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氮的多面性:从大气气体到不可或缺的农业投入

Multiple Facets of Nitrogen: From Atmospheric Gas to Indispensable Agricultural Input.

作者信息

Kabange Nkulu Rolly, Lee So-Myeong, Shin Dongjin, Lee Ji-Yoon, Kwon Youngho, Kang Ju-Won, Cha Jin-Kyung, Park Hyeonjin, Alibu Simon, Lee Jong-Hee

机构信息

Department of Southern Area Crop Science, National Institute of Crop Science, RDA, Miryang 50424, Korea.

National Crops Resources Research Institute (NaCRRI), NARO, Entebbe 7084, Uganda.

出版信息

Life (Basel). 2022 Aug 19;12(8):1272. doi: 10.3390/life12081272.

Abstract

Nitrogen (N) is a gas and the fifth most abundant element naturally found in the atmosphere. N's role in agriculture and plant metabolism has been widely investigated for decades, and extensive information regarding this subject is available. However, the advent of sequencing technology and the advances in plant biotechnology, coupled with the growing interest in functional genomics-related studies and the various environmental challenges, have paved novel paths to rediscovering the fundamentals of N and its dynamics in physiological and biological processes, as well as biochemical reactions under both normal and stress conditions. This work provides a comprehensive review on multiple facets of N and N-containing compounds in plants disseminated in the literature to better appreciate N in its multiple dimensions. Here, some of the ancient but fundamental aspects of N are revived and the advances in our understanding of N in the metabolism of plants is portrayed. It is established that N is indispensable for achieving high plant productivity and fitness. However, the use of N-rich fertilizers in relatively higher amounts negatively affects the environment. Therefore, a paradigm shift is important to shape to the future use of N-rich fertilizers in crop production and their contribution to the current global greenhouse gases (GHGs) budget would help tackle current global environmental challenges toward a sustainable agriculture.

摘要

氮(N)是一种气体,是大气中天然存在的第五丰富元素。几十年来,氮在农业和植物新陈代谢中的作用已得到广泛研究,关于这一主题的信息十分丰富。然而,测序技术的出现、植物生物技术的进步,再加上对功能基因组学相关研究的兴趣日益浓厚以及各种环境挑战,为重新发现氮在生理和生物过程以及正常和胁迫条件下的生化反应中的基本原理及其动态变化开辟了新途径。这项工作对文献中所传播的植物中氮及含氮化合物的多个方面进行了全面综述,以便从多个维度更好地了解氮。在此,一些关于氮的古老而基本的方面得以重现,并描绘了我们对植物新陈代谢中氮的理解进展。已确定氮对于实现高植物生产力和适应性不可或缺。然而,相对大量使用富氮肥料会对环境产生负面影响。因此,转变模式对于塑造未来作物生产中富氮肥料的使用方式很重要,并且了解它们对当前全球温室气体(GHG)排放预算的贡献将有助于应对当前全球环境挑战,实现可持续农业。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/310f/9410007/8c872dba2d51/life-12-01272-g001.jpg

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