Allelic Variation of Cytochrome P450s Drives Resistance to Bednet Insecticides in a Major Malaria Vector

Author:

Ibrahim Sulaiman S.,Riveron Jacob M.,Bibby Jaclyn,Irving Helen,Yunta Cristina,Paine Mark J. I.,Wondji Charles S.

Publisher

Public Library of Science (PLoS)

Subject

Cancer Research,Genetics (clinical),Genetics,Molecular Biology,Ecology, Evolution, Behavior and Systematics

Reference63 articles.

1. World Malaria Report 2014,2014

2. The role of vector control in stopping the transmission of malaria: threats and opportunities;J Hemingway;Philosophical transactions of the Royal Society of London Series B, Biological sciences,2014

3. WHO. Report of the sixteenth WHOPES working group meeting: WHO/HQ, Geneva, 22–30 July 2013: review of Pirimiphos-methyl 300 CS, Chlorfenapyr 240 SC, Deltamethrin 62.5 SC-PE, Duranet LN, Netprotect LN, Yahe LN, Spinosad 83.3 Monolayer DT, Spinosad 25 Extended release GR. Geneva, Switzerland: World Health Organization, 2013 924150630X.

4. The highly polymorphic CYP6M7 cytochrome P450 gene partners with the directionally selected CYP6P9a and CYP6P9b genes to expand the pyrethroid resistance front in the malaria vector Anopheles funestus in Africa;JM Riveron;BMC Genomics,2014

5. Widespread pyrethroid and DDT resistance in the major malaria vector Anopheles funestus in East Africa is driven by metabolic resistance mechanisms;C Mulamba;PLoS One,2014

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