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Transcriptomic analysis of s-methoprene resistance in the lesser grain borer, Rhyzopertha dominica, and evaluation of piperonyl butoxide as a resistance breaker

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Autor
Sakka M.K., Riga M., Ioannidis P., Baliota G.V., Tselika M., Jagadeesan R., Nayak M.K., Vontas J., Athanassiou C.G.
Datum
2021
Language
en
DOI
10.1186/s12864-020-07354-8
Schlagwort
cytochrome P450
methoprene
piperonyl butoxide
insecticide
methoprene
piperonyl butoxide
transcriptome
Article
concentration (parameter)
controlled study
gene expression
gene identification
genetic transcription
grain
insecticide resistance
molecular evolution
molecular genetics
nonhuman
phylogeny
progeny
real time polymerase chain reaction
Rhyzopertha dominica
RNA sequencing
sequence analysis
species identification
wheat
animal
beetle
Dominica
gene expression profiling
genetics
Animals
Coleoptera
Dominica
Gene Expression Profiling
Insecticides
Methoprene
Piperonyl Butoxide
Transcriptome
BioMed Central Ltd
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Zusammenfassung
Background: The lesser grain borer, Rhyzopertha dominica is a serious pest of stored grains. Fumigation and contact insecticides play a major role in managing this pest globally. While insects are developing genetic resistance to chemicals, hormonal analogues such as s-methoprene play a key role in reducing general pest pressure as well as managing pest populations that are resistant to fumigants and neurotoxic contact insecticides. However, resistance to s-methoprene has been reported in R. dominica with some reports showing a remarkable high resistance, questioning the use of this compound and other related analogues in grain protection. The current study attempts to identify possible molecular mechanisms that contribute in resistance to s-methoprene in R. dominica. Results: Transcriptome analysis of resistant and susceptible strains of this pest species identified a set of differentially expressed genes related to cytochrome P450s, indicating their potential role in resistance to s-methoprene. Laboratory bioassays were performed with s-methoprene treated wheat grains in presence and absence of piperonyl butoxide (PBO), a cytochrome P450 inhibitor. The results indicate that PBO, when applied alone, at least at the concentration tested here, had no effect on R. dominica adult emergence, but has a clear synergistic effect to s-methoprene. The number of produced progeny decreased in presence of the inhibitor, especially in the resistant strain. In addition, we also identified CYP complement (CYPome) of R. dominica, annotated and analysed phylogenetically, to understand the evolutionary relationships with other species. Conclusions: The information generated in current study suggest that PBO can effectively be used to break resistance to s-methoprene in R. dominica. © 2021, The Author(s).
URI
http://hdl.handle.net/11615/78705
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