Effect of nitrogen and zinc fertilizer on Zn biofortification in pearlmillet (Pennisetum glaucum)

Authors

  • RENU SINGH Institute of Agricultural Sciences, Banaras Hindu University, Varanasi, Uttar Pradesh 221 005
  • S.K. PRASAD Institute of Agricultural Sciences, Banaras Hindu University, Varanasi, Uttar Pradesh 221 005
  • M.K. SINGH Institute of Agricultural Sciences, Banaras Hindu University, Varanasi, Uttar Pradesh 221 005

DOI:

https://doi.org/10.59797/ija.v59i3.5635

Keywords:

Agronomic biofortification, Ferti-fortification, Nitrogen and zinc interaction, Zinc content

Abstract

A field experiment was conducted during the rainy (kharif) season of 2011–12 at Mirzapur, Uttar Pradesh to study the response of pearlmillet [Pennisetum glaucum (L.) R. Br.] to nitrogen and zinc on Zn biofortification in this crop. The field experiment was laid out in a factorial randomized block design, with 3 replications, comprising 4 nitrogen (N) levels (0, 20, 40 and 60 kg N/ha) and 3 levels of zinc (0, 5 and 10 kg Zn/ha) with constant rates of phosphorus and potassium at 40 and 30 kg/ha respectively. Application of 60 kg N/ha and 10 kg Zn/ha resulted in the maximum grain yield, N content and uptake by grain and stover of pearlmillet. Zinc content in grain linearly enhanced with sole application of N and Zn levels up to 20 kg N/ha and 5 kg Zn/ha. Combined application of 5 kg Zn/ ha × 20 kg N/ha was found optimum for enhancement of Zn content in grains of pearlmillet. Agronomic nitrogen and zinc efficiency decreased with the increasing nitrogen and zinc levels.

References

Ahmad, W., Watts, M.J., Imtiaz, M., Ahmed, I., & Zia, M.H. 2012. Zinc deficiency in soils, crops and humans: a review. Agrochimica, 56(2), 65–97.

Cakmak, I. 2012. Zinc fertilizer project: Harvest Zinc. Better Crops with Plant Food, 96, 17–19.

Cakmak, I., Pfeiffer, W.H., & McClafferty, B. 2010. Biofortification of durum wheat with zinc and iron. Cereal Chemistry, 87, 10–20.

Kutman, U.B., Yildiz, B., Ozturk, L., & Cakmak, I. 2010. Biofortification of durum wheat with zinc through soil and foliar applications of nitrogen. Cereal Chemistry, 87, 1–9.

NRAA (National Rainfed Area Authority). 2012. Products, diversification, marketing and price discovery of pearlmillet in India. Policy Paper No.2, National Rainfed Area Authority Planning Commission, Government of India, NASC Complex, New Delhi, p. 48.

Prasad, R., Shivay, Y.S., & Kumar, D. 2013. Zinc fertilization of cereals for increased production and alleviation of zinc malnutrition in India. Agricultural Research, 2(2), 111–18.

Rao, P.P., Birthal, P.S., Reddy, B.V.S., Rai, K.N., & Ramesh, S. 2006. Diagnostics of sorghum and pearlmillet grains-based nutrition in India. International Sorghum and Millets Newsletter, 47, 93–96.

Shivay, Y.S., Kumar, D., & Prasad, R. 2008. Effect of zinc-enriched urea on productivity, zinc uptake and efficiency of an aromatic rice–wheat cropping system. Nutrient Cycling in Agroecosystems, 81, 229–43.

Singh, M.K., & Prasad, S.K. 2014. Agronomic aspects of zinc biofortification in rice (Oryza sativa L.). (In:) Proceedings of the National Academy of Sciences India Section B: Biological Science.

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Published

2024-04-30

Issue

Section

Research Communication

How to Cite

RENU SINGH, S.K. PRASAD, & M.K. SINGH. (2024). Effect of nitrogen and zinc fertilizer on Zn biofortification in pearlmillet (Pennisetum glaucum). Indian Journal of Agronomy, 59(3), 474-476. https://doi.org/10.59797/ija.v59i3.5635