<i>In Vitro</i> Antifungal Efficacies of Maize Associated Microorganisms
- 1 Department of Biological Sciences, Microbiology Unit, Afe Babalola University, Ado-Ekiti, Nigeria
- 2 Department of Microbiology, Federal University of Technology, Akure, Nigeria
- 3 Department of Microbiology, Federal University of Technology, Akure, Nigeria
Abstract
Microorganisms (bacteria and fungi) were isolated from different parts of yellow maize (stem, cob, husk, leaf, root) as well as from rhizosphere and non-rhizosphere soil of maize using conventional microbiological techniques. A total number of twenty-six bacteria and thirteen fungi were isolated. The antagonistic efficacies of these isolates were tested against Sclerotium rolfsii , Aspergillus repens , Penicillium notatum and Pythium sp. using streak bioassay, food poisoning and dual culture techniques. None of the bacteria was antagonistic to the test fungi at 25 ° C on PDA using streak bioassay. However, there was reduction in the population density of the test fungi using food poisoning technique. The fungal isolates were antagonistic to the test fungi in varying degrees. Generally, S . rolfsii was susceptible to seven out of the eight fungal antagonists while P . notatum was least susceptible. The percentage reduction of S . rolfsii ranged from 40.00 ± 5.78 to 64.07 ± 2.31. Efficacies of chemical fungicides; mancozeb, camazeb and red force at 3 different concentrations— 0.05%, 0.1% and 1.0% (w/v) on the test fungi were also determined. No growth of the test fungi was observed at 1% (w/v) of all the fungicides while at lower concentration (0.05%), red force did not have any inhibitory effect. The growth of S . rolfsii was completely inhibited at 0.05% of mancozeb whereas there was reduction in mycelial growth of A . repens . Effect of inoculation time and nutrients (PDA and MEA) was determined on the antagonistic activities of Trichoderma viride . There were significant differences in inhibitory potentials of the two isolates of Trichoderma viride when pre-inoculated on the culture medium. The antagonistic potentials were more pronounced on malt extract agar than potato dextrose agar.
- Vogt, V., Cravero, C., Tonn, C., Sabini, L. and Rosas, S. (2010) Verbascum Thapsus: Antifungal and Phytotoxic Properties. IDECEFYN, 20, 105-108.
- Nguyen, V.N., Nguyen, D.M.C., Seo, D.J., Park, R.D. and Jung, W.J. (2009) Antimycotic Activities of Cinnamon-Derived Compounds against Rhizoctonia solani in Vitro. BioControl, 54, 697-707. http://dx.doi.org/10.1007/s10526-009-9220-2
- Gerhardson, B. (2002) Biological Substitutes for Pesticides. Trends in Biotechnology, 20, 338-343. http://dx.doi.org/10.1016/S0167-7799(02)02021-8
- Daayf, F., Adam, L. and Fernando, W.G.D. (2003) Comparative Screening of Bacteria for Biological Control of Potato Late Blight (Strain US-8) Using in Vitro, Detached Leaves and Whole Plant Systems. Canadian Journal of Plant Pathology, 25, 276-284. http://dx.doi.org/10.1080/07060660309507080
- Gnanimanicakam, S., Ed. (2007) Plant-Associated Bacteria. Springer, New York.
- Li, B.C. and Sutton, J.C. (1995) Evaluation of Leaf-Associated Microorganisms for Biocontrol of Tan Spot in Wheat Foliage. Fitopatologia Brasileira, 20, 545-552.
- Manjula, K., Mwangi, M. and Bandyopadhyay, R. (2005) Potential of Some Bacteria and Fungi as Biocontrol Agents of Cassava and Yam Tuber Rot Pathogens under Laboratory and Green House Conditions. African Crop Science Conference Proceedings, 7, 1395-1400.
- Adetuyi, F.C. (1985) Studies on Microorganisms Endemic to Cereal Seeds. Ph.D. Thesis, University of London, London, 143-183.
- Bhaskar, C., Pandey, A., Palni, L.M.S., Trivedi, P., Kumar, B. and Colvin, N. (2005) Diffusible and Volatile Compounds Produced by an Antagonistic Bacillus subtilis Strain Cause Structural Deformations in Pathogenic Fungi in Vitro. Microbiological Research, 160, 75-81. http://dx.doi.org/10.1016/j.micres.2004.09.013
- Caldari Jr., P. (1998) Morphological Characterization, Sensitivity to Fungicides and Sporulation of Botrytis cinerea Isolates of Flowers and Ornamental Plants. Dissertation (Master in Plant Pathology), School of Agriculture Luiz de Queiroz, Universidade de Sao Paulo, Piracicaba. In: De Figueirêdo, G.S., De Figueirêdo, L.C., Cavalcanti, F.C.N., Dos Santos, A.C., Da Costaand, A.F. and De Oliveira, N.T., Eds., Biological and Chemical Control of Sclerotinia sclerotiorum Using Trichoderma spp. and Ulocladium atrum and Pathogenicity to Bean Plants, Brazilian Archives of Biology and Technology, 53, 1-9.
- Gomathi, S. and Ambikapathy, V. (2011) Antagonistic Activity of Fungi against Pythium debaryanum Hesse) Isolated from Chilli Field Soil. Advances in Applied Science Research, 2, 291-297.