Author
Listed:
- Roni Pazla
(Faculty of Animal Science, Andalas University, Padang, Indonesia)
- Asmuddin Natsir
(Faculty of Animal Science, Hasanuddin University, Makassar, Indonesia)
- Dewi Febrina
(Faculty of Agriculture and Animal Science, Sultan Syarif Kasim State Islamic University of Riau, Pekanbaru, Indonesia)
- Mardiati Zain
(Faculty of Animal Science, Andalas University, Padang, Indonesia)
- Arief Arief
(Faculty of Animal Science, Andalas University, Padang, Indonesia)
- Antonius Antonius
(Research Center for Animal Husbandry, National Research and Innovation Agency, Cibinong, Indonesia)
- Zaitul Ikhlas
(Faculty of Animal Science, Andalas University, Padang, Indonesia)
- Yolani Utami
(Faculty of Animal Science, Andalas University, Padang, Indonesia)
- Ezi Masdia Putri
(Research Center for Animal Husbandry, National Research and Innovation Agency, Cibinong, Indonesia)
- Gusri Yanti
(Faculty of Social, Science and Education, Prima Nusantara Bukittinggi University, Bukittinggi, Indonesia)
- Yanuar Achadri
(Research Center for Animal Husbandry, National Research and Innovation Agency, Cibinong, Indonesia)
- Sharli Asmairicen
(Research Center for Animal Husbandry, National Research and Innovation Agency, Cibinong, Indonesia)
- Ida Andriani
(Research Center for Behavioral and Circular Economic, National Research and Innovation Agency, Jakarta, Indonesia)
Abstract
The objective of this study was to evaluate the impact of rumen-protected gambir catechins encapsulated using calcium oxide (CaO) and palm fatty acid distillate (PFAD) on rumen fermentation profiles, microbial activity, nutrient digestibility, and methane production in vitro. A randomised block design was used, consisting of four treatments and five replicates. The treatments were assigned based on different levels of gambir catechin-CaO-PFAD encapsulate supplementation, namely 0% (A), 5% (B), 10% (C), and 15% (D) in the diet. The results indicated that the treatments significantly affected NH3 concentration, partial VFA profiles, methane production, microbial protein synthesis, degradation, and nutrient digestibility (P < 0.05), but no significant treatment effects were detected for total VFA, pH, or microbial biomass (P > 0.05). Treatment C produced the highest concentrations of propionate, microbial protein synthesis, degradation, and nutrient digestibility, while reducing methane production and the acetate to propionate ratio. The Cao-PFAD-encapsulated gambir catechin supplementation improved rumen fermentation efficiency, as indicated by increased propionate concentration, microbial protein synthesis, nutrient digestibility, and reduced methane production. Thus, gambir catechin-CaO-PFAD encapsulates could be used as a functional feed supplement to improve nutrient utilisation and mitigate enteric methane emissions in ruminant livestock.
Suggested Citation
Roni Pazla & Asmuddin Natsir & Dewi Febrina & Mardiati Zain & Arief Arief & Antonius Antonius & Zaitul Ikhlas & Yolani Utami & Ezi Masdia Putri & Gusri Yanti & Yanuar Achadri & Sharli Asmairicen & Ida, .
"Rumen-protected gambir catechins encapsulated using CaO-PFAD: Their effects on rumen fermentation, nutrient digestibility, and methane production in vitro,"
Czech Journal of Animal Science, Czech Academy of Agricultural Sciences, vol. 0.
Handle:
RePEc:caa:jnlcjs:v:preprint:id:68-2026-cjas
DOI: 10.17221/68/2026-CJAS
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