Research Article

Optimization of N, P and K Fertilization for Orange-Fleshed Sweet Potato (Ipomoea batatas (L) Lam) Production at Ikwo Abakaliki, Southeast Nigeria

1 Department of Agriculture, Alex Ekwueme Federal University Ndufu Alike, Ebonyi state
2 Micheal Okpara University of Agriculture, Umudike
3 Department of Soil Science and Meteorology, Michael Okpara University of Agriculture, Umudike
* Corresponding author: iroegbu.chidinmafinai@gmail.com
Published: Aug, 2025
Pages: 43-52
Views: 897
Downloads: 822

Abstract

Orange-fleshed Sweet potato (Ipomoea batatas (L) Lam) is one of the most important crops for human consumption and livestock feed. All parts of the plant are useful for human consumption, animal feed and industrial uses. This research was conducted on a degraded Ultisol at the Teaching and Research Farm, Faculty of Agriculture, Alex Ekwueme Federal University, Ndufu-Alike (AEFUNAI), Abakaliki Ebonyi state during 2022 and 2023 planting seasons, to determine the optimum rate of N, P and K Fertilization for Orange-Fleshed Sweet Potato (Ipomoea batatas (L) Lam) Production at Ikwo Abakaliki, Southeast Nigeria. The treatments comprised of Nitrogen fertilizer (Urea with 46% N) applied at four levels namely 0, 45, 90, and 135 kg N/ha, Phosphorus fertilizer (Triple Super Phosphate with 20% P) applied at four levels namely 0, 15, 30, and 45kg P2O5/ha and Potassium fertilizer (Muriate of Potash with 50% K) applied at four levels namely 0, 20, 40, and 60 kg K2O/ha. The treatments were combined to give 64 treatment combinations with three (3) replicates. The experiment was factorial experiment laid out in a Randomized Complete Block Design (RCBD). Data were collected on vine length (cm), number of leaves, number of branches, weight of storage root/plot (kg/plot) and total storage root yield (t/ha) and subjected to ANOVA for factorial experiment in RCBD at 5% probability level. The results showed that the various combined rates of NPK fertilizer significantly (P < 0.05) increased all the growth and yield parameters of orange-fleshed sweet potato compared to the control during two years of experiment. Also, the results of 2023 planting season were better than that of 2022 planting season. However, the application of NPK at the rate of 90kgN-45kgP2O5-60kgK2O recorded the highest number of OFSP leaves (374.3 and 388.0), number of OFSP branches (19 and 20.33), vine length of OFSP (457.0cm and 444.7cm), weight of OFSP storage root (3.070kg/plot) and (3.5kg/plot) and total storage root yield (3.255t/ha) and (3.88t/ha) in 2022 and 2023 respectively. NPK fertilizer application at the rate of 90kgN-45kgP2O5-60kgK2O appeared appropriate for optimum yield for orange-fleshed sweet potato production in the study area and is therefore recommended.

