This paper presents results of soil analysis for samples extracted from Makerere University Agricultural Research Institute Kabanyolo. The study was aimed at ascertaining the suitability of MUARIK soils for fruit (pineapple, passion fruit and watermelon) and vegetable (cabbage, eggplant, tomato and pumpkin) growth, yield and maturity. Soil morphological, physical and chemical properties were probed by excavating a 1.86 meter soil profile pit and sampling soils in 9 equidistant locations at MUARIK. The soil morphology and physical properties were described using the Munsel colour chart and USDA classification system while chemical parameters were determined in Makerere University Soil Laboratory following procedures described by Okalebo et al. [1]. Three pedon layers (RSK-H1, RSK-H3 and RSK-H5) had gradual boundaries while RSK-H4 was continuous. However, RSK-H2 and RSK-H6 had abrupt boundary layers. The texture of the profiles was clayey (52%). The soils were acidic with a pH of 6.08 (sub soil) to 6.12 (top soil). On comparison with standard requirements for target fruits and vegetables, the site was deficient in most of the minerals including P (8.88-12.42 pmm), Ca (6.46-7.92 pmm), K (0.06-0.47 pmm), Mg (1.37-1.70 pmm), Na (0.17-0.23 pmm), N (0.18-0.19 pmm), and soil organic matter (4.53%-4.81%). Sand and clay had the highest negative significant correlation (r = - 0.94, p < 0.01) in the top soil. The highest positive significant correlation was observed between Ca and Mg both in the topsoil (r = 0.96, p < 0.01) and subsoil (r = 0.99, p < 0.01). MUARIK is suitable for growing cabbage and pumpkin. However, for improved growth, yields and maturity, the soils should be amended with manure (watermelon), lime (passion fruit and tomato) and sulphur (eggplant and pineapples).
KeywordsFruitsKabanyoloVegetablesSoilSuitability
Okalebo, J.R., Gathua, K.W. and Woomer, P.L. (2002) Laboratory Methods for Soil and Plant Analysis: A Working Manual. TSBF, Nairobi.
Mahadevan, P. and Parsons, D.J. (1970) Livestock. In: Jameson, J. D., Ed., Agriculture in Uganda.
Nono-Womdim, R., Ojiewo, C., Abang, M. and Oluoch, M.O., Eds. (2009) Good Agricultural Practices for African Indigenous Vegetables. Proceedings of a Technical Consultation Workshop in Arushia, Tanzania, 7-8 December 2009, International Society for Horticultural Science.
Lal, R. (1994) Sustainable Land Use Systems and Soil Resilience. In: Greenland, D.J. and Szabolcs, I., Eds., Soil Resilience and Sustainable Land Use, CAB International Publishers, 41-67.
Pomeroy, D.E. (1977) Distribution and Abundance of Large Termite Mounds in Uganda. Journal of Applied Ecology, 14, 456-475. https://doi.org/10.2307/2402559
Tenywa, M.M., Lal, R., Majaliwa, M.J.G. and Lufafa, A. (1999) Characterization of the Stages of Soil Resilience to Degradative Stresses: Erosion. In: Stott, D.E., Mohtar, R.H. and Steinhardt, G.C., Eds., Sustaining the Global Farm, The 10th International Soil Conservation Organization Meeting, Purdue University and the USDA-ARS National Soil Erosion Research Laboratory, 24-29 May 1999, 606-610.
Okwakol, M.J.N. and Sekamatte, M.B. (2007) Soil Macrofauna Research in Ecosystems in Uganda. African Journal of Ecology, 45, 2-8. https://doi.org/10.1111/j.0141-6707.2007.00800.x
Fungo, B., Grunwald, S., Tenywa, M.M., Vanlauwe, B. and Nkedi-Kizza, P. (2011) Lunnyu Soils in the Lake Victoria Basin of Uganda: Link to Toposequence and Soil type. African Journal of Environmental Science and Technology, 5, 15-24.
Mulumba, L.N. (2004) Land Us Effect on Soil Quality and Productivity in the Lake Victorial Basin of Uganda. Ph.D. Thesis, The Ohio State University, USA.
Steenwerth, K.L., Jackson, L.E., Calderon, F.J., Stromberg, M.R. and Scow, K.M. (2002) Soil Community Composition and Land Use History in Cultivated and Grassland Ecosystems of Coastal California. Soil Biology and Biochemistry, 34, 1599-1611. https://doi.org/10.1016/S0038-0717(02)00144-X
Yost, D. and Eswaran, H. (1990) Major Land Resource Areas of Uganda. World Soil Resources, Soil Conservation Service-USDA, Washington DC, 227 p.
Komutunga, E.T. and Musiitwa, F. (2001) Climate. In: Mukiibi, J.K, Ed., Agriculture in Uganda, Volume 1: General Information, Fountain Publishers, Kampala, 21-32.
