Search Results - "De Beer, Berdien"

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  1. 1

    Trans-driven variation in expression is common among detoxification genes in the extreme generalist herbivore Tetranychus urticae by Kurlovs, Andre H, De Beer, Berdien, Ji, Meiyuan, Vandenhole, Marilou, De Meyer, Tim, Feyereisen, René, Clark, Richard M, Van Leeuwen, Thomas

    Published in PLoS genetics (14-11-2022)
    “…The extreme adaptation potential of the generalist herbivore Tetranychus urticae (the two-spotted spider mite) to pesticides as well as diverse host plants has…”
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    Journal Article
  2. 2

    Intraspecific diversity in the mechanisms underlying abamectin resistance in a cosmopolitan pest by Villacis‐Perez, Ernesto, Xue, Wenxin, Vandenhole, Marilou, De Beer, Berdien, Dermauw, Wannes, Van Leeuwen, Thomas

    Published in Evolutionary applications (01-04-2023)
    “…Pesticide resistance relies on a myriad of mechanisms, ranging from single mutations to a complex and polygenic architecture, and it involves mechanisms such…”
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  3. 3

    A nuclear receptor HR96-related gene underlies large trans-driven differences in detoxification gene expression in a generalist herbivore by Ji, Meiyuan, Vandenhole, Marilou, De Beer, Berdien, De Rouck, Sander, Villacis-Perez, Ernesto, Feyereisen, René, Clark, Richard M., Van Leeuwen, Thomas

    Published in Nature communications (17-08-2023)
    “…The role, magnitude, and molecular nature of trans -driven expression variation underlying the upregulation of detoxification genes in pesticide resistant…”
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  4. 4
  5. 5

    A glutamate-gated chloride channel as the mite-specific target-site of dicofol and other diphenylcarbinol acaricides by Vandenhole, Marilou, Mermans, Catherine, De Beer, Berdien, Xue, Wenxin, Zhao, Yilan, Ozoe, Yoshihisa, Liu, Genyan, Dermauw, Wannes, Van Leeuwen, Thomas

    Published in Communications biology (13-11-2023)
    “…Dicofol has been widely used to control phytophagous mites. Although dicofol is chemically related to DDT, its mode of action has remained elusive. Here, we…”
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    Journal Article
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  7. 7

    Contrasting roles of cytochrome P450s in amitraz and chlorfenapyr resistance in the crop pest Tetranychus urticae by Vandenhole, Marilou, Lu, Xueping, Tsakireli, Dimitra, Mermans, Catherine, De Rouck, Sander, De Beer, Berdien, Simma, Eba, Pergantis, Spiros A, Jonckheere, Wim, Vontas, John, Van Leeuwen, Thomas

    Published in Insect biochemistry and molecular biology (01-01-2024)
    “…The molecular mechanisms of amitraz and chlorfenapyr resistance remain only poorly understood for major agricultural pests and vectors of human diseases. This…”
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    Journal Article