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RESPONSES OF NEOSEIULUS FALIACIS (ACARINA: PHYTOSEIIDAE) TO DIFFERENT PREY DENSITIES OF OLIGONYCHUS UNUNGUIS (ACARINA: TETRANYCHIDAE) AND TO DIFFERENT RELATIVE HUMIDITY REGIMES1

Published online by Cambridge University Press:  31 May 2012

John V. Boyne
Affiliation:
Department of Entomology, North Carolina State University, Raleigh 27650
Fred P. Hain
Affiliation:
Department of Entomology, North Carolina State University, Raleigh 27650

Abstract

The effectiveness of the phytoseiid predator Neoseiulus fallacis in controlling population growth of the spruce spider mite, Oligonychus ununguis was examined in the laboratory. Development and fecundity of N. fallacis under various relative humidity levels were also studied. Under controlled conditions, N. fallacis significantly limited population growth of O. ununguis on Fraser fir seedlings. Survival, development, and fecundity of N. fallacis were similar for all relative humidity ranges tested, except at the lowest range (60–65%), in which none of the individuals survived to maturity.

Résumé

L'efficacité du prédateur phytoseiide Neoseiulus fallacis à régler la croissance de population du tétranyque de l'épinette, Oligonychus ununguis a été étudiée au laboratoire. Le développement et la fécondité de N. fallacis à différents niveaux d'humidité relative ont aussi été étudiés. En conditions contrôlées, N. fallacis a significativement limité la croissance de population de O. ununguis sur des pousses de Abies fraseri (Pursh) Poir. La survie, le développement et la fécondité de N. fallacis étaient semblables pour toutes les classes d'H.R. testées, excepté la classe la plus basse (60–65%) pour laquelle aucun individu n'a survécu jusqu'à maturité.

