Mutations in the acetylcholinesterase gene of Bactrocera dorsalis associated with resistance to organophosphorus insecticides.
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Wen-Jer Wu | J. Hsu | D. Haymer | H. Feng
[1] R. W. Janes,et al. Detection of resistance-associated point mutations of organophosphate-insensitive acetylcholinesterase in the olive fruit fly, Bactrocera oleae (Gmelin) , 2005 .
[2] M. Williamson,et al. Identification of mutations conferring insecticide‐insensitive AChE in the cotton‐melon aphid, Aphis gossypii Glover , 2004, Insect molecular biology.
[3] T. Tomita,et al. Two amino acid substitutions in acetylcholinesterase associated with pirimicarb and organophosphorous insecticide resistance in the cotton aphid, Aphis gossypii Glover (Homoptera: Aphididae) , 2004, Insect molecular biology.
[4] Wen-Jer Wu,et al. Resistance and Synergistic Effects of Insecticides in Bactrocera dorsalis (Diptera: Tephritidae) in Taiwan , 2004, Journal of economic entomology.
[5] C. Malcolm,et al. The unique mutation in ace‐1 giving high insecticide resistance is easily detectable in mosquito vectors , 2004, Insect molecular biology.
[6] D. Fournier,et al. Acetylcholinesterase alterations reveal the fitness cost of mutations conferring insecticide resistance , 2004, BMC Evolutionary Biology.
[7] A. Devonshire,et al. Characterization of acetylcholinesterases, and their genes, from the hemipteran species Myzus persicae (Sulzer), Aphis gossypii (Glover), Bemisia tabaci (Gennadius) and Trialeurodes vaporariorum (Westwood) , 2003, Insect molecular biology.
[8] J. Hemingway,et al. Resistance‐associated point mutations of organophosphate insensitive acetylcholinesterase, in the olive fruit fly Bactrocera oleae , 2002, Insect molecular biology.
[9] J. Hemingway,et al. Altered Acetylcholinesterase Confers Organophosphate Resistance in the Olive Fruit Fly Bactrocera oleae , 2001 .
[10] T. Tomita,et al. Fenitroxon insensitive acetylcholinesterases of the housefly, Musca domestica associated with point mutations. , 2001, Insect biochemistry and molecular biology.
[11] D. Fournier,et al. A High Number of Mutations in Insect Acetylcholinesterase May Provide Insecticide Resistance , 2000 .
[12] Hsu JuChun,et al. Insecticide susceptibility of the oriental fruit fly (Bactrocera dorsalis (Hendel)) (Diptera: Tephritidae) in Taiwan. , 2000 .
[13] J L Sussman,et al. Three‐dimensional structures of Drosophila melanogaster acetylcholinesterase and of its complexes with two potent inhibitors , 2000, Protein science : a publication of the Protein Society.
[14] R. ffrench-Constant,et al. Why are there so few resistance-associated mutations in insecticide target genes? , 1998, Philosophical transactions of the Royal Society of London. Series B, Biological sciences.
[15] R. ffrench-Constant,et al. Site-directed mutagenesis of an acetylcholinesterase gene from the yellow fever mosquito Aedes aegypti confers insecticide insensitivity. , 1997, Experimental parasitology.
[16] J. Clark,et al. Cloning and sequencing of a cDNA encoding acetylcholinesterase in Colorado potato beetle, Leptinotarsa decemlineata (Say). , 1995, Insect biochemistry and molecular biology.
[17] A. Mutero,et al. Resistance-associated point mutations in insecticide-insensitive acetylcholinesterase. , 1994, Proceedings of the National Academy of Sciences of the United States of America.
[18] F. Karch,et al. Acetylcholinesterase. Two types of modifications confer resistance to insecticide. , 1992, The Journal of biological chemistry.
[19] T. Shishido,et al. Binding protein, a factor of fenitroxon detoxication in OP-resistant rice stem borers , 1989 .