References

  1. Agri-Farming (2023) Sweet Potato Fertilizer Requirements and Recommendations Management Practices. [www.agrifarming.com](https://www.google.com/search?q=https://www.agrifarming.com)
  2. Ambecha, O.G., (2011).Root and Tuber crops. Teaching Material. JUCVM. Jimma, Ethiopia.
  3. Alex Ekwueme Federal University Ndufu Alike (AE-FUNAI) (2020) Alex Ekwueme Federal University Ndufu Alike Meteorology station, Abakaliki, Ebonyi state
  4. CIP (2018).Sweet potato facts: Production Utilisation, consumption. Feed us. International Potato Centre annual report 2018. www.cip.org
  5. Cruz S.M.C., Cecilio Filho A.B., Nascimento A.S., Vargas, P.F. (2018) Mineral nutrition and yield of sweet potato according to phosphorus doses. Comunicata Scientiae 7(2):183-191.
  6. FAOSTAT 2021; Food agricultural organization ranking of world sweet potatoes production.
  7. Federal Department of Agriculture and Land Resources (1985). Soil Map of Nigeria project. Pp 63-148
  8. Fernandes, A.M and Ribeiro, N.P (2020) Mineral nutrition and fertilization of sweet potato. Cientifica, Jaboticabal, v.48, n.x, p.325-335. [http://dx.doi.org/10.15361/1984-5529.2020v48n4p325-335](https://www.google.com/search?q=http://dx.doi.org/10.15361/1984-5529.2020v48n4p325-335)
  9. GenStat (2014) GenStat 17.1 Edition, Release PL25.1. Lawes Agricultural trust, Rothamsted Experiment Station, UK
  10. Havlin, J.D., Beaton, S.L., Tisdal and W.L. Nelson, (2005). Soil fertility and fertilizers: An introduction to nutrient management. Upper Saddle River, NJ. Pearson Prentice Hall, 515.
  11. IFA (International Fertilizer Industry Association). (1992). World fertilizer Use Manual. Publication of International Fertilizer Industry Association. (pp. 136-142)
  12. Low, J., Lynam, J., Lemaga, B., Crisman, C., Baki, L and Thiele, G (2009). Sweet potato in Sub-saharan Africa. In The Sweet potato, Netherlands,Springer.
  13. Mahmuddin Nur, M.S., Adwin Arsa, I.G., Mulipada, Yohanes (2019) The effect of cattle manure and mineral fertilizers on soil chemical properties and tuber yield of purple fleshed sweet potato in the dryland region of East Nusa Tenggara, Indonesia. Tropical Drylands 3 (2): 56-59. DOI: 10.13057/tropdrylands/t030204
  14. Marschner P (2012) Mineral Nutrition of Higher Plants. Academic Press, London. p 176-189.
  15. National Root Crops Research Institute (NRCRI) (2009). Evaluation of Selected Genotypes of Sweet Potato in Different Ecological Zones of Nigeria. Annual Report of the National Root Crops Research Institute, Umudike, pg 48.
  16. Ndanjezhian, M., Biju G. Dash SN (2010) Effects of organic production of orange fleshed sweet potato (Ipomoea batatas L.) on root yield, quality and soil biological health. International Research Journal of Plant Science 1(6): 136-143
  17. Neela, S. and Fanta, S.W (2019) Review on nutritional composition of orange-fleshed sweet potato and its role in management of vitamin A deficiency. Food Sci. Nutr. 7(6): 1920-1945. DOI: 10.1002/fsn3.1063
  18. Odedede, S.O (2004): Promotion of high quality sweet potato flour in the food industry: evidence from rural women. University of Ibadan Press, Ibadan Nigeria. Pp 2
  19. Okpara, D. A., Okon, O. E. and F. Ekeleme (2009) Optimizing Nitrogen Fertilization for Production of White and Orange Fleshed Sweet Potato in Southeast Nigeria. Journal of Plant Nutrition, 32:5, 878-891. [http://dx.doi.org/10.1080/01904160902790388](https://www.google.com/search?q=http://dx.doi.org/10.1080/01904160902790388)
  20. Okpara, D.A., Njoku, J.C. and Asiegbu, J.E., (2004). Responses of two sweet potato varieties to four green manure sources and inorganic fertilizers in a humid tropical alfisol. Biological agriculture and horticulture. 22: 41-50
  21. Sebastiani SK, Mgunja A, Urio F, Ndondi T (2006) Response of sweet potato to application of nitrogen and phosphorus fertilizer, agronomic and economic benefits in the Northern Highlands of Tanzania. In: 13th Triennial Symposium of International Society of Tropical Root Crops, 70-76 November 2006. Central Tuber Crops Research Institute, Thiruvananthapuram, India. 205 pp
  22. SRI-CSIR (Soil Research Institute - Council for Scientific and Industrial Research) (2003) The 2003 Annual Report
  23. FAO (2005) Chapter 5: Fertilizer use by crops in Ghana. Food and Agriculture Organization of the United Nations, Rome. www.fao.org
  24. Stathers, T., Namanda, S., Mwanga, R.O.M. Khisa, G and Kapinga, R. (2005). Manual for sweet potato integrated production and pest management. Farmer Field Schools in Sub Saharan Africa, International Potato Centre, Kampala, Uganda. pp
  25. Ukpabi, U.J., Hlelele, B. N. and Enejo, V.U. (2012). Potential use of roots of orange-fleshed sweet potato genotypes in the production of $\beta$-Carotene rich chips in Nigeria. African Journal of Food Sci. 6(29-33).
  26. Ukora, A.N., Ojeniyi, O.P. and Okpara, D.A., 2009. Nutrient composition of selected sweet potato (Ipomoea batatas(L.) Lam) varieties as influenced by different levels of nitrogen fertilizer application. Pakistan Journal of Nutrition. 8 (11): 1791-1795.
  27. Çalifken ME, Sögüt T, Bedyak E, Eirfik E, Ariaglu H (2007). Growth, yield and quality of sweet potato (Ipomoea batatas (L) Lam) cultivars in the southeastern Anatolian and east Mediterranean regions of Turkey. Turkey Journal of Agriculture and Forestry 31(4):213-227.
  28. Duvernaya, WH, Channa MS, Yenche GC (2015). Hydrolysis and fermentation of sweet potatoes for production of fermentable sugars and ethanol. Industrial Crops and Products 42:527-537
How to Cite

C.S., I., Okwudiri, A. D., & Osodeke, V. (2025). Optimization of N, P and K Fertilization for Orange-Fleshed Sweet Potato (Ipomoea batatas (L) Lam) Production at Ikwo Abakaliki, Southeast Nigeria. Nigerian Journal of Soil Science, 34(2), 43-52. https://doi.org/10.67042/njss.2025.1xy3t2fe

I. C.S., A. D. Okwudiri, and V. Osodeke, "Optimization of N, P and K Fertilization for Orange-Fleshed Sweet Potato (Ipomoea batatas (L) Lam) Production at Ikwo Abakaliki, Southeast Nigeria," Nigerian Journal of Soil Science, vol. 34, no. 2, pp. 43-52, August 2025. doi: 10.67042/njss.2025.1xy3t2fe

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