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Article

Hammond, A, Karlsson, X, Morianou, I, Kyrou, K, Beaghton, A, Gribble, M, Kranjc, N, Galizi, R ORCID: https://orcid.org/0000-0003-3134-7480, Burt, A, Crisanti, A and Nolan, T (2021) Regulating the expression of gene drives is key to increasing their invasive potential and the mitigation of resistance. PLoS Genetics, 17 (1). e1009321 - ?.

Hammond, A, Kyrou, K, Karlsson, X, Galizi, R ORCID: https://orcid.org/0000-0003-3134-7480, Kranjc, N, Baghton, A, Morianou, I, Burt, A, Crisanti, A and Nolan, T (2019) Gene drives for genetic control of the malaria mosquito. FEBS Open Bio, 9. 62 - 62.

Hammond, A, Kyrou, K, Gribble, M, Karlsson, X, Morianou, I, Galizi, R ORCID: https://orcid.org/0000-0003-3134-7480, Beaghton, A, Crisanti, A and Nolan, T (2018) Improved CRISPR-based suppression gene drives mitigate resistance and impose a large reproductive load on laboratory-contained mosquito populations. BioRxiv.

Hammond, AM, Kyrou, K, Bruttini, M, North, A, Galizi, R ORCID: https://orcid.org/0000-0003-3134-7480, Karlsson, X, Kranjc, N, Carpi, FM, D'Aurizio, R, Crisanti, A and Nolan, T (2017) The creation and selection of mutations resistant to a gene drive over multiple generations in the malaria mosquito. PLoS Genetics, 13 (10). e1007039 - ?.

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