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Sander De Rouck
Sander De Rouck
PhD student Ghent University (UGent)
Preverjeni e-poštni naslov na ugent.be
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Leto
A review of the molecular mechanisms of acaricide resistance in mites and ticks
S De Rouck, E İnak, W Dermauw, T Van Leeuwen
Insect Biochemistry and Molecular Biology 159, 103981, 2023
912023
Intradiol ring cleavage dioxygenases from herbivorous spider mites as a new detoxification enzyme family in animals
C Njiru, W Xue, S De Rouck, JM Alba, MR Kant, M Chruszcz, B Vanholme, ...
BMC biology 20 (1), 131, 2022
272022
SYNCAS: Efficient CRISPR/Cas9 gene-editing in difficult to transform arthropods
S De Rouck, A Mocchetti, W Dermauw, T Van Leeuwen
Insect biochemistry and molecular biology 165, 104068, 2024
222024
A nuclear receptor HR96-related gene underlies large trans-driven differences in detoxification gene expression in a generalist herbivore
M Ji, M Vandenhole, B De Beer, S De Rouck, E Villacis-Perez, ...
Nature Communications 14 (1), 4990, 2023
212023
Contrasting roles of cytochrome P450s in amitraz and chlorfenapyr resistance in the crop pest Tetranychus urticae
M Vandenhole, X Lu, D Tsakireli, C Mermans, S De Rouck, B De Beer, ...
Insect Biochemistry and Molecular Biology 164, 104039, 2024
132024
A novel target-site mutation (H146Q) outside the ubiquinone binding site of succinate dehydrogenase confers high levels of resistance to cyflumetofen and pyflubumide in …
E İnak, S De Rouck, B Demirci, W Dermauw, S Geibel, T Van Leeuwen
Insect Biochemistry and Molecular Biology 170, 104127, 2024
62024
SYNCAS based CRISPR-Cas9 gene editing in predatory mites, whiteflies and stinkbugs
A Mocchetti, S De Rouck, S Naessens, W Dermauw, T Van Leeuwen
Insect Biochemistry and Molecular Biology 177, 104232, 2025
42025
Identification and CRISPR-Cas9 validation of a novel β-adrenergic-like octopamine receptor mutation associated with amitraz resistance in Varroa destructor
E İnak, S De Rouck, N Koç-İnak, E Erdem, M Rüstemoğlu, W Dermauw, ...
Pesticide Biochemistry and Physiology 204, 106080, 2024
22024
The cytochrome P450 subfamilies CYP392A and CYP392D are key players in acaricide metabolism in Tetranychus urticae
D Tsakireli, M Vandenhole, M Riga, V Balabanidou, S De Rouck, J Ray, ...
Pesticide Biochemistry and Physiology 204, 106031, 2024
12024
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