Effect of potassium foliar spraying and sheep manure application on soil nutrient availability and growth of pomegranate seedlings (Punica granatum L. var. Selimi)
DOI:
https://doi.org/10.25081/jaa.2025.v11.9590Keywords:
Foliar spray, Sheep manure, Soil nutrients, Pomegranate seedlings, Plant growthAbstract
Proper management of soil nutrients is crucial for optimizing plant growth and fruit production. This study investigates the impact of potassium foliar spraying and sheep manure application on available nitrogen (N), phosphorus (P), and potassium (K) levels in soil, as well as the growth performance of pomegranate (Punica granatum L. var. Selimi) seedlings. Treatments included four potassium spray levels (0, 10, 20, and 30 g/L) and four sheep manure application rates (0, 6, 12, and 18 t/ha). Results showed that foliar spraying with 20 g/L potassium significantly enhanced soil nutrient availability (N: 68.40 mg/kg, P: 13.35 mg/kg, K: 22.35 mg/kg). This treatment also improved seedling growth, yielding the tallest main stem (106.60 cm), the highest number of leaves (321.73), the largest leaf area (1540.23 cm²), and the greatest chlorophyll content (43.30 SPAD). Additionally, the combination of 20 g/L potassium with 18 t/ha sheep manure resulted in the highest overall plant growth metrics. These findings suggest that integrating potassium foliar sprays with organic fertilization enhances soil nutrient availability and promotes vigorous growth in pomegranate seedlings.
Downloads
References
Abdel-Sattar, M., Almutairi, K. F., Aboukarima, A. M., & El-Mahrouky, M. (2021). Impact of organic manure on fruit set, fruit retention, yield, and nutritional status in pomegranate (Punica granatum L. “Wonderful”) under water and mineral fertilization deficits. PeerJ, 9, e10979. https://doi.org/10.7717/peerj.10979
Al-Ahbabi, A. J. A. (2011). The effect of different levels of organic and nitrogen fertilizers on the yield of Malus domestica L., Anna variety. Tikrit Journal of Pure Science, 16(1), 160-167.
Al-Azzawi, K. M. N. (2010). Effect of organic matter and ionic composition of the balance solution on the behavior and movement of phosphorus in the soil. Doctoral Dissertation, University of Baghdad.
Al-Rawi, K. M., & Khalaf Allah, A. M. (1980). Design and analysis of agricultural experiments. Iraq: University of Mosul.
Brown, P. H., Zhao, F. J., & Dobermann, A. (2022). What is a plant nutrient? Changing definitions to advance science and innovation in plant nutrition. Plant and Soil, 482, 697-711. https://doi.org/10.1007/s11104-022-05328-1
Chen, Q., Qu, Z., Ma, G., Wang, W., Dai, J., Zhang, M., Wei, Z., & Liu, Z. (2022). Humic acid modulates growth, photosynthesis, hormone and osmolyte system of maize under drought conditions. Agricultural Water Management, 263, 107447. https://doi.org/10.1016/j.agwat.2021.107447
Choudhary, R. C., Bairwa, H. L., Kumar, U., Javed, T., Asad, M., Lal, K., Mahawer, L. N., Sharma, S. K., Singh, P., Hassan, M. M., Abo-Shosha, A. A., Rajagopal, R., & Abdelsalam, N. R. (2022). Influence of organic manures on soil nutrient content, microbial population, yield and quality parameters of pomegranate (Punica granatum L.) cv. Bhagwa. Plos One, 17(8), e0266675. https://doi.org/10.1371/journal.pone.0266675
Dhal, S., & Pal, H. (2022). Regulation of glycolysis and Krebs cycle during biotic and abiotic stresses. In A. Roychoudhury (Ed.), Photosynthesis and respiratory cycles during environmental stress response in plants (pp. 263-308) Burlington, Canada: Apple Academic Press. https://doi.org/10.1201/9781003315162-13
Gondal, A. H., Hussain, I., Ijaz, A. B., Zafar, A., Ch, B. I., Zafar, H., Sohail, M. D., Niazi, H., Touseef, M., Khan, A. A., Tariq, M., Yousuf, H., & Usama, M. (2021). Influence of soil pH and microbes on mineral solubility and plant nutrition: A review. International Journal of Agriculture and Biological Sciences, 5(1), 71-81.
Hamad, R. M., & Ibrahim, G. A. (2013). The effect of adding organic fertilizers on some characteristics of vegetative and root growth of pomegranate seedlings. Anbar Journal of Agricultural Sciences, 11(2), 1-15.
