Integrated Nutrient Management Stabilizes Rice Yield and Maximizes Water Productivity Under Deficit Irrigation in Arid Punjab, Pakistan
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Abstract
Water scarcity threatens rice production in arid regions. This study evaluated three irrigation intervals (continuous submergence, 3-day, 6-day) and four nutrient treatments (control, recommended NPK, farmyard manure [FYM] only, NPK+FYM) on rice yield, water productivity, and soil health in Dera Ghazi Khan, Punjab, Pakistan. NPK+FYM (integrated nutrient management, INM) showed remarkable resilience under deficit irrigation, with only 10% yield reduction under 6-day interval (4.4 t ha⁻¹) compared to submergence (4.9 t ha⁻¹), whereas other treatments declined 13-25%. The highest benefit-cost ratio (2.73) occurred under severe deficit with INM. The 3-day interval with INM saved 33% water while achieving 96% of maximum yield (BCR=2.52). Under 6-day interval, INM attained the highest irrigation water productivity (0.70 kg m⁻³), 79% above submerged INM. FYM-amended plots increased soil organic matter (120-200%) and reduced pH (8.19→7.68). Irrigation × nutrient interaction was non-significant for yield (p=0.998). We conclude that 50% NPK + 50% FYM with 3-day interval optimizes yield stability, water productivity, and soil health in arid rice systems.
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