HomeJCARM Vol 1, Issue 6 Article
Original Research Article

Effects of Khaya ivorensis and Hevea brasiliensis Wood Sawdust on the Cultivation and Nutritional Composition of Pleurotus ostreatus (Jacaum ex. Fr. Kummar)

Nnyam, Lebatam Bete, Ogunbode, Sunday Ayobami, Abdulmoroof, A

Click an author's name to view their details

Nnyam, Lebatam Bete

Department of Environmental Forestry and Wildlife Management, Faculty of Agriculture, University of Port, Nigeria

Received
30 Jul 2026
Published
10 Aug 2026

Abstract

This study was conducted to examine the effect of hardwood (Khaya ivorensis) and softwood (Hevea brasiliensis) on the proximate and nutritional composition of (Pleurotus ostreatus) (Jacaum ex. Fr. Kummar) with the aim of comparing its proximate and nutritional composition on the soft and hardwood substrates. Completely Randomized Design (CRD) was used by cultivating P.ostreatus on substrates prepared from Khaya ivorensis and Hevea brasiliensis sawdust, evaluating growth yield parameters, analyzing the harvested mushrooms for proximate and nutritional composition, and statistically comparing the results using ANOVA at 5% significance level. The proximate composition and mineral content of the harvested Pleurotus ostreatus were analyzed from the two substrates. The proximate composition result showed that softwood contains more crude fibre at 56.31%, while hardwood contain 43.29% of crude fibre. Furthermore, softwood contains 24.05% of carbohydrates and 19.82% of carbohydrate in hardwood. The table further shows that crude lipid is the least (11.74%) in softwood and 8.13% in hardwood. While ash content is high in hardwood, with 0.42 and 0.21 in softwood. There is no significant difference (p>0.05) between the percentage nutrient content in hardwood and softwood, however there is a statistical difference p<0.05) in the minerals constituent among the wood types, with the coefficient of determination at 0.823, meaning that 82.3 % of the data influenced this result. The result of the micro nutrients analysis indicates that hardwood mushrooms contain more minerals compared to softwood mushrooms; however, potassium and phosphorus are higher at 1740.8 and 520.37 mg/100g, respectively. The least mineral happens to be vitamin C for both softwood and hardwood mushrooms at 12.96 and 13.54 mg/100g, respectively. There is no significant difference (p>0.05) between the percentage of micro nutrients in hardwood and softwood, however there is a statistical difference p<0.05) in the minerals constituent among the wood types, with the coefficient of determination at 0.984, meaning that 0.961% of the data influenced this result.

Keywords: Mushroom Substrate, Proximate Composition, Nutritional Composition, Pleurotus Ostreatus

How to Cite

APA

Nnyam, L. B., Ogunbode, S. A., & Abdulmoroof, A. (2026). Effects of Khaya ivorensis and Hevea brasiliensis Wood Sawdust on the Cultivation and Nutritional Composition of Pleurotus ostreatus (Jacaum ex. Fr. Kummar). Journal of Contemporary Academic Research and Methodologies, 1(6). https://doi.org/10.5281/zenodo.21860177

MLA

Nnyam, Lebatam Bete, Sunday Ayobami Ogunbode, and A Abdulmoroof. "Effects of Khaya ivorensis and Hevea brasiliensis Wood Sawdust on the Cultivation and Nutritional Composition of Pleurotus ostreatus (Jacaum ex. Fr. Kummar)." Journal of Contemporary Academic Research and Methodologies, vol. 1, no. 6, 2026. DOI: https://doi.org/10.5281/zenodo.21860177

Chicago

Nnyam, Lebatam Bete, Sunday Ayobami Ogunbode, and A Abdulmoroof. "Effects of Khaya ivorensis and Hevea brasiliensis Wood Sawdust on the Cultivation and Nutritional Composition of Pleurotus ostreatus (Jacaum ex. Fr. Kummar)." Journal of Contemporary Academic Research and Methodologies 1, no. 6 (2026). https://doi.org/10.5281/zenodo.21860177

References

Patience C. Obinna-Echem & Franklyn A. Chukunda, 2018. "Nutrient Composition of Mushroom: Pleurotus Ostreatus (Jacaum, ex. Fr. Kummer) grown on Different Agricultural Wastes," Agriculture and Food Sciences Research. Asian Online Journal Publishing Group, vol. 5(1), pages 1-5. Ogundele, G. F., S. W. Salawu, I. A. Abdulraheem, and O. P. Bamidele. (2017). “Nutritional Composition of Oyster Mushroom (Pleurotus Ostreatus) Grown on Softwood (Daniella Oliveri) Sawdust and Hardwood (Anogeissus Leiocarpus) Sawdust”. Current Journal of Applied Science and Technology 20 (1):1-7. https://doi.org/10.9734/BJAST/2017/28160. Patel, Y; Naraian, R; Singh, V.K (2012). Medicinal properties of Pleurotus species (Oyster Mushroom): A Review. World Journal of Fungal Plant Biology. 30: 01-12. Deepalakshmi, K and Mirunalini, S (2014). Pleurotus ostreatus: An Oyster mushroom with Nutritional and medicinal properties. Journal of Biochemistry and Technology. 5(2): 718-726. Sánchez C. (2010). Cultivation of Pleurotus ostreatus and other edible mushrooms. Journal of Applied Microbiology and Biotechnology; 85:1321-1337. Gbolagade J, Ajayi A, Oku I, Wankasi D. (2016). Nutritive value of common wild edible mushrooms from Southern Nigeria. Global Journal of Biotechnology and Biochemistry; 1:16–21. Ogundele, G.F, Abdulazeez, R.O, Bamidele, O.P. (2014). Effect of pure and mixed substrate on oyster mushroom (Pleurotus ostreatus) cultivation. Journal of Experimental Biology and Agricultural Sciences; 2:215-219. Das, N, Mukherjee, M. (2017). Cultivation of Pleurotus ostreatus on weed plants. Journal of Biological Resource and Technology; 98:2723–2726. Pathmashini, L, Arulnandhy, V, Wilson-Wijeratnam, R.S. (2008). Cultivation of oyster mushroom (Pleurotus ostreatus) on sawdust. Ceylon Journal of Science and Biological Science; 37:177–182. Naraian, R; Singh, D; Verma, A & Garg, S.K. (2010). Studies on in vitro degradability of mixed crude enzyme extracts produced from Pleurotus spp. Journal of Environmental Biology. 31(6): 945-951 Tesfaw, A, Tadesse, A, Kiros, G (2015). Optimization of Oyster (Pleurotus ostreatus) Mushroom cultivation using locally available substrate and materials in Debre Berhan, Ethiopian Journal of Applied Biology and Biotechnology. 3(1): 15-20.
CC BY-NC-SA 4.0

This article is published under the Creative Commons Attribution-NonCommercial-ShareAlike 4.0 International License. Free to read, share, and adapt with attribution.

Article Access
↓ Download PDF
29
Views
18
Downloads
Metadata
ISSN 3139-7247
Tracking ID JCARM_JUL_26_136
Article No. 033
↓ Download JATS XML
Article Info
Journal JCARM
Volume Vol 1, No 6
Year 2026
Type Original Research Article
Licence CC BY-NC-SA 4.0
Share