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2. An adjuvant formulation containing Toll-like Receptor 7 agonist stimulates protection against morbidity and mortality due to Anaplasma marginale in a highly endemic region of west Africa.

3. The Use of the Antigenically Variable Major Surface Protein 2 in the Establishment of Superinfection during Natural Tick Transmission of Anaplasma marginale in Southern Ghana.

4. Both Coinfection and Superinfection Drive Complex Anaplasma marginale Strain Structure in a Natural Transmission Setting.

5. Sequence and immunologic conservation of Anaplasma marginale OmpA within strains from Ghana as compared to the predominant OmpA variant.

6. Identification of a T-Cell Epitope That Is Globally Conserved among Outer Membrane Proteins (OMPs) OMP7, OMP8, and OMP9 of Anaplasma marginale Strains and with OMP7 from the A. marginale subsp. centrale Vaccine Strain.

7. Disaggregating Tropical Disease Prevalence by Climatic and Vegetative Zones within Tropical West Africa.

8. Expression of Anaplasma marginale ankyrin repeat-containing proteins during infection of the mammalian host and tick vector.

9. The immunization-induced antibody response to the Anaplasma marginale major surface protein 2 and its association with protective immunity.

10. Generation of antigenic variants via gene conversion: Evidence for recombination fitness selection at the locus level in Anaplasma marginale.

11. Superinfection as a driver of genomic diversification in antigenically variant pathogens.

12. Maintenance of antibody to pathogen epitopes generated by segmental gene conversion is highly dynamic during long-term persistent infection.

13. Selection for simple major surface protein 2 variants during Anaplasma marginale transmission to immunologically naïve animals.

14. Insights into mechanisms of bacterial antigenic variation derived from the complete genome sequence of Anaplasma marginale.

15. Structural basis for segmental gene conversion in generation of Anaplasma marginale outer membrane protein variants.

16. Transmission of Anaplasma marginale by Boophilus microplus: retention of vector competence in the absence of vector-pathogen interaction.

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