted upstream of GA signaling and downstream of ABA signaling. Additionally, overexpression of OsNAC2 inhibited ABA degradation and increased ABA content during early germination. Further molecular analysis revealed that OsNAC2 directly bound to the ABA metabolism genes promoter and inhibits their transcription in rice protoplasts. These finding could help us explain the genetic regulation mechanism of ABA metabolism during dormancy release and germination in rice.
种子休眠和萌发决定了植物生命周期的开始,植物激素 ABA 在调控种子休眠和萌发中起着关键作用。然而,ABA 代谢在休眠解除过程中的上游调控机制仍不清楚。在本文中,我们提出了 OsNAC2 控制 ABA 代谢和调控种子休眠的新机制。OsNAC2 在种子发育和萌发过程中高表达,过表达 OsNAC2 增强了种子休眠,抑制了萌发。此外,外源植物激素处理表明,OsNAC2 在 GA 信号转导的上游和 ABA 信号转导的下游起作用。此外,过表达 OsNAC2 抑制 ABA 降解并在早期萌发过程中增加 ABA 含量。进一步的分子分析表明,OsNAC2 直接结合 ABA 代谢基因启动子并抑制其在水稻原生质体中的转录。这些发现可以帮助我们解释 ABA 代谢在水稻休眠解除和萌发过程中的遗传调控机制。