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Effects of Geraniol and Camphene on in Vitro Rumen Fermentation and Methane Production
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AbstractThe objective of this study was to determine the effects of geraniol and camphene at three dosages (300, 600, and 900 mg l-1) on rumen microbial fermentation and methane emission in in vitro batch culture of rumen fluid supplied with a 60 : 40 forage : concentrate substrate (16.2% crude protein, 33.1% neutral detergent fibre). The ionophore antibiotic monensin (8 mg/l) was used as positive control. Compared to control, geraniol significantly (P < 0.05) reduced methane production with increasing doses, with reductions by 10.2, 66.9, and 97.9%. However, total volatile fatty acids (VFA) production and in vitro dry matter digestibility were also reduced (P < 0.05) by all doses of geraniol. Camphene demonstrated weak and unpromising effects on rumen fermentation. Camphene did not decrease (P > 0.05) methane production and slightly decreased (P < 0.05) VFA production. Due to the strong antimethanogenic effect of geraniol a careful selection of dose and combination with other antimethanogenic compounds may be effective in mitigating methane emission from ruminants. However, if a reduction in total VFA production and dry matter digestibility persisted in vivo, geraniol would have a negative effect on animal productivity.
Title: Effects of Geraniol and Camphene on in Vitro Rumen Fermentation and Methane Production
Description:
AbstractThe objective of this study was to determine the effects of geraniol and camphene at three dosages (300, 600, and 900 mg l-1) on rumen microbial fermentation and methane emission in in vitro batch culture of rumen fluid supplied with a 60 : 40 forage : concentrate substrate (16.
2% crude protein, 33.
1% neutral detergent fibre).
The ionophore antibiotic monensin (8 mg/l) was used as positive control.
Compared to control, geraniol significantly (P < 0.
05) reduced methane production with increasing doses, with reductions by 10.
2, 66.
9, and 97.
9%.
However, total volatile fatty acids (VFA) production and in vitro dry matter digestibility were also reduced (P < 0.
05) by all doses of geraniol.
Camphene demonstrated weak and unpromising effects on rumen fermentation.
Camphene did not decrease (P > 0.
05) methane production and slightly decreased (P < 0.
05) VFA production.
Due to the strong antimethanogenic effect of geraniol a careful selection of dose and combination with other antimethanogenic compounds may be effective in mitigating methane emission from ruminants.
However, if a reduction in total VFA production and dry matter digestibility persisted in vivo, geraniol would have a negative effect on animal productivity.
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