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Research Article Open access CC BY 4.0

Millets at the Climate-Nutrition Interface: A Critical Narrative Review of Genetic Improvement, Stress Resilience, Nutritional Security and Sustainable Agriculture

Prashant Kumar, Poonam Singh, D. N. Sharan, Pragya Parmita, Ajay Prakash Singh, Alok Kumar Singh, Sonu Kumar, Akash Amulpandi, S. M. Bharthisha

European Journal of Nutrition & Food Safety · pp. 110–124 · Published 31 Aug 2026

10.9734/ejnfs/2026/v18i92143

Abstract

Millets are increasingly promoted as climate-smart superfoods, yet this combined label compresses several distinct propositions: that millet crops possess useful stress-adaptive traits, that their grains can improve dietary quality, that modern breeding can strengthen these attributes, and that greater production or consumption will improve food-system sustainability. This critical narrative review evaluates how strongly the literature supports each proposition and where extrapolation exceeds evidence. Literature published from 1 January 2010 to 20 June 2026 was selected from accessible scholarly databases and indexes, with emphasis on peer-reviewed crop genomics, physiology, breeding, food science, human nutrition and food-system studies. Evidence is strongest for the existence of valuable genetic diversity, the expansion of genomic resources in pearl, finger and foxtail millet, context-dependent mechanisms of drought and heat adaptation, and the feasibility of iron biofortification in pearl millet. Human feeding trials show that appropriately biofortified pearl millet can improve iron-related outcomes, but broader claims about glycaemic control, child growth and chronic-disease prevention remain constrained by heterogeneity in species, processing, comparator diets and intervention design. Sustainability evidence indicates that cereal diversification towards less irrigation-dependent crops can improve selected water, nutrient and resilience outcomes, particularly in modelled Indian production systems, but these gains are not automatic: yield stability, processing energy, labour, seed systems, residue value, market access and dietary substitution determine net effects. Genomic advances, including association mapping and pangenomics, have progressed faster than multi-environment validation and delivery in several minor millets. The central implication is that millets are best understood not as a uniform superfood category but as a diverse crop portfolio whose climate and nutrition value depends on genotype-by-environment-by-management-by-processing interactions. Future progress requires breeding targets that jointly measure yield stability and nutrient quality, better field validation of molecular candidates, process-aware nutrition trials, and farm-to-diet sustainability assessment.

Climate-resilient cereals biofortification orphan crops drought adaptation pangenomics micronutrient security cereal diversification agroecosystem resilience

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