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Transcriptome Analysis of Pyrethroid-Resistant Chrysodeixis includens (Lepidoptera: Noctuidae) Reveals Overexpression of Metabolic Detoxification Genes
by
Stacke, Regis F.
, Tabuloc, Christine A.
, Guedes, Jerson C.
, Perini, Clerison R.
, Chiu, Joanna C.
, Zalom, Frank G.
, Bernardi, Oderlei
, Nelson, David R.
in
Analysis
/ Animals
/ Bioassays
/ Brazil
/ chemical control
/ Chrysodeixis includens
/ Cyhalothrin
/ cytochrome P-450
/ Cytochrome P450
/ defoliating insects
/ Detoxification
/ entomology
/ G protein-coupled receptors
/ Gene Expression Profiling
/ Genes
/ Genetic research
/ Geographical distribution
/ Glucuronosyltransferase
/ glucuronosyltransferases
/ Glutathione
/ Glutathione transferase
/ head
/ Insecticide Resistance - genetics
/ INSECTICIDE RESISTANCE AND RESISTANCE MANAGEMENT
/ Insecticides
/ Insecticides - pharmacology
/ Larvae
/ metabolic detoxification
/ Metabolism
/ Molecular modelling
/ Moths - genetics
/ Pseudoplusia includens
/ Pyrethrins
/ Pyrethroids
/ Ribonucleic acid
/ RNA
/ RNA sequencing
/ RNA-seq
/ Scientific equipment and supplies industry
/ Soybean
/ soybean looper
/ Soybeans
/ Tissues
/ Transcriptomes
/ transcriptomics
/ UDP-glucuronosyltransferase
2021
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Transcriptome Analysis of Pyrethroid-Resistant Chrysodeixis includens (Lepidoptera: Noctuidae) Reveals Overexpression of Metabolic Detoxification Genes
by
Stacke, Regis F.
, Tabuloc, Christine A.
, Guedes, Jerson C.
, Perini, Clerison R.
, Chiu, Joanna C.
, Zalom, Frank G.
, Bernardi, Oderlei
, Nelson, David R.
in
Analysis
/ Animals
/ Bioassays
/ Brazil
/ chemical control
/ Chrysodeixis includens
/ Cyhalothrin
/ cytochrome P-450
/ Cytochrome P450
/ defoliating insects
/ Detoxification
/ entomology
/ G protein-coupled receptors
/ Gene Expression Profiling
/ Genes
/ Genetic research
/ Geographical distribution
/ Glucuronosyltransferase
/ glucuronosyltransferases
/ Glutathione
/ Glutathione transferase
/ head
/ Insecticide Resistance - genetics
/ INSECTICIDE RESISTANCE AND RESISTANCE MANAGEMENT
/ Insecticides
/ Insecticides - pharmacology
/ Larvae
/ metabolic detoxification
/ Metabolism
/ Molecular modelling
/ Moths - genetics
/ Pseudoplusia includens
/ Pyrethrins
/ Pyrethroids
/ Ribonucleic acid
/ RNA
/ RNA sequencing
/ RNA-seq
/ Scientific equipment and supplies industry
/ Soybean
/ soybean looper
/ Soybeans
/ Tissues
/ Transcriptomes
/ transcriptomics
/ UDP-glucuronosyltransferase
2021
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Transcriptome Analysis of Pyrethroid-Resistant Chrysodeixis includens (Lepidoptera: Noctuidae) Reveals Overexpression of Metabolic Detoxification Genes
by
Stacke, Regis F.
, Tabuloc, Christine A.
, Guedes, Jerson C.
, Perini, Clerison R.
, Chiu, Joanna C.
, Zalom, Frank G.
, Bernardi, Oderlei
, Nelson, David R.
in
Analysis
/ Animals
/ Bioassays
/ Brazil
/ chemical control
/ Chrysodeixis includens
/ Cyhalothrin
/ cytochrome P-450
/ Cytochrome P450
/ defoliating insects
/ Detoxification
/ entomology
/ G protein-coupled receptors
/ Gene Expression Profiling
/ Genes
/ Genetic research
/ Geographical distribution
/ Glucuronosyltransferase
/ glucuronosyltransferases
/ Glutathione
/ Glutathione transferase
/ head
/ Insecticide Resistance - genetics
/ INSECTICIDE RESISTANCE AND RESISTANCE MANAGEMENT
/ Insecticides
/ Insecticides - pharmacology
/ Larvae
/ metabolic detoxification
/ Metabolism
/ Molecular modelling
/ Moths - genetics
/ Pseudoplusia includens
/ Pyrethrins
/ Pyrethroids
/ Ribonucleic acid
/ RNA
/ RNA sequencing
/ RNA-seq
/ Scientific equipment and supplies industry
/ Soybean
/ soybean looper
/ Soybeans
/ Tissues
/ Transcriptomes
/ transcriptomics
/ UDP-glucuronosyltransferase
2021
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Transcriptome Analysis of Pyrethroid-Resistant Chrysodeixis includens (Lepidoptera: Noctuidae) Reveals Overexpression of Metabolic Detoxification Genes
Journal Article
Transcriptome Analysis of Pyrethroid-Resistant Chrysodeixis includens (Lepidoptera: Noctuidae) Reveals Overexpression of Metabolic Detoxification Genes
2021
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Overview
Chrysodeixis includens (Walker, [1858]) is one of the most important defoliator of soybean in Brazil because of its extensive geographical distribution and high tolerance to insecticides compared with other species of caterpillars. Because of this, we conducted bioassays to evaluate the efficacy of pyrethroid λ-cyhalothrin on a C. includens resistant strain (MS) and a susceptible (LAB) laboratory strain. High throughput RNA sequencing (RNA-seq) of larval head and body tissues were performed to identify potential molecular mechanisms underlying pyrethroid resistance. Insecticide bioassays showed that MS larvae exhibit 28.9-fold resistance to pyrethroid λ-cyhalothrin relative to LAB larvae. RNA-seq identified evidence of metabolic resistance in the head and body tissues: 15 cytochrome P450 transcripts of Cyp6, Cyp9, Cyp4, Cyp304, Cyp307, Cyp337, Cyp321 families, 7 glutathione-S-transferase (Gst) genes, 7 α-esterase genes from intracellular and secreted catalytic classes, and 8 UDP-glucuronosyltransferase (Ugt) were overexpressed in MS as compared with LAB larvae. We also identified overexpression of GPCR genes (CiGPCR64-like and CiGPCRMth2) in the head tissue. To validate RNA-seq results, we performed RT-qPCR to assay selected metabolic genes and confirmed their expression profiles. Specifically, CiCYP9a101v1, CiCYP6ae149, CiCYP6ae106v2, CiGSTe13, CiCOE47, and CiUGT33F21 exhibited significant overexpression in resistant MS larvae. In summary, our findings detailed potential mechanisms of metabolic detoxification underlying pyrethroid resistance in C. includens.
Publisher
Entomological Society of America,Oxford University Press
Subject
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