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Biology Letters|February 18, 2011
Coevolving parasites enhance the diversity-decreasing effect of dispersalTom Vogwill, Andy Fenton, Michael A BrockhurstEvolution; International Journal of Organic Evolution|January 7, 2010
How does spatial dispersal network affect the evolution of parasite local adaptation?Tom Vogwill, Andy Fenton, Michael A BrockhurstEcology Letters|September 2, 2009
Dispersal and natural enemies interact to drive spatial synchrony and decrease stability in patchy populationsTom Vogwill, Andy Fenton, Michael A BrockhurstThe American Naturalist|March 11, 2009
Source populations act as coevolutionary pacemakers in experimental selection mosaics containing hotspots and coldspotsTom Vogwill, Andy Fenton, Angus Buckling, et al.Plos One|November 9, 2007
Epistatic interactions alter dynamics of multilocus gene-for-gene coevolutionAndy Fenton, Michael A BrockhurstEvolution; International Journal of Organic Evolution|July 5, 2012
Two-step infection processes can lead to coevolution between functionally independent infection and resistance pathwaysAndy Fenton, Janis Antonovics, Michael A BrockhurstThe New Phytologist|August 6, 2015
Coevolution can explain defensive secondary metabolite diversity in plantsMichael P Speed, Andy Fenton, Meriel G Jones, et al.Evolutionary Applications|April 11, 2015
The genetic basis of the fitness costs of antimicrobial resistance: a meta-analysis approachTom Vogwill, R Craig MacLeanEvolution, Medicine, and Public Health|December 24, 2014
Limits to compensatory adaptation and the persistence of antibiotic resistance in pathogenic bacteriaR Craig MacLean, Tom VogwillPlos One|July 27, 2007
Population bottlenecks promote cooperation in bacterial biofilmsMichael A BrockhurstPageof 21