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1 brane fractions of Ehrlichia chaffeensis and Ehrlichia canis.
2  phagocytophilum, Ehrlichia chaffeensis, and Ehrlichia canis.
3 enes of Ehrlichia chaffeensis (1,644 bp) and Ehrlichia canis (2,064 bp) encode proteins of 548 to 688
4 g to PCR results, 15 dogs were infected with Ehrlichia canis, 9 with Ehrlichia chaffeensis, 8 with Eh
5                                              Ehrlichia canis, a small obligately intracellular, tick-
6                                              Ehrlichia canis, an obligatory intracellular bacterium o
7                                              Ehrlichia canis and E. chaffeensis are tick-borne obliga
8                   Immunoreactive proteins of Ehrlichia canis and Ehrlichia chaffeensis that have been
9 enogroup I pathogens, Ehrlichia chaffeensis, Ehrlichia canis, and Cowdria ruminantium, that have mult
10 pathogens tested (Anaplasma phagocytophilum, Ehrlichia canis, and Rickettsia rickettsii), but the sam
11  phagocytophilum antibodies but negative for Ehrlichia canis antibodies.
12 sease manifestations in dogs seroreactive to Ehrlichia canis antigens by indirect immunofluorescent a
13 n with tick-transmitted pathogens, including Ehrlichia canis, Babesia canis, Babesia gibsonii, or spo
14 nt of human granulocytic ehrlichiosis (HGE), Ehrlichia canis, Bartonella henselae, and Rickettsia ric
15                                              Ehrlichia canis causes a potentially fatal rickettsial d
16 siales, including Anaplasma phagocytophilum, Ehrlichia canis, E. chaffeensis, E. ewingii, Rickettsia
17 ndicated that both dogs were coinfected with Ehrlichia canis, E. platys, and E. equi.
18 nst Ehrlichia phagocytophila but not against Ehrlichia canis, Ehrlichia ewingii, B. burgdorferi, or C
19 n designated MmpA was cloned by screening an Ehrlichia canis expression library with convalescent dog
20 on oligonucleotide sequences from the unique Ehrlichia canis gene, p30, to facilitate studies that re
21                                              Ehrlichia canis has a small subset of major immunoreacti
22 been identified in Ehrlichia chaffeensis and Ehrlichia canis, including three molecularly and immunol
23     A partial 16S rRNA gene was amplified in Ehrlichia canis-infected cells by nested PCR.
24 enes from Ehrlichia and Cowdria spp.: p30 of Ehrlichia canis (&lt; or =71.3%), p28 of E. chaffeensis (<
25                                              Ehrlichia canis major immunoreactive proteins of 36 and
26 genic diversity of Ehrlichia chaffeensis and Ehrlichia canis may involve independent or differential
27 sociated with exposure to canine parvovirus, Ehrlichia canis, Neospora caninum and perhaps rabies vir
28 y assay with Ehrlichia chaffeensis Arkansas, Ehrlichia canis Oklahoma, and Ehrlichia muris antigens.
29                       No dogs seroreacted to Ehrlichia canis or Ehrlichia chaffeensis antigens, which
30 t Ehrlichia chaffeensis, Ehrlichia sennetsu, Ehrlichia canis, or their host cells.
31 m MSP2 (p44), Ehrlichia chaffeensis p28-OMP, Ehrlichia canis p30, and Ehrlichia ruminantium MAP1, and
32 .3 kDa with 26.3% identity to a hypothetical Ehrlichia canis protein with no known function.
33     A 30-kDa major outer membrane protein of Ehrlichia canis, the agent of canine ehrlichiosis, is th
34   We previously culture isolated a strain of Ehrlichia canis, the causative agent of canine ehrlichio
35      Rhipicephalus sanguineus ticks transmit Ehrlichia canis, the etiologic agent of canine ehrlichio
36  ehrlichiosis were examined for infection of Ehrlichia canis using PCR, multiplex real-time PCR, and
37                                              Ehrlichia canis virB9 was cloned and expressed.
38      The major antigenic protein 2 (MAP2) of Ehrlichia canis was cloned and expressed.
39                The analogous gene of p120 in Ehrlichia canis was cloned, sequenced, and expressed.
40 reactive ferric ion-binding protein (Fbp) of Ehrlichia canis was identified and its iron-binding capa
41        Subcutaneous inoculation of dogs with Ehrlichia canis was investigated as a more appropriate m
42 -kDa major immunoreactive protein (gp200) of Ehrlichia canis were defined.
43  (Dsb) proteins of Ehrlichia chaffeensis and Ehrlichia canis were identified which restored DsbA acti

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