College of Coastal Agriculture Sciences, Guangdong Ocean University, Zhanjiang 524088, China.
South China Center of National Saline-Tolerant Rice Technology Innovation Center, Zhanjiang 524088, China.
Int J Mol Sci. 2024 Aug 22;25(16):9124. doi: 10.3390/ijms25169124.
Salinity stress severely restricts rice growth. Prohexadione calcium (Pro-Ca) modulation can effectively alleviate salt stress in rice. In this study, we explored the effects of Pro-Ca on enhancing salt tolerance in two rice varieties, and . The results revealed that Pro-Ca markedly enhanced root and shoot morphological traits and improved plant biomass under salt stress. Chlorophyll a and b content were significantly increased, which improved photosynthetic capacity. Transcriptomic and metabolomic data showed that Pro-Ca significantly up-regulated the expression of genes involved in E3 ubiquitin ligases in and by 2.5-fold and 3-fold, respectively, thereby maintaining Na and K homeostasis by reducing Na. Moreover, Pro-Ca treatment significantly down-regulated the expression of , , , , and in IR29 under salt stress, which led to an increase in photosynthetic efficiency. Furthermore, salt stress + Pro-Ca significantly increased the of and by 2.9-fold and 2.5-fold, respectively, and inhibited endogenous cytokinin synthesis and signal transduction, which promoted root growth. The current findings suggested that Pro-Ca effectively alleviated the harmful effects of salt stress on rice by maintaining abscisic acid content and by promoting oxylipin synthesis. This study provides a molecular basis for Pro-Ca to alleviate salt stress in rice.
盐胁迫严重限制了水稻的生长。丙环唑钙(Pro-Ca)的调节可以有效地减轻水稻的盐胁迫。在这项研究中,我们探索了 Pro-Ca 对提高两种水稻品种 和 耐盐性的影响。结果表明,Pro-Ca 明显增强了根和芽的形态特征,并在盐胁迫下提高了植物生物量。叶绿素 a 和 b 的含量显著增加,提高了光合作用能力。转录组和代谢组数据显示,Pro-Ca 分别使 和 中与 E3 泛素连接酶相关的基因表达显著上调 2.5 倍和 3 倍,从而通过减少 Na 来维持 Na 和 K 的平衡。此外,Pro-Ca 处理显著下调了 IR29 中 、 、 、 和 的表达,从而提高了光合作用效率。此外,盐胁迫+Pro-Ca 分别使 和 的 增加了 2.9 倍和 2.5 倍,同时抑制了内源细胞分裂素的合成和信号转导,促进了根的生长。这些发现表明,Pro-Ca 通过维持脱落酸含量和促进氧化脂素合成,有效地减轻了盐胁迫对水稻的有害影响。本研究为 Pro-Ca 减轻水稻盐胁迫提供了分子基础。