Entomologia Experimentalis et Applicata · 2004 · 32 citations · 29 references
GeneticsEntomologyAgricultural EconomicsElevated ResistanceCrop ImprovementTraditional BreedingSustainable DeploymentSustainable AgricultureInsecticidePublic HealthLeptine FoliageAgricultural GeneticsPest ManagementGenetic VariationMolecular BreedingPlant BreedingBiologyPesticide ResistanceCrop ProtectionGenetic EngineeringPest ControlBacillus ThuringiensisMedicine
Abstract The sustainable deployment of resistant crop varieties is a critical issue for the implementation of biotechnology in crop pest management. Feeding, biomass accumulation, and mortality were evaluated for susceptible, insecticide‐resistant, and Bacillus thuringiensis (Bt) Cry 3A‐selected Colorado potato beetle ( Leptinotarsa decemlineata Say) (Coleoptera, Chrysomelidae) larvae fed on: cultivated potato, a Solanum chacoense line expressing leptine glycoalkaloids, a transformed line expressing Bt toxin, or the leptine line transformed to express Bt toxin. Larvae selected for resistance to Bt‐Cry3A performed better on Bt foliage, but not as well on the leptine foliage, compared to susceptible or insecticide‐resistant larvae. Neither leptine nor Bt toxin completely inhibited the feeding and growth of 3rd and 4th instars of all three strains of Colorado potato beetle. However, for all three strains of Colorado potato beetle on leptine + Bt foliage, feeding was almost zero, growth was zero or negative, and mortality was near 100%.
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Evolution of Resistance to Bacillus thuringiensis
Bruce E. Tabashnik · Annual Review of Entomology · 1994 · 983 citations
R. T. Roush · Philosophical Transactions of the Royal Society B Biological Sciences · 1998 · 436 citations · Full text