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Effects of ratios of yak to cattle inocula on methane production and fiber digestion in rumen in vitro cultures

Weiwei Wang1,2Wei Guo1,2Jianxin Jiao1Emilio M Ungerfeld3Xiaoping Jing1Xiaodan Huang4Allan A Degen5Yu Li1Sisi Bi1Ruijun Long1( )
State Key Laboratory of Grassland Agro-Ecosystems, College of Ecology, Lanzhou University, Lanzhou 730020, China
Key Laboratory of Plateau Mountain Animal Genetics, Breeding and Reproduction, Ministry of Education/College of Animal Science, Guizhou University, Guiyang 550025, China
Centro Regional de Investigación Carillanca, Instituto de Investigaciones Agropecuarias INIA, Vilcún, La Araucanía 4880000, Chile
School of Public Health, Lanzhou University, Lanzhou 730020, China
Desert Animal Adaptations and Husbandry, Wyler Department of Dryland Agriculture, Blaustein Institutes for Desert Research, Ben-Gurion University of the Negev, Beer Sheva 8410500, Israel
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Highlights

  • Ratios of yak (YRI) and cattle rumen inoculum (CRI) incubated substrate.

  • Methane decreased, while fiber digestibility and volatile fatty acids increased with an increase in YRI.

  • Metabolic hydrogen flux and Gibbs energy changed with different ratios.

Abstract

Yaks are well-adapted to the harsh environment of the Tibetan Plateau, and they emit less enteric methane (CH4) and digest poor-quality forage better than cattle. To examine the potential of yak rumen inoculum to mitigate CH4 production and improve digestibility in cattle, we incubated substrate with rumen inoculum from yak (YRI) and cattle (CRI) in vitro in five ratios (YRI:CRI): (1) 0:100 (control), (2) 25:75, (3) 50:50, (4) 75:25 and (5) 100:0 for 72 h. The YRI: CRI ratios of 50:50, 75:25 and 100:0 produced less total gas and CH4 and accumulated less hydrogen (H2) than 0:100 (control) at most time points. From 12 h onwards, there was a linear decrease (P<0.05) in carbon dioxide (CO2) production with increasing YRI:CRI ratio. At 72 h, the ratios of 50:50 and 75:25 had higher dry matter (+7.71% and +4.11%, respectively), as well as higher acid detergent fiber digestibility (+15.5% and +7.61%, respectively), when compared to the 0:100 ratio (P<0.05). Increasing the proportion of YRI generally increased total VFA concentrations, and, concomitantly, decreased the proportion of metabolic hydrogen ([2H]) incorporated into CH4, and decreased the recovery of [2H]. The lower [2H] recovery indicates unknown [2H] sinks in the culture. Estimated Gibbs free energy changes (ΔG) for reductive acetogenesis were negative, indicating the thermodynamic feasibility of this process. It would be beneficial to identify: 1) the alternative [2H] sinks, which could help mitigate CH4 emission, and 2) core microbes involved in fiber digestion. This experiment supported lower CH4 emission and greater nutrient digestibility of yaks compared to cattle. Multi-omics combined with microbial culture technologies developed in recent years could help to better understand fermentation differences among species.

References

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Journal of Integrative Agriculture (JIA)
Pages 1270-1284

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Cite this article:
Wang W, Guo W, Jiao J, et al. Effects of ratios of yak to cattle inocula on methane production and fiber digestion in rumen in vitro cultures. Journal of Integrative Agriculture (JIA), 2025, 24(4): 1270-1284. https://doi.org/10.1016/j.jia.2024.01.026

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Received: 25 March 2023
Accepted: 27 November 2023
Published: 20 April 2025
© 2025, Chinese Academy of Agricultural Sciences (CAAS). All rights reserved.