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Assessment of Two Varieties of Okra Grown on Spent Mushroom Substrate Amended Soil and their Associated Fungi

Sallet I., Chuku E. C. and Ajuru M. G.

Abstract

Assessment of two varieties of okra grown on spent mushroom substrate amended soil and their associated fungi were carried out at the River State University Teaching and Research Farm. Spent mushroom Substrate collected from the Diplomat Farm was treated and three different concentrations (6.0, 12.0 and 18kg) were prepared and used as amendments on 12.5 kg soil, with the untreated soil as control. A total of four treatments were established Viz A1B1, A2B1, A3B1 and B as control for the field and green house experiments respectively. The local (C1) and improved (C2) varieties of okra were grown in a randomised complete block design in triplicates for the various treatments in the field. Fruiting of the treatment plants began at week 8 after planting in the field experiment for A1B1C1 and A2B1C1 (local variety) and A1B1C2, A2B1C2, A3B1C2 and BC2 (improved variety) treatments. Highest number of fruits (8.33±0.58) was recorded for the improved variety grown on A3B1C2 treatment. Meanwhile, the local variety on A2B1C1 treatment had highest fresh weight (9.35±0.07g) and dry weight (3.35±0.07g) of total weight of harvest. Fungi investigation on harvested fruits revealed the occurrence of three fungal organisms (Aspergillus sp., Mucorsp. and Penicilliumsp.). The local variety recorded more fungal organisms including Aspergillus and Mucor at incidence of 40% and 60% respectively. However, only Penicillium was recorded for the improved variety at an incidence of 100%. Generally, both varieties of okra completed their life cycle, although the amended soils supported better performance compared to those grown in the control soil. The improved variety had higher yield and less fungi contaminants than the local variety. Therefore, the cultivation of the improved variety should be encouraged.

Keywords

Okra varietyyield and fungi

References

Aliyu, L. (2001). Effect of Nitrogen & Phosphorus on growth, & yield of sweet pepper Capsicum annuum L. Journal of Agriculture and Environment, 2 (2),243 – 251. Bamett, H. L. & Hunters, B. B. (1998). Illustrated general of imperfect fungi, 4 th edition. American pytopathological society press, St Paul Minnesota, 218. Cheesebrough, M., (2000). Distinct laboratory practice in tropical countries part 2. Cambridge University Press London. 143 – 156. Chuku, E. C., Agbagwa, S.S. & Worlu, C., (2019). Nutrient quality and associated spoilage Fungi of English Pear (Pyrus communis L). International journal of Agriculture, Environment and Bioresearch, 4 (6), 317-325. Chuku, E. C. (2009). Fungi responsible for the spoilage of Plantain (Musa paradisiacal at various ripening stages. Acta Agronomica Nigerian, 9 (1 & 2), 35 – 40. Eleamer, H. (2020). The effect of spent mushroom compost on the indigenous rhizorspheremicrobiota in strawberry cultivation. Swedish University of Agricultural Science. Special Liason unit, 4 -7. Elsakhawy, J. A., & Abed, EL- Rahem, W. T, (2020). Evaluation of spent mushroom substrates extract as a biofertilizer for growth improvement of rice (Oryza sativa L.). Egypt Journal of Soil Science, 60,131-412. Ezekiel, C. N. & Sombie, J. I. (2014), Survey of Aflatoxins and fungi in some commercial breakfast cereals and pastas retailed in Ogun State, Nigeria. Journal of Natural Science 6.27,32. Forbes, B.M., Charity, P., Moses, M.C. G. & wonder, N., (2021). Effect of spent bulton mushroom substrate on yield and quality of Baby Spinach (Spinaciaoleracea). International of Agronomy, 9, (https/idoi org 10.1/55/2021/6671647). Gbogolade, S.I., Lawal. M.M. & Oyetu, J. O. (2012). Effects of spent mushroom compost. International Journal of Agriculture and Earth Science, 4, (20),2489 - 2492. Gonani, R. Z., Riabi, H. & Sharif, K. (2011). Impact of using leached spent mushroom compost as a partial growing media for horticultural plant. Journal of Plant Nutrition 34, (3),337– 348. Jasinaka, A. (2018). “Spent mushroom compost, (SMS) – Retrieved added value product closing loop in Agricultural production”. Acta Agarar Debeceniesis,150, 185 – 202. Kwiatkowshi, C.A., Harasim, E. (2021). The effect of fertilization with spent mushroom substrate and traditional methods of fertilization of common thyme (Thymus vulgaris L.) on yield quality and Antioxidant properties of Herbal material. Journal of Acta Scientarumpolononum Technologia Alimentaria,1644-1730. Z., sun, Y., Zhou., x, Biag., B, Hu., & Xu., X., (2017). “ Composition variability of spent mushroom substrates during continuous cultivation, composting process and their effects on mineral Nitrogen transformation in soil. Geoderma, 307, 30-37. Mbazu, C. (2021). Okra cultivation guide. The step – by – step okra farming procedure Africa publisher 31. Luo, Mehrotra, R. S. & Aggawal A. (2009). Phythopathologicaltechniques in plant pathology in plant pathology 2 nd edition. Tata Mcaraw-Hill Publishing Company Limited, 821. Ocimati, W., were, E., Tazube, A.F, Dita, M., Zheng, S., & Guy, B. (2021). Spent pleurotus ostreatus substrate has potential for managing Fusarum Wilt of banana. Journal of Fungi, 7, 946-949. Orluchukwu, J.A. & Okosa EU., (2018). Effect of spent mushroom substrate poultry manure on growth and yield of okra crop. International Journal of Agriculture & Earth Science, 2 (23) 2489-2492. Parcedes, C. M., Moral, E., Perez- Murcia, M.O. & Bustamante, M.A., (2020). Effects of spent mushroom substrate and poultry manure on growth and yield of okra (Abelmoschusescuientus L. moench) in Port Harcourt Rivers State, Journal of Soil Science, 15, 78-95. Roy, S., Shibu, B., Chakraborty, U. & Charaborty, B., (2015). “Evaluation of spent mushsroom substrate as Biofertilizer for growth improvement of Capsicum nannum L”. Journal of applied Biology and Biotechology, 3, 3, 22-27. Schwartz, H. F. (2021). Foot roots of dry beans fact sheet crop series diseases. Colarado state University Cooperative, Extension Service. 2938 – 2940.