Vitamin a deficiency modifies response of predatory miteAmblyseius potentillae to volatile kairomone of two-spotted spider mite,Tetranychus urticae

Marcel Dicke1, Maurice W. Sabelis2, Adrie Groeneveld1
1Department of Entomology, Agricultural University, EH Wageningen, The Netherlands
2Department of Population Biology, University of Leiden, RA Leiden, The Netherlands

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Arthur, A.P. 1971. Associative learning byNemeritis canescens (Hymenoptera: Ichneumonidae).Can. Entomol. 103:1137?1141.

Belovsky, G.E. 1978. Diet optimization in a generalist herbivore: The moose.Theor. Pop. Biol. 14:105?134.

Briggs, M.H., andDuncan, R.B. 1961. Odour receptors.Nature 191:1310?1311.

Dicke, M., andGroeneveld, A. 1986. Hierarchical structure in kairomone preference of the predatory miteAmblyseius potentillae: Dietary component indispensable for diapause induction affects prey location behaviour.Ecol. Entomol. 11(2)

Greenstone, G.E. 1979. Spider feeding behaviour optimises dietary essential amino acid composition.Nature 282:501?503.

Karnaukhov, V.N., Milovidova, N.Y., andKargopolova, I.N. 1977. On a role of carotenoids in tolerance of sea molluscs to environment pollution.Comp. Biochem. Physiol. 56A:189?193.

Krebs, J.R. 1978. Optimal foraging: Decision rules for predators, pp. 23?63,in J.R. Krebs and N.B. Davies (eds.). Behavioral Ecology. An Evolutionary Approach. Sinaure, Sunderland, Massachusetts.

Krinsky, N.I. 1971. Function, pp. 669?716,in O. Isler (ed). Carotenoids. Birkhaeuser Verlag, Basel.

Kropczynska, D. 1970. Biology and ecology of the predatory miteTyphlodromus finlandicus (Oud.) (Acarina: Phytoseiidae).Zesz. Probl. Post. Nauk. Roln. 109:11?42 (in Polish).

Kropczynska-Linkjewicz, D. 1971. Studies on the feeding of four species of phytoseiid mites (Acarina: Phytoseiidae). Proceedings of the 3rd International Congress of Acarology, Prague, 1971, pp. 225?227.

Kurihara, K. (1967). Isolation of chromoproteins from bovine olfactory tissues.Biochim. Biophys. Acta 148:328?334.

McMurtry, J.A., andVan de Vrie, M. 1973. Predation byAmblyseius potentillae (Garman) onPanonychus ulmi (Koch) in simple ecosystems (Acarina: Phytoseiidae, Tetranychidae).Hilgardia 42:17?34.

McMurtry, J.A., andScriven, G.T. 1965. Insectary production of phytoseiid mites.J. Econ. Entomol. 58:282?284.

Moss, R., Miller, G.R., andAllen, S.E. 1972. Selection of heather by captive red grouse in relation to the age of the plant.J. Appl. Ecol. 9:771?781.

Overmeer, W.P.J. 1981. Notes on breeding phytoseiid mites from orchards (Acarina: Phytoseiidae) in the laboratory.Med. Fac. Landbouww. Rijksuniv. Gent 46:503?509.

Overmeer, W.P.J., andVan Zon, A.Q. 1983. The effect of different kinds of food on the induction of diapause in the predacious miteAmblyseius potentillae.Entomol. Exp. Appl. 33:27?30.

Porres, M.A., McMurtry, J.A., andMarch, R.B. 1976. Investigations of leaf sap feeding by three species of phytoseiid mites by labeling with radioactive phosphoric acid (H3PO4).Ann. Entomol. Soc. Am. 68:871?879.

Pyke, G.H., Pulliam, H.E., andCharnov, E.L. 1977. Optimal foraging: A selective review of theory and tests.Q. Rev. Biol. 52:137?154.

Rabbinge, R. 1976. Biological Control of the Fruit Tree Red Spider Mite. Pudoc, Wageningen. 228 pp.

Sabelis, M.W. 1981. Biological control of two-spotted spider mites using phytoseiid predators. Part I: Modeling the predator-prey interaction at the individual level. Agric. Res. Rep. 910, Pudoc, Wageningen. 242 pp.

Sabelis, M.W., andVan de Baan, H.E. 1983. Location of distant spider mite colonies by phytoseiid predators: Demonstration of specific kairomones emitted byTetranychus urticae andPanonychus ulmi.Entomol. Exp. Appl. 33:303?314.

Shimizu, I., andKato, M. 1984. Carotenoid functions in photoperiodic induction in the silkworm,Bombyx mori. Photobiochem.Photobiophys. 7:47?52.

Slansky, F., Jr., andFeeny, P. 1977. Stabilization of the rate of nitrogen accumulation by larvae of the cabbage butterfly on wild and cultivated food plants.Ecol. Monogr. 47:209?228. 1973. Studies on prey-predator interactions betweenPanonychus ulmi andTyphlodromus potentillae (Acarina: Tetranychidae, Phytoseiidae) on apple in the Netherlands. Proceedings of the FAO-Conference of Ecology in Relation to Plant Pest Control, Rome, pp. 145?160.

Van, Zon, A.Q., Overmeer, W.P.J., andVeerman, A. 1981. Carotenoids function in photoperiodic induction of diapause in a predacious mite.Science 213:1131?1133.

Veerman, A., andHelle, W. 1978. Evidence for the functional involvement of carotenoids in the photoperiodic reaction of spider mites.Nature 275:234.

Veerman, A., Overmeer, W.P.J., Van, Zon, A.Q., De Boer, J.M., De Waard, E.R., andHuisman, H.O. 1983. Vitamin A is essential for photoperiodic induction of diapause in an eyeless mite.Nature 302:248?249.

Vet, L.E.M. 1983. Host-habitat location through olfactory cues byLeptopilina clavipes (Hartig) (Hym.: Eucoilidae) a parasaitoid of fungivorousDrosophila: The influence of conditioning.Neth. J. Zool. 33:225?248.

Vinson, S.B., Barfield, C.S., andHenson, R.D. 1977. Oviposition behavior ofBracon mellitor, a parasitoid of the boll weevil (Anihonomus grandis). IL Associative learning.Physiol. Entomol. 2:157?164.