4.7 Article

Population structure of rumen Escherichia coli associated with subacute ruminal acidosis (SARA) in dairy cattle

期刊

JOURNAL OF DAIRY SCIENCE
卷 94, 期 1, 页码 351-360

出版社

ELSEVIER SCIENCE INC
DOI: 10.3168/jds.2010-3435

关键词

cattle; subacute ruminal acidosis; Escherichia coli; virulence genes

资金

  1. Dairy Farmers of Canada (DFC)
  2. Agri-Food Research Development Initiative (ARDI)
  3. Natural Sciences and Engineering Research Council of Canada (NSERC)
  4. Stapledon Memorial Trust

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Previous studies indicated that only subacute ruminal acidosis (SARA), induced by feeding a high-grain diet, is associated with an inflammatory response and increased abundance of Escherichia coli in the rumen. We hypothesized that ruminal E. coli, in grain pellet-induced SARA carried virulence factors that potentially contribute to the immune activation during SARA. One hundred twenty-nine E. coli isolates were cultured from the rumens of 8 cows (4 animals per treatment) in which SARA had been nutritionally induced by feeding a high-grain diet (GPI-SARA) or a diet containing alfalfa pellets (API-SARA). The population structure of the E. coli was evaluated with the ABD genotyping system and repetitive sequence-based (rep)-PCR fingerprinting. Twenty-five virulence factors were evaluated with PCR. Escherichia coli numbers were higher in the GPI-SARA treatment than in the API-SARA treatment. The genetic structure of the E. coli was significantly different between SARA challenge models. Isolates from GPI-control (46%), API-control (70%), and API-SARA (53%) were closely related and fell into one cluster, whereas isolates from GPI-SARA (54%) grouped separately. The ABD typing indicated a shift from an A-type E. coli population to a Bl-type population only due to GPI-SARA. Of the 25 virulence factors tested, curli fiber genes were highly associated with GPI. Curli fibers were first identified in E. coli mastitis isolates and are potent virulence factors that induce a range of immune responses. Results suggest that under low rumen pH conditions induced by a grain diet, there is a burst in the number of E. coli with virulence genes that can take advantage of these rumen conditions to trigger an inflammatory response.

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