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1 ydiae, Orientia tsutsugamushi, Wolbachia and Anaplasma marginale.
2 a hallmark of the tick transmitted pathogen Anaplasma marginale.
3 tein in the outer membrane of the rickettsia Anaplasma marginale.
4 perate-region strains of the cattle pathogen Anaplasma marginale.
5 of world-wide economic importance caused by Anaplasma marginale.
6 protein homologous to the MSP-2 proteins of Anaplasma marginale.
7 Ehrlichia species but distinct from that of Anaplasma marginale.
8 d antigenically polymorphic among strains of Anaplasma marginale.
10 t study, we examined the strain structure of Anaplasma marginale, a genogroup II ehrlichial pathogen,
11 , broad population immunity develops against Anaplasma marginale, a highly antigenically variant rick
12 immunodominant surface proteins, we examined Anaplasma marginale, a rickettsia with two highly immuno
14 We investigated this by using infection with Anaplasma marginale, a ruminant pathogen that replicates
18 , major surface protein 2 (MSP2) and MSP3 of Anaplasma marginale and Anaplasma ovis, Anaplasma phagoc
19 an immunodominant outer membrane protein of Anaplasma marginale and Anaplasma phagocytophilum pathog
21 to the model obligate intracellular pathogen Anaplasma marginale and the human pathogen Anaplasma pha
22 red unique to the intraerythrocytic agent of Anaplasma marginale and the intragranulocytic agent of A
23 nulocytic ehrlichiosis, msp-2 and msp-4 from Anaplasma marginale, and map-1 from Cowdria ruminantium.
24 of the persistent bovine ehrlichial pathogen Anaplasma marginale are immunodominant proteins that und
27 s on three unrelated vector-borne pathogens, Anaplasma marginale, Borrelia hermsii and Trypanosoma br
31 Native major surface protein 1 (MSP1) of Anaplasma marginale, composed of covalently associated M
32 SP1a and MSP1b) of the erythrocytic stage of Anaplasma marginale conferred protection against homolog
36 chia phagocytophila, and the bovine pathogen Anaplasma marginale, express a markedly immunodominant o
38 the hypothesis that challenge of cattle with Anaplasma marginale expressing MSP2 variants to which th
42 ive immunity against the ehrlichial pathogen Anaplasma marginale has been hypothesized to require ind
44 he highly transmissible St. Maries strain of Anaplasma marginale in Dermacentor andersoni as a positi
45 protein 1 (MSP1) of the ehrlichial pathogen Anaplasma marginale induces protective immunity in calve
46 r membranes induces protection against acute Anaplasma marginale infection and disease, and a proteom
50 ve major surface protein 1 (MSP1) complex of Anaplasma marginale is a heteromer of MSP1a and MSP1b, e
58 ly variant major surface protein 2 (MSP2) of Anaplasma marginale is expressed from a 3.5-kb operon th
60 protein 2 (Msp2) of the tick-borne pathogen, Anaplasma marginale, is thought to be involved in antige
61 nalyzing the CD4(+) T lymphocyte response to Anaplasma marginale major surface protein 1a (MSP1a).
64 erogeneity in this species, the homologue of Anaplasma marginale major surface protein 4 gene (msp4)
67 ly unique strains of the tick-borne pathogen Anaplasma marginale occur and are transmitted within reg
76 sed an unbiased proteomic screen to identify Anaplasma marginale proteins specifically upregulated in
80 s were fed on animals superinfected with the Anaplasma marginale subsp. centrale vaccine strain (low
85 distinct strains of the tick-borne pathogen Anaplasma marginale that encode distinctly different sur
87 f template DNA from closely related species (Anaplasma marginale, the white-tailed deer agent, and ad
89 This question was addressed by tracking the Anaplasma marginale variant population and corresponding
91 the conservation of MSP3 between strains of Anaplasma marginale was evaluated by using immunoblots o
92 ofluorescence, Anaplasma phagocytophilum and Anaplasma marginale were successfully localized in situ
94 e protein 2 (MSP2) variants are expressed by Anaplasma marginale within the tick salivary gland and,
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