Foxtail Millet (Setaria italica L.) in Rice-Based Cropping Systems: A Climate-Smart Approach to Sustainable Natural Farming
Md. Hedayetullah, Sabyasachi Patra, Md. Sahanowaz Hoque, Mohammad Ilyas Khatibi, Rohan Sharma, Uday Layek, Gagan Mudi, Sanchita Roy, Santanu Kayal, Champak Kumar Kundu
Journal of Agriculture and Ecology Research International · pp. 479–500 · Published 24 Sep 2026
10.9734/jaeri/2026/v27i5814Abstract
Rice-based production landscapes in South and South-East Asia face a linked set of constraints: rainfall uncertainty, irrigation pressure, methane emissions from flooded rice, large post-rice fallow areas, declining returns from input-intensive cereal production, and nutritional dependence on a narrow set of staples. Foxtail millet (Setaria italica (L.) P. Beauv.) is increasingly discussed as a short-duration, C4 cereal that could diversify these systems, yet the evidence supporting its specific placement in rice-based natural-farming systems remains fragmented. This critical narrative review synthesises crop physiology, rice-fallow agronomy, diversification research, natural-farming evidence, and food and farm-economic studies to determine which claims are well supported and which still rely on extrapolation. Literature published from 1 January 2000 to 17 July 2026 was selected through scholarly database and citation searching, with emphasis on verified peer-reviewed studies and methodologically informative field evidence. The strongest evidence concerns foxtail millet's drought-responsive physiology, genetic variation in water-use traits, short crop duration, and adaptation to low-water environments. Rice-fallow research independently shows that residual soil moisture, timely establishment, drainage, and reduced soil disturbance can support profitable post-rice intensification, although most such experiments involve pulses or other dry-season crops rather than foxtail millet. Evidence for natural farming suggests potential reductions in purchased inputs and improvements in selected soil and biodiversity indicators, but foxtail-millet-specific, replicated, multi-year comparisons under natural-farming protocols remain scarce. Mitigation claims require particular caution: replacing a flooded rice phase with an aerobic millet can plausibly avoid methane-generating conditions, but net greenhouse-gas benefits have rarely been measured for complete rice-foxtail sequences. The review therefore identifies foxtail millet as a credible climate-adaptation and diversification candidate, not as a universally superior substitute. Future work should prioritise multi-location rice-to-foxtail trials, whole-system water and greenhouse-gas budgets, cultivar-by-management interactions, weed and nutrient strategies compatible with natural farming, and market-linked profitability. The central research need is to move from trait-based promise to systems-level evidence under realistic farmer conditions.
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