Differential Responses of Rice Genotypes to Nitrogen Supply: Impacts on Nitrogen Metabolism and Chlorophyll Fluorescence Kinetics
文献类型: 外文期刊
作者: Qi, Zexin 1 ; Sun, Wenzheng 1 ; Luo, Chun 1 ; Zhang, Qiang 1 ; Osman, Feisal Mohamed 1 ; Guan, Chenglong 1 ; Wang, Ye 1 ; Zhang, Mengru 1 ; Zhang, Xiaotong 1 ; Ding, Jiale 1 ; Zhang, Yuankai 1 ; Ling, Fenglou 1 ; Liu, Xiaolong 2 ; Zhang, Zhian 1 ; Xu, Chen 3 ;
作者机构: 1.Jilin Agr Univ, Agron Coll, Changchun 130118, Peoples R China
2.Yichun Univ, Coll Life Sci & Resources & Environm, Yichun 336000, Peoples R China
3.Jilin Acad Agr Sci, Inst Agr Resources & Environm, Changchun 130033, Peoples R China
关键词: rice; low nitrogen tolerance; nitrogen metabolic enzymes; chlorophyll fluorescence; osmotic regulation
期刊名称:PLANTS-BASEL ( 影响因子:4.1; 五年影响因子:4.5 )
ISSN: 2223-7747
年卷期: 2025 年 14 卷 16 期
页码:
收录情况: SCI
摘要: Nitrogen (N) availability significantly influences plant metabolism and productivity. The aim of this study was to assess the effects of low N stress and subsequent N supplementation on key enzymes of nitrogen metabolism, nitrogen metabolism-related substances, and chlorophyll a fluorescence kinetic parameters in rice genotypes with different nitrogen utilization efficiencies. We used the Jijing 88 (low-N tolerant) and Xinong 999 (low-N sensitive) as test materials. During the seedling, tillering, and booting stages, the 1/2N and 1/4N treatments were restored to the 1N treatment level. Nine treatments were used in this experiment: CK (1N), A1 (1/2N), A2 (1/2N restored to 1N during the seedling stage), A3 (1/2N restored to 1N during the tillering stage), A4 (1/2N restored to 1N during the booting stage), B1 (1/4N), B2 (1/4N restored to 1N during the seedling stage), B3 (1/4N restored to 1N during the tillering stage), and B4 (1/4N restored to 1N during the booting stage). Key physiological responses, nitrogen compounds, enzymes activities, and chlorophyll a fluorescence kinetics were analyzed. Under low nitrogen conditions, the growth and nitrogen assimilation of rice were inhibited. Compared to XN 999, JJ 88 maintains higher levels of dry matter, nitrate reductase activity (NR), glutamine synthetase activity (GS), glutamate oxaloacetate transaminase activity (GOT), glutamate pyruvate transaminase activity (GPT), as well as nitrate (NO3-) and ammonium (NH4+) nitrogen contents. After N supplementation during the early growth stage, both JJ 88 and XN 999 exhibit recovery capabilities. However, in the late growth stage, JJ 88 demonstrates superior recovery capabilities. In addition to enhancing nitrogen metabolism levels, there is also an increase in the content of osmotic regulation substances such as soluble sugars, free amino acids, and proline, along with responses in chlorophyll fluorescence kinetic parameters. This was primarily manifested in the enhancement of performance index (PIABS, PItotal), and quantum yield (phi EO, phi RO, psi EO), which maintain photosynthetic performance and electron transport efficiency. The research findings indicated that reducing N supply during the early growth stage and restoring N levels in the later stage are beneficial for the recovery of low-nitrogen-tolerant rice varieties. Therefore, in the context of sustainable agricultural production, the breeding of low-nitrogen-tolerant rice varieties and the optimization of N fertilizer management are crucial.
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