Resistance and the jumping gene
Identifieur interne : 009910 ( Main/Exploration ); précédent : 009909; suivant : 009911Resistance and the jumping gene
Auteurs : Richard Ffrench-Constant [Royaume-Uni] ; Philip Daborn [Australie] ; Rene Feyereisen [France]Source :
- BioEssays [ 0265-9247 ] ; 2006-01.
Descripteurs français
- Wicri :
- topic : Insecticide, Pesticide.
English descriptors
- KwdEn :
- Acad, Accord element, Accord insertion, Adaptive, Allele, Aminetzach, Bioessays, Bogwitz, Cause overtranscription, Cause resistance, Chkov1, Chkov1 gene, Choline, Choline acetyltransferase, Choline metabolism, Cytochrome, Daborn, Different genomic location, Drosophila, Drosophila melanogaster, Ectopic recombination, Exciting alternative, Gene, Gene product, Genetic change, Insecticide, Insecticide resistance, Insecticide targets, Insertion, Long terminal, Melanogaster, Metabolic, Metabolic enzyme, Metabolic enzymes, Molecular biology, Natl, Natural population, Natural selection, Overtranscription, Pesticide, Proc, Proc natl acad, Putative, Resistant strain, Transposable, Transposable element, Transposable elements, Transposon, Transposon insertion, Wiley periodicals.
- Teeft :
- Acad, Accord element, Accord insertion, Adaptive, Allele, Aminetzach, Bioessays, Bogwitz, Cause overtranscription, Cause resistance, Chkov1, Chkov1 gene, Choline, Choline acetyltransferase, Choline metabolism, Cytochrome, Daborn, Different genomic location, Drosophila, Drosophila melanogaster, Ectopic recombination, Exciting alternative, Gene, Gene product, Genetic change, Insecticide, Insecticide resistance, Insecticide targets, Insertion, Long terminal, Melanogaster, Metabolic, Metabolic enzyme, Metabolic enzymes, Molecular biology, Natl, Natural population, Natural selection, Overtranscription, Pesticide, Proc, Proc natl acad, Putative, Resistant strain, Transposable, Transposable element, Transposable elements, Transposon, Transposon insertion, Wiley periodicals.
Abstract
Transposons are well‐known architects of genetic change but their role in insecticide resistance has, until recently, only been speculated upon.1 Transposon insertion, or transposon‐mediated transposition, could alter either metabolic enzymes capable of degrading pesticides or could change the functionality of insecticide targets. The recent work of Aminetzach and coworkers2 suggests an exciting alternative, that transposon insertion can cause resistance by altering gene product function. This hypothesis is discussed in the light of other examples in which transposons have been implicated in insecticide resistance. BioEssays 28:6–8, 2006. © 2005 Wiley Periodicals, Inc.
Url:
DOI: 10.1002/bies.20354
Affiliations:
- Australie, France, Royaume-Uni
- Provence-Alpes-Côte d'Azur, Victoria (État)
- Melbourne, Nice
- Université de Melbourne
Links toward previous steps (curation, corpus...)
- to stream Istex, to step Corpus: 000B90
- to stream Istex, to step Curation: 000B90
- to stream Istex, to step Checkpoint: 001561
- to stream Main, to step Merge: 00A372
- to stream Main, to step Curation: 009910
Le document en format XML
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<term>Drosophila melanogaster</term>
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<front><div type="abstract" xml:lang="en">Transposons are well‐known architects of genetic change but their role in insecticide resistance has, until recently, only been speculated upon.1 Transposon insertion, or transposon‐mediated transposition, could alter either metabolic enzymes capable of degrading pesticides or could change the functionality of insecticide targets. The recent work of Aminetzach and coworkers2 suggests an exciting alternative, that transposon insertion can cause resistance by altering gene product function. This hypothesis is discussed in the light of other examples in which transposons have been implicated in insecticide resistance. BioEssays 28:6–8, 2006. © 2005 Wiley Periodicals, Inc.</div>
</front>
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