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The growth of restricted populations of Lasioderma serricorne (F.) (Coleoptera, Anobiidae)

Published online by Cambridge University Press:  10 July 2009

L. P. Lefkovitch
Affiliation:
Agricultural Research Council, Pest Infestation Laboratory, Slough, Bucks.

Extract

Two types of population history shown by Lasioderma serricorne (F.) are described, one when the food was renewed at regular intervals, the other when there was no food renewal. Initially, both of these populations increased together to a high level, the former continuing at this level until the observations were discontinued, the latter declining and eventually becoming extinct. Stage-specific properties, which relate the numbers in each stage to those a unit of time previously and which are functions of the survival, developmental and fecundity rates, were estimated for each type of population; they are compared as between the two types and with the corresponding properties of a population given effectively unlimited space and food. It is shown that the effect of the limiting conditions produced a decrease in survival, developmental and fecundity rates. From this, together with other evidence, it appears that food shortage, not space shortage, was the primary cause. After the initial increase in numbers, the stage-specific properties shown by the species in both populations imply that there was a regular oscillation in the developmental, survival or fecundity rates, which would result in corresponding fluctuations in numbers.

Type
Research Paper
Copyright
Copyright © Cambridge University Press 1964

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References

Andrewartha, H. G. & Birch, L. C. (1954). The distribution and abundance of animals782 pp., Chicago, Univ. Chicago Pr.Google Scholar
Frank, P. W. (1960). Prediction of population growth form in Daphnia pulex cultures.—Amer. Nat. 94 pp. 357373.CrossRefGoogle Scholar
Kurup, A. & Parkhe, D. P. (1962). Some observations on the biology of the cigarette beetle (Lasioderma serricorne (F.)).—Indian J. Ent. 23 (1961) pp. 274278.Google Scholar
Lefkovitch, L. P. (1962). Food quantity and density effects in pre-adult Cryptolestes turcicus (Grouvelle) (Coleoptera: Cueujidae).—Proc. zool. Soc. Lond. 138 pp. 3747.CrossRefGoogle Scholar
Lefkovitch, L. P. (1963). Census studies on unrestricted populations of Lasioderma serricorne (F.) (Coleoptera: Anobiidae).—J. Anim. Ecol. 32 pp. 221231.CrossRefGoogle Scholar
Lefkovitch, L. P. (in press). An extension of the use of matrices in population mathematics.Google Scholar
Lefkovitch, L. P. & Currie, J. E. (1963). The effects of food shortage upon larvae of Lasioderma serricorne (F.) (Coleoptera, Anobiidae).—Bull. ent. Ren. 54 pp. 535547.CrossRefGoogle Scholar
Leslie, P. H. (1948). Some further notes on the use of matrices in population mathematics.—Biometrika 35 pp. 213245.CrossRefGoogle Scholar
Leslie, P. H. (1959). The properties of a certain lag type of population growth and the influence of an external random factor on a number of such populations.—Physiol. Zool. 32 pp. 151159.CrossRefGoogle Scholar
Nicholson, A. J. (1957). The self-adjustment of populations to change.—Cold Spr. Harb. Symp. quant. Biol. 22 pp. 153173.CrossRefGoogle Scholar
Park, T. (1948). Experimental studies of interspecies competition. I. Competition between populations of the flour beetles, Tribolium confusum Duval and Tribolium castaneum Herbst.—Ecol. Monogr. 18 pp. 265307.CrossRefGoogle Scholar
Park, T., Gregg, E. V. & Lutherman, C. Z. (1941). Studies in population physiology. X. Inter-specific competition in populations of granary beetles.—Physiol. Zool. 14 pp. 395430.CrossRefGoogle Scholar
Quenouille, M. H. (1957). The analysis of multiple time-series.—105 pp., London, Griffin.Google Scholar
Slobodkin, L. B. (1954). Population dynamics in Daphnia obtusa Kurz.—Ecol. Monogr. 24 pp. 6988.CrossRefGoogle Scholar
Strawbridge, D. W. (1953). Population dynamics of the flour beetle Tribolium castaneum Herbst.—Ph.D. dissert., Univ. Chicago.Google Scholar
Wangehsky, P. J. & Cunningham, W. J. (1957). Time lag in population models. —Cold Spr. Hart. Symp. quant. Biol. 22 pp. 329338.CrossRefGoogle Scholar