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Research Articles

Vol. 13 No. sp3 (2026): Climate-Weed Nexus: Innovations for Sustainable Farming (CWIS 2025)

Optimisation of NPK fertilisation for enhanced growth, yield, quality and economic returns of climate-resilient dwarf red banana (Musa acuminata AAA)

DOI
https://doi.org/10.14719/pst.13428
Submitted
30 December 2025
Published
16-04-2026

Abstract

The present study was undertaken to develop an optimised fertiliser recommendation for a climate-resilient dwarf mutant of red banana (dwarf red banana) and to compare its performance with the locally cultivated tall red banana. Field experiments were conducted during 2021–2022 and 2022–2023 at the Coconut Research Station, Balaramapuram, using a randomised block design (RBD) with 4 NPK (nitrogen, phosphorus and potassium) levels: N1 (200:200:400 g per plant), N2 (150:150:300 g per plant), N3 (250:250:500 g per plant) and N4 (300:300:600 g per plant), replicated 5 times. Across both years, the N4 treatment consistently produced superior vegetative growth, as indicated by a higher number of functional leaves, increased pseudostem girth and maximum dry matter accumulation. Yield attributes including number of hands per bunch, fingers per hand and finger length and girth were also significantly higher in N4. This treatment further recorded significantly greater N, P and K uptake, resulting in significantly higher bunch weight. Economic analysis revealed that N4 achieved the highest gross return, net return and benefit cost ratio. Quality assessment revealed that, at the NPK level of 200:200:400 g per plant, dwarf red banana fruits exhibited significantly higher total soluble solids, reducing sugar and ascorbic acid content compared with those of the tall ordinary red banana. Overall, an NPK dose of 300:300:600 g per plant was identified as optimal for maximising the productivity and profitability of dwarf red banana. The cultivar’s naturally reduced stature, sturdy pseudostem and enhanced tolerance to wind damage highlight its potential as a climate-smart alternative for banana growing regions vulnerable to climate variability.

