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◆ Journal of Agriculture and Food Research2026-02-10· Conservation agriculture

Conservation agriculture for climate-resilient agri-food systems: Enhancing productivity, profitability, and sustainability

Vijay Singh Meena, Raj Kumar Jat, Abhay Kumar, Ratnesh Kumar Jha, RK Sohane, R.N. Singh, Shubham Durgude, Ujjwal Kumar, Anjani Kumar, Anup Das, S. Pazhanisamy, Illathur R. Reddy, Tarun Kumar, Rakesh Kumar, Sunita Kumari Meena, Mohammad Hasanain, Ved Prakash, Anil Kumar Jha, Dhananjay Pati Tripathi

原始摘要(英文原文)· Original abstract
Soil degradation, declining resource-use efficiency, and increasing climate variability are major challenges to agri-food security and the sustainability of cereal-based cropping systems in South Asia. Conventional rice–wheat (R-W) systems in the Eastern Indo-Gangetic Plains (EIGP) of India are highly input-intensive, environmentally fragile, and nutritionally limited, making them vulnerable to climate-induced stresses. This study evaluates the potential of conservation agriculture (CA) interventions-namely zero tillage, direct-seeded rice, timely sowing, and legume integration to enhance productivity, profitability, resource-use efficiency, and overall sustainability of the rice ( Oryza sativa L.)–wheat ( Triticum aestivum L.)–mung bean ( Vigna radiata (L.) Wilczek) production system across diverse agro-climatic zones (ACZs) of Bihar, India. From 2019 to 2022, large-scale on-farm demonstrations (44,476) were conducted across 38 project hubs representing four ACZs. System productivity across zones averaged 9.19–9.88 t ha -1 , with the highest mean in Zone-IIIb, (9.88 t ha -1 ) followed by Zone-IIIa (9.81 ha -1 ), compared to Zone-I (9.48 ha -1 ) and Zone-II (9.19 ha -1 ). System profitability showed parallel trends, with mean values of $1,584 ha -1 (Zone-I) to $1,723 ha -1 (Zone-IIIa). Maximum profitability peaked at $2,490.65 ha -1 in Zone-IIIb, while the lowest return ($768.19 ha -1 ) was recorded in Zone-I, reflecting substantial economic gains in favorable zones. The highest nitrogen, phosphorus, and potassium use efficiencies (37.28, 58.12, and 94.09 kg grain per kg nutrient, respectively) and water-use efficiency (0.470 kg ha -1 mm -1 ) were observed in agro-climatic zone IIIb. Protein yield peaked in agro-climatic zone IIIa, while zone IIIb achieved the highest economic sustainability index (0.875) and yield sustainability index (0.944).CA practices consistently enhanced resource-use efficiency, profitability, and sustainability across all ACZs, showcasing their effectiveness under variable environmental conditions. The integration of conservation tillage, timely planting, and legumes offers a scalable approach to sustainable intensification in cereal-based systems. These findings highlight the potential of CA as a climate-resilient strategy to address soil degradation, enhance agri-food security, and improve farm profitability in vulnerable regions. • 44,476 on-farm demos conducted in rice–wheat–mung bean across Bihar (2019–2022). • System yield averaged 9.61 t ha -1 , ranging 6.4–12.2 t ha -1 across ACZs. • Net returns ranged $1539–$1729 ha -1 , highest in ACZ-IIIb, lowest in ACZ-I. • Nutrient-use efficiency peaked in ACZ-IIIb: N=37.28, P=58.12, K=94.09 kg grain/kg. • Sustainability indices highest in ACZ-IIIb: YSI 0.944, ESI 0.875.
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