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- W2900776489 abstract "Worldwide, the increasing number of insecticide-resistant insects is one of the main problems in agriculture not only in the field but also in storage. The lesser grain borer, Rhyzopertha dominica, is one of the cosmopolitan insects that infests a wide range of stored cereals and related commodities. However, strongly resistant populations of R. dominica have been detected in Australia that could threaten the market access of infested commodities. A resistant strain originally collected in Australia showed extremely high levels of resistance to phosphine, around 100-fold higher than that of the susceptible strain. The resistant strain has a mutation in dihydrolipoamide dehydrogenase (DLD), which is a well-known phosphine resistance mechanism in some coleopteran insects. Thus, here, we tried to identify their phosphine resistance mechanism based on transcriptome analysis using RNA-Seq in the adult stage in addition to the mutation effect in R. dominica. Over 1 Gb was sequenced in each replication (susceptible and resistant), and similar to the synergistic test, cytochrome P450, carboxylesterase, CbE and glutathione S-transferase, GST gene families were significantly differently expressed in two strains (p < .05). In particular, the CYP4C1-like gene showed seven-fold greater expression in the resistant strain. Additionally, an EF4-type CbE, an epsilon-type GST and three heat shock protein genes were also highly expressed in the resistant strain. These differential gene expression between the phosphine susceptible and resistant strains show the same pattern as the results of bioassay with synergist that means these gene regulations could be associated with phosphine resistance in R. dominica." @default.
- W2900776489 created "2018-11-29" @default.
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- W2900776489 date "2018-12-01" @default.
- W2900776489 modified "2023-10-16" @default.
- W2900776489 title "Identification of a phosphine resistance mechanism in Rhyzopertha dominica based on transcriptome analysis" @default.
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- W2900776489 doi "https://doi.org/10.1016/j.aspen.2018.11.012" @default.
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