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1 of A. marginale and the related pathogen A. ovis.
2 distinct A. marginale strains, and Anaplasma ovis.
5 nd MSP3 of Anaplasma marginale and Anaplasma ovis, Anaplasma phagocytophilum MSP2 (p44), Ehrlichia ch
6 ucella species diverged from their common B. ovis ancestor in the past 86,000 to 296,000 years, which
7 B. suis are pathogenic to humans, whereas B. ovis and B. neotomae are nonpathogenic to humans and B.
10 responses to Epstein-Barr virus and Brucella ovis and Lactobacillus lactis antigens which contain the
17 c genes in several breeds of domestic sheep (Ovis aries) and the wild Mouflon (Ovis orientalis musimo
19 a nearly complete atomic structure of ovine (Ovis aries) mitochondrial complex I at 3.9 A resolution,
20 ture and an interaction with domestic sheep (Ovis aries) on the altitude use and activity budgets of
21 ns in an unmanaged population of Soay sheep (Ovis aries) on the island of Hirta, St. Kilda, northwest
22 n contrast, overexpression of Cdk5 in sheep (Ovis aries) only produces brown patches on a white backg
23 ormation in a wild population of Soay sheep (Ovis aries) to investigate the genetic architecture of i
24 opathies (TSEs), including scrapie in sheep (Ovis aries), are fatal neurodegenerative diseases caused
26 uus caballus), soybean (Glycine max), sheep (Ovis aries), poultry (Meleagris meleagris), pork (Sus sc
27 in the related species, domestic sheep (DS; Ovis aries), under both natural and experimental conditi
30 of two different ruminant species, one from Ovis aries, designated ovine (O), and the other from Bos
33 ncluding Brucella abortus, B. melitensis, B. ovis, B. neotomae, marine mammal isolates (no species na
34 We performed this study in bighorn sheep (Ovis canadensis) (BHS), since they are highly susceptibl
35 annheimia haemolytica in bighorn sheep (BHS; Ovis canadensis) are more severe than those in the relat
36 MHC class II alleles of bighorn sheep (BHS, Ovis canadensis) are responsible for lower titer of anti
38 nse to sport hunting of bighorn trophy rams (Ovis canadensis) body weight and horn size have declined
39 MHC and three MS loci in 235 bighorn sheep (Ovis canadensis) from 14 populations and found that both
40 usative agent of pneumonia in bighorn sheep (Ovis canadensis), in a small number of older individuals
41 notyped in two populations of bighorn sheep (Ovis canadensis), with different demographic histories.
43 buting to regional declines in Dall's sheep (Ovis dalli), a poorly dispersing alpine specialist herbi
45 ne sera from animals infected with Anaplasma ovis, Ehrlichia risticii, and Ehrlichia ewingii reacted
48 of this study was, therefore, to examine M. ovis field isolates for the presence of the putative vir
49 nale rickettsemia, were identified in the A. ovis genome by Southern blot analysis, and expression of
50 ory System, however, Moraxella (Branhamella) ovis has been isolated with increasing frequency from ca
51 ts which have recovered from acute Anaplasma ovis infection remain seropositive, although infected er
52 sights into the host systemic response to P. ovis infestation, including roles for the complement sys
53 sed upon DNA sequence analysis, a Mycoplasma ovis-like species was the most prevalent organism detect
54 th Ochrobactrum anthropi reveals that the B. ovis lineage is basal to the rest of the Brucella lineag
55 ive administration of oncolytic parapoxvirus ovis (ORFV) and vaccinia virus can reverse NK cell suppr
58 e skin with the ectoparasitic mite Psoroptes ovis results in the development of a rapid cutaneous inf
59 ihood (ML) analyses, with A. centrale and A. ovis sequences used as outgroups, provided strong bootst
60 cytes in sheep following infestation with P. ovis, this study has provided key insights into the infl
62 resembling the ovine hemoplasma, Mycoplasma ovis, were detected by PCR in blood samples from a veter
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