Nitrogen (N) transformation in paddy rice field: Its effect on N uptake and relation to improved N management

Junfei Gu , Jianchang Yang
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引用次数: 24

Abstract

Nitrogen (N) is pivotal to crop yield, and the application of N fertilizer in crop production systems is a crucial aspect of modern crop management practices and one of the determining factors to increase crop yield and thereby keeping pace with human population increase. However, most of the N fertilizers (>60%) added to rice fields is not taken up by rice plants, but lost to the environment in forms of ammonia, nitrate, and nitrous oxide. The ‘reactive N’ causes serious environmental problems and detrimental impacts on human health. Furthermore, the N cycling in a cropping system is complicated, and solutions must be made based on an in-depth understanding of the transformation of N in soil and the biochemical processes of N in rice plants. Here, we described multiple transformations and oxidation/reduction processes of N in the paddy rice field, and then summarized the basic biological processes in N acquisition, transportation, assimilation, and metabolism in rice. We discussed various local N signals that regulate root systems. In the end, we suggested the solutions that can synchronize the supply of available N in the soil to the demands of rice plants. A portfolio solution is needed in which integrative management should be established to reduce N loss and increase N use efficiency in rice production.

稻田氮素转化对氮素吸收的影响及其与改良氮素管理的关系
氮(N)对作物产量至关重要,在作物生产系统中施用氮肥是现代作物管理实践的一个重要方面,也是提高作物产量从而跟上人口增长步伐的决定因素之一。然而,大部分氮肥(60%)并没有被水稻植株吸收,而是以氨、硝酸盐和氧化亚氮的形式流失到环境中。“活性氮”造成严重的环境问题,对人体健康产生有害影响。此外,种植系统中的N循环是复杂的,必须在深入了解土壤中N的转化和水稻植株中N的生化过程的基础上制定解决方案。本文介绍了水稻氮素的多种转化和氧化还原过程,总结了水稻氮素获取、运输、同化和代谢的基本生物学过程。我们讨论了调节根系的各种局部N信号。最后,我们提出了使土壤速效氮供应与水稻植株需求同步的解决方案。为减少水稻氮素损失,提高水稻氮素利用效率,需要建立综合管理的组合解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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