Fate of nitrogen in agriculture and environment: agronomic, eco-physiological and molecular approaches to improve nitrogen use efficiency

Судьба азота в сельском хозяйстве и окружающей среде: агрономические, эколого-физиологические и молекулярные подходы к повышению эффективности использования азота
Muhammad Anas, Fen Liao, Krishan K. Verma, Muhammad Aqeel Sarwar, Aamir Mahmood, Zhong‐Liang Chen, Qiang Li, Xu-Peng Zeng, Yang Liu, Yang‐Rui Li
2020-10-16

nitrogen lossesnitrogen metabolismnitrogen uptake efficiencynitrogen use efficiencynitrogen utilization efficiency
Nitrogen is the main limiting nutrient after carbon, hydrogen and oxygen for photosynthetic process, phyto-hormonal, proteomic changes and growth-development of plants to complete its lifecycle. Excessive and inefficient use of N fertilizer results in enhanced crop production costs and atmospheric pollution. Atmospheric nitrogen (71%) in the molecular form is not available for the plants. For world's sustainable food production and atmospheric benefits, there is an urgent need to up-grade nitrogen use efficiency in agricultural farming system. The nitrogen use efficiency is the product of nitrogen uptake efficiency and nitrogen utilization efficiency, it varies from 30.2 to 53.2%. Nitrogen losses are too high, due to excess amount, low plant population, poor application methods etc., which can go up to 70% of total available nitrogen. These losses can be minimized up to 15-30% by adopting improved agronomic approaches such as optimal dosage of nitrogen, application of N by using canopy sensors, maintaining plant population, drip fertigation and legume based intercropping. A few transgenic studies have shown improvement in nitrogen uptake and even increase in biomass. Nitrate reductase, nitrite reductase, glutamine synthetase, glutamine oxoglutarate aminotransferase and asparagine synthetase enzyme have a great role in nitrogen metabolism. However, further studies on carbon-nitrogen metabolism and molecular changes at omic levels are required by using "whole genome sequencing technology" to improve nitrogen use efficiency. This review focus on nitrogen use efficiency that is the major concern of modern days to save economic resources without sacrificing farm yield as well as safety of global environment, i.e. greenhouse gas emissions, ammonium volatilization and nitrate leaching.
1
Excessive nitrogen fertilizer use can cause nitrogen losses reaching up to 70% of total available nitrogen, increasing production costs and environmental pollution.
2
Improved agronomic practices—including optimal nitrogen dosing, canopy-sensor application, adequate plant populations, drip fertigation, and legume intercropping—can reduce nitrogen losses by 15–30%.
3
Nitrogen use efficiency, defined as uptake efficiency multiplied by utilization efficiency, ranges from 30.2% to 53.2% in agricultural systems.
4
Some transgenic approaches have improved nitrogen uptake and increased plant biomass, while nitrogen-metabolism enzymes are important molecular targets.
5
Whole-genome sequencing and further omics research on carbon–nitrogen metabolism are needed to develop more effective strategies for improving nitrogen use efficiency without reducing yield.

Nitrogen use in agricultural farming systems and the associated environmental nitrogen cycle

Agronomic, ecophysiological, and molecular determinants and improvement strategies of nitrogen use efficiency, including nitrogen uptake, utilization, metabolism, and losses

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2020-10-16
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Muhammad Anas
Fen Liao
Krishan K. Verma
Muhammad Aqeel Sarwar
Aamir Mahmood
Zhong‐Liang Chen
Qiang Li
Xu-Peng Zeng
Yang Liu
Yang‐Rui Li
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