专题:Insect Resistance and Genetics

This cluster of papers explores the molecular mechanisms and evolutionary ecology of insect resistance to synthetic and natural xenobiotics, with a focus on Bacillus thuringiensis toxins, RNA interference, P450 enzymes, and the environmental impact of transgenic crops. It covers topics such as mode of action, plant-insect interactions, and the development of insecticide resistance in agricultural pests.
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Nanoparticle‐enhanced multi‐target RNAi in Myzus persicae : Molecular mechanisms, cross‐kingdom sRNA transfer, and efficacy for sustainable pest management

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From Waste to Defense: Agro-Industrial Byproducts as Sources of Biopesticides and Bioelicitors for Crop Protection

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Environmental risk assessment and management strategies for acetamiprid insecticide

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The pleiotropic effects of a single transcription factor underpin trade-offs associated with insecticide resistance in whitefly

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CRISPR/CAS9 mediated genome editing in insects: application in functional genomics and pest management

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Insecticide resistance in the house fly (Musca domestica): metabolic detoxification, key genes, and regulatory characterization

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Plant strategies against herbivorous insects

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RNAi‐Based Pesticides: Genetic Innovations for Sustainable Crop Protection and One Health

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Exposure to sublethal hexaflumuron delays development and reduces reproductive potential in the fall armyworm (Lepidoptera: Noctuidae) across generations

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A comprehensive review of new pesticides developed between 2015 and 2025

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