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Proceedings of the National Academy of Sciences of the United States of America|February 4, 2025
Engineering drive-selection balance for localized population suppression with neutral dynamicsKatie Willis, Austin BurtPlos Genetics|March 23, 2021
Double drives and private alleles for localised population genetic controlKatie Willis, Austin BurtPlos Genetics|December 27, 2022
Gene drive designs for efficient and localisable population suppression using Y-linked editorsRené Geci, Katie Willis, Austin BurtNature Communications|January 2, 2025
A Y chromosome-linked genome editor for efficient population suppression in the malaria vector Anopheles gambiaeIgnacio Tolosana, Katie Willis, Matthew Gribble, et al.Nature Communications|October 28, 2025
A male-drive female-sterile system for the self-limited control of the malaria mosquito Anopheles gambiaeAnna Strampelli, Katie Willis, Hannah Robyn Gulliford, et al.Evolution; International Journal of Organic Evolution|June 9, 2017
THE EVOLUTION OF FITNESSAustin BurtProceedings. Biological Sciences|June 14, 2003
Site-specific selfish genes as tools for the control and genetic engineering of natural populationsAustin BurtPhilosophical Transactions of the Royal Society of London. Series B, Biological Sciences|May 14, 2014
Heritable strategies for controlling insect vectors of diseaseAustin BurtMolecular Biology and Evolution|April 22, 2005
Degeneration and domestication of a selfish gene in yeast: molecular evolution versus site-directed mutagenesisVassiliki Koufopanou, Austin BurtPageof 10