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The gut symbiont Sphingomonas mediates imidacloprid resistance in the important agricultural insect pest Aphis gossypii Glover
by
Li, Ren
, Gao, Xiwu
, Cheng, Shenhang
, Zhang, Lei
, Lv, Nannan
, Liang, Pei
in
Animals
/ Antibiotics
/ Aphid gossypii; Insecticide resistance; Symbiotic bacteria; Sphingomonas
/ Aphididae
/ Aphids - genetics
/ Aphids - metabolism
/ Aphis gossypii
/ Bacteria
/ Biomedical and Life Sciences
/ Carbon
/ Carbon sources
/ Chemical pest control
/ Control
/ Cotton
/ Cytochrome
/ Detoxification
/ Drug resistance in microorganisms
/ Environmental aspects
/ Enzymatic activity
/ Enzyme activity
/ Enzymes
/ Genetic aspects
/ Health aspects
/ Hydroxylation
/ Identification and classification
/ Imidacloprid
/ Insect pests
/ Insecticide resistance
/ Insecticide Resistance - genetics
/ Insecticides
/ Insecticides - pharmacology
/ Insects
/ Life Sciences
/ Liquid chromatography
/ Metabolism
/ Metabolites
/ Methods
/ Microorganisms
/ Mutation
/ Neonicotinoid insecticides
/ Neonicotinoids - metabolism
/ Nitrogen
/ Observations
/ Pest control
/ Pest resistance
/ Pesticide resistance
/ Pesticides
/ Pests
/ Prevention
/ Research Article
/ rRNA 16S
/ Sphingomonas
/ Symbiosis
/ Toxicity
2023
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The gut symbiont Sphingomonas mediates imidacloprid resistance in the important agricultural insect pest Aphis gossypii Glover
by
Li, Ren
, Gao, Xiwu
, Cheng, Shenhang
, Zhang, Lei
, Lv, Nannan
, Liang, Pei
in
Animals
/ Antibiotics
/ Aphid gossypii; Insecticide resistance; Symbiotic bacteria; Sphingomonas
/ Aphididae
/ Aphids - genetics
/ Aphids - metabolism
/ Aphis gossypii
/ Bacteria
/ Biomedical and Life Sciences
/ Carbon
/ Carbon sources
/ Chemical pest control
/ Control
/ Cotton
/ Cytochrome
/ Detoxification
/ Drug resistance in microorganisms
/ Environmental aspects
/ Enzymatic activity
/ Enzyme activity
/ Enzymes
/ Genetic aspects
/ Health aspects
/ Hydroxylation
/ Identification and classification
/ Imidacloprid
/ Insect pests
/ Insecticide resistance
/ Insecticide Resistance - genetics
/ Insecticides
/ Insecticides - pharmacology
/ Insects
/ Life Sciences
/ Liquid chromatography
/ Metabolism
/ Metabolites
/ Methods
/ Microorganisms
/ Mutation
/ Neonicotinoid insecticides
/ Neonicotinoids - metabolism
/ Nitrogen
/ Observations
/ Pest control
/ Pest resistance
/ Pesticide resistance
/ Pesticides
/ Pests
/ Prevention
/ Research Article
/ rRNA 16S
/ Sphingomonas
/ Symbiosis
/ Toxicity
2023
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The gut symbiont Sphingomonas mediates imidacloprid resistance in the important agricultural insect pest Aphis gossypii Glover
by
Li, Ren
, Gao, Xiwu
, Cheng, Shenhang
, Zhang, Lei
, Lv, Nannan
, Liang, Pei
in
Animals
/ Antibiotics
/ Aphid gossypii; Insecticide resistance; Symbiotic bacteria; Sphingomonas
/ Aphididae
/ Aphids - genetics
/ Aphids - metabolism
/ Aphis gossypii
/ Bacteria
/ Biomedical and Life Sciences
/ Carbon
/ Carbon sources
/ Chemical pest control
/ Control
/ Cotton
/ Cytochrome
/ Detoxification
/ Drug resistance in microorganisms
/ Environmental aspects
/ Enzymatic activity
/ Enzyme activity
/ Enzymes
/ Genetic aspects
/ Health aspects
/ Hydroxylation
/ Identification and classification
/ Imidacloprid
/ Insect pests
/ Insecticide resistance
/ Insecticide Resistance - genetics
/ Insecticides
/ Insecticides - pharmacology
/ Insects
/ Life Sciences
/ Liquid chromatography
/ Metabolism
/ Metabolites
/ Methods
/ Microorganisms
/ Mutation
/ Neonicotinoid insecticides
/ Neonicotinoids - metabolism
/ Nitrogen
/ Observations
/ Pest control
/ Pest resistance
/ Pesticide resistance
/ Pesticides
/ Pests
/ Prevention
/ Research Article
/ rRNA 16S
/ Sphingomonas
/ Symbiosis
/ Toxicity
2023
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The gut symbiont Sphingomonas mediates imidacloprid resistance in the important agricultural insect pest Aphis gossypii Glover
Journal Article
The gut symbiont Sphingomonas mediates imidacloprid resistance in the important agricultural insect pest Aphis gossypii Glover
2023
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Overview
Background
Neonicotinoid insecticides are applied worldwide for the control of agricultural insect pests. The evolution of neonicotinoid resistance has led to the failure of pest control in the field. The enhanced detoxifying enzyme activity and target mutations play important roles in the resistance of insects to neonicotinoid resistance. Emerging evidence indicates a central role of the gut symbiont in insect pest resistance to pesticides. Existing reports suggest that symbiotic microorganisms could mediate pesticide resistance by degrading pesticides in insect pests.
Results
The 16S rDNA sequencing results showed that the richness and diversity of the gut community between the imidacloprid-resistant (IMI-R) and imidacloprid-susceptible (IMI-S) strains of the cotton aphid
Aphis gossypii
showed no significant difference, while the abundance of the gut symbiont
Sphingomonas
was significantly higher in the IMI-R strain. Antibiotic treatment deprived
Sphingomonas
of the gut, followed by an increase in susceptibility to imidacloprid in the IMI-R strain. The susceptibility of the IMI-S strain to imidacloprid was significantly decreased as expected after supplementation with
Sphingomonas
. In addition, the imidacloprid susceptibility in nine field populations, which were all infected with
Sphingomonas
, increased to different degrees after treatment with antibiotics. Then, we demonstrated that
Sphingomonas
isolated from the gut of the IMI-R strain could subsist only with imidacloprid as a carbon source. The metabolic efficiency of imidacloprid by
Sphingomonas
reached 56% by HPLC detection. This further proved that
Sphingomonas
could mediate
A. gossypii
resistance to imidacloprid by hydroxylation and nitroreduction.
Conclusions
Our findings suggest that the gut symbiont
Sphingomonas
, with detoxification properties, could offer an opportunity for insect pests to metabolize imidacloprid. These findings enriched our knowledge of mechanisms of insecticide resistance and provided new symbiont-based strategies for control of insecticide-resistant insect pests with high
Sphingomonas
abundance.
Publisher
BioMed Central,BioMed Central Ltd,Springer Nature B.V,BMC
Subject
/ Aphid gossypii; Insecticide resistance; Symbiotic bacteria; Sphingomonas
/ Bacteria
/ Biomedical and Life Sciences
/ Carbon
/ Control
/ Cotton
/ Drug resistance in microorganisms
/ Enzymes
/ Identification and classification
/ Insecticide Resistance - genetics
/ Insects
/ Methods
/ Mutation
/ Nitrogen
/ Pests
/ rRNA 16S
/ Toxicity
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