Effects of Manual, Cultural, Botanical and Chemical Treatments of Termite Control in Hamelmalo Agricultural College Area
- 1 Department of Plant Protection, Hamelmalo Agricultural College, Keren, Eritrea
- 2 Department of Plant Protection, Hamelmalo Agricultural College, Keren, Eritrea
- 3 Department of Plant Protection, Hamelmalo Agricultural College, Keren, Eritrea
- 4 Department of Plant Protection, Hamelmalo Agricultural College, Keren, Eritrea
- 5 Department of Plant Protection, Hamelmalo Agricultural College, Keren, Eritrea
Abstract
Termites are the most serious pests of field and horticultural crops, forests, and wooden household furniture. In Hamelmalo Agricultural College (HAC) the infestation of termite is very high resulting in great destruction of crop plants and wooden office and dormitory furniture. The devastating attack of termites should be managed by using best and ecofriendly management method. The purpose of the study was to compare the effectiveness of manual destruction of mounds and killing of termite queen and king, chemical chlorpyrifos, seed and leaves extract of neem and Lantana (as separate experiment) and smoke on termite control. Termite mounds were selected randomly inside HAC compound. The materials used were hand hoe, spade, fork, water, 20 L jar and protective clothes. The treatments were replicated three times. The botanical treatments were prepared at 2 L of highly concentrated extracts per 20 L of water each. Chlorpyrifos was applied at 20 ml per 20 L of water. Dried woody plants were used for smoke treatment. Careful digging was done to avoid king escape and queen rupture and they were killed by burning. Among all, the mechanical destruction and killing of king and queen and chlorpyrifos resulted in a complete control of the termite population. Except in the mounds treated by chlorpyrifos, the activity of termite population was very active and they closed the opened galleries immediately after treatment even though there were dead termite castes in all treatments. Living termite castes were counted by taking a medium size spade of broken mound pieces. The highest count was recorded from mounds treated by smoke. After two weeks the queen and king in every treatment mound were cheeked and killed for those who were alive. Except by the chlorpyrifos and manual destruction of mound (king and queen were killed before) all the royal families were alive and killed. Controlling of termite population in the field (outside their mound) is not possible due to the hidden foraging activity of termites, environmental safety from chemicals and the high egg laying potential of the queen. Finding the best alternative to control from their source mound for the mound building termites resulted in effective control of the population by manual destruction of mounds and killing of queen and king and chlorpyrifos. By the side effect of chlorpyrifos to untargeted organisms and the time consuming and laborious method of manual destruction of mounds, selection to the best from these two control measure is almost the same.
- Harris, W.V. (1961) Termites: Their Recognition and Control. Longmans, London.
- Hill, D.S. (1990) Pests of Stored Products and Their Control. Belhaven Press, London, 53-59.
- Grzimek, B. (2003) Animal Life Encyclopedia. Insect, 2, 130-155.
- Maniania, N.K., Ekesi, S. and Songa, J.M. (2002) Managing Termites in Maize with the Entomopathogenic Fungus Metarhizium anisopliae. Insect Science and Its Application, 22, 41-46. https://doi.org/10.1017/S1742758400015046
- Abdurahman, A. (1990) Foraging Activity and Control of Termites in Western Ethiopia. University of London, London.
- Eden, T. (1965) Tea. 2nd Edition, Longmans, Green and Co., London, 132-133.
- Lapage, M.G. (1981) The Impact of Foraging Populations of Macroterms michaelseni (Sjostadt) (Isoptera: Macrotermitinae) on Semi-Arid Ecosystem (kajiads Kenya) I—Foraging Activity and Factors Determining It. Insects Sociaux, 28, 297-308. https://doi.org/10.1007/BF02223630
- Avitabile, S.C., Nimmo, D.G., Bennett, A.F. and Clarke, M.F. (2015) Termites Are Resistant to the Effects of Fire at Multiple Spatial Scales. PLoS ONE, 10, e0140114. https://doi.org/10.1371/journal.pone.0140114
- Donald, M.C. and Harness, (1968) Aflatoxin in the Groundnut Crop at Harvest in Northern Nigeria. Tropical Science, 8, 148-161.
- Blackburn, F. (1984) Sugarcane. Longman, New York.
- Johnson, R.A. and Gumel, M.H. (1991) Termites Damage and Crop Loss Studies in Nigeria—The Incidence of Termites Scarified Groundnut Pods and Resulting Kernel Contamination in Field and Market Studies. Tropical Pest Management, 27, 343-350.
- Maayiem, D., Nuoleyeng, B.B. and Oscar, A.I. (2012) Indigenous Knowledge of Termite Control: A Case Study of Five Farming Communities in Gushegu District of Northern Ghana. Journal of Entomology and Nematology, 4, 58-64.
- Coulson, N.R. and Witter, J.A. (1984) Forest Entomology, Ecology and Management USA. Wiley Interscience Publication, Hoboken.
- Singh, S.R. (1990) Insect Pest of Tropical Food Legumes. John Wiley and Sons, New York, 249-260.
- Lapage, M.G. (1981) The Impact of Foraging Populations of Macroterms michaelseni (sjostadt) Isoptera: Macrotermitinae in Semi-Arid Ecosystem (Kajiads Kenya) II—Food Gathered in Comparison in with Large Herbivores. Insects Sociaux, 28, 309-379. https://doi.org/10.1007/BF02224188