交易激励
转录因子
电泳迁移率测定
锌指
缺锌(植物性疾病)
发起人
生物强化
生物
锌指转录因子
基因
硒缺乏症
锌
镉
分子生物学
细胞生物学
遗传学
生物化学
化学
基因表达
氧化应激
超氧化物歧化酶
有机化学
谷胱甘肽过氧化物酶
作者
Junhui Zhan,Wenli Zou,Shuangyuyan Li,Jichun Tang,Xiang Lu,Lijun Meng,Guoyou Ye
标识
DOI:10.3390/ijms231911771
摘要
Zinc (Zn) deficiency and cadmium (Cd) stress are severe threats to the growth and development of plants. Increasing Zn content and/or decreasing Cd content in grain are also important objectives of rice breeding. However, the molecular mechanisms of Zn deficiency tolerance (ZDT) and Cd stress tolerance (CDT) are largely unknown in rice. Here, we report that a NAM/CUC2-like transcription factor, OsNAC15, contributes to ZDT and CDT in rice. Knockout of OsNAC15 reduced ZDT and CDT at the vegetative stage. OsNAC15 expresses in all tissues of different developmental stages, and is repressed by Zn deficiency and induced by Cd stress. OsNAC15 is a functional transcription factor with transactivation and DNA binding activities. Expression analysis of rice ZIP family genes suggested that the knockout of OsNAC15 activates or inhibits their transcriptions under Zn deficiency or Cd stress conditions. The yeast one-hybrid assay, transient transcriptional activity assay using the dual-luciferase reporter system and electrophoretic mobility shift assay demonstrated that OsNAC15 directly binds to the zinc deficiency-responsive element motifs in the promoters of OsZIP7 and OsZIP10 to repress their transcriptions. The OsNAC15–OsZIP7/10 module is an essential foundation for further study on the regulatory mechanisms of ZDT and CDT in rice.
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