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9 March 2018 Impact of strain and dose of live yeast and yeast derivatives on in vitro ruminal fermentation of a high-grain diet at two pH levels
P.X. Jiao, Z.X. He, S. Ding, N.D. Walker, Y.Y. Cong, F.Z. Liu, K.A. Beauchemin, W.Z. Yang
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Abstract

The objective of this study was to determine the effects of live yeast (LY) or yeast derivatives (YD) on gas production (GP), dry matter (DM) disappearance (DMD), fermentation characteristics, and microbial profiles in batch culture. The study was a completely randomized design with a factorial arrangement: 2 media pH × 5 yeasts × 4 dosages. An additional treatment of monensin (Mon) was added as a positive control for each pH level. Media pH was low (5.8) and high (6.5); the yeasts were three LY (LY1-3) and two YD (YD4-5); and doses were 0, 4 × 106, 8 × 106, and 1.6 × 107 cfu mL-1 for LY and 0, 15, 30, and 60 mg bottle-1 for YD. Substrate consisted of 10% silage and 90% concentrate (DM basis) and samples were incubated for 24 h. Media pH of 6.5 vs. 5.8, increased (P < 0.01) GP, DMD, and volatile fatty acid (VFA) concentrations but decreased (P < 0.01) NH3-N concentration and copy numbers of Ruminococcus albus, Ruminococcus flavefaciens, and Selenomonas ruminantium. Increasing dose of LY2 linearly (P < 0.05) increased DMD. Total VFA concentration was greater with LY2 (P < 0.01) than LY3 and YD5 at pH 6.5. Overall, adding yeast products improved (P < 0.05) DMD at pH 5.8, and increased VFA concentration compared with Mon. These results indicate that in vitro GP and DMD of a high-grain diet varied with source and dose of yeast supplementation. Some yeast products have the potential to improve fermentation of feedlot diets when supplemented at appropriate doses.

© Her Majesty the Queen in right of Canada 2018. Permission for reuse (free in most cases) can be obtained from RightsLink.
P.X. Jiao, Z.X. He, S. Ding, N.D. Walker, Y.Y. Cong, F.Z. Liu, K.A. Beauchemin, and W.Z. Yang "Impact of strain and dose of live yeast and yeast derivatives on in vitro ruminal fermentation of a high-grain diet at two pH levels," Canadian Journal of Animal Science 98(3), 477-487, (9 March 2018). https://doi.org/10.1139/cjas-2017-0079
Received: 2 June 2017; Accepted: 16 October 2017; Published: 9 March 2018
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KEYWORDS
batch culture
culture en batch
dérivé de levure
fermentation ruminale
levure vivante
live yeast
ruminal fermentation
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