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Plant, Cell & Environment|January 22, 2024
The transcription factor OsbZIP48 governs rice responses to zinc deficiencyShubao Hu, Binbin Du, Guangmao Mu, et al.The New Phytologist|March 15, 2022
OsbHLH061 links TOPLESS/TOPLESS-RELATED repressor proteins with POSITIVE REGULATOR OF IRON HOMEOSTASIS 1 to maintain iron homeostasis in riceWujian Wang, Jun Ye, Heng Xu, et al.The Plant Journal : for Cell and Molecular Biology|November 3, 2023
Recent advances in unraveling the mystery of combined nutrient stress in plantsMegan DeLoose, Joaquin Clúa, Huikyong Cho, et al.Plant Physiology|July 17, 2009
Physiological and transcriptome analysis of iron and phosphorus interaction in rice seedlingsLuqing Zheng, Fangliang Huang, Reena Narsai, et al.Frontiers in Plant Science|June 20, 2022
Enhancing the Phytoremediation of Heavy Metals by Combining Hyperaccumulator and Heavy Metal-Resistant Plant Growth-Promoting BacteriaYong Zhang, Shangjun Zhao, Sijia Liu, et al.Physiologia Plantarum|January 27, 2025
Unravelling OsPHT2;1 function in Chloroplast Phosphorus Homeostasis and Photosynthetic Efficiency under Low Phosphorus Stress in RiceShanshan Lu, Xiaoming Xu, Yongzhen Wu, et al.The Plant Cell|September 27, 2018
Alternative Splicing Plays a Critical Role in Maintaining Mineral Nutrient Homeostasis in Rice (Oryza sativa)Chunlan Dong, Fei He, Oliver Berkowitz, et al.Plant Physiology|October 24, 2007
Mutation in nicotianamine aminotransferase stimulated the Fe(II) acquisition system and led to iron accumulation in riceLongjun Cheng, Fang Wang, Huixia Shou, et al.Frontiers in Plant Science|November 30, 2023
Agrobacterium rhizogenes: paving the road to research and breeding for woody plantsWei Ying, Guangchao Wen, Wenyuan Xu, et al.Plos One|April 27, 2010
Nicotianamine, a novel enhancer of rice iron bioavailability to humansLuqing Zheng, Zhiqiang Cheng, Chunxiang Ai, et al.Pageof 5