Abrams PA (1995) Implications of dynamically variable traits for identifying, classifying, and measuring direct and indirect effects in ecological communities. Am Nat 146:112–134
Article
Google Scholar
Addicott JF (1978) The population dynamics of aphids on fireweed: a comparison of local populations and metapopulations. Can J Zool 56:2554–2564
Google Scholar
Adler FR, Grunbaum D (1999) Evolution of forager responses to inducible defenses. In: Tollrian R, Harvell CD (eds) The ecology and evolution of inducible defenses. Princeton University Press, Princeton, N.J., pp 259–285
Bänsch R (1964) Vergleichende Untersuchungen zur Biologie und zum Beutefangverhalten aphidivorer Coccinelliden, Chrysopiden und Syrphiden. Zool Jb Syst 91:271–340
Google Scholar
Chambers RJ (1988) Syrphidae. In: Minks AK, Harrewijn P (eds) Aphids, their biology, natural enemies and control, vol B. Elsevier, Amsterdam, pp 259–270
Clegg JM, Barlow CA (1982) Escape behaviour of the pea aphid Acyrthosiphon pisum (Harris) in response to alarm pheromone and vibration. Can J Zool 60:2245–2252
Google Scholar
Diehl S, Cooper SD, Kratz KW, Nisbet RM, Roll SK, Wiseman SW, Jenkins TM (2000) Effects of multiple, predator-induced behaviors on short-term producer-grazer dynamics in open systems. Am Nat 156:293–313
Article
Google Scholar
Dixon AFG (1998) Aphid ecology. Chapman and Hall, London
Dixon AFG, Agarwala BK (1999) Ladybird-induced life history changes in aphids. Proc R Soc Lond B 266:1549–1553
Article
Google Scholar
Gries G (1986) Zum Beutefangverhalten der Schwebfliegenlarve Syrphus balteatus Deg. (Diptera, Syrphidae). J Appl Entomol 102:309–313
Google Scholar
Hindayana D, Meyhöfer R, Scholz D, Hans-Michael Poehling H-M (2001) Intraguild predation among the hoverfly Episyrphus balteatus de Geer (Diptera: Syrphidae) and other aphidophagous predators. Biol Contr 20:236–246
Article
Google Scholar
Ives AR, Dobson AP (1987) Antipredator behaviour and the population dynamics of simple predator-prey systems. Am Nat 130:431–447
Article
Google Scholar
Kawada K (1987) Polymorphism and morph determination. In: Minks AK, Harrewijn P (eds) Aphids, their biology, natural enemies and control, vol A., Elsevier, Amsterdam, pp 299–314
Krivan V (1998) Effects of optimal antipredator behavior of prey on predator-prey dynamics: the role of refuges. Theor Pop Biol 53:131–142
Article
Google Scholar
Kusch J (1998) Long-term effects of inducible defense. Ecoscience 5:1–7
Google Scholar
Lima SL (1998a) Nonlethal effects in the ecology of predator-prey interactions — what are the ecological effects of anti-predator decision-making? BioScience 48:25–34
Google Scholar
Lima SL (1998b) Stress and decision making under the risk of predation: recent development from behavioral, reproductive, and ecological perspectives. Adv Study Behav 27:215–290
Google Scholar
MacKay PA, Lamb RJ (1979) Migratory tendency in aging populations of the Pea Aphid, Acyrthosiphon pisum. Oecologia 39:301–308
Google Scholar
MacKay PA, Wellington WG (1977) Maternal age as a source of variation in the ability of an aphid to produce dispersing forms. Res Popul Ecol 18:195–209
Google Scholar
Meester L de, Dawidowicz P, van Gool E, Loose C (1998) Ecology and evolution of predator-induced behavior of zooplankton: depth selection behavior and diel vertical migration. In: Tollrian R, Harvell CD (eds) The ecology and evolution of inducible defenses. Princeton University Press, Princeton, N.J., pp 160–176
Montgomery ME, Nault LR (1977) Comparative response of aphids to the alarm pheromone, (E)-ß- farnesene. Entomol Exp Appl 22:236–242
CAS
