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Research Articles

Vol. 13 No. sp5 (2026): Recent Advances in Agriculture

Effect of zinc and iron on growth and yield of foxtail millet (Setaria italica L.) in the Northern Transitional Zone of Karnataka

DOI
https://doi.org/10.14719/pst.12510
Submitted
30 October 2025
Published
30-08-2026

Abstract

A field experiment was conducted in a randomised complete block design (RCBD) with eight treatments and three replications to assess the response of foxtail millet to the soil incorporation of micronutrients and to determine the micronutrient content in its grain and fodder in order to check whether agronomic bio-fortification through soil application of zinc (Zn) and iron (Fe) fertilisers can offers an immediate and effective route to enhance micronutrient concentrations in foxtail millet. The treatments included combinations of soil-applied Zn and Fe along with the recommended package of practices (RPP), compared with farmers’ practice. The findings indicated that applying of
zinc sulphate (ZnSO₄) at 15 kg ha-1 + iron sulphate (FeSO₄) at 15 kg ha-1 along with RPP recorded significantly higher plant height, number of tillers per hill, total dry matter production per plant, test weight, grain yield, stover yield, net returns and benefit : cost (B : C) ratio, followed by RPP + ZnSO₄ at 10 kg ha-1 + FeSO₄ at 10 kg ha-1. It is therefore evident that soil application of ZnSO₄ and FeSO₄ each at 15 kg ha-1 along with RPP significantly enhances the yield and profitability of foxtail millet, offering greater economic benefits to the farming community.