References

  1. 1. Jaiswal P, Jha SN, Kaur PP, Bhardwaj R, Singh AK, Wadhawan V. Prediction of textural attributes using colour values of banana (Musa sapientum) during ripening. J Food Sci Technol. 2012;51(6):1179–84. https://doi.org/10.1007/s13197-012-0614-2
  2. 2. Alemu M. Banana as a cash crop and its food security and socioeconomic contribution: The case of Southern Ethiopia. Arba Minch J Environ Prot. 2017;8(3):319–29. https://doi.org/10.4236/jep.2017.83024
  3. 3. Debebe AD, Dagne D. Analysis of socio-economic factors affecting banana production: Evidences from lowlands of uba debretsehay woreda, gamo gofa zone, SNNPRS. J Econom Sustain Dev. 2018;9(9):1–7.
  4. 4. Wall MM. Ascorbic acid, vitamin A and mineral composition of banana (Musa spp) and papaya (Carica papaya) cultivars grown in Hawaii. J Food Compos Anal. 2006;19(5):434–45. https://doi.org/10.1016/j.jfca.2006.01.002
  5. 5. Government of India Ministry of Agriculture and Farmers Welfare Department of Agriculture and Farmers Welfare. Lok Sabha Unstarred Question No. 1144. New Delhi; 2023.
  6. 6. Farm Information Bureau. Farm Guide. Agriculture Department and Farmers Welfare Department. Thiruvananthapuram; 2024.
  7. 7. Thatayaone M, Saji G, Meagle J, Netravati, Bintu K. Biochemical and nutritional characteristics of some commercial banana (Musa spp) cultivars of Kerala. Plant Sci. Today. 2022;9(3):681-6. https://doi.org/10.14719/pst.1733
  8. 8. Ramírez Damián M, Meza-Márquez OG, Osorio-Revilla G, Gallardo-Velázquez T, Téllez-Medina DI, Ramos-Monroy OA. Microencapsulation of Red Banana peel extract and bio accessibility assessment by In vitro digestion. Processes. 2022;10:768. https://doi.org/10.3390/pr10040768
  9. 9. Mithul Aravind S, Maatshe RKS, Prasanna P, Saran Prasaanth, Dharanesh D, Rohit Kumar S, et al. Valorization and characterization of Red Banana (Musa acuminata) Peel Powder for the development of functional cookies. Food Hum. 2025;5:100683. https://doi.org/10.1016/j.foohum.2025.100683
  10. 10. Swennen R. Plantain cultivation under West African conditions a reference manual. International Institute of Tropical Agriculture, Ibadan, Nigeria; 1990. p. 24–6.
  11. 11. Navgare MS, Ghavale SL, Salvi BR, Pawar CD, Salvi VG, Khandekar RG. Effect of different levels of fertilisers on growth and yield of banana cultivars in coastal plain of Western India. Pharma Innov J. 2021;10(10):1819–26.
  12. 12. Lopez A, Espinosa J. Better response to potassium. Better Crops Int. 1998;12(1):3–5.
  13. 13. Mustaffa MM, Kumar V. Banana production and productivity enhancement through spatial, water and nutrient management. J Hor Sci. 2012;7(1):1–28. https://doi.org/10.24154/jhs.v7i1.383
  14. 14. Radha T, Mathew L. Banana. In: Fruit crops. New India Publishing Agency, Pitampura, New Delhi; 2007. p. 33–58.
  15. 15. Santos VP, Fernandes PD, Melo AS, Sobral LF, Brito ME, Dantas JD, et al. Fertigation of banana cv Prata Anã with N and K in an ultisol. Rev Bras Frutic. 2009;31:567-73. https://doi.org/10.1590/S0100-29452009000200035
  16. 16. Kerala Agricultural University. Package of Practices Recommendations: Crops. Kerala Agricultural University, Thrissur; 2016. p. 392.
  17. 17. Panse VG, Sukhatme PV. Statistical Methods for Agricultural Workers. Indian Council of Agricultural Research Publication; 1985. p. 87–9.
  18. 18. Snedecor GW, Cochran WG. Statistical Methods. 6th ed. Ames, Iowa: The Iowa State University Press; 1967.
  19. 19. Gopinath PP, Parsad R, Joseph B, Adarsh VS. GrapesAgri1: Collection of shiny apps for data analysis in agriculture. J Open Source Softw. 2021;6(63):3437. https://doi.org/10.21105/joss.03437
  20. 20. Indira M, Nair CS. Standardization of NPK requirement in banana cv “Njalipoovan” (Musa AB group) in Onattukara soil of South Kerala. J Hort Sci. 2008;3(2):127–31. https://doi.org/10.24154/jhs.v3i2.572
  21. 21. Thippesha D, Srinivas V, Mahanthesh B, Janardhan G. Effect of different levels of nutrition and spacing on postharvest qualities of banana cv Robusta (AAA) under high density planting systems. Asian J Hortic. 2008;3(1):87–9.
  22. 22. Nalina L, Kumar N, Soorianathasundram K, Jayakumar P. Effect of different nutrient levels on growth and development of tissue cultured banana cv Robusta. Indian J Hortic. 2009;66(2):169–72.
  23. 23. Patel CM, Patel NL, Gaikwad SS, Patil SJ. Effect of post shooting treatments on yield and its attributes of banana cv Grand Naine. Green Farming. 2011;2(2):210–12.
  24. 24. Rahate SC, Shinde VV, Ghavale SL, Salvi BR, Dhopavkar RV. Effect of nutrient management on growth and yield performance of banana (Musa sp.) varieties under coastal ecosystem of Maharashtra. J Pharmacogn Phytochem. 2020;9(5):317–26.
  25. 25. Sheela VL. Potassium nutrition in rainfed banana (Musa AAB group) Palayankodan. M.Sc. (Hort) [thesis]. Thrissur: Kerala Agricultural University; 1982.
  26. 26. Basha EK, Sudha B, Sajitharani T, Radhakrishnan NV. Growth, nutrient uptake, yield and quality parameters of Nendran banana (Musa sp.) as influenced by combined application of soil and foliar nutrition. J Tropic Agric. 2018;56(2):107–13.

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