Efficacy of Mycorrhizae Based Manure on the Vegetative Growth of Rice Grown within Bauchi State, Nigeria
- 1 Department of Biological Sciences, Abubakar Tafawa Balewa University (ATBU), Bauchi, Nigeria
- 2 Department of Biological Sciences, Abubakar Tafawa Balewa University (ATBU), Bauchi, Nigeria
- 3 Department of Biological Sciences, Abubakar Tafawa Balewa University (ATBU), Bauchi, Nigeria
Abstract
Background: Rice is one of the staple crops in the African continent for its ability to give maximum yields which can help to achieve food security under the sustainable development goals (SDGs); to those effects, the incessant use of inorganic fertilizer has been employed which proved to have devastating effect in the environment and the ecosystem at large. Therefore, the thirst for an alternative method to ensure bumper production of rice cannot be overemphasized so as to prevent soil alteration and environmental damage. Objective: This study aimed at determining the efficacy of mycorrhizae-based manure on the vegetative growth of rice as compared to inorganic fertilizer and its sustainability. Methods: Soil samples were collected from seven (7) locations (M1 - M7). Mycorrhiza were isolated from the soils and mass produced, mixed with organic waste to form manure (biofertilizer) and were applied at concentrations of 50 g, 100 g and 150 g to the potted rice in tree (3) replicates. Growth parameters observed were plant height, girth diameter, leaf broadness and leaf number. Results: The result revealed mycorrhizal spore count ranging from 1.7 × 10 7 - to 4.1 × 10 7 across the locations. The mycorrhizae-based manure gives the highest plant height of 45.33 cm as compared with the least plant height of 18.5 cm from the inorganic fertilizer. Furthermore, the biofertilizer gives a positive influence on the other parameters observed in comparison with the inorganic fertilizer. Statistical analysis shows that, the means of all the parameters except for leaf numbers were significantly different at p ≤ 0.05 across the sampling locations. Conclusions: Mycorrhizae-based manure proves to be an effective replacement of inorganic fertilizer that can boost rice production at a cheaper cost.
- Ayodele, O.S., Obafemi, F.N. and Ebong, F.S. (2013) Challenges Facing the Achievement of the Nigeria Vision. Global Advanced Research Journal of Social Sciences, 27, 143-157.
- Deba, F.A., Isma’il, S., Sahal, M.R. and Okpanachi, I.Y. (2019) Evaluation of Economic Importance of Locally Produced Manure over Inorganic Fertilizer for Maize Production: Vegetative Performance and Cost Implication. American Journal of Molecular Biology, 9, 64-74. https://doi.org/10.4236/ajmb.2019.92006
- Okpanachi, I.Y. and Sahal, R.M. (2018) The Mycorrhiza Initiative: A Better Way to Manure Production for Sustainable Agriculture. Abubakar Tafawa Balewa University, Bauchi.
- Okpanachi, I.Y. and Sahal, R.M. (2018) The Mycorrhiza Initiative: A Better Way to Manure Production for Sustainable Agriculture. https://www.academia.edu/37072691/
- Javaid, A. (2009) Arbuscular Mycorrhizal Mediated Nutrition in Plants. Journal of Plant Nutrition, 32, 1595-1618. https://doi.org/10.1080/01904160903150875
- Parikh, S.J. and James, B.R. (2012) Soil: The Foundation of Agriculture. Nature Education Knowledge, 3, 2.
- Chen, J.H. (2006) The Combined Use of Chemical and Organic Fertilizers and/or Biofertilizer for Crop Growth and Soil Fertility. International Workshop on Sustained Management of the Soil Rhizosphere System for Efficient Crop Production and Fertilizer Use, Bangkok, 16-20 October 2006.
- Gupta, A. and Sen, S. (2013) Role of Biofertilizers and Biopesticides for Sustainable Agriculture. Scholar.google.com
- Muraleedharan, H., Seshadri, S. and Perumal, K. (2010) Biofertilizer (Phosphobateria). Shri Murrugapa Chettiar Research Centre, Chennai.
- Raghuwanshi, R. (2012) Opportunities and Challenges to Sustainable Agriculture in India. NEBIO, 3, 78-76.
- Katyal, J.C., Das, S.K., Korwar, G.R. and Osman, M. (1994) Technology for Mitigation Stresses: Alternate Land Uses. In: Virmani, S.M., Katyal, J.C., Eswaran, H. and Abrol, I.P., Eds., Stressed Ecosystems and Sustainable Agriculture, Oxford and IBH Publishing Co. Pvt. Ltd, New Delhi, 291-305.
- Wani, S.P. and Lee, K.K. (1995) Microorganisms as Biological Inputs for Sustainable Agriculture. In: Thampan, P.K., Ed., Organic Agriculture, Peekay Tree Crops Development Foundation, Cochin, 39-76.
- Ramesh, P. (2008) Organic Farming Research in M.P. Organic Farming in Rainfed Agriculture. Central Institute for Dry Land Agriculture, Hyderabad, 13-17.