PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
March 26, 2026New Zealand Journal of Agricultural Research0 citationsOpen Access

Forage Level and Methane Inhibitor Effects on In Vitro Fermentation Products Using Forage Rape or Ryegrass as Substrates

View Full Paper
MRMaria M. Della RosaSMStefan MuetzelPJP H Janssen

Key Points

  • The study aims to assess how forage levels and methane inhibitors affect fermentation products in vitro.
  • Incubated forage rape and ryegrass at two forage levels (1% and 2%)
  • Administered bromoform at a concentration of 3 µM
  • Measured gas production and fermented hexose equivalents
  • Analyzed effects on acetate and reduced product ratios
  • Combination of 2% forage level and bromoform did not affect gas production compared to separate factors
  • Acetate-to-reduced products ratio decreased from 0.79 to 0.59 mmol.g−1
  • Ryegrass fermentation decreased by 8% with bromoform while forage rape remained unaffected
  • Hydrogen production was higher in forage rape (43.5 ml/g) than in ryegrass (21.5 ml/g)

Abstract

Dietary approaches that decrease ruminal pH may be combined with anti‐methanogenic feed additives that prevent methane formation and consequently increase the dissolved hydrogen concentration. To evaluate the effect of pH and the effect of dissolved hydrogen concentration, two forages (forage rape and ryegrass) were incubated in vitro at two forage levels (FL 1% and 2% w/v) with or without bromoform (3 µM). The combination of bromoform and FL 2% did not affect gas production or fermented hexose equivalents compared to both factors tested separately. The ratio of acetate‐to‐reduced products decreased greatly by combining FL 2% and bromoform (0.59 mmol.g −1 /mmol.g −1 ) compared to FL 1% and bromoform (0.79 mmol.g −1 /mmol.g −1 ). The production of reduced products increased by a similar proportion to the decrease in acetate. Ryegrass fermentation decreased by 8% with bromoform addition, while the forage rape fermentation was not impaired, even though the hydrogen released from forage rape (43.5 ml/g) was twice that released from ryegrass (21.5 ml/g). Results suggest that the combination of low pH and high hydrogen (achieved by 2% FL and bromoform addition) did not cause detrimental effects on feed fermentation in vitro, but ryegrass fermentation may be impacted by high dissolved hydrogen.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Rosa et al. (2026) studied this question.

synapsesocial.com/papers/69c4cc98fdc3bde448918026https://doi.org/10.1002/jag2.70048
Ask AI
Helpful
Bookmark
Share
View Full Paper