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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Frontiers Ehrlichia chaffeensis EplA Interaction With Host Cell Protein Disulfide Isomerase Promotes Infection
Ongoing vaccine projects address 100-year-old disease and others in fight against tick-borne diseases // Bond Life Sciences Center
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
Frontiers Ehrlichia chaffeensis EplA Interaction With Host Cell Protein Disulfide Isomerase Promotes Infection
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
Frontiers Advances in the Study of the Tick Cattle Microbiota and the Influence on Vectorial Capacity
Targeted and Random Mutagenesis of Ehrlichia chaffeensis for the Identification of Genes Required for In vivo Infection
Pathogens, Free Full-Text
Targeted and Random Mutagenesis of Ehrlichia chaffeensis for the Identification of Genes Required for In vivo Infection
Frontiers Immunobiology of Acquired Resistance to Ticks
Frontiers Proteome analysis of Ehrlichia chaffeensis containing phagosome membranes revealed the presence of numerous bacterial and host proteins
Frontiers Ticks: More Than Just a Pathogen Delivery Service