References

  1. 1. Priya P, Aravinda Kumar BN, Chandranna JS, Patil VC, Krishnamurthy N. Effect of microbial inoculants on yield performance of sorghum as intercrop in maize under rainfed conditions in Northern Karnataka. Life Sci Bull. 2015;12(1):1–3.
  2. 2. Prasenjit R, Siba PD, Rajiv R, Debasis G. Agronomic biofortification of food crops with zinc and iron for ameliorating their deficiencies in humans: Constraints and possibilities. Indian J Fert. 2016;12(7):28–35.
  3. 3. Anand T, Rahi M, Sharma P, Ingle GK. Issues in prevention of iron deficiency anemia in India. Nutr. 2014;30:764–70. https://doi.org/10.1016/j.nut.2013.11.022
  4. 4. Gomez KA, Gomez AA. Statistical procedures for agricultural research. 2nd ed. New York: Wiley Inter-Science Publications; 1984.
  5. 5. Dhaliwal SS, Sadana US, Khurana MPS, Sidhu SS. Enrichment of wheat grains with Zn through ferti-fortification. Indian J Fert. 2012;8(7):48–55.
  6. 6. Bandiwaddar TT, Patil BN. Response of bread wheat (Triticum aestivum L.) to varied levels of iron and zinc enriched with organics in maize-wheat cropping sequence. Karnataka J Agric Sci. 2015;28(4):467–73.
  7. 7. Priya P, Iliger P, Ashoka P. Effect of drought on field performance of maize and sorghum. Int J Agric Sci. 2020;12(6):9658–61.
  8. 8. Murthy KMD, Rao A, Upendra. Effect of organically bound micronutrients on growth and yield of rice. J Eco-friendly Agric. 2006;3:86–7.
  9. 9. Priya P, Iliger P, Ashoka P. Seed priming-low cost technology to enhance the growth and yield of cereals under drought condition. Int J Agric Sci. 2019;11(3):7870–3.
  10. 10. Choudhary GL, Rana KS, Rana DS, Bana RS, Prajapat K, Mukesh C. Moisture management and zinc fortification impacts on economics, quality and nutrient uptake of pearl millet under rainfed conditions. Indian J Agric Sci. 2016;86(1):71–7. https://doi.org/10.56093/ijas.v86i1.55219
  11. 11. Priya P, Patil VC, Aravind Kumar BN. Characterization of grain sorghum [Sorghum bicolor (L.) Moench] for root traits associated with drought tolerance. Res Environ Life Sci. 2016;9(2):163–5.
  12. 12. Anilkumar AH, Kubsad VS. Effect of fortification of organics with iron and zinc on growth, yield and economics of rabi sorghum [Sorghum bicolor (L.) Moench]. J Farm Sci. 2017;30(4):547–9.
  13. 13. Singh D, Singh RN. Effect of potassium, zinc and sulphur on growth characters, yield attributes and yield of soybean (Glycine max L.). Indian J Agron. 1995;40(2):223–7.
  14. 14. Debroy P, Narwal RP, Malik RS, Narender. Impact of zinc application methods on greengram (Vigna radiata L.) productivity and grain zinc fortification. J Environ Biol. 2013;35:851–4.
  15. 15. Olusengun A, Meki C. Soil application of zinc to maize and wheat grown on a Zambian Alfisol. Afr J Agric Res. 2014;9(11):963–70. https://doi.org/10.5897/AJAR2013.7623
  16. 16. Mosanna R, Ebrahim KB. Morpho-physiological response of maize (Zea mays L.) to zinc nano-chelate foliar and soil application at different growth stages. J New Biol Rep. 2015;4(1):46–50.
  17. 17. Yadav RS, Patel AM, Dodia IN, Aglodiya AVG, Patel A, Augustine N. Agronomic biofortification of wheat (Triticum aestivum L.) through iron and zinc enriched organics. J Wheat Res. 2011;3(1):4.
  18. 18. Krupashree R, Satyanarayana Rao, Desai BK, Ananda NS, Bhat N. Zinc and iron fortification through enriched organics and foliar nutrition on growth, yield and economics of foxtail millet (Setaria italica). Environ Conserv J. 2022;23(3):62–70. https://doi.org/10.36953/ECJ.9982217
  19. 19. Hamaad RA, Tariq A, Shahid H, Muhammad A, Muhammad S, Saif UK, et al. Zinc-enriched farmyard manure improves grain yield and grain zinc concentration in rice grown on a saline-sodic soil. Int J Agric Biol. 2012;5(3):32–35.
  20. 20. Meena N, Fathima PS. Effect of biofortification of hybrid rice with zinc and iron on yield and yield attributes of hybrid rice (Oryza sativa L.). Chem Sci Rev Lett. 2017;67(2):2278–83.
  21. 21. Mohammad R, Pahlavan R, Mohammad P. Response of wheat plants to zinc, iron, and manganese application and uptake and concentration of zinc, iron and manganese in wheat grains. Commun Soil Sci Plant Anal. 2009;40:123–34. https://doi.org/10.1080/00103620902761262
  22. 22. Priya P, Aravinda Kumar BN, Chandranna JS, Patil VC, Krishnamurthy N. Effect of drought stress on some physiological traits of maize (Zea mays L.) grown under rainfed conditions in North Karnataka. Natl J Life Sci. 2015;12(1):9–12.
  23. 23. Priya P, Ashoka P, Karakkannavar SJ, Guruprasad GS. Evaluation of frontline demonstration of greengram (Vigna radiata L.) in Haveri district of Northern Karnataka. Front Crop Improv. 2022;10(Suppl 1):537–40.
  24. 24. Sharanappa, Latha HS, Desai BK, Koppalkar BG, Ravi MV. Effect of agronomic biofortification with zinc and iron on yield and quality of pearl millet (Pennisetum glaucum (L.)) genotypes. Int J Curr Microbiol Appl Sci. 2019;8(9). https://doi.org/10.20546/ijcmas.2019.809.150
  25. 25. Priya P, Patil VC, Aravind Kumar BN. Cultivation practices and production constraints of maize under rainfed conditions. Res Environ Life Sci. 2016;9(2):166–9.
  26. 26. Priya P, Ashoka P, Karakkannavar SJ, Guruprasad GS. Effect of soil and foliar application of micronutrients (Zn, Fe & B) on field performance of maize (Zea mays L.) in Northern Karnataka. J Pharmacogn Phytochem. 2020;SP6:467–70.

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