Journal article

Independently evolved and gene flow-accelerated pesticide resistance in two-spotted spider mites

P Shi, LJ Cao, YJ Gong, L Ma, W Song, JC Chen, AA Hoffmann, SJ Wei

Ecology and Evolution | WILEY | Published : 2019

Open access

Abstract

Pest species are often able to develop resistance to pesticides used to control them, depending on how rapidly resistance can emerge within a population or spread from another resistant population. We examined the evolution of bifenazate resistance in China in the two-spotted spider mite (TSSM) Tetranychus uticae Koch (Acari: Tetranychidae), one of the most resistant arthropods, by using bioassays, detection of mutations in the target cytb gene, and population genetic structure analysis using microsatellite markers. Bioassays showed variable levels of resistance to bifenazate. The cytb mutation G126S, which confers medium resistance in TSSM to bifenazate, had previously been detected prior t..

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University of Melbourne Researchers

Grants

Awarded by Natural Science Foundation of Beijing Municipality


Funding Acknowledgements

Promotion and Innovation of Beijing Academy of Agriculture and Forestry Sciences, Grant/Award Number: KJCX20180113; Natural Science Foundation of Beijing Municipality, Grant/Award Number: 6162010; Beijing Key Laboratory of Environmentally Friendly Pest Management on Northern Fruits, Grant/Award Number: BZ0432