Dynamic roles of insect carboxyl/cholinesterases in chemical adaptation

C Cruse, TW Moural, F Zhu - Insects, 2023 - mdpi.com
Simple Summary Carboxyl/cholinesterases (CCEs) represent a family of enzymes
distributed in many organisms, including insects. Despite their relatively simple catalyzed …

The bitter truth: how insects cope with toxic plant alkaloids

S Leite Dias, JC D'Auria - Journal of Experimental Botany, 2025 - academic.oup.com
Plants are unique organisms that have developed ingenious strategies to cope with
environmental challenges, such as herbivorous insects. One of these strategies is the …

[HTML][HTML] Expression profile of the entire detoxification gene inventory of the western honeybee, Apis mellifera across life stages

F Maiwald, J Haas, G Hertlein, B Lueke… - Pesticide Biochemistry …, 2023 - Elsevier
The western honeybee, Apis mellifera, is a managed pollinator of many crops and
potentially exposed to a wide range of foreign compounds, including pesticides throughout …

New and emerging mechanisms of insecticide resistance

J Pu, H Chung - Current Opinion in Insect Science, 2024 - Elsevier
The continuous use of insecticides over the last eight decades has led to the development of
resistance to these insecticides. Research in the last few decades showed that the …

Identification and functional characterization of an omega-class glutathione s-transferase gene PcGSTO1 associated with cyetpyrafen resistance in panonychus citri …

LL Ding, SJ Yu, S Lei, Q Pan, L Liu, SC Li… - Journal of Agricultural …, 2024 - ACS Publications
Cyetpyrafen is a recently developed acaricide. The citrus red mite, Panonychus citri
(McGregor), has developed significant resistance to cyetpyrafen. However, the molecular …

[HTML][HTML] Assessing the effects of a commercial fungicide and an herbicide, alone and in combination, on Apis mellifera: Insights from biomarkers and cognitive analysis

A Di Noi, I Caliani, A D'Agostino, G Cai, M Romi… - Chemosphere, 2024 - Elsevier
Agrochemicals play a vital role in protecting crops and enhancing agricultural production by
reducing threats from pests, pathogens and weeds. The toxicological status of honey bees …

Insights into chlorantraniliprole exposure via activating cytochrome P450-mediated xenobiotic metabolism pathway in the Procambarus clarkii: Identification of P450 …

X Liu, DD Bian, Q Jiang, JJ Jiang, Y Jin… - International Journal of …, 2024 - Elsevier
To investigate the impact of chlorantraniliprole on Procambarus clarkii, acute toxicity tests
were performed. Results indicated that 96 h post-exposure to chlorantraniliprole (60 mg/L) …

Unclassified glutathione‐S‐transferase AiGSTu1 confers chlorantraniliprole tolerance in Agrotis ipsilon

HL Yang, JM Yu, F Cao, WY Li, B Li… - Pest Management …, 2024 - Wiley Online Library
BACKGROUND Chlorantraniliprole (CAP) is a diamide insecticide with high efficacy against
many pest insects, including the black cutworm, Agrotis ipsilon. Agrotis ipsilon is a serious …

Clinical physiology and pharmacology of GSTZ1/MAAI

PW Stacpoole - Biochemical Pharmacology, 2023 - Elsevier
Herein I summarize the physiological chemistry and pharmacology of the bifunctional
enzyme glutathione transferase zeta 1 (GSTZ1)/maleylacetoacetate isomerase (MAAI) …

Genome-Wide Scanning Loci and Differentially Expressed Gene Analysis Unveils the Molecular Mechanism of Chlorantraniliprole Resistance in Spodoptera …

Z Sun, Z Lu, T Xiao, Y Chen, P Fu, K Lu… - Journal of Agricultural …, 2023 - ACS Publications
Chlorantraniliprole has been widely used to control Spodoptera frugiperda, but it has led to
the development of chlorantraniliprole resistance. Multiomics analysis of strains with two …