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OsAMT1;1 and OsAMT1;2 Coordinate Root Morphological and Physiological Responses to Ammonium for Efficient Nitrogen Foraging in Rice

Plant&cell physiology. 2022-09; 
Xiangyu Wu, Xiaoxiao Xie, Shan Yang, Qianyu Yin, Huairong Cao, Xiaonan Dong, Jing Hui, Zhi Liu, Zhongtao Jia, Chuanzao Mao, Lixing Yuan
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Antibody Modification and Purification Services and anti-OsAMT1;2 were produced from rabbit against peptide sequences at the C-terminal of OsAMT1;1 (n-CDKSGVGGFMLRSAQTR-c) and OsAMT1;2 (n-AYHDDDASGKPDRSC-c), respectively (GenScript USA, Inc., Nanjing, China) Get A Quote

摘要

Optimal plant growth and development rely on morphological and physiological adaptions of the root system to forage heterogeneously distributed nitrogen (N) in soils. Rice grows mainly in the paddy soil where ammonium (NH4+) is present as the major N source. Although root NH4+ foraging behaviors are expected to be agronomically relevant, the underlying mechanism remains largely unknown. Here, we showed that NH4+ supply transiently enhanced the high-affinity NH4+ uptake and stimulated lateral root (LR) branching and elongation. These synergistic physiological and morphological responses were closely related to NH4+-induced expression of NH4+ transporters OsAMT1;1 and OsAMT1;2 in roots. The two independent double... More

关键词

Ammonium transporter (AMT); High-affinity ammonium uptake; Lateral root formation; Nitrogen acquisition; Rice; Root ammonium foraging.