Johnson, R., Vishwakarma, K., Hossen, M. S., Kumar, V., Shackira, A. M., Puthur, J. T., Abdi, G., Sarraf, M., & Hasanuzzaman, M. (2022). Potassium in plants: Growth regulation, signaling, and environmental stress tolerance. Plant Physiology and Biochemistry, 172, 56-69. https://doi.org/10.1016/j.plaphy.2022.01.001
Judy, A. T. (2012). The effect of humic acid and citrus release on some traits of Japanese pear seedlings exposed to water stress. Al Furat Journal of Agricultural Sciences, 4(4), 43-51.
Khodair, O. A., & Abd El-Rahman, M. M. A. (2021). Response of Manfalouty pomegranate trees to foliar application of humic acid and amino acids. SVU-International Journal of Agricultural Sciences, 3(1), 10-17. https://doi.org/10.21608/svuijas.2021.54176.1064
Kirkby, E. A. (2023). Introduction, definition, and classification of nutrients. In Z. Rengel, I. Cakmak & P. J. White (Eds.), Marschner's mineral nutrition of plants (pp. 3-9) Amsterdam, Netherlands: Academic press. https://doi.org/10.1016/B978-0-12-819773-8.00016-2
Mansour, N. A. I. (2018). Promising impacts of humic acid and some organic fertilizers on yield, fruit quality, and leaf mineral content of wonderful pomegranate (Punica granatum L.) trees. Egyptian Journal of Horticulture, 45(1), 105-119. https://doi.org/10.21608/ejoh.2018.3495.1061
Moustafa, A. M., El-Araby, S. M., Abd El-Fattah, M. A., & Ghoneim, I. M. (2016). Effect of foliar spraying with humic acid, salicylic acid, and copper on vegetative growth and bulb yield and its components of onion plants (Allium cepa L.). Alexandria Journal of Agricultural Sciences, 61(2), 73-82.
Page, A. L., Miller, R. H., & Keeney, D. R. (1982). Methods of soil analysis: Part 2, Agronomy Monograph. ASA and SSSA.
Poirier, Y., Jaskolowski, A., & Clúa, J. (2022). Phosphate acquisition and metabolism in plants. Current Biology, 32(12), R623-R629. https://doi.org/10.1016/j.cub.2022.03.073
Radhi, M., & Alkarawia, H. H. (2021). Impact of foliar application of silicon on salinity tolerance of two olive (Olea europaea L.) cultivars. Agricultural Research Journal, 58(2), 240-251. https://doi.org/10.5958/2395-146X.2021.00036.3
Sabale, S., Rao, P., & Jadhav, R. (2020). Nutritional value of pomegranate: a review. World Journal of Pharmaceutical Research, 9(5), 733-744. https://doi.org/10.20959/wjpr20205-17361
Torabian, S., Farhangi-Abriz, S., Qin, R., Noulas, C., Sathuvalli, V., Charlton, B., & Loka, D. A. (2021). Potassium: A vital macronutrient in potato production-A review. Agronomy, 11(3), 543. https://doi.org/10.3390/agronomy11030543
Valero-Mendoza, A. G., Meléndez-Rentería, N. P., Chávez-González, M. L., Flores-Gallegos, A. C., Wong-Paz, J. E., Govea-Salas, M., Zugasti-Cruz, A., & Ascacio-Valdés, J. A. (2023). The whole pomegranate (Punica granatum L.), biological properties and important findings: A review. Food Chemistry Advances, 2, 100153. https://doi.org/10.1016/j.focha.2022.100153
Zafar, S. A. R. A., Ashraf, M. Y., Niaz, M., Kausar, A., & Hussain, J. (2015). Evaluation of wheat genotypes for salinity tolerance using physiological indices as a screening tool. Pakistan Journal of Botany, 47(2), 397-405.
Zafar, S., Hasnain, Z., Anwar, S., Perveen, S., Iqbal, N., Noman, A. L. I., & Ali, M. (2019). Influence of melatonin on antioxidant defense system and yield of wheat (Triticum aestivum L.) genotypes under saline condition. Pakistan Journal of Botany, 51(6), 1987-1994. https://doi.org/10.30848/PJB2019-6(5)
Published
How to Cite
Issue
Section
Copyright (c) 2025 Mohammad Tarkhan Abo Almakh, Ghassan Adnan Abdul Ameer, Hassan Hadi Alkarawi, Sabah Lateef Assi

This work is licensed under a Creative Commons Attribution-NonCommercial 3.0 Unported License.