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1 antigens of S. zooepidemicus (S. equi subsp. zooepidemicus).
2 ion of hyaluronic acid (HA) by Streptococcus zooepidemicus.
3  this farm yielded the outbreak strain of S. zooepidemicus.
4 n originating from an ancestral strain of S. zooepidemicus.
5 related opportunistic pathogen Streptococcus zooepidemicus.
6 d with group C Streptococcus equi subspecies zooepidemicus, a cause of bovine mastitis.
7 s pneumoniae (capsule type 3), Streptococcus zooepidemicus, Actinobacillus spp., and Mycoplasma equir
8           The study provided evidence for S. zooepidemicus and S. pneumoniae playing an important eti
9      The prevalence and incidence of IAD, S. zooepidemicus, and S. pneumoniae decreased in parallel w
10         Streptococcus equi and Streptococcus zooepidemicus are major etiological agents of upper and
11 whereas SzPSe is strongly opsonogenic for S. zooepidemicus but not for S. equi.
12 llele from the animal pathogen Streptococcus zooepidemicus failed to complement a GAS fasX mutant.
13 specific strain of Streptococcus equi subsp. zooepidemicus from contaminated cheese.
14  (Streptococcus equi, S. equisimilis, and S. zooepidemicus) have been shown to bind to different mamm
15 k of glomerulonephritis was attributed to S. zooepidemicus in unpasteurised cheese.
16        Three other strains of S. equi subsp. zooepidemicus, including another strain previously assoc
17 nce profiles of 38 Streptococcus equi subsp. zooepidemicus isolates were determined from a kennelled
18 cteremia caused by Streptococcus equi subsp. zooepidemicus, likely transmitted from mother to infant.
19 cheese whey is a good nitrogen source for S. zooepidemicus production of HA.
20  protective M-like and typing antigens of S. zooepidemicus (S. equi subsp. zooepidemicus).
21 enzyme produced by Streptococcus equi subsp. zooepidemicus strain 4881.
22                               S. equi subsp. zooepidemicus strains 9g and 9h appeared to be genetical
23  with the genome sequences of S. equi subsp. zooepidemicus strains H70 and MGCS10565 and S. equi subs
24                   Twenty-four S. equi subsp. zooepidemicus strains were analyzed to determine the gen
25 e corresponding sequence from S. equi subsp. zooepidemicus SzpW60, while the predicted surface-expose
26                                           S. zooepidemicus was detected in four of seven case househo
27    The association with S. pneumoniae and S. zooepidemicus was independent of prior viral infection a
28                                           S. zooepidemicus was not detected in food samples or in swa
29 r S. equi but not for the closely related S. zooepidemicus, whereas SzPSe is strongly opsonogenic for

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