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Classical biological control of the cassava green mite

Published online by Cambridge University Press:  19 September 2011

B. Megevand
Affiliation:
International Institute of Tropical Agriculture, Oyo Road, PMB 5320, Ibadan, Nigeria
J. S. Yaninek
Affiliation:
International Institute of Tropical Agriculture, Oyo Road, PMB 5320, Ibadan, Nigeria
D. D. Friese
Affiliation:
International Institute of Tropical Agriculture, Oyo Road, PMB 5320, Ibadan, Nigeria
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Abstract

A programme to control the cassava green mite (CGM), Mononychellus tanajoa, using classical biological control was initiated in 1983 as part of the Africa-wide Biological Control Programme (ABCP). Basic studies on the field ecology and biotic potential of CGM, and surveys of CGM and associated indigenous natural enemies found on cassava throughout Africa are being used to develop ecologically sound release and follow-up strategies. Applied work includes colony maintenance of exotic phytoseiids, development of methodologies for mass producing, transporting and releasing natural enemies, plus experimental releases and post-release surveys. Important parts of the work are being done in collaboration with several institutes and agencies, including foreign exploration and preliminary screening of exotic natural enemies, international quarantine services, regional release and follow-up surveys, taxonomy of CGM and phytoseiids, simulation modelling of CGM in the cassava ecosystem, artificial diets for transporting CGM natural enemies, survey of entomopathogens of CGM and predatory behaviour studies of exotic phytoseiids.

Résumé

Un programme de lutte contre Mononychellus tanajoa, l'acarien vert du manioc, fut lancé en 1983, dans le cadre du Programme africain de lutte biologique (Palb), sur base des techniques classiques de lutte biologique. Des études fondamentales sur l'écologie au champ et le potentiel biotique de l'acarien vert ainsi que des enquêtes sur l'acarien vert et les auxiliaires indigènes qui lui sont inféodés sur manioc furent menées à l'échelle du continent africain afin de concevoir des méthodes écologiquement saines de lâcher et de suivi. Les travaux pratiques ont porté sur le maintien des élevages de phytoséiides exotiques, la mise au point de méthodes de production de masse, de transport et de lâcher d'ennemis naturels, y compris les opérations de lâchers expérimentaux et les enquêtes postérieures aux lâchers. Des aspects importants de ces études sont réalisés en collaboration avec diverses institutions et agences, notamment les activités de prospection á l'étranger et de tri préliminaire des ennemis naturels exotiques, la mise en quarantaine à l'échelle internationale, les lâchers régionaux et enquêtes de suivi, la taxonomie de l'acarien vert et des phytoséiides, les modèles de simulation de l'acarien vert dans l'écosystème du manioc, l'alimentation artificielle pour le transport des ennemis naturels de l'acarien vert, l'étude des entomopathogènes de l'acarien vert ainsi que l'étude du comportement prédateur des phytoséiides exotiques.

Type
Symposium XI: Africa-wide Biological Control Programme of Cassava Pests
Copyright
Copyright © ICIPE 1987

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References

REFERENCES

Jeppson, L. R., Keifer, H. H. and Baker, E. W. (1975) Mites Injurious to Economic Plants. Univ. California Press, Berkeley.Google Scholar
McMurtry, J. A. (1982) The use of phytoseiids for biological control: Progress and future prospects. In Recent Advances in Knowledge of the Phytoseiidae (Edited by Hoy, M. A.), pp. 2248. Proceedings of a Formal Conference of Acarology Society of America held at Ent. Soc. Amer. Annual Meeting, Dec. 1981.Google Scholar
McMurtry, J. A. (1983) Phytoseiid predators in orchard systems: A classical biological control success story. In Biological Control of Pests by Mites (Edited by Hoy, M. A., Cunningham, G. L. and Knutson, L.), Proceedings of a Conference held at Univ. California, Berkeley, 5–7 April 1982.Google Scholar
McMurtry, J. A., Huffaker, C. B. and van de Vrie, M. (1970) Ecology of tetranychid mites and their natural enemies: A review. I. Tetranychid enemies: Their biological characters and the impact of spray practices. Hilgardia 40, 331390.CrossRefGoogle Scholar
Yaninek, J. S. (1985a) Field monitoring of CGM populations. Annual Report for 1984. International Institute of Tropical Agriculture, Ibadan, Nigeria, pp. 136138.Google Scholar
Yaninek, J. S. (1985b) Cassava green mites and the Africa-wide Biological Control Programme at IITA. IITA Research Briefs, September 1985, p. 2.Google Scholar
Yaninek, J. S. and Animashaun, A. (1986) Biotic potential of CGM. Annual Report for 1985, International Institute of Tropical Agriculture, Ibadan, Nigeria, pp. 5964.Google Scholar
Yaninek, J. S. and Bellotti, A. C. (in Press) Exploration for natural enemies of cassava green mites based on agrometeorological criteria. Paper presented at the World Meteorological Organization/International Institute of Tropical Agriculture Seminar on Agrometeorology and Crop Protection in the Lowland Humid and Subhumid Tropics, Cotonou, Benin, 7–11 July 1986.Google Scholar
Yaninek, J. S. and Herren, H. R. (in Press) Biological control of cassava pests with special reference to cassava green mites. In Proceedings of the Eastern and Southern Africa Regional Root Crop Workshop, Kampala, Uganda, 10–14 December 1984.Google Scholar