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R. Meena

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Open access Jul 2026

Efficacy of Seaweed Extract in Enhancing Wheat Productivity in an Inceptisol of Varanasi, Uttar Pradesh, India

Integrated nutrient management may reduce reliance on conventional fertilisers while sustaining wheat productivity. A field experiment was conducted during the 2022–2023 rabi season at Banaras Hindu University, Varanasi, to evaluate combinations of recommended fertilisers, nano urea, NPK-consortia biofertiliser, and Sagarika granular and liquid formulations in an Inceptisol. Eleven treatments were arranged in a randomised block design with three replications. Plant height, tiller number, plant population, chlorophyll content, yield attributes, grain yield, straw yield, biological yield, and harvest index were assessed. Treatment effects differed significantly for the evaluated growth and yield parameters. Treatment T11, comprising 50% urea, 100% DAP and MOP, NPK-consortia biofertiliser, foliar nano urea, and Sagarika liquid, recorded the highest plant height (94.53 cm), tiller number (8.33 plant⁻¹ at 90 DAS), chlorophyll content (56.80 SPAD), ear length (12.87 cm), grains per ear (80.00), test weight (53.03 g), grain yield (45.67 q ha⁻¹), straw yield (63.67 q ha⁻¹), and biological yield (109.33 q ha⁻¹). The highest harvest index (47.58%) was recorded under T9. These findings indicate that integrating reduced soil-applied urea with mineral fertilisers, biofertiliser, foliar nano urea, and Sagarika may support wheat growth and productivity under the tested soil and climatic conditions. Multi-season and multi-location validation is required before wider recommendation.

R. Meena, R. Meena, A. Meena et al. · 0 citations
Open access Jul 2026

Assessment of Seaweed Extract (Sagarika) as a Bio-stimulant for Enhancing Rice Productivity in an Inceptisol

Seaweed-derived biostimulants may complement conventional nutrient management in rice, but their performance requires evaluation under specific soil and agroclimatic conditions. A field experiment was conducted during the kharif season of 2022–2023 at the Agricultural Research Farm, Institute of Agricultural Sciences, Banaras Hindu University, Varanasi, to assess Sagarika seaweed extract in an Inceptisol. The experiment followed a randomised block design with 11 treatments and three replications. Treatments included an absolute control, the recommended dose of fertilisers (RDF), reduced soil-applied urea, an NPK biofertiliser consortium, Sagarika granules, Sagarika liquid sprays, nano urea, and selected combinations of these inputs. Plant growth was recorded at 30, 60, and 90 days after transplanting, and yield attributes, grain yield, straw yield, biological yield, and harvest index were measured. Treatment T7, comprising 100% RDF, Sagarika granules at 10 kg acre⁻¹, and two Sagarika liquid sprays at 5 mL L⁻¹, recorded the highest numerical grain yield (61.63 q ha⁻¹), straw yield (77.02 q ha⁻¹), and biological yield (138.66 q ha⁻¹). Several fertilised treatments were statistically comparable with T7 based on the reported critical difference. The highest harvest index was recorded under T10 (44.95%). The findings indicate that integrated Sagarika treatments were associated with favourable rice growth and yield under the conditions evaluated. Multi-season and multi-location studies incorporating economic, soil-health, nutrient-use-efficiency, and environmental measurements are required before wider recommendations are made.

R. Meena, R. Meena, A. Meena et al. · 0 citations