Kisamba-Mugerwa, W. (2001) Social Background. In: Mukiibi, J.K, Ed., Agriculture in Uganda, Volume 1: General Information, Fountain Publishers, Kampala, 186-199.
Okia, C.A. (2010) Balanites aegyptiaca: A Resource for Improving Nutrition and Income of Dryland Communities in Uganda. PhD Thesis, University of Wales, Bangor, 310 p.
Szymański, W., Skiba, M., Nikorych, V.A. and Kuligiewicz, A. (2014) Nature and Formation of Interlayer Fillings in Clay Minerals in Albeluvisols from the Carpathian Foothills, Poland. Geoderma, 235-236, 396-409. https://doi.org/10.1016/j.geoderma.2014.08.001
Cleland, T.M. (1921) A Practical Description of the Munsell Color System with Suggestions for Its Use. Strathmore Paper Company, Russell.
Bray, R.H. and Kurtz, L.T. (1945) Determination of Total, Organic, and Available Forms of Phosphorus in Soils. Soil Science, 59, 39-45. https://doi.org/10.1097/00010694-194501000-00006
Rhoades, J.D. (1982) Soil Testing. In: Page, A, Miller, R.M. and Keeney, D.R., Eds., Methods of Soil Analysis, Part 2, 2nd Edition, Am. Soc. Agron, Madison, 16-21.
Anderson, J.M. and Ingram, J.S.I. (1989) Tropical Soil Biology and Fertility. Handbook of Methods, CAB. International, Wallingford.
United States Department of Agriculture (1987) Soil Mechanics Level 1 Module 3 USDA Soil Textural Classification Study Guide. USDA Soil Conservation Service, Washington DC.
Morton, J. (1987) Passionfruit. In: Morton, J., Ed., Fruits of Warm Climates, Florida Flair Book, Miami, 320-328.
Adekunle, A.A., Fatunbi, A.O., Adisa, S. and Adeyemi, O.A. (2007) Growing Watermelon Commercially in Nigeria: An Illustrated Guide. USAID ICSNIGERIA and IITA. http://www.fao.org/sd/erp/toolkit/BOOKS/watermelon_illust_guidebook.pdf
Department of Agriculture and Fisheries (2013) Land Requirements for Growing Pineapples. Queensland Government. https://www.daf.qld.gov.au/plants/fruit-and-vegetables/fruit-and-nuts/pineapples/land-requirements-pineapple
Lindbo, D.L., Rhoton, F.E., Hudnall, W.H., Smeck, N.E., Bigham, J.M. and Tyler, D.D. (2000) Fragipan Degradation and Nodule Formation in Glossic Fragiudalfs of the Lower Mississippi River Valley. Soil Science Society of America Journal, 64, 1713-1722. https://doi.org/10.2136/sssaj2000.6451713x
Szymański, W., Skiba, M. and Skiba, S. (2011) Fragipan Horizon Degradation and Bleached Tongues Formation in Albeluvisols of the Carpathian Foothills, Poland. Geoderma, 167-168, 340-350. https://doi.org/10.1016/j.geoderma.2011.07.007
Mugagga, F., Kakembo, V. and Buyinza, M. (2011) A Characterisation of the Physical Properties of Soil and the Implications for Landslide Occurrence on the Slopes of Mount Elgon, Eastern Uganda. Natural Hazards, 52, 1113-1131.
Baynes, F.J. (2008) Anticipating Problem Soils on Linear Projects. Conference Proceedings on Problem Soils in South Africa, Midrand, 3-4 November 2008, 9-21.
Yang, H., Adler, R. and Huffman, G. (2007) Use of Satellite Remote Sensing in the Mapping of Global Landslide Susceptibility. Nat Hazards, 43, 245-256. https://doi.org/10.1007/s11069-006-9104-z
Wati, S.E., Hastuti, T., Wijojo, S. and Pinem, F. (2010) Landslide Susceptibility Mapping with Heuristic Approach in Mountainous Area. A Case Study in Tawangmangu Sub District, Central Java, Indonesia. International Archives of the Photogrammetry, Remote Sensing and Spatial Information Science, 38, 248-253.
Muzaale, F. (2014) Growing Good Quality Tomatoes: Farming Magazines, Daily Monitor, Kampala, Uganda.
Majaliwa, M.J.G. (1998) Effect Vegetation Cover and Biomass Development on Soil Loss from Maize Based Cropping Systems. MSc Dissertation, Makerere University, Kampala, 102 p.
Obreza, T.A. and Rhoads, F.M. (1988) Irrigated Corn Response to Soil Test Indices and Fertilizer Nitrogen, Phosphorus, Potassium and Magnesium. Soil Science Society of America Journal, 52, 701-706. https://doi.org/10.2136/sssaj1988.03615995005200030020x
Chadwik, O.A. and Graham, R.C. (2000) Pedogenic Processes. In: Sumner, M., Ed., CRC Handbook of Soil Science, CRC Press, New York, E41-E73.