Effect of Short-Term Chilling of Rumen Contents on Viable Bacterial Numbers

Author:

Dehority Burk A.1,Grubb Jean A.1

Affiliation:

1. Department of Animal Science, Ohio Agricultural Research and Development Center, Wooster, Ohio 44691

Abstract

Anaerobic storage of whole rumen contents at 0°C for 8 and 24 h resulted in viable colony counts which were 113 and 92%, respectively, of the colony count obtained with an unstored sample. No significant differences in the percentages of the total population capable of utilizing glucose, cellobiose, starch, or xylose occurred with storage. Numerous factors were investigated as possible explanations for the increase in bacterial numbers observed after storage for 8 h in ice. Growth and multiplication of bacteria, subsampling of rumen contents, susceptibility to oxygen, lysis of protozoa with the release of viable bacteria, and rumen sampling time did not appear to be involved. Compilation of the data from all 29 of the above experiments gave a mean value for samples stored for 8 h in ice which was 134.8% of the control (P < 0.005). The effect of storage time at 0°C indicated that a significant increase in colony count occurred after 4 h, and, based on these data, 6 h was subsequently used as the standard cold-storage period. Circumstantial evidence supported the hypothesis that storage of rumen contents for 6 h at 0°C appears to alter or to break down the material responsible for cell-to-cell or cell-to-particulate matter attachment. Addition of a surfactant to the anaerobic dilution solution significantly increased total colony count of rumen contents to an extent similar to chilling in ice for 6 h. However, an additive effect was observed when surfactant-containing anaerobic dilution solution was used with samples stored for 6 h at 0°C.

Publisher

American Society for Microbiology

Subject

Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology

Reference18 articles.

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2. Cultural methods and some characteristics of some of the more numerous groups of bacteria in the bovine rumen;Bryant M. P.;J. Dairy Sci.,1953

3. An improved nonselective culture medium for ruminal bacteria and its use in determining diurnal variation in numbers of bacteria in the rumen;Bryant M. P.;J. Dairy Sci.,1961

4. Medium without rumen fluid for nonselective enumeration and isolation of rumen bacteria;Caldwell D. R.;Appl. Microbiol.,1966

5. Rumen bacteria: interaction with particulate dietary components and response to dietary variation;Cheng K.;Fed. Proc.,1977

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