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Insect Biochemistry and Molecular Biology|May 31, 2008
Over-expression of cytochrome P450 CYP6CM1 is associated with high resistance to imidacloprid in the B and Q biotypes of Bemisia tabaci (Hemiptera: Aleyrodidae)Iris Karunker, Juergen Benting, Bettina Lueke, et al.
Nature|December 24, 2004
Transposition of hAT elements links transposable elements and V(D)J recombinationLiqin Zhou, Rupak Mitra, Peter W Atkinson, et al.
Genetics|November 17, 2004
An active transposable element, Herves, from the African malaria mosquito Anopheles gambiaePeter Arensburger, Yu-Jung Kim, Jamison Orsetti, et al.
The Journal of Heredity|April 16, 2009
Hermes transposon distribution and structure in Musca domesticaRamanand A Subramanian, Laura A Cathcart, Elliot S Krafsur, et al.
Iscience|May 26, 2023
A sucrose-specific receptor in Bemisia tabaci and its putative role in phloem feedingOfer Aidlin Harari, Amir Dekel, Dor Wintraube, et al.
Insect Biochemistry and Molecular Biology|September 1, 2009
Structural model and functional characterization of the Bemisia tabaci CYP6CM1vQ, a cytochrome P450 associated with high levels of imidacloprid resistanceIris Karunker, Evangelia Morou, Dimitra Nikou, et al.
Insect Biochemistry and Molecular Biology|June 4, 2018
Targeting detoxification genes by phloem-mediated RNAi: A new approach for controlling phloem-feeding insect pestsGalit Eakteiman, Rita Moses-Koch, Pnina Moshitzky, et al.
Journal of Economic Entomology|September 25, 2003
Insect resistance to transgenic Bt crops: lessons from the laboratory and fieldBruce E Tabashnik, Yves Carrière, Timothy J Dennehy, et al.
Genome Biology and Evolution|January 24, 2020
Molecular Evolution of the Glutathione S-Transferase Family in the Bemisia tabaci Species ComplexOfer Aidlin Harari, Diego Santos-Garcia, Mirit Musseri, et al.
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