Key Laboratory of Plant Molecular Physiology, Institute of Botany, Chinese Academy of Sciences, Beijing, 100093, China; University of Chinese Academy of Sciences, Beijing, 100049, China.
Key Laboratory of Plant Molecular Physiology, Institute of Botany, Chinese Academy of Sciences, Beijing, 100093, China.
J Plant Physiol. 2021 May;260:153406. doi: 10.1016/j.jplph.2021.153406. Epub 2021 Mar 8.
Low temperature is one of the abiotic stressors that affect growth and productivity of rice. The plant hormone gibberellin not only regulates growth and development but is also involved in stress defense. Our rice seedling experiments demonstrated that overexpression of SLR1, a gene that encodes the rice DELLA protein, enhanced chilling tolerance. In contrast, overexpression of the active GA synthesis gene OsGA20ox1 reduced chilling tolerance, indicating that weakening GA signaling promoted plant defense against cold stress. CoIP-MS and BiFC assays showed that SLR1 physically interacted with OsGRF6. After cold treatment and recovery, the survival rates of OsGRF6-overexpression lines and an osgrf6 mutant and its complementary lines indicated that OsGRF6 is a negative regulator of chilling tolerance in rice. The yeast one-hybrid, qRT-PCR, and transactivation assays showed that both SLR1 and OsGRF6 can bind to the promoter of the active GA catabolic gene OsGA2ox1, where SLR1 promoted and OsGRF6 suppressed OsGA2ox1 expression. At normal temperature, OsGRF6 was responsible for maintaining active GA levels by inhibiting OsGA2ox1. When rice seedlings were subjected to chilling stress, the repressive effect of OsGRF6 on OsGA2ox1 was released by cold-induced SLR1, which activated OsGA2ox1 expression to decrease the active GA levels, enhancing chilling tolerance. These results suggest that OsGRF6 is an important regulator in the balance between growth and chilling tolerance in rice.
低温是影响水稻生长和产量的非生物胁迫因素之一。植物激素赤霉素不仅调节生长和发育,还参与应激防御。我们的水稻幼苗实验表明,过表达编码水稻 DELLA 蛋白的 SLR1 基因增强了耐冷性。相反,过表达活性 GA 合成基因 OsGA20ox1 降低了耐冷性,表明削弱 GA 信号促进了植物对冷应激的防御。CoIP-MS 和 BiFC 测定表明 SLR1 与 OsGRF6 发生物理相互作用。经过冷处理和恢复后,OsGRF6 过表达系和 osgrf6 突变体及其互补系的存活率表明,OsGRF6 是水稻耐冷性的负调控因子。酵母单杂交、qRT-PCR 和转录激活测定表明,SLR1 和 OsGRF6 均可结合活性 GA 分解代谢基因 OsGA2ox1 的启动子,其中 SLR1 促进 OsGA2ox1 表达,而 OsGRF6 抑制 OsGA2ox1 表达。在常温下,OsGRF6 通过抑制 OsGA2ox1 来维持活性 GA 水平。当水稻幼苗受到冷胁迫时,冷诱导的 SLR1 解除了 OsGRF6 对 OsGA2ox1 的抑制作用,激活 OsGA2ox1 表达,降低活性 GA 水平,增强耐冷性。这些结果表明,OsGRF6 是水稻生长和耐冷性平衡中的一个重要调节因子。