Reference health

The molecular basis of two contrasting metabolic mechanisms of insecticide resistance

https://doi.org/10.1016/s0965-1748(00)00079-5
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1 of 41 checkable references need attention · checked 2026-07-21

At the dated check, the references listed below either did not resolve in Crossref or DataCite, or carried a retraction notice. Each one is shown with the registry record that put it there.

5 without a DOI — not checked. A reference deposited without a DOI is never matched by title or guessed at; it stays outside the checked set, and this line discloses that.

References needing attention

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The 40 checked references that resolve
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Improved Detection of Insecticide Resistance Through Conventional and Molecular Techniques
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Two different amino acid substitutions in the ali-esterase, E3, confer alternative types of organophosphorus insecticide resistance in the sheep blowfly, Lucilia cuprina
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INSECT P450 ENZYMES
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Molecular evidence that insecticide resistance in peach-potato aphids (<i>Myzus persicae</i> Sulz.) results from amplification of an esterase gene
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Glutathione S-transferase 1 and 2 in susceptible and insecticide resistant Aedes aegypti
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A possible novel link between organophosphorus and DDT insecticide resistance genes in Anopheles: Supporting evidence from fenitrothion metabolism studies
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Aldehyde oxidase is coamplified with the World's most common <i>Culex</i> mosquito insecticide resistance‐associated esterases
resolves10.1046/j.1365-2915.1998.00082.x
Mosquito carboxylesterases: a review of the molecular biology and biochemistry of a major insecticide resistance mechanism
resolves10.1016/0048-3575(87)90074-5
The detection and characterization of malathion resistance in field populations of Anopheles culicifacies B in Sri Lanka
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Characterization of a B-type esterase involved in insecticide resistance from the mosquito <i>Culex quinquefasciatus</i>
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Kinetic and Molecular Differences in the Amplified and Non-amplified Esterases from Insecticide-resistant and Susceptible Culex quinquefasciatus Mosquitoes
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Amplification of a serine esterase gene is involved in insecticide resistance in Sri Lankan <i>Culex tritaeniorhynchus</i>
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Interstrain comparison of glutathione-dependent reactions in susceptible and resistant houseflies
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Genetic studies on glutathione-dependent reactions in resistant strains of the house fly, Musca domestica L
resolves10.1126/science.3755546
Amplification of an Esterase Gene Is Responsible for Insecticide Resistance in a California <i>Culex</i> Mosquito
resolves10.1006/pest.1993.1070
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resolves10.1017/S0007485300034350
DDT-resistance in<i>Anopheles gambiae</i>(Diptera: Culicidae) from Zanzibar, Tanzania, based on increased DDT-dehydrochlorinase activity of glutathione S-transferases
resolves10.1016/S0965-1748(98)00006-X
Cloning, expression and characterization of an insect class I glutathione S-transferase from Anopheles dirus species B
resolves10.1042/bj3240097
Cloning and characterization of two glutathione S-transferases from a DDT-resistant strain of <i>Anopheles gambiae</i>
resolves10.1073/pnas.95.24.14284
The role of alternative mRNA splicing in generating heterogeneity within the <i>Anopheles gambiae</i> class I glutathione <i>S-</i> transferase family
resolves10.1098/rstb.1998.0322
An overview of the evolution of overproduced esterases in the mosquito Culex pipiens
resolves10.1016/S0965-1748(00)00007-2
Differential glycosylation produces heterogeneity in elevated esterases associated with insecticide resistance in the brown planthopper Nilaparvata lugens Stål
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Molecular characterization of the amplified carboxylesterase gene associated with organophosphorus insecticide resistance in the brown planthopper, <i>Nilaparvata lugens</i>
resolves10.1089/dna.1997.16.1373
Molecular Phylogeny of Glutathione-S-Transferases
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The glutathione S-transferase D genes. A divergently organized, intronless gene family in Drosophila melanogaster
resolves10.1042/bj3250359
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resolves10.1074/jbc.270.28.17044
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The 5 references without a DOI — listed, not checked
no DOI — not checkedCombined use of biochemical, immunological and molecular assays for infection, species identification and resistance detection in field populations of Anopheles (Diptera: Culicidae)
no DOI — not checkedThe role of gene splicing, gene amplification and regulation in mosquito insecticide resistance
no DOI — not checkedRanson, H., 1996. Molecular characterisation of class I glutathione S-transferases from Anopheles gambiae. Ph.D. thesis. University of Wales, Cardiff, UK.
no DOI — not checkedRanson, H., Hemingway, J., Collins, F.H., 1999. Positional cloning of DDT resistance genes from Anopheles gambiae. Ins. Mol. Biol. [Submitted].
no DOI — not checkedInsect cytochromes P450: diversity, insecticide resistance and tolerance to plant toxins
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