Found 28 results
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Filters: Keyword is Fermentation  [Clear All Filters]
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A. Wells and Osborne, J. P., Impact of acetaldehyde- and pyruvic acid-bound sulphur dioxide on wine lactic acid bacteria., Lett Appl Microbiol, vol. 54, no. 3, pp. 187-94, 2012.
C. D. Curtin, Langhans, G., Henschke, P. A., and Grbin, P. R., Impact of Australian Dekkera bruxellensis strains grown under oxygen-limited conditions on model wine composition and aroma., Food Microbiol, vol. 36, no. 2, pp. 241-7, 2013.
G. Winter and Curtin, C. D., In situ high throughput method for H(2)S detection during micro-scale wine fermentation., J Microbiol Methods, vol. 91, no. 1, pp. 165-70, 2012.
M. M. Stamm, Delcurto, T., Horney, M. R., Brandyberry, S. D., and Barton, R. K., Influence of alkaloid concentration of tall fescue straw on the nutrition, physiology, and subsequent performance of beef steers., J Anim Sci, vol. 72, no. 4, pp. 1068-75, 1994.
D. W. Bohnert, Schauer, C. S., Falck, S. J., and Delcurto, T., Influence of rumen protein degradability and supplementation frequency on steers consuming low-quality forage: II. Ruminal fermentation characteristics, Journal of Animal Science, vol. 11855, no. 11, pp. 2978 - 2988, 2002.
D. W. Bohnert, Schauer, C. S., Falck, S. J., and Delcurto, T., Influence of rumen protein degradability and supplementation frequency on steers consuming low-quality forage: II. Ruminal fermentation characteristics., J Anim Sci, vol. 80, no. 11, pp. 2978-88, 2002.
J. P. Osborne and Edwards, C. G., Inhibition of malolactic fermentation by a peptide produced by Saccharomyces cerevisiae during alcoholic fermentation., Int J Food Microbiol, vol. 118, no. 1, pp. 27-34, 2007.
A. R. Borneman, Zeppel, R., Chambers, P. J., and Curtin, C. D., Insights into the Dekkera bruxellensis genomic landscape: comparative genomics reveals variations in ploidy and nutrient utilisation potential amongst wine isolates., PLoS Genet, vol. 10, no. 2, p. e1004161, 2014.

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