Studies on Nitrogen Requirement of New Genotypes of Non-scented and Scented Rice
Charan Singh, Amit Kumar, Sukham Madaan, Lalita, Sumit Saini, Rakesh Kumar, Ashish Jain, Vishal Gandhi, Parvesh Kumar, Gayatri Kumari, Ankit
Asian Journal of Soil Science and Plant Nutrition · pp. 440–447 · Published 7 Aug 2026
10.9734/ajsspn/2026/v12i3736Abstract
A field experiment was conducted at the CCSHAU Rice Research Station, Kaul, during Kharif 2024 to evaluate the effects of nitrogen levels on productivity, nutrient uptake, and post-harvest soil fertility in scented and non-scented rice genotypes. Three nitrogen levels (75%, 100%, and 125% of the recommended dose of nitrogen [RDN]) and nine rice genotypes were evaluated. Nitrogen application had no significant effect on post-harvest soil pH, electrical conductivity or organic carbon; however, available soil nitrogen, phosphorus and potassium increased significantly, with the highest values under 125% RDN. Among the genotypes, Basmati CSR 30 maintained the highest post-harvest available nitrogen (173.27 kg ha⁻¹) and phosphorus (28.97 kg ha⁻¹), whereas HKR 48 recorded the highest available potassium (351.47 kg ha⁻¹). Application of 125% RDN produced the highest number of panicles (314.07 m⁻²), grains per panicle (126.93), test weight (24.73 g), grain yield (5734 kg ha⁻¹), and straw yield (7432 kg ha⁻¹). However, grains per panicle, test weight, and grain yield were statistically at par with those under 100% RDN. Grain nutrient concentrations also increased with nitrogen application. INGER 75 produced the highest grain yield (6159 kg ha⁻¹), whereas HKR 18-33 produced the highest straw yield (8883 kg ha⁻¹). Although 125% RDN maximized yield, nutrient concentration and residual soil fertility, 100% RDN achieved a comparable grain yield, indicating that the recommended nitrogen dose was adequate for efficient rice production under the study conditions.
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