Cargando…

Recent trends in nitrogen cycle and eco-efficient nitrogen management strategies in aerobic rice system

Rice (Oryza sativa L.) is considered as a staple food for more than half of the global population, and sustaining productivity under a scarcity of resources is challenging to meet the future food demands of the inflating global population. The aerobic rice system can be considered as a transformatio...

Descripción completa

Detalles Bibliográficos
Autores principales: Farooq, Muhammad Shahbaz, Wang, Xiukang, Uzair, Muhammad, Fatima, Hira, Fiaz, Sajid, Maqbool, Zubaira, Rehman, Obaid Ur, Yousuf, Muhammad, Khan, Muhammad Ramzan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9453445/
https://www.ncbi.nlm.nih.gov/pubmed/36092421
http://dx.doi.org/10.3389/fpls.2022.960641
_version_ 1784785142441574400
author Farooq, Muhammad Shahbaz
Wang, Xiukang
Uzair, Muhammad
Fatima, Hira
Fiaz, Sajid
Maqbool, Zubaira
Rehman, Obaid Ur
Yousuf, Muhammad
Khan, Muhammad Ramzan
author_facet Farooq, Muhammad Shahbaz
Wang, Xiukang
Uzair, Muhammad
Fatima, Hira
Fiaz, Sajid
Maqbool, Zubaira
Rehman, Obaid Ur
Yousuf, Muhammad
Khan, Muhammad Ramzan
author_sort Farooq, Muhammad Shahbaz
collection PubMed
description Rice (Oryza sativa L.) is considered as a staple food for more than half of the global population, and sustaining productivity under a scarcity of resources is challenging to meet the future food demands of the inflating global population. The aerobic rice system can be considered as a transformational replacement for traditional rice, but the widespread adaptation of this innovative approach has been challenged due to higher losses of nitrogen (N) and reduced N-use efficiency (NUE). For normal growth and developmental processes in crop plants, N is required in higher amounts. N is a mineral nutrient and an important constituent of amino acids, nucleic acids, and many photosynthetic metabolites, and hence is essential for normal plant growth and metabolism. Excessive application of N fertilizers improves aerobic rice growth and yield, but compromises economic and environmental sustainability. Irregular and uncontrolled use of N fertilizers have elevated several environmental issues linked to higher N losses in the form of nitrous oxide (N(2)O), ammonia (NH(3)), and nitrate (NO(3)(–)), thereby threatening environmental sustainability due to higher warming potential, ozone depletion capacities, and abilities to eutrophicate the water resources. Hence, enhancing NUE in aerobic rice has become an urgent need for the development of a sustainable production system. This article was designed to investigate the major challenge of low NUE and evaluate recent advances in pathways of the N cycle under the aerobic rice system, and thereby suggest the agronomic management approaches to improve NUE. The major objective of this review is about optimizing the application of N inputs while sustaining rice productivity and ensuring environmental safety. This review elaborates that different soil conditions significantly shift the N dynamics via changes in major pathways of the N cycle and comprehensively reviews the facts why N losses are high under the aerobic rice system, which factors hinder in attaining high NUE, and how it can become an eco-efficient production system through agronomic managements. Moreover, it explores the interactive mechanisms of how proper management of N cycle pathways can be accomplished via optimized N fertilizer amendments. Meanwhile, this study suggests several agricultural and agronomic approaches, such as site-specific N management, integrated nutrient management (INM), and incorporation of N fertilizers with enhanced use efficiency that may interactively improve the NUE and thereby plant N uptake in the aerobic rice system. Additionally, resource conservation practices, such as plant residue management, green manuring, improved genetic breeding, and precision farming, are essential to enhance NUE. Deep insights into the recent advances in the pathways of the N cycle under the aerobic rice system necessarily suggest the incorporation of the suggested agronomic adjustments to reduce N losses and enhance NUE while sustaining rice productivity and environmental safety. Future research on N dynamics is encouraged under the aerobic rice system focusing on the interactive evaluation of shifts among activities and diversity in microbial communities, NUE, and plant demands while applying N management measures, which is necessary for its widespread adaptation in face of the projected climate change and scarcity of resources.
format Online
Article
Text
id pubmed-9453445
