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Interactions within and between species at different densities of the bark beetleIps typographus and its predatorThanasimus formicarius
Authors:Jan Weslien
Institution:(1) Division of Forest Entomology, Swedish University of Agricultural Sciences, P.O. box 7044, S-750 07 Uppsala, Sweden
Abstract:Interactions between the bark beetleIps typographus and one of its predators,Thanasimus formicarius, were investigated in caged spruce logs containing both species in eight different density combinations. Productively (offspring per female) ofIps was adversely affected by highIps gallery density as well as highThanasimus density.Thanasimus productivity was enhanced by highIps gallery density but negatively affected by highThanasimus density.Ips productivity andThanasimus developmental rate differed between tree individuals, probably owing to tree-related differences in phloem thickness. Relative predator-causedIps mortality was ca 20% higher at high gallery density (ca 300 egg galeries per m2) than at low gallery density (ca 100 egg galleries per m2), indicating that mortality was density dependent. This difference was due to the fact thatThanasimus larval density was positively related toIps gallery density. Mortality increased by ca 0.4% with each additionalThanasimus larva per m2, independently of gallery density. Relative population levels ofIps andThanasimus were monitored with pheromone traps in two regions differing in theirIps typographus outbreak history. Absolute catch as well as theThanasimus/Ips catch ratio were ten times greater in the outbreak region than in the non-outbreak region. Coupled with the results in the caging experiment, this indicates thatT. formicarius responds numerically to changes inI. typographus numbers per unit bark area as well as toIps population changes at the regional level. The findings suggest that predation under bark may be a significant factor in supressingI. typographus outbreaks.
Keywords:Ips typographus                      Thanasimus formicarius            Scolytidae  Cleridae  predation  competition  density  dependence
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