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Effectiveness and profitability of integrated pest management for improving yield on smallholder cocoa farms in Ghana

Published online by Cambridge University Press:  01 March 2007

E.N.A. Dormon*
Affiliation:
Communication and Innovation Studies Group, Wageningen University, The Netherlands
A. van Huis
Affiliation:
Laboratory of Entomology, Wageningen University, The Netherlands
C. Leeuwis
Affiliation:
Communication and Innovation Studies Group, Wageningen University, The Netherlands
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Abstract

Many pests, especially capsid bugs, infest cocoa and contribute to low yields in producing countries. In Ghana, synthetic pesticides are recommended for controlling the insect pests, and a combination of synthetic pesticides and cultural practices for diseases and weeds. However, the farmers in Ghana are not motivated to adopt these recommendations due to the high cost of pesticides and low producer prices. There is also concern that use of synthetic pesticides on a wide scale can affect both human health and the environment. With the objective of improving cocoa yields through environmentally friendly pest control practices, evaluation of an integrated pest management (IPM) package based on aqueous neem (Azadirachta indica A. Juss.) seed extracts to control the insect pests and cultural practices to manage the diseases, weeds and parasitic plants was undertaken in farmers' fields with their active participation. The IPM package improved yields significantly and was found to be more profitable than the farmers' practices. However, there are two major constraints to adoption of the package by farmers: it is labour-intensive and currently, neem is not readily available to the community. The study recommends that these constraints must be tackled to motivate the farmers to adopt or adapt the IPM package.

