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Plos One|July 24, 2014
Medusa: a novel gene drive system for confined suppression of insect populationsJohn M Marshall, Bruce A HayThe Journal of Heredity|April 16, 2011
Inverse Medea as a novel gene drive system for local population replacement: a theoretical analysisJohn M Marshall, Bruce A HayJournal of Theoretical Biology|November 19, 2011
Confinement of gene drive systems to local populations: a comparative analysisJohn M Marshall, Bruce A HayEvolution; International Journal of Organic Evolution|July 5, 2012
General principles of single-construct chromosomal gene driveJohn M Marshall, Bruce A HayAnnual Review of Genetics|September 18, 2023
Manipulating the Destiny of Wild Populations Using CRISPRRobyn Raban, John M Marshall, Bruce A Hay, et al.Genetics|November 17, 2010
Semele: a killer-male, rescue-female system for suppression and replacement of insect disease vector populationsJohn M Marshall, Geoffrey W Pittman, Anna B Buchman, et al.ACS Synthetic Biology|April 3, 2018
Engineered Reciprocal Chromosome Translocations Drive High Threshold, Reversible Population Replacement in DrosophilaAnna B Buchman, Tobin Ivy, John M Marshall, et al.ACS Synthetic Biology|May 10, 2013
Novel synthetic Medea selfish genetic elements drive population replacement in Drosophila; a theoretical exploration of Medea-dependent population suppressionOmar S Akbari, Chun-Hong Chen, John M Marshall, et al.Current Biology : CB|April 2, 2013
A synthetic gene drive system for local, reversible modification and suppression of insect populationsOmar S Akbari, Kelly D Matzen, John M Marshall, et al.Pageof 16