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Functional validation of target-site resistance mutations against sodium channel blocker insecticides (SCBIs) via molecular modeling and genome engineering in Drosophila.

Insect Biochem Mol Biol. 2019; 
Samantsidis GR, O'Reilly AO, Douris V, Vontas J.
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Plasmid DNA Preparation 171 Three different donor plasmids, paraF1845Y, paraV1848I and paraFYVI were 172 synthesized de novo (Genscript) to facilitate Homologous Directed Repair for 173 generations of strains F1845Y, V1848I and FYVI respectively (newly synthesized 174 sequences were subcloned in pUC57 vector EcoRV site; relevant insert sequences for 175 each donor plasmid are shown in Fig. Get A Quote

摘要

Sodium channel blocker insecticides (SCBIs) like indoxacarb and metaflumizone offer an alternative insecticide resistance management (IRM) strategy against several pests that are resistant to other compounds. However, resistance to SCBIs has been reported in several pests, in most cases implicating metabolic resistance mechanisms, although in certain indoxacarb resistant populations of Plutella xylostella and Tuta absoluta, two mutations in the domain IV S6 segment of the voltage-gated sodium channel, F1845Y and V1848I have been identified, and have been postulated through in vitro electrophysiological studies to contribute to target-site resistance. In order to functionally validate in vivo each mutation in th... More

关键词

CRISPR/Cas9; Indoxacarb; Insecticide resistance; Metaflumizone; Molecular modeling; Sodium channels