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-94534452022-09-09 Recent trends in nitrogen cycle and eco-efficient nitrogen management strategies in aerobic rice system Farooq, Muhammad Shahbaz Wang, Xiukang Uzair, Muhammad Fatima, Hira Fiaz, Sajid Maqbool, Zubaira Rehman, Obaid Ur Yousuf, Muhammad Khan, Muhammad Ramzan Front Plant Sci Plant Science Rice (Oryza sativa L.) is considered as a staple food for more than half of the global population, and sustaining productivity under a scarcity of resources is challenging to meet the future food demands of the inflating global population. The aerobic rice system can be considered as a transformational replacement for traditional rice, but the widespread adaptation of this innovative approach has been challenged due to higher losses of nitrogen (N) and reduced N-use efficiency (NUE). For normal growth and developmental processes in crop plants, N is required in higher amounts. N is a mineral nutrient and an important constituent of amino acids, nucleic acids, and many photosynthetic metabolites, and hence is essential for normal plant growth and metabolism. Excessive application of N fertilizers improves aerobic rice growth and yield, but compromises economic and environmental sustainability. Irregular and uncontrolled use of N fertilizers have elevated several environmental issues linked to higher N losses in the form of nitrous oxide (N(2)O), ammonia (NH(3)), and nitrate (NO(3)(–)), thereby threatening environmental sustainability due to higher warming potential, ozone depletion capacities, and abilities to eutrophicate the water resources. Hence, enhancing NUE in aerobic rice has become an urgent need for the development of a sustainable production system. This article was designed to investigate the major challenge of low NUE and evaluate recent advances in pathways of the N cycle under the aerobic rice system, and thereby suggest the agronomic management approaches to improve NUE. The major objective of this review is about optimizing the application of N inputs while sustaining rice productivity and ensuring environmental safety. This review elaborates that different soil conditions significantly shift the N dynamics via changes in major pathways of the N cycle and comprehensively reviews the facts why N losses are high under the aerobic rice system, which factors hinder in attaining high NUE, and how it can become an eco-efficient production system through agronomic managements. Moreover, it explores the interactive mechanisms of how proper management of N cycle pathways can be accomplished via optimized N fertilizer amendments. Meanwhile, this study suggests several agricultural and agronomic approaches, such as site-specific N management, integrated nutrient management (INM), and incorporation of N fertilizers with enhanced use efficiency that may interactively improve the NUE and thereby plant N uptake in the aerobic rice system. Additionally, resource conservation practices, such as plant residue management, green manuring, improved genetic breeding, and precision farming, are essential to enhance NUE. Deep insights into the recent advances in the pathways of the N cycle under the aerobic rice system necessarily suggest the incorporation of the suggested agronomic adjustments to reduce N losses and enhance NUE while sustaining rice productivity and environmental safety. Future research on N dynamics is encouraged under the aerobic rice system focusing on the interactive evaluation of shifts among activities and diversity in microbial communities, NUE, and plant demands while applying N management measures, which is necessary for its widespread adaptation in face of the projected climate change and scarcity of resources. Frontiers Media S.A. 2022-08-25 /pmc/articles/PMC9453445/ /pubmed/36092421 http://dx.doi.org/10.3389/fpls.2022.960641 Text en Copyright © 2022 Farooq, Wang, Uzair, Fatima, Fiaz, Maqbool, Rehman, Yousuf and Khan. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Plant Science
Farooq, Muhammad Shahbaz
Wang, Xiukang
Uzair, Muhammad
Fatima, Hira
Fiaz, Sajid
Maqbool, Zubaira
Rehman, Obaid Ur
Yousuf, Muhammad
Khan, Muhammad Ramzan
Recent trends in nitrogen cycle and eco-efficient nitrogen management strategies in aerobic rice system
title Recent trends in nitrogen cycle and eco-efficient nitrogen management strategies in aerobic rice system
title_full Recent trends in nitrogen cycle and eco-efficient nitrogen management strategies in aerobic rice system
title_fullStr Recent trends in nitrogen cycle and eco-efficient nitrogen management strategies in aerobic rice system
title_full_unstemmed Recent trends in nitrogen cycle and eco-efficient nitrogen management strategies in aerobic rice system
title_short Recent trends in nitrogen cycle and eco-efficient nitrogen management strategies in aerobic rice system
title_sort recent trends in nitrogen cycle and eco-efficient nitrogen management strategies in aerobic rice system
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9453445/
https://www.ncbi.nlm.nih.gov/pubmed/36092421
http://dx.doi.org/10.3389/fpls.2022.960641
work_keys_str_mv AT farooqmuhammadshahbaz recenttrendsinnitrogencycleandecoefficientnitrogenmanagementstrategiesinaerobicricesystem
AT wangxiukang recenttrendsinnitrogencycleandecoefficientnitrogenmanagementstrategiesinaerobicricesystem
AT uzairmuhammad recenttrendsinnitrogencycleandecoefficientnitrogenmanagementstrategiesinaerobicricesystem
AT fatimahira recenttrendsinnitrogencycleandecoefficientnitrogenmanagementstrategiesinaerobicricesystem
AT fiazsajid recenttrendsinnitrogencycleandecoefficientnitrogenmanagementstrategiesinaerobicricesystem
AT maqboolzubaira recenttrendsinnitrogencycleandecoefficientnitrogenmanagementstrategiesinaerobicricesystem
AT rehmanobaidur recenttrendsinnitrogencycleandecoefficientnitrogenmanagementstrategiesinaerobicricesystem
AT yousufmuhammad recenttrendsinnitrogencycleandecoefficientnitrogenmanagementstrategiesinaerobicricesystem
AT khanmuhammadramzan recenttrendsinnitrogencycleandecoefficientnitrogenmanagementstrategiesinaerobicricesystem