170. Influence of Bacillus-DFM and Hydroxy Trace Minerals on In Vitro Digestibility Parameters of Grass Hay.

Abstract An in vitro study was conducted to evaluate the effects of a Bacillus-based probiotic (BCAV) and Cu, Mn, and Zn in the form of hydroxy trace minerals (HTM) on digestibility parameters of grass hay. A completely randomized design with a 2 x 2 factorial arrangement of treatments was used. Factors included: 1) BCAV (0.0 or 3 g of B. licheniformis and B. subtilis per 70 L of ruminal fluid) and 2) HTM (no supplemental Cu, Mn, or Zn or 10, 20, and 30 mg/kg DM of Cu, Mn, and Zn, respectively). Treatments consisted of: 1) Control (CTRL; no supplemental BCAV or HTM); 2) HTM (10, 20, and 30 mg/kg DM of Cu, Mn, and Zn, respectively); 3) BCAV ; and 4) BCVA + HTM. Two hours post feeding, ruminal fluid was obtained from three steers fitted with ruminal cannula. Steers were fed the grass hay diet for 21 d prior to rumen fluid collection. The basal diet was ground to fit through a 2 mm screen and used as the substrate for in vitro incubations. Substrate (0.5 g) was incubated in 70 mL of a 1:1 mixture of ruminal fluid and McDougall’s buffer, at 39°C in a circulating water bath, in vaccine bottles. Vaccine bottles were purged with CO2, capped and sealed immediately after the McDougall’s buffer/rumen fluid mixture was added. Vaccine bottles remained sealed to maintain anaerobic conditions and were incubated for 6, 12, 24, and 48 h in triplicate for each treatment at each timepoint. To simulate rumen motility, vaccine bottles were gently swirled every 4 h. At the appropriate timepoints, vaccine bottles were removed from the water bath, gas pressure was recorded, pH determined, and then centrifuged at 28,000 x g. Following centrifugation, the supernatant decanted and the remaining digesta was dried at 100°C for 72 h and weighed to calculate DM disappearance (DMD). Data were analyzed as a completely randomized design using the GLM procedures in SAS. Dry matter digestibility (DMD) was affected by treatment (P < 0.0001), time (P < 0.0001), and their interaction (P = 0.05). Treatments containing BVAC and BVAC + HTM had greater DMD than the controls, suggesting enhanced microbial degradation of the substrate. In vitro pH was not affected by treatment (P = 0.25) but decreased over time (P < 0.0001). In vitro pressure increased with time (P < 0.0001) and was greater (P = 0.0001) in BVAC and HTM + BVAC treatments compared to HTM and control treatments. In vitro fermentation characteristics were improved when BVAC and BVAC + HTM were added to the in vitro fermentation chambers, suggesting potential benefits for ruminal digestion efficiency. For image description, please refer to the figure legend and surrounding text.

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Journal
Journal of Animal Science
Published
2026-09-29
DOI
https://doi.org/10.1093/jas/skag272.164
Primary Topic
Ruminant Nutrition and Digestive Physiology
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article
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article

170. Influence of Bacillus-DFM and Hydroxy Trace Minerals on In Vitro Digestibility Parameters of Grass Hay.

Bruno I Cappellozza, Natasha B Petrenko, Fernando de Paula Leonel, T. E. Engle et al.
Journal of Animal Science
Ruminant Nutrition and Digestive Physiology
article

170. Influence of Bacillus-DFM and Hydroxy Trace Minerals on In Vitro Digestibility Parameters of Grass Hay.

Bruno I Cappellozza, Natasha B Petrenko, Fernando de Paula Leonel, T. E. Engle, Huey Yi Loh, Davi Brito De Araujo, Julia Gabriela Baroni Alves, Arturo Rodezno Gomez, Julia Travassos da Silva, Libby Heenan
article en

Abstract

Abstract An in vitro study was conducted to evaluate the effects of a Bacillus-based probiotic (BCAV) and Cu, Mn, and Zn in the form of hydroxy trace minerals (HTM) on digestibility parameters of grass hay. A completely randomized design with a 2 x 2 factorial arrangement of treatments was used. Factors included: 1) BCAV (0.0 or 3 g of B. licheniformis and B. subtilis per 70 L of ruminal fluid) and 2) HTM (no supplemental Cu, Mn, or Zn or 10, 20, and 30 mg/kg DM of Cu, Mn, and Zn, respectively). Treatments consisted of: 1) Control (CTRL; no supplemental BCAV or HTM); 2) HTM (10, 20, and 30 mg/kg DM of Cu, Mn, and Zn, respectively); 3) BCAV ; and 4) BCVA + HTM. Two hours post feeding, ruminal fluid was obtained from three steers fitted with ruminal cannula. Steers were fed the grass hay diet for 21 d prior to rumen fluid collection. The basal diet was ground to fit through a 2 mm screen and used as the substrate for in vitro incubations. Substrate (0.5 g) was incubated in 70 mL of a 1:1 mixture of ruminal fluid and McDougall’s buffer, at 39°C in a circulating water bath, in vaccine bottles. Vaccine bottles were purged with CO2, capped and sealed immediately after the McDougall’s buffer/rumen fluid mixture was added. Vaccine bottles remained sealed to maintain anaerobic conditions and were incubated for 6, 12, 24, and 48 h in triplicate for each treatment at each timepoint. To simulate rumen motility, vaccine bottles were gently swirled every 4 h. At the appropriate timepoints, vaccine bottles were removed from the water bath, gas pressure was recorded, pH determined, and then centrifuged at 28,000 x g. Following centrifugation, the supernatant decanted and the remaining digesta was dried at 100°C for 72 h and weighed to calculate DM disappearance (DMD). Data were analyzed as a completely randomized design using the GLM procedures in SAS. Dry matter digestibility (DMD) was affected by treatment (P < 0.0001), time (P < 0.0001), and their interaction (P = 0.05). Treatments containing BVAC and BVAC + HTM had greater DMD than the controls, suggesting enhanced microbial degradation of the substrate. In vitro pH was not affected by treatment (P = 0.25) but decreased over time (P < 0.0001). In vitro pressure increased with time (P < 0.0001) and was greater (P = 0.0001) in BVAC and HTM + BVAC treatments compared to HTM and control treatments. In vitro fermentation characteristics were improved when BVAC and BVAC + HTM were added to the in vitro fermentation chambers, suggesting potential benefits for ruminal digestion efficiency. For image description, please refer to the figure legend and surrounding text.

Journal of Animal ScienceVol. 104(Supplement_5)
Federal University of São João del-Rei (BR), Nutreco (Netherlands) (NL), Novonesis (Denmark) (DK), Texas A&M University (US), Colorado State University (US)
Clean water and sanitation
Openalex Percentile: Top 10%
Ruminant Nutrition and Digestive Physiology
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