Type
Research Paper
Copyright
Copyright © ICIPE 2007

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References

Abenyega, O. and Gockowski, J. (2001) Labour Practices in the Cocoa Sector of Ghana with Special Focus on the Role of Children: Findings From a 2001 Survey of Cocoa Producing Households. Report of a survey carried out for the sustainable tree crop project (STCP) in West Africa. International Institute of Tropical Agriculture.Google Scholar
Achimu, P. and Schlösser, E. (1992) Effect of neem extracts (Azadirachta indica A. Juss) against downy mildew (Plasmopara viticola) of grapevine, pp. 99107. In Proceedings of the 1st Workshop on Practice Oriented Results on Use and Production of Neem-Ingredients (Edited by Kleeberg, H.). Druck und Graphic, Giessen, Germany.Google Scholar
Acquaah, B. (1999) Cocoa development in West Africa: the early period with particular reference to Ghana. Ghana Universities Press, Accra. 187 pp.Google Scholar
Adu-Acheampong, R. (1997) Laboratory and field evaluation of neem (Azadirachta indica, Juss) for the management of cocoa mirids (Heteroptera: Miridae). MPhil thesis, Submitted to the University of Ghana.Google Scholar
Akrofi, A. Y., Appiah, A. A. and Opoku, I. Y. (2003) Management of Phytophthora pod rot disease on cocoa farms in Ghana. Crop Protection 22, 469477.CrossRefGoogle Scholar
Anon. (2000) Review and evaluation of the 5-year District Development Plan; profile of Suhum–Kraboa–Coalter District. Draft report. Unpublished government document, 144 pp.Google Scholar
Asante, E. G., Baah, F. and Adu-Acheampong, R. (2002) Preliminary report on monitoring of the mass spraying of cocoa in the Eastern Central and Ashanti Regions, Unpublished report of the Cocoa Research Institute of Ghana, Tafo, Ghana.Google Scholar
Dakwa, J. T. (1984) Nationwide black pod survey: joint CRIG/cocoa production division project, pp. 78–83. In Managing Phytophthora megakarya Pod Rot Disease: The Ghana Experience. Proceedings of INCOPED 3rd International Seminar, 16–17 October, 2000 (Edited by Akrofi, A. Y. and Opoku, I. Y.). Kota kinabalu, Sabah, Malaysia.Google Scholar
Dakwa, J. T. (1987) A serious outbreak of black pod disease in a marginal area of Ghana, pp. 447451. In Proceedings of the 10th International Cocoa Research Conference, Santo Domingo, Dominican Republic, 17–23 May 1987 (Edited by Machado, R. C. R., Tetteh, E. K., Adegbola, M. O. K. and Bonaparte, E. E. N. A.) International Cocoa Organization.Google Scholar
Dormon, E. N. A., van Huis, A., Leeuwis, C., Obeng-Ofori, D. and Sakyi-Dawson, O. (2004) Causes of low productivity of cocoa in Ghana: farmers' perspectives and insights from research and the socio-political establishment. NJAS–Wageningen Journal of Life Sciences 52, 237–259.CrossRefGoogle Scholar
Dormon, E. N. A., Leeuwis, C., Fiadjoe, F. Y., Sakyi-Dawson, O. and van Huis, A. (in press) Creating space for innovation: the case of cocoa production in the Suhum–Kraboa–Coalter District of Ghana. International Journal of Agricultural Sustainability.Google Scholar
Duindam, J. (2006) Exploring the Use of Neem Formulations in Cocoa Pest and Disease Management in Ghana. Research report submitted to the Laboratory of Entomology. Wageningen University.Google Scholar
Gallagher, K. (1998) Effects of host resistance on the micro-evolution of the rice brown planthopper, Nilaparvata lugens (Stal.). PhD Dissertation, University of California, Berkeley, USA.Google Scholar
Gerken, A., Suglo, J. and Braun, M. (2001) Crop Protection Policy in Ghana. ICP/MoFA, Pokoase, Ghana.Google Scholar
Henderson, C. P., Asante, E. G., Donkor, M. A., Ameyaw, K. O., Luterbacher, M. C., Akrofi, A. Y. and Boakye, P. D. (1994) Farmer Managed Fungicide Trials (Volta and Brong-Ahafo Regions). Report of the Cococa Research Institute of Ghana, 1991/1992, pp. 70–76.Google Scholar
Humado, K. (1999) Baseline Study of on Cocoa Extension in Accra, Ghana. Directorate of Agricultural Extension Services, Ministry of Food and Agriculture, Ghana.Google Scholar
Jones, P. S., Ley, S. V., Morgan, E. D. and Santafianos, D. (1989) The chemistry of the neem tree, pp. 19–45. In Focus on Phytochemical Pesticides. Vol. 1. The Neem Tree (Edited by Jacobson, M.). CRC Press, Boca Raton, Florida.Google Scholar
Lass, T. (2004) Balancing cocoa production and consumption, pp. 8–15. In Cocoa Futures. A source book of some important issues confronting the cocoa industry (Edited by Flood, J. and Murphy, R.). The Commodities Press, Cenicafé, Colombia/CAB International, UK.Google Scholar
Leston, D. (1970) Entomology of the cocoa farm. Annual Review of Entomology 15, 273294.CrossRefGoogle Scholar
Locke, J. C. (1990) Activity of certain oils against foliar fungal pathogens. Phytopathology 80, 978984.Google Scholar
Locke, J. C. (1995) Effect of neem-derived compounds on fungi, pp. 118–126. In The Neem Tree: Source of Unique Natural Products for Integrated Pest Management, Medicine, Industry and Other Purposes (Edited by Schmutterer, H.). VCH Publishers, Weinheim, New York, Basel, Cambridge, Tokyo.Google Scholar
Lowery, D. J., Isman, M. B. and Brard, N. L. (1993) Laboratory and field evaluation of neem for the control of aphids (Homoptera: Aphididae). Journal of Economic Entomology 86, 864870.CrossRefGoogle Scholar
Luck, R. F., van den Bosch, R. and Garcia, R. (1977) Chemical insect control–a troubled pest management strategy. Bioscience 27, 606–611.CrossRefGoogle Scholar
