转化酶
生物化学
WRKY蛋白质结构域
次生代谢
新陈代谢
蔗糖合成酶
分解代谢
苯丙氨酸解氨酶
化学
转录因子
代谢途径
生物合成
丁酸
生物
蔗糖
基因表达
基因
苯丙氨酸
氨基酸
转录组
作者
Hang Zhou,Fengyan Meng,Wenxin Jiang,Xutong Lu,Rui Zhang,Anqi Huang,Kunlun Wu,Peng Deng,Yaxin Wang,Huimin Zhao,Youwei Du,Jingxin Huo,Xiaole Du,Naijie Feng,Dianfeng Zheng
标识
DOI:10.3389/fpls.2024.1416936
摘要
Soil salinity pollution is increasing worldwide, seriously affecting plant growth and crop production. Existing reports on how potassium indole-3-butyric acid (IBAK) regulates rice salt stress adaptation by affecting rice carbon metabolism, transcription factor (TF) genes expression, and biosynthesis of secondary metabolites still have limitations. In this study, an IBAK solution at 40 mg L −1 was sprayed on rice leaves at the seedling stage. The results showed that the IBAK application could promote shoot and root growth, decrease sucrose and fructose content, increase starch content, and enhance acid invertase (AI) and neutral invertase (NI) activity under salt stress, indicating altered carbon allocation. Furthermore, the expression of TF genes belonging to the ethylene responsive factor (ERF), WRKY, and basic helix-loop-helix (bHLH) families was influenced by IBAK. Many key genes ( OsSSIIc , OsSHM1 , and OsPPDKB ) and metabolites (2-oxoglutaric acid, fumaric acid, and succinic acid) were upregulated in the carbon metabolism pathway. In addition, this study highlighted the role of IBAK in regulating the biosynthesis of secondary metabolites pathway, potentially contributing to rice stress adaptability. The results of this study can provide new sustainable development solutions for agricultural production.
科研通智能强力驱动
Strongly Powered by AbleSci AI