Trova

Frontiers Multiple Ehrlichia chaffeensis genes critical for persistent infection in a vertebrate host are identified as nonessential for its growth in the tick vector; Amblyomma americanum

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Rickettsia, Ehrlichia, Coxiella and Bartonella

Frontiers Genetic Manipulation of Ticks: A Paradigm Shift in Tick and Tick-Borne Diseases Research

Figure. Maximum-likelihood phylogenetic tree for Ehrlichia chaffensis

Frontiers Proteome analysis of Ehrlichia chaffeensis containing phagosome membranes revealed the presence of numerous bacterial and host proteins

Frontiers Ehrlichia chaffeensis EplA Interaction With Host Cell Protein Disulfide Isomerase Promotes Infection

Ehrlichia chaffeensis Infection in the Reservoir Host (White-Tailed Deer) and in an Incidental Host (Dog) Is Impacted by Its Prior Growth in Macrophage and Tick Cell Environments

Frontiers in Cellular and Infection Microbiology

Frontiers Multiple Ehrlichia chaffeensis genes critical for persistent infection in a vertebrate host are identified as nonessential for its growth in the tick vector; Amblyomma americanum

Pathogens, Free Full-Text

Frontiers Emerging Roles of Autophagy and Inflammasome in Ehrlichiosis

Ecological and evolutionary perspectives on tick-borne pathogen co- infections - ScienceDirect