Next Article in Journal
Modification of Sympathetic and Hypothalamic Responses to Prevent Complications of COVID-19: “Dam and Wall Concept”
Next Article in Special Issue
Beneficial Microorganisms as a Sustainable Alternative for Mitigating Biotic Stresses in Crops
Previous Article in Journal
Treating Preeclampsia in the COVID-19 Era: Is Allopurinol Useful as an Adjuvant Therapy? A Case Report and Review of the Literature
Previous Article in Special Issue
Contrasting Toxicity of a Fomesafen-Based Herbicide on Three Freshwater Phytoplanktonic Species
 
 
Font Type:
Arial Georgia Verdana
Font Size:
Aa Aa Aa
Line Spacing:
Column Width:
Background:
Review

Maize Breeding for Low Nitrogen Inputs in Agriculture: Mechanisms Underlying the Tolerance to the Abiotic Stress

by
Talles de Oliveira Santos
1,*,
Antônio Teixeira do Amaral Junior
2 and
Monique Moreira Moulin
3
1
Department of Biochemistry, University of Nebraska—Lincoln, Lincoln, NE 68588-0664, USA
2
Laboratory of Genetics and Plant Breeding, Universidade Estadual do Norte Fluminense Darcy Ribeiro (UENF), Campos dos Goytacazes 28013-602, RJ, Brazil
3
Laboratory of Genetics and Molecular Biology, Instituto Federal do Espírito Santo—Campus de Alegre (IFES), Alegre 29500-000, ES, Brazil
*
Author to whom correspondence should be addressed.
Stresses 2023, 3(1), 136-152; https://doi.org/10.3390/stresses3010011
Submission received: 9 November 2022 / Revised: 3 January 2023 / Accepted: 5 January 2023 / Published: 6 January 2023
(This article belongs to the Special Issue Physiological and Molecular Mechanisms of Plant Stress Tolerance)

Abstract

Nitrogen (N) is essential for sustaining life on Earth and plays a vital role in plant growth and thus agricultural production. The excessive use of N fertilizers not only harms the economy, but also the environment. In the context of the environmental impacts caused by agriculture, global maize improvement programs aim to develop cultivars with high N-use efficiency (NUE) to reduce the use of N fertilizers. Since N is highly mobile in plants, NUE is related to numerous little-known morphophysiological and molecular mechanisms. In this review paper we present an overview of the morpho-physiological adaptations of shoot and root, molecular mechanisms involved in plant response to low nitrogen environment, and the genetic effects involved in the control of key traits for NUE. Some studies show that the efficiency of cultivars growing under low N is related to deep root architecture, more lateral roots (LR), and sparser branching of LR, resulting in lower metabolic costs. The NUE cultivars also exhibit more efficient photosynthesis, which affects plant growth under suboptimal nitrogen conditions. In this sense, obtaining superior genotypes for NUE can be achieved with the exploitation of heterosis, as non-additive effects are more important in the expression of traits associated with NUE.
Keywords: abiotic stress; sustainable agriculture; nitrogen-use efficiency; genetic control; root morphology; physiological response abiotic stress; sustainable agriculture; nitrogen-use efficiency; genetic control; root morphology; physiological response

Share and Cite

MDPI and ACS Style

Santos, T.d.O.; Amaral Junior, A.T.d.; Moulin, M.M. Maize Breeding for Low Nitrogen Inputs in Agriculture: Mechanisms Underlying the Tolerance to the Abiotic Stress. Stresses 2023, 3, 136-152. https://doi.org/10.3390/stresses3010011

AMA Style

Santos TdO, Amaral Junior ATd, Moulin MM. Maize Breeding for Low Nitrogen Inputs in Agriculture: Mechanisms Underlying the Tolerance to the Abiotic Stress. Stresses. 2023; 3(1):136-152. https://doi.org/10.3390/stresses3010011

Chicago/Turabian Style

Santos, Talles de Oliveira, Antônio Teixeira do Amaral Junior, and Monique Moreira Moulin. 2023. "Maize Breeding for Low Nitrogen Inputs in Agriculture: Mechanisms Underlying the Tolerance to the Abiotic Stress" Stresses 3, no. 1: 136-152. https://doi.org/10.3390/stresses3010011

APA Style

Santos, T. d. O., Amaral Junior, A. T. d., & Moulin, M. M. (2023). Maize Breeding for Low Nitrogen Inputs in Agriculture: Mechanisms Underlying the Tolerance to the Abiotic Stress. Stresses, 3(1), 136-152. https://doi.org/10.3390/stresses3010011

Article Metrics

Back to TopTop