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Journal of Endotoxin Research|October 25, 2007
IEIIS Meeting minireview: Bordetella evolution: lipid A and Toll-like receptor 4Iain MacArthur, Paul B Mann, Eric T Harvill, et al.Advances in Experimental Medicine and Biology|July 20, 2019
How Genomics Is Changing What We Know About the Evolution and Genome of Bordetella pertussisNatalie Ring, Jonathan S Abrahams, Stefan Bagby, et al.Genome Biology and Evolution|April 4, 2017
Comparative Genomics of Rhodococcus equi Virulence Plasmids Indicates Host-Driven Evolution of the vap Pathogenicity IslandIain MacArthur, Elisa Anastasi, Sonsiray Alvarez, et al.Emerging Microbes & Infections|April 11, 2019
The evolution of Bordetella pertussis has selected for mutations of acr that lead to sensitivity to hydrophobic molecules and fatty acidsIain MacArthur, Thomas Belcher, Jerry D King, et al.Plos One|May 1, 2020
A qPCR assay for Bordetella pertussis cells that enumerates both live and dead bacteriaStacy Ramkissoon, Iain MacArthur, Muktar Ibrahim, et al.Genome Biology and Evolution|September 18, 2016
Pangenome and Phylogenomic Analysis of the Pathogenic Actinobacterium Rhodococcus equiElisa Anastasi, Iain MacArthur, Mariela Scortti, et al.Veterinary Microbiology|September 3, 2013
Rhodococcus equi: the many facets of a pathogenic actinomyceteJosé A Vázquez-Boland, Steeve Giguère, Alexia Hapeshi, et al.Microbial Genomics|December 9, 2020
Fundamental differences in physiology of Bordetella pertussis dependent on the two-component system Bvg revealed by gene essentiality studiesThomas Belcher, Iain MacArthur, Jerry D King, et al.Veterinary Microbiology|July 20, 2010
The sensor kinase MprB is required for Rhodococcus equi virulenceIain MacArthur, Valeria R Parreira, Dion Lepp, et al.Veterinary Microbiology|May 24, 2014
Mouse lung infection model to assess Rhodococcus equi virulence and vaccine protectionPatricia González-Iglesias, Mariela Scortti, Iain MacArthur, et al.Pageof 2