Rainfed cotton response to polymer-coated and conventional urea under different placement methods

Surface broadcasting of conventional urea is a common method of supplying nitrogen (N) to cotton, but this practice can increase the risk of N losses through volatilization and leaching, especially under a rainfed production system. A 2-year (2023–2024) field study was conducted at the West Florida Research and Education Center in Jay, FL, to evaluate the effects of N source and placement method on cotton growth, plant N status, lint yield, fiber quality, and partial factor productivity of applied N (PFP). Treatments consisted of conventional urea (46-0-0) and polymer-coated urea (PCU; 41-0-0), applied through surface broadcasting and subsurface banding at 100 kg N ha−1. Growing season conditions differed substantially between years, with hotter and drier conditions in 2023 and greater, more evenly distributed rainfall in 2024. Surface-applied conventional urea resulted in 29–31% higher chlorophyll index (CHL) and 51–57% higher nitrogen balance index (NBI) than other treatment combinations at early square stage in 2023 compared to 2024. N source significantly affected leaf area index (LAI), with conventional urea producing ∼11.2% higher LAI in 2023 and ∼19.4% higher LAI in 2024, on average, compared to PCU-treated plots. Subsurface banded urea generally resulted in the highest petiole nitrate-N (PNN) concentrations across both seasons. Under specific rainfed conditions and N rates evaluated in this study, conventional urea provided greater early or in-season N availability for some physiological indicators than PCU, particularly during the drier season. However, these differences did not result in greater lint yield or PFP.

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Publication Details

Journal
Journal of Plant Nutrition
Published
2026-09-12
DOI
https://doi.org/10.1080/01904167.2026.2729340
Primary Topic
Research in Cotton Cultivation
Type
article
Field-Weighted Citation Impact
0.00

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article

Rainfed cotton response to polymer-coated and conventional urea under different placement methods

Kulpreet Singh, Lakesh K. Sharma, Satinderpal Singh, Hardeep Singh et al.
Journal of Plant Nutrition
Research in Cotton Cultivation
article

Rainfed cotton response to polymer-coated and conventional urea under different placement methods

Kulpreet Singh, Lakesh K. Sharma, Satinderpal Singh, Hardeep Singh, Eajaz A. Dar, Akash Shah, Nkem Nwosu, Ednaldo A. Borgato
article en

Abstract

Surface broadcasting of conventional urea is a common method of supplying nitrogen (N) to cotton, but this practice can increase the risk of N losses through volatilization and leaching, especially under a rainfed production system. A 2-year (2023–2024) field study was conducted at the West Florida Research and Education Center in Jay, FL, to evaluate the effects of N source and placement method on cotton growth, plant N status, lint yield, fiber quality, and partial factor productivity of applied N (PFP). Treatments consisted of conventional urea (46-0-0) and polymer-coated urea (PCU; 41-0-0), applied through surface broadcasting and subsurface banding at 100 kg N ha−1. Growing season conditions differed substantially between years, with hotter and drier conditions in 2023 and greater, more evenly distributed rainfall in 2024. Surface-applied conventional urea resulted in 29–31% higher chlorophyll index (CHL) and 51–57% higher nitrogen balance index (NBI) than other treatment combinations at early square stage in 2023 compared to 2024. N source significantly affected leaf area index (LAI), with conventional urea producing ∼11.2% higher LAI in 2023 and ∼19.4% higher LAI in 2024, on average, compared to PCU-treated plots. Subsurface banded urea generally resulted in the highest petiole nitrate-N (PNN) concentrations across both seasons. Under specific rainfed conditions and N rates evaluated in this study, conventional urea provided greater early or in-season N availability for some physiological indicators than PCU, particularly during the drier season. However, these differences did not result in greater lint yield or PFP.

Journal of Plant Nutrition
University of Florida (US), University of West Florida (US)
Florida Department of Agriculture and Consumer Services
Openalex Percentile: Top 13%
Research in Cotton Cultivation
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