Optimising Growth and Development by Integrating Water Management Practices and Nano-Fertilizers Application in Rice (Oryza sativa L.)
Vineet Dheer, Sanjiv Kumar, D.D. Yadav, V.K. Verma, M. Z. Siddqui, Sarvesh Kumar, Anil Kumar, Jaykar Singh, Krishna Kumar Singh
Journal of Scientific Research and Reports · pp. 997–1008 · Published 23 Nov 2024
10.9734/jsrr/2024/v30i112627Abstract
Rice (Oryza sativa L.) is a vital staple crop, feeding over half of the global population. Despite its significance, rice cultivation faces challenges due to its high-water demand and reliance on conventional fertilizers, which can degrade soil health and increase environmental pollution. This study, conducted at the Student's Instructional Farm, Chandra Shekhar Azad University of Agriculture and Technology, Kanpur, over two consecutive Kharif seasons (2022 and 2023), aimed to evaluate the effects of water management practices and nano fertilizers on different rice varieties. A split-plot design was used, with water management systems (I1- Flooding throughout crop growth (3+/-2cm), I2- Saturation maintenance up to PI and (3+/-2cm) after PI, and I3- Alternate wetting and drying) in main plot, three varieties (V1- NDR 2064, V2- Pusa Basmati 1509 and V3- Arize 6444 Gold) in sub plot and five nano fertilizers treatments (F1- 100% RD- N120kg/h P60kg/h K40kg/h + Zn25kg/h, F2- 100% RD- N120kg/h P60kg/h K40kg/h + Zn25kg/h + Nano fertilizers (Urea4ml/l + DAP4ml/lit + Zn0.5ml/l, F3- 75% RD- N90kg/ha P45kg/ha K30kg/ha + Zn18.75kg/ha + Nano fertilizers (Urea4ml/l + DAP4ml/lit + Zn0.5ml/l), F4- 50% RD- N60kg/ha P30kg/ha K20kg/ha + Zn12.5kg/ha + Nano fertilizers (Urea4ml/l + DAP4ml/lit + Zn0.5ml/l) and F5- Nano fertilizers (Urea4ml/l + DAP4ml/lit + Zn0.5ml/l)) in sub- sub plots with three replications. Results advocated that saturation irrigation significantly improved plant height, tiller count, dry matter accumulation, and leaf area index as compared to continuous flooding and alternate wetting and drying. Among the rice varieties, Arize-6444 Gold outperformed others in terms of tiller number and dry matter accumulation. Nano fertilizers, especially at 75% RD- N90kg/ha P45kg/ha K30kg/ha + Zn18.75kg/ha + Nano fertilizers (Urea4ml/l + DAP4ml/lit + Zn0.5ml/l) improved nutrient efficiency, leading to increased tiller counts, reduced tiller mortality, and higher dry matter accumulation. The combined use of optimized water management practices and nano fertilizers showed potential to reduce water use and improve rice productivity, offering a more sustainable approach to rice cultivation. These findings suggest that integrating saturation irrigation practice and nano-fertilizers can enhance rice yields while conserving water and minimizing the environmental footprint, addressing critical challenges in modern rice production.
Cited by 0
No indexed citations yet.
Related research
- Evaluating the Suitability of System of Rice Intensification Practices for Enhancing Rice and Water Productivity in Semi-Arid Environment, Tamil Nadu, India — shares topic coverage
- Assessing the Effects of Water Management Regimes and Rice Residue on Growth and Yield of Rice in Uganda — shares topic coverage
- Climate-Smart Rice Production through Integrated Water and Carbon Management: Methane Mitigation, Biochar and Yield Resilience — shares topic coverage
- Calibration and Validation of AquaCrop Model for Rice under Prayagraj Agro-Climatic Conditions — shares topic coverage
- Effects of Different Water Management and Fertilizer Applications on CO2 Fluxes from a Selected Myanmar Rice (Oryza sativa L.) Cultivar — 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.