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Effects of Changing the Phosphorus Content of the Food Plant on the Migratory Grasshopper, Melanoplus bilituratus (Walker) (Orthoptera: Acrididae)1

Published online by Cambridge University Press:  31 May 2012

D. S. Smith
Affiliation:
Canada Agriculture Research Station, Lethbridge, Alberta

Extract

It has been demonstrated that changes in the composition of a plant influence the insects that feed upon the plant (Lipke and Fraenkel, 1956). The quantitative composition of plants can be changed by the use of fertilizers (Mulder, 1950; Rennie, 1956), and populations of insects feeding on the plants may increase or decrease (Daniels, 1957; Adkisson, 1958; Joyce, 1958). These changes in numbers of insects have been attributed to such factors as changes in nitrogen, protein, and carbohydrate content (Evans, 1938; Fritzsche et al., 1957) or various mineral constituents (Creighton, 1938).

Type
Articles
Copyright
Copyright © Entomological Society of Canada 1960

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References

Adkisson, P. L. 1958. The influence of fertilizer application on populations of Heliothis zea (Boddie), and certain insect predators, J. Econ. Ent. 51: 757759.Google Scholar
Allen, M. D., and Selman, I. W.. 1957. The response of larvae of the large white butterfly (Pieris brassicae (L.)) to diets of mineral-deficient leaves. Bull. Ent. Res. 48: 229242.CrossRefGoogle Scholar
Creighton, J. T. 1938. Factors influencing insect abundance. J. Econ. Ent. 31: 735739.Google Scholar
Dahms, R. G. 1947. Oviposition and longevity of chinch bugs on seedlings growing in nutrient solutions. J. Econ. Ent. 40: 841845.Google Scholar
Daniels, N. E. 1957. Greenbug populations and their damage to winter wheat as affected by fertilizer applications. J. Econ. Ent. 50: 793794.Google Scholar
Evans, A. C. 1938. Physiological relationships between insects and their host plants. I. The effect of the chemical composition of the plant on reproduction and production of winged forms in Brevicoryne brassicae L (Aphididae). Ann. App. Biol. 25: 558572.CrossRefGoogle Scholar
Fritzsche, R., Wolfgang, H., and Opel, H.. 1957. Untersuchungen über die Abhängigkeit der Spinnmilbenvermehrung Ernährungszustand der Wirtspflanzen. Z. Pflanzenahr. Dung. Bodenk. 78: 1327.CrossRefGoogle Scholar
Joyce, R. J. V. 1958. Effect of the cotton plant in the Sudan Gezira on certain leaf-feeding insect pests. Nature 182: 14631464.CrossRefGoogle Scholar
Lipke, H., and Fraenkel, G.. 1956. Insect nutrition. Ann. Rev. Ent. 1: 1744.CrossRefGoogle Scholar
Mulder, E. G. 1950. Mineral nutrition of plants. Ann. Rev. Plant Physiol. 1: 124.Google Scholar
Rennie, D. A. 1956. Variations in percentage phosphorus and protein content of wheat, as induced by fertilizer treatment, soil type, and season. Can. J. Agr. Sci. 36: 491504.Google Scholar
Rodriguez, J. G. 1951. Mineral nutrition of the two-spotted spider mite, Tetranychus bimaculatus Harvey. Ann. Ent. Soc. Amer. 44: 511526.Google Scholar
Shelton, W. R., and Harper, H. J.. 1941. A rapid method for the determination of total phosphorus in soils and plant material. Iowa State Coll. J. Sci. 15: 403413.Google Scholar
Smith, D. S. 1959. Utilization of food plants by the migratory grasshopper, Melanoplus bilituratus (Walker) (Orthoptera: Acrididae), with some observations on the nutritional value of the plants. Ann. Ent. Soc. Amer. 52: 674680.CrossRefGoogle Scholar
Smith, D. S., and Northcott, F. E.. 1951. The effects on the grasshopper, Melanoplus mexicanus mexicanm (Sauss.) (Orthoptera: Acrididae) of varying the nitrogen content in its food plant. Can. J. Zool. 29: 297304.CrossRefGoogle Scholar
Steyn, J. J. 1951. The effect of low calcium, phosphorus, or nitrogen on the life cycle of red scale (Aonidiella aurantii Mask.), J. Ent. Soc. S. Africa 14: 165170.Google Scholar
Webster, J. E., Sieglinger, J., and Davies, F.. 1948. Chemical composition of sorghum plants at various stages of growth and relation of composition to chinch bug injury. Okla. Agr. Exp. Sta. Tech. Bull. T30.Google Scholar