Google Scholar
Nakaoka M (2000) Nonlethal effects of predators on prey populations: predator-mediated change in bivalve growth. Ecology 81:1031–1045
Google Scholar
Norrdahl K, Korpimäki E (2000) The impact of predation risk from small mustelids on prey populations. Mammal Rev 30:147–156
Article
Google Scholar
Peacor SD (2002) Positive effect of predators on prey growth rate through induced modifications of prey behaviour. Ecol Lett 5:77–85
Article
Google Scholar
Peacor SD, Werner EE (2001) The contribution of trait-mediated indirect effects to the net effects of a predator. Proc Natl Acad Sci USA 98:3904–3908
CAS
PubMed
Google Scholar
Peckarsky BL, Taylor BW, McIntosh AR, McPeek MA, Lytle DA (2001) Variation in mayfly size at metamorphosis as a developmental response to risk of predation. Ecology 82:740–757
Google Scholar
Riessen HP (1999) Chaoborus predation and delayed reproduction in Daphnia: a demographic modeling approach. Evol Ecol 13:339–363
Article
Google Scholar
Roos AM de, Leonardsson K, Persson L, Mittelbach GG (2002) Ontogenetic niche shifts and flexible behavior in size-structured populations. Ecol Monogr 72:271–292
Google Scholar
Ruxton GD, Lima SL (1997) Predator-induced breeding suppression and its consequences for predator-prey population dynamics. Proc R Soc Lond B 264:409–415
Article
Google Scholar
Schmitz OJ, Hamback PA, Beckerman AP (2000) Trophic cascades in terrestrial systems: A review of the effects of carnivore removals on plants. Am Nat 155:141–153
PubMed
Google Scholar
Sih A (1997) To hide or not to hide? Refuge use in a fluctuating environment. Trees 12:375–376
Google Scholar
Sih A, Enlund G, Wooster D (1998) Emergent impacts of multiple predators on prey. Trees 13:350–355
Article
Google Scholar
Sloggett JJ, Weisser WW (2002) Parasitoids induce production of the dispersal morph in the pae aphid, Acyrthosiphon pisum. Oikos 98:323–333
Article
Google Scholar
Sloggett JJ, Weisser WW (2003) A general mechanism for predator- and parasitoid-induced dispersal in the pea aphid, Acyrthosiphon pisum (Harris). Proceedings of the 6th International Symposium on Aphids, in press
Sokal RR, Rohlf FJ (1987) Introduction to biostatistics, 2nd edn. Freeman, New York
Sutherland ORW (1969a) The role of crowding in the production of winged forms by two strains of the pea aphid, Acyrthosiphon pisum. J Insect Physiol 15:1385–1410
Google Scholar
Sutherland ORW (1969b) The role of the host plant in the production of winged forms by two strains of the pea aphid Acyrthosiphon pisum. J Insect Physiol 15:2179–2201
Google Scholar
Tollrian R (1995) Predator-induced morphological defenses—costs, life-history shifts, and maternal effects in Daphnia pulex. Ecology 76:1691–1705
Google Scholar
Tollrian R, Harvell CD (1998) The ecology and evolution of inducible defences. Princeton University Press, Princeton, N.J.
Van Buskirk J, McCollum SA, Werner EE (1997) Natural selection for environmentally induced phenotypes in tadpoles. Evolution 51:1983–1992
Google Scholar
Weisser WW (2000) Metapopulation dynamics in an aphid-parasitoid system. Entomol Exp Appl 97:83–92
Article
Google Scholar
Weisser WW, Braendle C (2001) Body colour and genetic variation in winged morph production in the pea aphid. Entomol Exp Appl 99:217–223
Article
Google Scholar
Weisser WW, Braendle C, Minoretti N (1999) Predator-induced morphological shift in the pea aphid. Proc R Soc Lond B 266:1175–1182
Article
Google Scholar
Wohlers P (1981) Effects of the alarm pheromone (E)- ß- farnesene on dispersal behaviour of the pea aphid Acyrthosiphon pisum. Entomol Exp Appl 29:117–124
CAS
Google Scholar