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Author Report for: Dermauw W

No contact information in database for Dermauw W

    Title: High-Resolution Genetic Mapping Combined with Transcriptome Profiling Reveals That Both Target-Site Resistance and Increased Detoxification Confer Resistance to the Pyrethroid Bifenthrin in the Spider Mite Tetranychus urticae
    De Beer B, Vandenhole M, Njiru C, Spanoghe P, Dermauw W, Van Leeuwen T
    Ref: Biology (Basel), 11:, 2022 : PubMed


    Title: Long-term survey and characterization of cyflumetofen resistance in Tetranychus urticae populations from Turkey
    Inak E, Alpkent YN, Saalwaechter C, Albayrak T, Inak A, Dermauw W, Geibel S, Van Leeuwen T
    Ref: Pestic Biochem Physiol, 188:105235, 2022 : PubMed


    Title: Biochemical and molecular mechanisms of acaricide resistance in Dermanyssus gallinae populations from Turkey
    Koc N, Inak E, Nalbantoglu S, Alpkent YN, Dermauw W, Van Leeuwen T
    Ref: Pestic Biochem Physiol, 180:104985, 2022 : PubMed


    Title: Variation of diazinon and amitraz susceptibility of Hyalomma marginatum (Acari: Ixodidae) in the Rabat-Sale-Kenitra region of Morocco
    Elhachimi L, Van Leeuwen T, Dermauw W, Rogiers C, Valcarcel F, Olmeda AS, Khatat SE, Daminet S, Sahibi H, Duchateau L
    Ref: Ticks Tick Borne Dis, 13:101883, 2021 : PubMed


    Title: Identification and characterization of striking multiple-insecticide resistance in a Tetranychus urticae field population from Greece
    Papapostolou KM, Riga M, Charamis J, Skoufa E, Souchlas V, Ilias A, Dermauw W, Ioannidis P, Van Leeuwen T, Vontas J
    Ref: Pest Manag Sci, 77:666, 2021 : PubMed


    Title: Acaricide resistance status and identification of resistance mutations in populations of the two-spotted spider mite Tetranychus urticae from Ethiopia
    Simma EA, Hailu B, Jonckheere W, Rogiers C, Duchateau L, Dermauw W, Van Leeuwen T
    Ref: Exp Appl Acarol, 82:475, 2020 : PubMed


    Title: Overexpression of an alternative allele of carboxyl/choline esterase 4 (CCE04) of Tetranychus urticae is associated with high levels of resistance to the keto-enol acaricide spirodiclofen
    Wei P, Demaeght P, De Schutter K, Grigoraki L, Labropoulou V, Riga M, Vontas J, Nauen R, Dermauw W, Van Leeuwen T
    Ref: Pest Manag Sci, 76:1142, 2020 : PubMed


    Title: Molecular characterization of pyrethroid resistance in the olive fruit fly Bactrocera oleae
    Pavlidi N, Kampouraki A, Tseliou V, Wybouw N, Dermauw W, Roditakis E, Nauen R, Van Leeuwen T, Vontas J
    Ref: Pestic Biochem Physiol, 148:1, 2018 : PubMed


    Title: The relative contribution of target-site mutations in complex acaricide resistant phenotypes as assessed by marker assisted backcrossing in Tetranychus urticae
    Riga M, Bajda S, Themistokleous C, Papadaki S, Palzewicz M, Dermauw W, Vontas J, Leeuwen TV
    Ref: Sci Rep, 7:9202, 2017 : PubMed


    Title: Molecular analysis of cyenopyrafen resistance in the two-spotted spider mite Tetranychus urticae
    Khalighi M, Dermauw W, Wybouw N, Bajda S, Osakabe M, Tirry L, Van Leeuwen T
    Ref: Pest Manag Sci, 72:103, 2016 : PubMed


    Title: The Molecular Evolution of Xenobiotic Metabolism and Resistance in Chelicerate Mites
    Van Leeuwen T, Dermauw W
    Ref: Annual Review of Entomology, 61:475, 2016 : PubMed


    Title: Transcriptome profiling of a spirodiclofen susceptible and resistant strain of the European red mite Panonychus ulmi using strand-specific RNA-seq
    Bajda S, Dermauw W, Greenhalgh R, Nauen R, Tirry L, Clark RM, Van Leeuwen T
    Ref: BMC Genomics, 16:974, 2015 : PubMed


    Title: Genome sequence of the Asian Tiger mosquito, Aedes albopictus, reveals insights into its biology, genetics, and evolution
    Chen XG, Jiang X, Gu J, Xu M, Wu Y, Deng Y, Zhang C, Bonizzoni M, Dermauw W and James AA <21 more author(s)>
    Ref: Proc Natl Acad Sci U S A, 112:E5907, 2015 : PubMed


    Title: Genotype to phenotype, the molecular and physiological dimensions of resistance in arthropods
    Feyereisen R, Dermauw W, Van Leeuwen T
    Ref: Pestic Biochem Physiol, 121:61, 2015 : PubMed


    Title: Molecular analysis of resistance to acaricidal spirocyclic tetronic acids in Tetranychus urticae: CYP392E10 metabolizes spirodiclofen, but not its corresponding enol
    Demaeght P, Dermauw W, Tsakireli D, Khajehali J, Nauen R, Tirry L, Vontas J, Lummen P, Van Leeuwen T
    Ref: Insect Biochemistry & Molecular Biology, 43:544, 2013 : PubMed


    Title: The genome of Tetranychus urticae reveals herbivorous pest adaptations
    Grbic M, Van Leeuwen T, Clark RM, Rombauts S, Rouze P, Grbic V, Osborne EJ, Dermauw W, Ngoc PC and Van de Peer Y <45 more author(s)>
    Ref: Nature, 479:487, 2011 : PubMed


    Title: Acaricide resistance mechanisms in the two-spotted spider mite Tetranychus urticae and other important Acari: a review
    Van Leeuwen T, Vontas J, Tsagkarakou A, Dermauw W, Tirry L
    Ref: Insect Biochemistry & Molecular Biology, 40:563, 2010 : PubMed


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Mail to: Nicolas Lenfant, Thierry Hotelier, Yves Bourne, Pascale Marchot and Arnaud Chatonnet.
Please cite: Lenfant 2013 Nucleic.Acids.Res. or Marchot Chatonnet 2012 Prot.Pept Lett.
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