Type
Articles
Copyright
Copyright © Entomological Society of Canada 1983

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References

Ahlstrom, K. R. and Rock, G. C., 1973. Comparative studies on Neoseiulus fallacis and Metaseiulus occidentalis for azinphos-methyl toxicity and effects of prey and pollen on growth. Ann. ent. Soc. Am. 66: 11091113.CrossRefGoogle Scholar
Ball, J. C. 1980. Development, fecundity, and prey consumption of four species of predacious mites (Phytoseiidae) at two constant temperatures. Environ. Ent. 9: 298303.CrossRefGoogle Scholar
Boyne, J. V. 1980. Studies on the population dynamics of the spruce spider mite (Oligonychus ununguis (Jacobi)) (Acarina: Tetranychidae) and the predator Neoseiulus fallacis (Garman) (Acarina: Phytoseiidae). M.S. Thesis, N.C. State University, Raleigh. 111 pp.Google Scholar
Boyne, J. V. and Hain, F. P.. 1983. Effects of constant temperature, relative humidity, and simulated rainfall on development and survival of the spruce spider mite (Oligonychus ununguis). Can. Ent. 115: 93105.CrossRefGoogle Scholar
Croft, B. A. 1976. Establishing insecticide-resistant phytoseiid mite predators in deciduous tree fruit orchards. Entomophaga 21: 383399.CrossRefGoogle Scholar
Croft, B. A. and McGroarty, D. L.. 1977. The role of Amblyseius fallacis (Acarina; Phytoseiidae) in Michigan apple orchards. Mich. St. Univ. Agric. Exp. Stn. Res. Rep. 333. 22 pp.Google Scholar
Croft, B. A. and McMurtry, J. A.. 1972. Minimum releases of Typhlodromus occidentalis to control Tetranychus mcdanieli on apple. J. econ. Ent. 65: 188191.CrossRefGoogle Scholar
Furr, R. E. and Shaw, J. R.. 1977. Rearing Neoseiulus fallacis (Garman) in the laboratory. J. Georgia ent. Soc. 12: 128132.Google Scholar
Hassell, M. P., Lawton, J. H., and Beddington, J. R.. 1977. Sigmoid functional responses by invertebrate predators and parasitoids. J. Animal Ecol. 46: 249262.CrossRefGoogle Scholar
Huffaker, C. B., van de Vrie, M., and McMurtry, J. A.. 1970. Ecology of tetranychid mites and their natural enemies: A review. II. Tetranychid populations and their possible control by predators: An evaluation. Hilgardia 40: 391458.CrossRefGoogle Scholar
Johnson, P. C. 1958. Spruce spider mite infestations in northern Rocky Mountain Douglas-fir forests. U.S. Dep. Agric., For. Serv. Res. Pap. 55. 14 pp. Intermtn. For. & Range Exp. Stn., Ogden, Utah.Google Scholar
Laing, J. E. and Huffaker, C. B.. 1969. Comparative studies of predation by Phytoseilus persimilis (Athias-Henriot) and Metaseiulus occidentalis (Nesbitt) (Acarina: Phytoseiidae) on populations of Tetranychus urticae (Koch) (Acarina: Tetranychidae). Researches Popul. Ecol. Kyoto Univ. 11: 105126.Google Scholar
Loyttyniemi, K. 1970. Zur biologie der nadalholzspinnmilbe (Oligonychus ununguis (Jacobi)) (Acarina: Tetranychidae) in Finnland. Acta ent. Fenn. 27: 164.Google Scholar
McMurtry, J. A., Huffaker, C. B., and van de Vrie, M.. 1970. Ecology of tetranychid mites and their natural enemies: A review. I. Tetranychid enemies: Their biological characters and the impact of spray practices. Hilgardia 40: 331390.CrossRefGoogle Scholar
McMurtry, J. A. and Johnson, H. G.. 1966. An ecological study of the spider mite Oligonychus punicae (Hirst) and its natural enemies. Hilgardia 37: 363402.CrossRefGoogle Scholar
Oatman, E. R., McMurtry, J. A., Gilstrap, F. E., and Voth, V.. 1977. Effect of releases of Amblyseius californicus, Phytoseiulus persimilis, and Typhlodromus occidentalis on the two-spotted spider mite in southern California. J. econ. Ent. 70: 4547.CrossRefGoogle Scholar
Peterson, A. 1964. Entomological Techniques – How to Work with Insects. Edwards Brothers, Ann Arbor. 435 pp.Google Scholar
Ristich, S. S. 1956. Mass rearing and testing techniques for Typhlodromus fallacis (Garman). J. econ. Ent. 49: 476479.CrossRefGoogle Scholar
Rock, G. C. and Yeargan, D. R.. 1970. Relative toxicity of Plictran miticide to the European red mite, the two-spotted spider mite and the predaceous mite Neoseiulus (Typhlodromus) fallacis (Family: Phytoseiidae). Down to Earth 26: 14.Google Scholar
Rock, G. C., Yeargan, D. R., and Rabb, R. L.. 1971. Diapause in the phytoseiid mite, Neoseiulus (Typhlodromus) fallacis. J. Insect Physiol. 17: 16511659.CrossRefGoogle Scholar
Smith, J. C. and Newsom, L. D.. 1970. The biology of Amblyseius fallacis (Acarina: Tetranychidae) at various temperature and photoperiodic regimes. Ann. ent. Soc. Am. 63: 460462.CrossRefGoogle Scholar
Takafuji, A. and Deguchi, K.. 1980. Functional responses of a predacious phytoseiid mite in different sizes of experimental universe. Appl. Ent. Zool. 15: 355357.CrossRefGoogle Scholar
Tanigoshi, L. K. and McMurtry, J. A.. 1977. The dynamics of predation of Stethorus picipes (Coleoptera: Coccinellidae) and Typhlodromus floridanus on the prey Oligonychus punicae (Acarina: Phytoseiidae, Tetranychidae). II. Effects of initial prey-predator ratios and prey distribution. Hilgardia 45: 262288.CrossRefGoogle Scholar
Wheeler, A. G., Colburn, R. B., and Lehman, R. D.. 1973. Stethorus punctillum associated with spruce spider mite on ornamentals. Environ. Ent. 2: 718720.CrossRefGoogle Scholar