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Insecticide resistance status of Myzus persicae in Greece: Long-term surveys and new diagnostics for resistance mechanisms

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Auteur
Voudouris C.C., Kati A.N., Sadikoglou E., Williamson M., Skouras P.J., Dimotsiou O., Georgiou S., Fenton B., Skavdis G., Margaritopoulos J.T.
Date
2016
Language
en
DOI
10.1002/ps.4036
Sujet
aphid
clone
deciduous tree
genotype
imidacloprid
insecticide
mutation
neonicotinoid pesticide
pest control
pesticide resistance
tobacco
Greece
Aphididae
Myzus persicae
Nicotiana tabacum
Prunus persica
carboxylesterase
imidacloprid
imidazole derivative
nitro derivative
animal
aphid
drug effects
enzymology
gene linkage disequilibrium
gene locus
genetics
genotype
Greece
insecticide resistance
mutation
peach
polymerase chain reaction
questionnaire
restriction fragment length polymorphism
tobacco
Animals
Aphids
Carboxylesterase
Genetic Loci
Genotype
Greece
Imidazoles
Insecticide Resistance
Linkage Disequilibrium
Mutation
Nitro Compounds
Polymerase Chain Reaction
Polymorphism, Restriction Fragment Length
Prunus persica
Surveys and Questionnaires
Tobacco
John Wiley and Sons Ltd
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Résumé
BACKGROUND: Myzus persicae nicotianae is an important pest in Greece, controlled mainly by neonicotinoids. Monitoring of the aphid populations for resistance mechanisms is essential for effective control. RESULTS: Two new RFLP-based diagnostics for the detection of the M918T (super-kdr pyrethroid resistance) and nAChR R81T (neonicotinoid resistance) mutations were applied, along with other established assays, on 131 nicotianae multilocus genotypes (MLGs) collected from tobacco and peach in Greece in 2012-2013. Furthermore, we present resistance data from aphid clones (>500, mainly nicotianae) collected in 2006-2007. About half of the clones tested with a diagnostic dose of imidacloprid were tolerant. The R81T mutation was not found in the 131 MLGs and 152 clones examined. Over half (58.6%) of a subset of 29 clones showed a 9-36-fold overexpression of CYP6CY3. M918T was found at low to moderate frequencies. The kdr and MACE mechanisms and carboxylesterase-based resistance were found at high frequency in all years. CONCLUSION: The aphid retains costly resistance mechanisms even in the absence of pressure from certain insecticides, which could be attributed to factors related to climate and genetic properties of the populations. The indication of build-up of resistance/tolerance to neonicotinoids, related to CYP6CY3 overexpression, is a matter of concern. © 2015 Society of Chemical Industry.
URI
http://hdl.handle.net/11615/80748
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  • Δημοσιεύσεις σε περιοδικά, συνέδρια, κεφάλαια βιβλίων κλπ. [19735]

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