Javascript must be enabled to continue!
Biochemical and Molecular Analysis of Field Resistance to Spirodiclofen in Panonychus citri (McGregor)
View through CrossRef
Spirodiclofen is one of the most widely used acaricides in China. The citrus red mite, Panonychus citri (McGregor) (Acari: Tetranychidae), is one of the most destructive citrus pests worldwide and has developed a high resistance to spirodiclofen. However, the molecular mechanism of spirodiclofen resistance in P. citri is still unknown. In this study, we identified a field spirodiclofen-resistant strain (DL-SC) that showed 712-fold resistance to spirodiclofen by egg bioassay compared to the susceptible strain. Target-site resistance was not detected as non-synonymous mutations were not found by amplification and sequencing of the ACCase gene of resistant and susceptible strains; in addition, the mRNA expression levels of ACCase were similar in both resistant and susceptible strains. The activity of detoxifying enzymes P450s and CCEs in the resistant strain was significantly higher than in the susceptible strain. The transcriptome expression data showed 19 xenobiotic metabolisms genes that were upregulated. Stage-specific expression profiling revealed that the most prominent upregulated gene, CYP385C10, in transcriptome data was significantly higher in resistant strains in all stages. Furthermore, functional analysis by RNAi indicated that the mortality caused by spirodiclofen was significantly increased by silencing the P450 gene CYP385C10. The current results suggest that overexpression of the P450 gene, CYP385C10, may be involved in spirodiclofen resistance in P. citri.
Title: Biochemical and Molecular Analysis of Field Resistance to Spirodiclofen in Panonychus citri (McGregor)
Description:
Spirodiclofen is one of the most widely used acaricides in China.
The citrus red mite, Panonychus citri (McGregor) (Acari: Tetranychidae), is one of the most destructive citrus pests worldwide and has developed a high resistance to spirodiclofen.
However, the molecular mechanism of spirodiclofen resistance in P.
citri is still unknown.
In this study, we identified a field spirodiclofen-resistant strain (DL-SC) that showed 712-fold resistance to spirodiclofen by egg bioassay compared to the susceptible strain.
Target-site resistance was not detected as non-synonymous mutations were not found by amplification and sequencing of the ACCase gene of resistant and susceptible strains; in addition, the mRNA expression levels of ACCase were similar in both resistant and susceptible strains.
The activity of detoxifying enzymes P450s and CCEs in the resistant strain was significantly higher than in the susceptible strain.
The transcriptome expression data showed 19 xenobiotic metabolisms genes that were upregulated.
Stage-specific expression profiling revealed that the most prominent upregulated gene, CYP385C10, in transcriptome data was significantly higher in resistant strains in all stages.
Furthermore, functional analysis by RNAi indicated that the mortality caused by spirodiclofen was significantly increased by silencing the P450 gene CYP385C10.
The current results suggest that overexpression of the P450 gene, CYP385C10, may be involved in spirodiclofen resistance in P.
citri.
Related Results
Genetic analysis and screening of detoxification-related genes in an amitraz-resistant strain of Panonychus citri
Genetic analysis and screening of detoxification-related genes in an amitraz-resistant strain of Panonychus citri
AbstractPanonychus citri (McGregor) is the most common pest in citrus-producing regions. Special low-toxicity acaricides, such as spirocyclic tetronic acids and mite growth inhibit...
Whole genome sequencing and bulked segregant analysis reveal a new mechanism of amitraz resistance in the citrus red mite, Panonychus citri (Acari: Tetranychidae)
Whole genome sequencing and bulked segregant analysis reveal a new mechanism of amitraz resistance in the citrus red mite, Panonychus citri (Acari: Tetranychidae)
Amitraz is a broad-spectrum insecticide for the control of aphids,
psyllids, ticks and mites. Current evidence suggests that ticks and
phytophagous mites have developed strong resi...
Insecticide resistance in
Diaphorina citri
Kuwayama (Hemiptera: Psyllidae)
Insecticide resistance in
Diaphorina citri
Kuwayama (Hemiptera: Psyllidae)
Abstract
The Asian citrus psyllid, Diaphorina citri Kuwayama (Hemiptera: Psyllidae), is the vector of the phloem-limited plant pathogen ‘Candidatus’ Liberibacter ...
Characterization of Wnt Signaling Genes in
Diaphorina citri
, Asian Citrus Psyllid
Characterization of Wnt Signaling Genes in
Diaphorina citri
, Asian Citrus Psyllid
Abstract
The Asian citrus psyllid,
Diaphorina citri
, is an insect vector that transmits
Ca...
Citrus Canker—Distribution, Taxonomy, Epidemiology, Disease Cycle, Pathogen Biology, Detection, and Management: A Critical Review and Future Research Agenda
Citrus Canker—Distribution, Taxonomy, Epidemiology, Disease Cycle, Pathogen Biology, Detection, and Management: A Critical Review and Future Research Agenda
Xanthomonas citri subsp. citri, a causative agent of the citrus canker (CC) disease, belongs to one of the essential groups of the bacterial phytopathogen family, Xanthomonadaceae....
Insights into xanthomonas axonopodis pv. citri biofilm through proteomics
Insights into xanthomonas axonopodis pv. citri biofilm through proteomics
Abstract
Background
Xanthomonas axonopodis pv. citri (X. a. pv. citri) causes citrus canker that can result in defoliation and pre...
Partial elimination of
Wolbachia
in the Asian citrus psyllid,
Diaphorina citri
, increases phytopathogen acquisition and decreases fitness
Partial elimination of
Wolbachia
in the Asian citrus psyllid,
Diaphorina citri
, increases phytopathogen acquisition and decreases fitness
Abstract
Wolbachia
is a maternally inherited intracellular bacterium that infects a wide range of arthropods.
...
Utilizing a chromosomal-length genome assembly to annotate the Wnt signaling pathway in the Asian citrus psyllid, Diaphorina citri
Utilizing a chromosomal-length genome assembly to annotate the Wnt signaling pathway in the Asian citrus psyllid, Diaphorina citri
The Asian citrus psyllid, Diaphorina citri, is an insect vector that transmits Candidatus Liberibacter asiaticus, the causal agent of the Huanglongbing (HLB), or citrus greening di...

