Croft B A, Brown A W A. Responses of arthropod natural enemies to insecticides. Annual Review of Entomology, 1975, 20: 285-335
[2]
Hull L A, Van Starner R. Impact of four synthetic pyrethroids on major natural enemies and pests of apple in Pennsylvania. Journal of Economic Entomology, 1983, 76(1): 122-130
Xu X N, Enkegaard A. Prey preference of Orius sauteri between western flower thrips and spider mites. Entomologia Experimentalis et Applicata, 2009, 132(1): 93-98
Helyer N L, Brobyn P J. Chemical control of western flower thrips (Frankliniella occidentalis Pergande).Annals of Applied Biology, 1992, 121(2): 219-231
[9]
Zhao G Y, Liu W, Brown J M, et al. Insecticide resistance in field and laboratory strains of western flower thrips (Thysanoptera: Thripidae). Journal of Economic Entomology, 1995, 88(5): 1164-1170
[10]
Jensen S E. Insecticide resistance in the western flower thrips, Frankliniella occidentalis. Integrated Pest Management Reviews, 2000, 5(2): 131-146
[11]
Delbeke F, Vercruysse P, Tirry L, et al. Toxicity of diflubenzuron, pyriproxyfen, imidacloprid and diafenthiuron to the predatory bug Orius laevigatus (Het.: Anthocoridae). Entomophaga, 1997, 42(3): 349-358
Sayed K A E, Dunbar D C, Perry T L, et al. Marine natural products as prototype insecticidal agents. Journal of Agricultural and Food Chemistry, 1997, 45(7): 2735-2739
Croft B A, Whalon M E. Selective toxicity of pyrethroid insecticides to arthropod natural enemies and pests of agricultural crops. Entomophaga, 1982, 27(1): 3-21