Molecular Frameworks of Nitrogen Response in Plants: A Review
Elizabeth Jose, Soni K. B., Swapna Alex, Shalini Pillai P., Beena R., Roy Stephen
International Journal of Environment and Climate Change · pp. 380–390 · Published 20 Dec 2023
10.9734/ijecc/2023/v13i123694Abstract
Nitrogen is a crucial element for all living organisms especially plants which rely on substantial nitrogen quantities to sustain their growth and productivity. Crop production is greatly influenced by nitrogen consumption efficiency and a significant amount of nitrogen fertilizers is used to increase yield. Approximately half of N fertilizers are not utilized by the crops and are lost to the environment by polluting water sources or by releasing pollutants into the atmosphere. From the rhizosphere, plants absorb nitrogen in the form of nitrate (NO3-), ammonium (NH4+), or organic nitrogen (amino acids and urea). Plants exhibit an array of sensing and adaptive mechanisms to respond to the diverse nitrogen nutrition conditions which include morphological and physiological responses. Two primary systems govern nitrogen uptake in plants: the High-affinity transport system (HATS) and the Low-affinity transport system (LATS). Nitrate transporters fall into two categories, Nitrate Transporter 1 (NRT1) and Nitrate Transporter 2 (NRT2) transporters, Chloride Channel Family (CLC) transporters and Slow Anion Associated Channel Homologs (SLAC/SLAHs). The ammonium transporter family includes Ammonium Transporter 1 (AMT1) and Ammonium Transporter 2 (AMT2) transporters. The uptake of organic nitrogen is facilitated through amino acid and urea uptake and transport systems. In fluctuating environmental conditions, plants employ nitrogen response mechanisms to fine-tune homeostasis. A comprehensive understanding of these regulatory mechanisms holds the potential to yield valuable insights for the development of crops with enhanced nitrogen use efficiency.
Cited by 3
Asemahle Mshweshwe, Nonkululeko Mfeka, Francis B. Lewu · Journal of Medicinal Plants for Economic Development · 2025
Shalini Jhanji, Manisha Chumber, Gurpreet Kaur · Plant Physiology and Biochemistry · 2025
Saif Ullah, Izhar Ali · Phyton · 2025
Related research
- Impact of Different Enriched Nitrogen Sources on Nitrogen Use Efficiency in Transplanted Rice — shares topic coverage
- Genetic Variation and Trait Associations of Grain Yield and Other Quantitative Traits for Identification of Promising Wheat (Triticum spp.) Accessions under Nitrogen Stress — shares topic coverage
- Heterobeltiosis in Wheat (Triticum aestivum L.) F1 Diallel Crosses under Contrasting Soil-N Conditions — shares topic coverage
- Integrated Nitrogen Management on Nutrient Contents, Uptake and Use Efficiency of BRRI Dhan29 — shares topic coverage
- Nitrogen Use Efficiency and Maize Productivity in the Guinea Savanna Agro-ecological Zone of Ghana — shares topic coverage
Article metrics
Real usage data collected on this platform.
0
Page views
0
PDF downloads
0
Outbound clicks
3
Citations
Views by country
Approximate, from request IP at view time — not citizenship or institution. Countries with fewer than 5 views are grouped as "Other".
No views recorded yet.
Traffic sources
Referring site, by host.
No traffic recorded yet.
Views and downloads exclude known bots/crawlers. Citations combines this platform's own DOI-resolved index with each external source's own reported total — see Cited by above for individually listed citing works. Last refreshed 0 seconds ago.