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Título

Mechanisms of resistance to malathion in the medfly Ceratitis capitata

AutorMagaña, Cristina CSIC; Hernández-Crespo, Pedro CSIC ORCID ; Brun-Barale, Alexandra; Couso-Ferrer, Francisco CSIC; Bride, Jean-Marc; Castañera, Pedro CSIC; Feyereisen, René; Ortego, Félix CSIC ORCID
Palabras claveMedfly
resistance
organophosphorus insecticides
acetylcholinesterase
detoxification enzymes
Fecha de publicaciónago-2008
EditorElsevier
CitaciónInsect Biochemistry and Molecular Biology 38(8):56-762(2008)
ResumenTarget site insensitivity and metabolic resistance mediated by esterases have been previously suggested to be involved in resistance to malathion in a field-derived strain (W) of Ceratitis capitata. In the present study, we have obtained the coding sequence for acetylcholinesterase (AChE) gene (Ccace) of C. capitata. An allele of Ccace carrying only a point mutation Gly328Ala (Torpedo numbering) adjacent to the glutamate of the catalytic triad was found in individuals of the W strain. Adult flies homozygotes for this mutant allele showed reduced AChE activity and less sensitivity to inhibition by malaoxon, showing that target site insensitivity is one of the factors of malathion resistance. In addition, all individuals from the resistant W strain showed reduced aliesterase activity, which has been associated with specific malathion resistance in higher Diptera. However, the αE7 gene (CcαE7), sequenced in susceptible and resistant individuals, did not carry any of the mutations associated with organophosphorus insecticide resistance in other Diptera. Another esterase mechanism, perhaps a carboxylesterase selective for malathion, in addition to mutant AChE, thus contributes to malathion resistance in C. capitata
Descripción7 páginas, 2 figuras, 4 tablas -- PAGS nros. 756-762
Versión del editorhttp://dx.doi.org/10.1016/j.ibmb.2008.05.001
URIhttp://hdl.handle.net/10261/57569
DOI10.1016/j.ibmb.2008.05.001
ISSN0965-1748
E-ISSN1879-0240
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