MoF [Ministry of Finance, Accra, Ghana] (1999) Ghana Cocoa Sector Development Strategy. Unpublished government policy document. 94 pp..Google Scholar
MoF [Ministry of Finance, Accra, Ghana] (2002) Internal Memo. Unpublished internal government document. 6 pp..Google Scholar
National Research Council (1992) Neem: A Tree For Solving Global Problems. National Academy Press, Washington, DC. 141 pp.Google Scholar
Opoku, I. Y., Akrofi, A. Y. and Afrifa, A. A. (1997) The spread of P. megakarya on cocoa in Ghana, pp. 98-107. In Proceedings of the 1st International Cocoa Pests and Disease Seminar, 6–10 November 1995, Accra, Ghana. Cocoa Research Institute of Ghana, Tafo, Ghana.Google Scholar
Owusu-Manu, E. (1977) Distribution and abundance of the cocoa shield bug, Bathycoelia thalassina (Hemiptera: Pentatomidae) in Ghana. Journal of Applied Ecology 14, 331–341.CrossRefGoogle Scholar
Owusu-Manu, E. (1990) Feeding behaviour and the damage caused by Bathycoelia thalassina (Hemiptera: Pentatomidae). Café, Cacao, Thé 34, 97–104.Google Scholar
Owusu-Manu, E. (1997) Application techniques and equipment for effective control of cocoa mirids in Ghana, pp. 57–62. In 1st International Cocoa Pest and Disease Seminar, 6–10 November 1995, Accra, Ghana. (Edited by G. K. Owusu, B. Padi, E. Ollennu and E. Owusu), Cocoa Research Institute of Ghana, Tafo, Ghana.Google Scholar
Padi, B. (1997) Prospects for the control of cocoa capsids– Alternatives to chemical control, pp. 28–36. In Proceedings of the Cocoa Pests and Diseases Seminar, 6–10 November 1995, Accra, Ghana. (Edited by G. K. Owusu, B. Padi, E. Ollennu and E. Owusu), Cocoa Research Institute of Ghana, Tafo, Ghana.Google Scholar
Padi B. (undated) Mirids on cocoa in Ghana. A contributed integrated pest management paper. http://www.oardc.ohio-state.edu/cocoa/capsids.htm, last accessed 26th September 2004..Google Scholar
Padi, B. and Owusu, G. K. (1998) Towards an integrated pest management for sustainable cocoa production in Ghana, p. 42. In Proceedings of the 1st Sustainable Cocoa Workshop, 20 March to 3 April 1998, Panama.Google Scholar
Padi, B., Adu-Acheampong, R., Asamoah, M., Aneani, F., Baah, F. and Tamakloe, M. K. (2003) Screening of neem extracts for the control of cocoa capsids (Heteroptera: Miridae), pp. 44–52. In Proceedings of INCOPED 4th International Seminar, Accra, Ghana (Edited by Akrofi, A. Y., Ackonor, J. B. and Ollennu, L. A. A.). Cocoa Research Institute of Ghana, Tafo, Ghana.Google Scholar
Panizzi, A. R. (1997) Wild hosts of pentatomids: ecological significance and role in their pest status on crops. Annual Review of Entomology 42, 99122.CrossRefGoogle ScholarPubMed
Prakash, A. and Rao, J. (1997) Botanical Pesticides in Agricul-ture. Lewis Publishers, London and New York. 480 pp.Google Scholar
Rice, M. (1993) Built-in resistance prevention (BIRP): a valuable property of azadiractin, pp. 13–14. In The World Neem Conference, Bangalore, India.Google Scholar
Schmutterer, H. (1990) Properties and potential of natural pesticides from the neem tree, Azadirachta indica. Annual Review of Entomology 35, 271297.CrossRefGoogle ScholarPubMed
Schmutterer, H. (1995) The Neem Tree. Source of Unique Natural Products for Integrated Pest Management, Medicine, Industry and Other Purposes. VCH Publishers, Weinheim, New York, Basel, Cambridge, Tokyo.Google Scholar
Schmutterer, H. (1998) Target pests for application of home-made and commercial neem products. The potentials of the neem tree in Ghana, pp. 42–47. In Proceedings of a Seminar held in Dodowa, Ghana, October, 1998, organized by the Goethe Institute and the University of Ghana. GTZ, Eschborn, Germany.Google Scholar
Schmutterer, H. (2002) Side effects on beneficials, pp. 628656. In The Neem Tree. Source of Unique Natural Products for Integrated Pest Management, Medicine, Industry And Other Purposes (Edited by Schmutterer, H.). VCH Publishers, Weinheim.Google Scholar
Schmutterer, H. and Hellpap, C. (1989) Effects of neem on pests of vegetables and fruit trees, pp. 6996. In Focus on Phytochemical Pesticides Vol. 1. The Neem Tree (Edited by Jacobson, M.). CRC Press, Boca Raton, Florida.Google Scholar
Singh, U., Singh, H. B. and Singh, R. B. (1980) The fungicidal effect of neem (Azadirachta indica) extracts on some soil-borne pathogens of gram (Cicer arietinum). Mycologia 72, 10771093.CrossRefGoogle Scholar
Soberanis, W., Rios, R., Arevalo, E., Zuniga, L., Cabezas, U. and Krauss, U. (1999) Increased frequency of phytosanitary pod removal in cacao (Theobroma cacao) increases yield economically in eastern Peru. Crop Protection 18, 677685.CrossRefGoogle Scholar
Tripp, R. (2006) Self-Sufficient Agriculture: Labour and Knowledge in Small-Scale Farming. Earthscan Sterling, London. 242 pp.Google Scholar
van den Bosch, R. (1980) The Pesticide Conspiracy. Anchor Press, New York. 226 pp.Google Scholar
van Huis, A. (1992) Brotes de plagas inducidas por plaguicidas: una revision. Revista de la Escuela de Sanidad Vegetal (UNA), Managua 2, 9–24.Google Scholar
Waibel, H. (1994) Towards an economic framework of pesticide policy studies, pp. 1–10. In Proceedings of the Gottingen Workshop on Pesticide Policies, (Edited by Agne, S., Fliescher, G. and Waibel, H.). Gottinger Schriften zur Agrarokonomie, vol. 66. University of Gottingen, Germany.Google Scholar
Wilson, K. C. (1999) Coffee, Cocoa and Tea. CAB International, Wallingford, Oxon. 300 pp.CrossRefGoogle Scholar
Wood, G. A. R. and Lass, R. A. (1985) Cocoa. 4th edn. Longman Scientific and Technical, London. 620 pp.Google Scholar