Sensory Ecology of Arthropods Utilizing Plant Infochemicals
267
DeJong R, Visser JH (1988) Integration of olfactory information in the Colorado
potato beetle brain. Brain Research 44 7: 10-17
Dethier VG (1982) Mechanism of host-plant recognition. Entomol Exp Appl 31:
49-56
Dicke M ( 1999) Are herbivore-induced plant volatiles reliable indicators of
herbivore identity to foraging carnivorous arthropods? Entomol Exp Appl 91:
131-142
Dicke M (2000) Chemical ecology of host-plant selection by herbivorous
arthropods: a multitrophic perspective. Bioch Syst Ecol (in press)
Dicke M, Sabelis MW, De Jong M (1988) Analysis of prey preference of
phytoseiid mites as determined with an olfactometer, predation models and
electrophoresis. Exp Appl Acarol5: 225-241
Dicke M, Beek T A van, Posthumus MA, Ben Dom N, Bokhoven H van, Groot lE
de (1990) Isolation and identification of volatile kairomone that affects acarine
predator-prey interactions. Involvement of host plant in its production. J Chern
Ecol16: 381-396
Dicke M, Vet LEM (1999) Plant-carnivore interactions: evolutionary and
ecological consequences for plant, herbivore and carnivore. In: Olff H, Brown
VK, Drent RH (eds) Herbivores: Between Plants and Predators. The 38th
Symposium of the British Ecological Society. Blackwell Science, pp 483-520
Dickens JC (1990) Specialized receptor neurons for pheromone and host plant
odors in the boll weevil, Anthonomus grandis Boh. (Coleoptera: Curculionidae).
Chemical Senses 15: 311-331
Dickens JC (1999) Predator-prey interactions: Olfactory adaptations of generalist
and specialist predators. Agric Forest Entomol 1: 47-54
Du Y, Poppy GM, Powell W, Pickett JA, Wadhams LJ, Woodcock CM (1998)
Identification of semiochemicals released during aphid feeding that attract
parasitoid Aphidius ervi. J Chern Ecol24: 1355-1368
Geerv1iet JBF, Ariens S, Dicke M, Vet LEM (1998) Long-distance assessment of
patch profitability through volatile infochemicals by the parasitoids Cotesia
glomerata and C. rubecula (Hymenoptera: Braconidae). Bioi Contr 11: 113-121
Hansson BS, Larsson MC, Leal, WS (1999) Green leaf volatile detecting olfactory
receptor neurones display very high sensitivity and specificity in a scarab beetle.
Physiol Entomol24: 121-126
Harris MO, Foster SP (1995) Behavior and integration. In: Carde RT, Bell WJ
(eds) Chemical Ecology oflnsects 2. Chapman & Hall New York, pp 3-46
Hegnauer R (1962-1994) Chemotaxonomie der Pflanzen. Birkhiiuser, Basel
Honda I, Ishikawa Y, Matsumoto Y (1987) Electrophysiological studies on the
antenna! olfactory cells of the onion fly, Hylemya antiqua Meigen (Diptera,
Anthomyidae). Appl Entomol Zool22: 417-423
Jonsson M, Anderson P (1999) Electrophysiological response to herbivoreinduced host plant volatiles in the moth Spodoptera littoralis. Physiological
Entomology 24: 377-385
267
DeJong R, Visser JH (1988) Integration of olfactory information in the Colorado
potato beetle brain. Brain Research 44 7: 10-17
Dethier VG (1982) Mechanism of host-plant recognition. Entomol Exp Appl 31:
49-56
Dicke M ( 1999) Are herbivore-induced plant volatiles reliable indicators of
herbivore identity to foraging carnivorous arthropods? Entomol Exp Appl 91:
131-142
Dicke M (2000) Chemical ecology of host-plant selection by herbivorous
arthropods: a multitrophic perspective. Bioch Syst Ecol (in press)
Dicke M, Sabelis MW, De Jong M (1988) Analysis of prey preference of
phytoseiid mites as determined with an olfactometer, predation models and
electrophoresis. Exp Appl Acarol5: 225-241
Dicke M, Beek T A van, Posthumus MA, Ben Dom N, Bokhoven H van, Groot lE
de (1990) Isolation and identification of volatile kairomone that affects acarine
predator-prey interactions. Involvement of host plant in its production. J Chern
Ecol16: 381-396
Dicke M, Vet LEM (1999) Plant-carnivore interactions: evolutionary and
ecological consequences for plant, herbivore and carnivore. In: Olff H, Brown
VK, Drent RH (eds) Herbivores: Between Plants and Predators. The 38th
Symposium of the British Ecological Society. Blackwell Science, pp 483-520
Dickens JC (1990) Specialized receptor neurons for pheromone and host plant
odors in the boll weevil, Anthonomus grandis Boh. (Coleoptera: Curculionidae).
Chemical Senses 15: 311-331
Dickens JC (1999) Predator-prey interactions: Olfactory adaptations of generalist
and specialist predators. Agric Forest Entomol 1: 47-54
Du Y, Poppy GM, Powell W, Pickett JA, Wadhams LJ, Woodcock CM (1998)
Identification of semiochemicals released during aphid feeding that attract
parasitoid Aphidius ervi. J Chern Ecol24: 1355-1368
Geerv1iet JBF, Ariens S, Dicke M, Vet LEM (1998) Long-distance assessment of
patch profitability through volatile infochemicals by the parasitoids Cotesia
glomerata and C. rubecula (Hymenoptera: Braconidae). Bioi Contr 11: 113-121
Hansson BS, Larsson MC, Leal, WS (1999) Green leaf volatile detecting olfactory
receptor neurones display very high sensitivity and specificity in a scarab beetle.
Physiol Entomol24: 121-126
Harris MO, Foster SP (1995) Behavior and integration. In: Carde RT, Bell WJ
(eds) Chemical Ecology oflnsects 2. Chapman & Hall New York, pp 3-46
Hegnauer R (1962-1994) Chemotaxonomie der Pflanzen. Birkhiiuser, Basel
Honda I, Ishikawa Y, Matsumoto Y (1987) Electrophysiological studies on the
antenna! olfactory cells of the onion fly, Hylemya antiqua Meigen (Diptera,
Anthomyidae). Appl Entomol Zool22: 417-423
Jonsson M, Anderson P (1999) Electrophysiological response to herbivoreinduced host plant volatiles in the moth Spodoptera littoralis. Physiological
Entomology 24: 377-385
