Wang Wujian, Ye Jun, Ma Yanran, Wang Ting, Shou Huixia, Zheng Luqing
College of Life Sciences, Nanjing Agricultural University, Nanjing 210095, China.
State Key Laboratory of Plant Physiology and Biochemistry, College of Life Sciences, Zhejiang University, Hangzhou 310058, China.
Plants (Basel). 2020 Aug 25;9(9):1095. doi: 10.3390/plants9091095.
Iron (Fe) homeostasis is essential for plant growth and development, and it is strictly regulated by a group of transcriptional factors. Iron-related transcription factor 3 (OsIRO3) was previously identified as a negative regulator for Fe deficiency response in rice. However, the molecular mechanisms by which OsIRO3 regulate Fe homeostasis is unclear. Here, we report that OsIRO3 is essential for responding to Fe deficiency and maintaining Fe homeostasis in rice. OsIRO3 is expressed in the roots, leaves, and base nodes, with a higher level in leaf blades at the vegetative growth stage. Knockout of resulted in a hypersensitivity to Fe deficiency, with severe necrosis on young leaves and defective root development. The mutants accumulated higher levels of Fe in the shoot under Fe-deficient conditions, associated with upregulating the expression of , which lead to increased accumulation of nicotianamine (NA) in the roots. Further analysis indicated that OsIRO3 can directly bind to the E-box in the promoter of . Moreover, the expression of typical Fe-related genes was significantly up-regulated in mutants under Fe-sufficient conditions. Thus, we conclude that OsIRO3 plays a key role in responding to Fe deficiency and regulates NA levels by directly, negatively regulating the expression.
铁(Fe)稳态对于植物生长发育至关重要,并且受到一组转录因子的严格调控。铁相关转录因子3(OsIRO3)先前被鉴定为水稻中铁缺乏响应的负调控因子。然而,OsIRO3调节铁稳态的分子机制尚不清楚。在此,我们报道OsIRO3对于水稻响应铁缺乏和维持铁稳态至关重要。OsIRO3在根、叶和基部节中表达,在营养生长阶段叶片中的表达水平更高。OsIRO3敲除导致对铁缺乏超敏,幼叶出现严重坏死且根系发育缺陷。在缺铁条件下,OsIRO3突变体地上部积累更高水平的铁,这与OsNAS1表达上调有关,导致根中烟酰胺(NA)积累增加。进一步分析表明,OsIRO3可以直接结合到OsNAS1启动子中的E-box。此外,在铁充足条件下,典型铁相关基因的表达在OsIRO3突变体中显著上调。因此,我们得出结论,OsIRO3在响应铁缺乏中起关键作用,并通过直接负调控OsNAS1表达来调节NA水平。