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Micro-evolutionary change in relation to insecticide resistance in the peach-potato aphid, Myzus persicae

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Autore
Fenton, B.; Margaritopoulos, J. T.; Malloch, G. L.; Foster, S. P.
Data
2010
DOI
10.1111/j.1365-2311.2009.01150.x
Soggetto
Adaptation
aphid
clone
insecticide resistance
Myzus persicae
population genetics
PARTHENOGENETIC SITOBION APHIDS
GENERAL-PURPOSE GENOTYPES
FITNESS
TRADE-OFF
SULZER HEMIPTERA
LIFE-CYCLE
HOST-PLANT
MICROSATELLITE
MARKERS
GENETIC-VARIABILITY
LUCILIA-CUPRINA
MORPHOLOGICAL VARIATION
Entomology
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Abstract
2. Asexual organisms rely on mutation whereas sexual organisms combine mutation with recombination. 3. Few organisms provide examples of species that are both sexual and asexual, but aphids do. 4. To examine evolution on perceptible timescales requires strong evolutionary forces and, as Darwin noted, agricultural practices provide strong selection. In the case of aphids, insecticides provide a considerable force in the elimination of genotypes. 5. Insecticide resistance in Myzus persicae (Sulzer) has arisen independently through point mutation and gene amplification on a number of occasions and at different times. Resistance to organophosphates, pyrethroids, and pirimicarb (a dimethyl carbamate) is now widespread. 6. In this paper, we examine these three elements: sexual recombination, clonal expansion, and insecticide selection in the peach-potato aphid M. persicae in relation to the evolution of insecticide resistance and survival of the fittest clone.
URI
http://hdl.handle.net/11615/27435
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