Archives of Insect Biochemistry and Physiology · 2003 · 117 citations · 32 references
FitnessGeneticsEntomologyPyriproxyfen ResistanceVirgin FQ BiotypeDrug ResistanceInsecticidePublic HealthInsect Growth RegulatorPest ManagementGenetic VariationPopulation GeneticsBiologyReciprocal CrossesPesticide ResistanceEvolutionary BiologyInduced ResistanceHost ResistanceMedicine
The inheritance of resistance to pyriproxyfen, an insect growth regulator (a juvenoid, with ovicidal and larvicidal activities), was studied in the whitefly Bemisia tabaci (Gennadius). Two parental strains, both belonging to Q biotype, were assayed with pyriproxyfen; a susceptible strain (ALM-1) originating from Spain and a pyriproxyfen-resistant one (Pyri-R) from Israel. The resistance ratio between the two parental strains was approximately 7,000-fold. Concentration-mortality lines for F(1) heterozygous females from reciprocal crosses (SS female symbol X R male symbol and RR female symbol X S male symbol ) were derived by statistical modelling and proved intermediate to those of the parents. The pooled degree of dominance from both reciprocal crosses was +0.26, indicating that resistance was incompletely or partially dominant. Mortality curves for F(2) males produced by virgin F(1) heterozygous females displayed a broad plateau at 50% mortality, indicating that resistance to pyriproxyfen in B. tabaci is conferred primarily by a mutant allele at a single locus. The role of arrhenotoky in influencing the mode of inheritance of resistance, and its selection in field populations, is discussed.
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David N. Byrne, T. S. Bellows · Annual Review of Entomology · 1991 · 516 citations
Biology, Insect Circulatory System, Physiological Principle +10
H. S. Costa, Judith K. Brown · Entomologia Experimentalis et Applicata · 1991 · 328 citations
Botany, Genetics, Entomology +16