Nitrogen and Sulfur Interaction in Tropical Sandy Soils Implications for Forage Productivity and Nutritional Quality
Kaio Cesar Lima Vale, Sâmia Alves Lopes, Tiago Barbalho André, José Geraldo Donizetti dos Santos, Lucas Siqueira Guimarães, Antonio Clementino dos Santos, Marcia Eduarda Lima Cardoso, Paulo Humberto Gomes Filho
Journal of Experimental Agriculture International · pp. 227–241 · Published 30 Apr 2026
10.9734/jeai/2026/v48i54219Abstract
The intensification of livestock systems in tropical regions has increased the demand for efficient nutrient management, particularly in sandy soils characterized by low fertility, high porosity, and low nutrient retention. This review critically evaluates nitrogen (N) and sulfur (S) interactions in tropical forage systems established on sandy soils, focusing on their effects on productivity, nutritional quality, and nutrient use efficiency. A structured literature review was conducted, synthesizing studies on soil nutrient dynamics, fertilization strategies, and plant physiological responses under these conditions. Nitrogen is a key driver of forage productivity, significantly enhancing biomass accumulation, crude protein concentration, and digestibility; however, its efficiency is strongly dependent on adequate sulfur availability. Sulfur plays a fundamental role in the synthesis of essential amino acids and contributes to improved nitrogen use efficiency. Evidence consistently demonstrates that the combined application of N and S results in superior agronomic performance and enhanced forage quality compared to single-nutrient fertilization. An optimal N:S ratio of approximately 15:1 in plant tissues is required to support efficient protein synthesis and to prevent the accumulation of non-protein nitrogen compounds. In sandy soils, these interactions are intensified due to greater susceptibility to nutrient losses, reinforcing the need for balanced fertilization strategies. Optimizing N and S management is therefore essential to improve forage productivity and sustainability in tropical pasture systems. Future research should prioritize integrated approaches that combine soil chemistry, plant physiology, and microbial processes under field conditions to support the sustainable intensification of livestock systems.
Cited by 0
No indexed citations yet.
Related research
- Morphology and Ecology of Freshwater-blooming Durinskia baltica (Dinophyceae: Peridiniales) in Xochimilco, Mexico — shares topic coverage
- Geospatial Techniques for Identifying Land Degradation Driven by Climate Change-induced Multi-hazards in Tropical Regions: A Critical Narrative Review — shares topic coverage
- Farmer Perceptions on the Effects of Termites in Kwa Vonza Location, Kitui County, Kenya — shares topic coverage
- Impact Assessment of Different Level of Mycorrhiza on the Growth Parameters and Nutrient Content of Capsicum annum — shares topic coverage
- Response to Late Foliar Nitrogen Application in Soybean Productivity — shares topic coverage
Article metrics
Real usage data collected on this platform.
0
Page views
0
PDF downloads
0
Outbound clicks
0
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.