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Population dynamics of herbivorous insects and potential arthropod natural enemies on Alnus species in Kabale district, Uganda

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Abstract

Monitoring populations of pests and their natural enemies under different management situations and seasonal weather parameters provides extremely useful information for taking preventive measures against pest outbreaks. The abundance, spatial and temporal distributions of herbivorous insects and arthropod natural enemies on Alnus species were monitored at four sites in Kabale district, Uganda between June 1999 and August 2000. Chewing insects, dominated by Coleoptera (75%), constituted the majority of insect herbivores sampled. Dominant and potentially serious pests of Alnus included Apion globulipenne, an unidentified Chrysomelidae (Coleopt. 27), Phymateus viridipes, Coloborrtics corticina and a Cacopsylla species (Homoptera: Psyllidae). Spiders were the predominant natural enemies accounting for 64% of the total natural enemies encountered, followed by parasitic Hymenoptera (30%). There were marked spatial and temporal variations in arthropod abundance. Among sites, mean abundance of total insect herbivores and total natural enemies on A. acuminata over 15 months ranged from 3.8–8.5 and 3.3–4.7 individuals per 1-m branch length respectively. Over the same period, mean number of total insect herbivores and total natural enemies on A. nepalensis that was studied at only one site were 11.9 herbivores and 4.2 natural enemies per 1-m branch length. Populations of most insect orders increased in the wet season although the greatest herbivore abundance was evident in the dry season. Further studies are necessary on the impact and management strategies of the potentially important insect pests and natural enemies on Alnus.

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References

  • Boa E.R. and Bentley J. 1998. Tree health: the Bolivia experience. Trop For Update 8(1): 16-17.

    Google Scholar 

  • Borror D.J., Triplehorn C.A. and Johnson N.F. 1989. An introduction to the study of insects. Harcourt Brace College Publishers, New York, USA, 875 pp.

    Google Scholar 

  • Denlinger D.L. 1980. Seasonal and annual variation of insect abundance in the Nairobi national park, Kenya. Biotropica 12(2): 100-106.

    Google Scholar 

  • Dhyani S.K. 1998. Tribal alders: an agroforestry system in the north eastern hills of India. Agroforestry Today 10(4): 14-15.

    Google Scholar 

  • Fensham R.J. 1994. Phytophagous insect-woody sprout interactions in tropical eucalypt forest. I. Insect herbivory. Aust J Ecol 19: 178-188.

    Google Scholar 

  • Kitching R.L., Bergelson J.M., Lowman M.D., McIntyre S. and Carruthers G 1993. The biodiversity of arthropods from Australian rainforest canopies: general introduction, methods, sites and ordinal results. Aust J Ecol 18: 181-191.

    Google Scholar 

  • Maiteki G. and Owera S. 1996. A report on the health problems of agroforestry tree species at Kifu and Kabale. th edn. AFRENA Project, Uganda, 18 pp.

    Google Scholar 

  • Majer J.D., Recher H. and Keals N. 1996. Branchlet shaking: a method for sampling tree canopy arthropods under windy conditions.Aust J Ecol 21: 229-234.

    Google Scholar 

  • Minitab Inc 2000. Minitab statistical package. Minitab for windows, release 13.1.

  • National Academy of Science 1980. Firewood Crops: shrub and tree species for energy production. Washington: Report of an ad hoc panel of the advisory Committee on Technology Innovation Board on Science and Technology for International Development Commission on International Relations, 236 pp. National Academy of Sciences, Washington, D. C., USA.

    Google Scholar 

  • Neil P.E. 1997. Alnus Miller. In: Faridah Hanum I. and van der Maesen L.J.G. (eds), Plant Resources of South-East Asia No. 11. Auxiliary Plants. Backhuys Publishers, Leiden, the Netherlands, pp. 68-71.

    Google Scholar 

  • Nyeko P. 2001. The diversity and impact of herbivorous insects and pathogens on Alnus species in Uganda: a challenge in agroforestry, 287 pp. PhD Dissertation, University of Wales, Bangor, UK.

    Google Scholar 

  • Ohmart C.P., Stewart L.G. and Thomas J.R. 1983. Phytophagous insect communities in the canopies of three Eucalyptus forest types in southeastern Australia. Aust J Ecol 8: 395-403.

    Google Scholar 

  • Okorio J., Byenkya S., Wajja N. and Peden G. 1994. Comparative performance of seventeen upperstorey tree species associated with crops in the highlands of Uganda. Agrofor Syst 26(3): 185-203.

    Google Scholar 

  • Rao M.R., Singh M.P. and Day R. 2000. Insect problems in tropical agroforestry systems: contributory factors and strategies for management. Agrofor Syst 50(3): 243-277.

    Google Scholar 

  • Roux J. 1999. Pathology survey of plantation forest trees in southern Uganda. Report prepared for Ugandan forestry department and South African forestry department 30 pp. Tree pathology cooperate programme, University of Pretoria, South Africa.

    Google Scholar 

  • Russo R.O. 1995. Alnus Acuminata ssp. arguta, a valuable resource for neutropical highlands. In: Evans D.O. and Szott L.T. (eds), Nitrogen Fixing Trees for Acid Soils. Proceedings of a workshop held on 3-8, 1994, Turialba, Costa Rica. Nitrogen fixing tree research reports, special issue, pp. 156-163.

  • Rwabwoogo M.O. 1997. Uganda districts information handbook. 4th edn. Fountain Publishers, Kampala, Uganda, 134 pp.

    Google Scholar 

  • Schowalter T.D. 1994. Invertebrate community structure and herbivory in a tropical rain forest canopy in Puerto Rico following hurricane hugo. Biotropica 26(3): 312-319.

    Google Scholar 

  • Schowalter T.D. and Crossley D.A. 1987. Canopy arthropods and their response to forest disturbance. In: Swnak W.T. and Crossley D.A. (eds), Forest Hydrology and Ecology at Coweeta. Springer-Verag, New York, USA, pp. 207-218.

    Google Scholar 

  • Sileshi G., Maghembe J.A., Rao M.R., Ogol C.K.P.O. and Sithanantham S. 2000. Insects feeding on Sesbania species in natural stands and agroforestry systems in southern Malawi. Agrofor Syst 49: 41-52.

    Google Scholar 

  • Southwood T.R.E. 1987. Ecological methods with particular reference to the study of insect populations. 2nd edn. Chapman and Hall, New York, USA, 524 pp.

    Google Scholar 

  • Walter G.H. and Parry W.H. 1994. Insect pests of forage tree legumes: Biology and non-chemical control. In: Gutteridge R.C. and Shelton H.M. (eds), Forage Tree Legumes in Tropical Agriculture. CAB International, London, pp. 309-321.

    Google Scholar 

  • Wolda H. 1978. Seasonal fluctuations in rainfall, food and abundance of tropical insects. J Anim Ecol 47: 369-381.

    Google Scholar 

  • Wotherspoon K.P. 1998. Patterns of phytophagous insect herbivory and abundance on juvenile regrowth of Eucalyptus subgenera coexisting in southeastern Tasmania. Aust J Ecol 23(23): 430-442.

    Google Scholar 

  • van Houten H. 1997. International centre for research in agroforestry (ICRAF). annual report 1996, 340 pp. ICRAF, Nairobi, Kenya.

    Google Scholar 

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Nyeko, P., Edwards-Jones, G. & Day, R. Population dynamics of herbivorous insects and potential arthropod natural enemies on Alnus species in Kabale district, Uganda. Agroforestry Systems 56, 213–224 (2002). https://doi.org/10.1023/A:1021376414975

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