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Generalist caterpillar prey are more palatable than specialists for the generalist predator Iridomyrmex humilis

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Summary

Experiments are described which test the hypothesis that more host-specific species of caterpillars should be less aceptable to a generalist predator than polyphagous species. Caterpillars of all species were tested in paired choice tests with the Argentine ant, Iridomyrmex humilis. Experiments were replicated ten times, videotaped and later analyzed. Brightly colored specialist species (normally considered to be aposematic) were clearly the least palatable, while more cryptic specialists were also significantly less acceptable than generalists overall. Leaf-tying species were considered separately; all were highly palatable independent of host range. The results indicate that among caterpillars that do not construct leaf shelters, those with a wide post range are more acceptable than those with a narrow host range. This is consistent with the notion that generalist predators provide selection pressure favoring narrow host range in their herbivorous prey.

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References

  • Bernays EA (1984) Arthropods for weed control in IPM systems. In: MA Hoy and D Herzog (eds) Biological Control in IPM Systems. Academic Press, NY, pp 373–388

    Google Scholar 

  • Bernays EA (1988) Host specificity in phytophagous insects: selection pressure from generalist predators. Entomol Exp Appl 49:131–140

    Article  Google Scholar 

  • Bernays EA, Chapman RF (1987) Evolution of deterrent responses by phytophagous insects. In: RF Chapman, EA Bernays and JG Stoffolano (eds) Perspectives in Chemoreception and Behavior. Soringer, Berlin Heidelberg New York, pp 159–174

    Chapter  Google Scholar 

  • Bernays EA, Graham M (1988) On the evolution of host specificity in phytophagous arthropods. Ecology 69:886–892

    Article  Google Scholar 

  • Brower LP (1958) Bird predation and foodplant specificity in closely related procryptic insects. Am Nat 92:183–187

    Article  Google Scholar 

  • Chapman RF (1982) Chemoreception: the significance of receptor numbers. Adv Insect Physiol 16:247–356

    Article  CAS  Google Scholar 

  • Comins HN, Hassell MP (1987) The dynamics of predation and competition in patchy environments. Theor Pop Biol 32:393–421

    Article  Google Scholar 

  • Crawley MJ (1983) Herbivory Blackwells Oxford

    Google Scholar 

  • Damman H (1987) Leaf quality and enemy avoidance by larvae of a pyralid moth. Ecology 68:87–97

    Article  Google Scholar 

  • Dempster JP (1984) The natural enemies of butterflies. In The Biology of Butterflies (eds RSI Vane-Wright and PR Ackery) Academic Press, London, pp 97–104

    Google Scholar 

  • Feeny PP, Blau WS, Kareiva PM (1985) Larval growth and survivorship of the black swallowtail butterfly in central New York. Ecol Monogr 55:167–187

    Article  Google Scholar 

  • Futuyma DG, Philippi TE (1987) Genetic variation and variation in responses to host plants by Alsophila pometaria. Evolution 41:269–279

    Article  Google Scholar 

  • Hunter MD (1987) Opposing effects of spring defoliation on late season oak caterpillars. Ecol Entomol 12:373–382

    Article  Google Scholar 

  • Jones RE, Nealis VG, Ives PM, Scheermeyer E (1987) Seasonal and spatial variation in juvenile survival of the cabbage butterfly Pieris rapae: evidence for patchy density dependence. J Anim Ecol 56:723–738

    Article  Google Scholar 

  • Lawton JH (1986) The effect of parasitoids on phytophagous insect communities. In: Insect Parasitoids (eds J Waage, D Greathead) Academic Press, London, pp 265–287

    Google Scholar 

  • Levins R, Macarthur R (1969) An hypothesis to explain the incidence of monophagy. Ecology 50:910–911

    Article  Google Scholar 

  • Price PW (1981) Relevance of ecological concepts to practical biological control. In: Biological Control in Crop Production (Papavisas GC) (ed) Allenheld, Osmun Montclair New Jersey, pp 3–19

    Google Scholar 

  • Price PW (1983) Hypotheses on organization and evolution in herbivorous insect communities. In: Variable Plants and Herbivores in Natural and Managed Systems (Denno RF, McClure MS) (eds) Academic Press, NY, pp 559–598

    Google Scholar 

  • Scriber JM (1979) The effects of sequentially switching foodplants upon biomass and nitrogen utilization by polyphagous and stenophagous Papilio larvae. Ent Exp Appl 25:203–214

    Article  Google Scholar 

  • Shaw PB, Owens JKC, Huddleston EW, Richman DB (1987) Role of arthropod predators in mortality of early instars of the range caterpillar, Hemileuca oliviae (Lepidoptera: Saturniidae). Environ Ent 16:814–820

    Google Scholar 

  • Slansky F, Rodriguez JG (1987) eds. Nutritional Ecology of Insects, Mites, Spiders and Related Invertebratres. Wiley & Sons NY p 1016

    Google Scholar 

  • Warrington S, Whittaker JB (1985) An experimental field study of different levels of insect herbivory induced by Formica rufa predation on sycamore (Acer pseudoplatanus). 1. lepidoptera larvae. J Appl Ecol 22:775–785

    Article  Google Scholar 

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Bernays, E.A., Cornelius, M.L. Generalist caterpillar prey are more palatable than specialists for the generalist predator Iridomyrmex humilis . Oecologia 79, 427–430 (1989). https://doi.org/10.1007/BF00384324

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  • DOI: https://doi.org/10.1007/BF00384324

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