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寄生蜂抗药性研究进展 被引量:9

Advances in evolution of insecticide resistance in parasitoid wasps
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摘要 植物_植食性昆虫_寄生蜂三级营养结构之间由于长期相互适应和协同进化 ,产生了一系列独特的相互关系。选择压力将对害虫和寄生蜂的抗药性演化产生影响 ,但由于寄生蜂具有与植食性昆虫不同的生物学及生态学特性 ,选择压力对害虫和寄生蜂抗药性演化的影响作用也是不同的。研究结果表明 ,除体外杀虫剂对寄生蜂的直接汰选因素外 ,进入寄主昆虫体内的杀虫剂成分。 Specific interactions were involved in host plant_herbivore_parasitoid system based on the adaptive strategies and coevolution on tritrophic interactions. The evolution of insecticide resistance in both herbivore and parasitoid wasps was affected by selection pressure. However, different evolution models of insecticide resistance might exist in parasitoids and herbivores with different biological and ecological characteristics. The present results showed that the evolution of insecticide resistance in parasitoids could be affected either directly by exposing to the spray in the field, or indirectly by the factors including the insecticides penetrated into the body of host insects, plant allelochemicals fed by host insects, and climatic factors.
作者 吴刚 江树人
出处 《昆虫学报》 CAS CSCD 北大核心 2004年第4期515-521,共7页 Acta Entomologica Sinica
基金 福建省自然科学基金项目 (B0 410 0 16) 福建省科技厅科技项目 ( 2 0 0 1Z14 6)
关键词 寄生蜂 抗药性 演化 选择压力 Parasitoid wasp insecticide resistance evolution selective pressure
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  • 1Ahmad S, Brattsten LB, Mallin CA, 1986. Enzymes involved in the metabolism of plant allelochemicals. In: Brattsten LB, Ahmad S eds.Molecular Aspects of Insect Plant Associations. New York: Plenum Press. 73 - 152.
  • 2Baker JE, 1995. Stability of malathion resistance in two hymenopterous parasitoids. J. Econ. Entomol., 88 (2): 232 - 236.
  • 3Baker JE, Fabrick JA, Zhu KY, 1998. Characterization of esterases in malathion-resistant and susceptible strains of the pteromalid parasitoid Anisopteromalus calandrae. Insect Biochem. Physiol., 28 (12): 1 039- 1 050.
  • 4Baker JE, Perez-Mendoza J, Beeman RW, 1997. Inheritance of malathion resistance in the parasitoid Anisopteromalus calandrae (Hymenoptera:Pteromalidae). J. Econ. Entomol. , 90 (2): 304 - 308.
  • 5Baker JE, Weaver DK, Throne JE, Zettler JL, 1995. Resistance to protectant insecticides in two field strains of the stored-product insect parasitoid Bracon hebetor (Hymenoptera: Braconidae ). J. Econ.Entomol., 88 (3): 512 - 519.
  • 6Bell HA, Fitches EC, Down RE, Ford L, Marris GC, Edwards JP,Gatehouse JA, Gatehouse AM, 2001. Effect of dietary cowpea trypsin inhibitor (CpTI) on the growth and development of the tomato moth Lacanobia oleracea (Lepidoptera: Noctuidae) and on the success of the gregarious ectoparasitoid Eulophus pennicornis ( Hymenoptera:Eulophidae). Pest Manag . Sci., 57: 57-65.
  • 7Brattsten LB, Wilkinson CF, Eisner T, 1977. Herbivore-plant interaction:mixed function oxidases and secondary plant substances. Science , 196:1 349- 1 352.
  • 8Chiang FM, Sun CN, 1991. Detoxifying enzymes and susceptibility to several insecticides of Apanteles plutellae (Hymenoptera: Braconidae ) and Diadegma semiclausum ( Hymenoptera: Ichneumonidae), parasitoids of diamondback moth ( Lepidoptera: Plutellidae ) larvae. Environ.Entomol., 20 (6): 1 687 - 1 690.
  • 9Chilcutt CF, Tabashnik BE, 1997. Host-mediated competition between the pathogen Bacillus thuringiensis and the parasitoid Cotesia plutellae of the diamondback moth ( Lepidoptera: Plutellidae). Environ. Entomol.,26:38 - 45.
  • 10Croft BA, 1977. Resistance in arthropod predators and parasites. In: Watson DL, Brown AW eds. Pesticide Management and Insecticide Resistance.New York: Academic Press. 337 - 393.

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