Improving nitrogen use efficiency of rice crop through an optimized root system and agronomic practices

Hao Zhang , Jianhua Zhang , Jianchang Yang
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Abstract

Nitrogen (N) is the major nutrient limiting rice (Oryza sativa L.) production. Avoiding excessive N use without compromising yields has long been a priority for both research and government policy in China. Nitrogen use efficiency (NUE) reflects the relationship between dry matter production or economic yield and the quantity of N applied. As an important organ for nutrient absorption, the root system of rice is closely related to NUE. We hypothesized that NUE could be improved by optimizing the root system. Here, we described and compared the evaluation methods of NUE in rice and discussed the relationship of rice root morphological (quantity, weight, length, surface area, number, diameter, volume, distribution, and structure) and physiological (root oxidation activity, active absorbing area or rate, hormones, composition and concentration of root bleeding and root exudates, nutrition concentration, and NH4+/NH3 flux) characteristics with N absorption and utilization. The key agronomic practices were proposed to improve NUE from several aspects, including adoption of N-efficient varieties and improvements in N and water management, farming systems, and soil properties. Further research is needed to clarify the root-soil interface principle based on efficient N uptake, reveal the root‒shoot interaction mechanism based on efficient N utilization, and explore the integrative management strategy of high yield and efficient N utilization through maximizing the root system of rice. Our objective in this review is to provide ideas to further exploit potentialities of the root system through variety selection and cultivation management to improve NUE.

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通过优化根系和农艺措施提高水稻氮素利用效率
氮是制约水稻生产的主要营养物质。长期以来,在不影响产量的情况下避免过量施用氮肥一直是中国研究和政府政策的重点。氮素利用效率(NUE)反映了干物质产量或经济产量与施氮量的关系。水稻根系作为养分吸收的重要器官,与氮肥利用效率密切相关。我们假设可以通过优化根系来提高氮肥利用率。本文介绍并比较了水稻氮素利用效率的评价方法,讨论了水稻根系形态(数量、重量、长度、表面积、数量、直径、体积、分布和结构)和生理(根系氧化活性、有效吸收面积或速率、激素、根出血和根渗出液组成和浓度、营养浓度和NH4+/NH3-通量)特征与氮素吸收利用的关系。提出了提高氮肥利用效率的关键农艺措施,包括选育氮肥高效品种、改善氮水管理、耕作制度和土壤性质等。进一步阐明基于氮素有效吸收的根-土界面原理,揭示基于氮素有效利用的根-梢相互作用机制,探索水稻根系最大化高产高效利用的综合管理策略。本文的目的是通过品种选择和栽培管理,进一步开发根系潜力,提高氮肥利用效率。
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