An increase in dietary lipid content from different forms of double-low rapeseed reduces enteric methane emission in Datong yaks on the Qinghai-Tibetan Plateau
- PMID: 33314599
- DOI: 10.1111/asj.13489
An increase in dietary lipid content from different forms of double-low rapeseed reduces enteric methane emission in Datong yaks on the Qinghai-Tibetan Plateau
Abstract
Enteric methane (CH4 ) emission in cattle generally decreases by approximately 1 g/g dry matter intake (DMI) with an increase in dietary lipids of 10 g/kg dry matter (DM). The effect of dietary lipids on CH4 emission in yaks has not been reported and is the subject of this study. Four Datong yaks were used in a 4 × 4 Latin-square design in which the four treatments included restricted intakes of double-low rapeseed differing in form and lipid (ether extract-EE) content: (a) rapeseed meal (EE 32.6 g/kg DM); (b) rapeseed meal and rapeseed cake (EE 45.8 g/kg DM); (c) rapeseed meal and whole cracked rapeseed (EE 54.5 g/kg DM) and (d) rapeseed meal and rapeseed oil (EE 62.7 g/kg DM). The digestibility of feed components did not differ among treatments. The ruminal total volatile fatty acids (p = .082) and acetic acid (p = .062) concentrations tended to be lowest in yaks consuming the diet with highest lipid content. In addition, CH4 production was lowest in this group (p = .004), and declined by 1.75 g/g DMI per 10 g/kg DM reduction in dietary lipid content, a rate substantially faster than in cattle.
Keywords: chamber; double-low rapeseed; enteric methane production; yak.
© 2020 Japanese Society of Animal Science.
References
REFERENCES
-
- Beauchemin, K. A., & McGinn, S. M. (2006). Methane emissions from beef cattle: Effects of fumaric acid, essential oil, and canola oil. Journal of Animal Science, 84, 1489-1496.
-
- Beauchemin, K. A., Ungerfeld, E. M., Eckard, R. J., & Wang, M. (2020). Review: Fifty years of research on rumen methanogenesis: Lessons learned and future challenges for mitigation. Animal, 14, 2-16. https://doi.org/10.1017/S1751731119003100
-
- Brask, M., Lund, P., Weisbjerg, M. R., Hellwing, A. L. F., Poulsen, M., Larsen, M. K., & Hvelplund, T. (2013). Methane production and digestion of different physical forms of rapeseed as fat supplements in dairy cows. Journal of Dairy Science, 96, 2356-2365. https://doi.org/10.3168/jds.2011-5239
-
- Caro, D., Lopresti, A., Davis, S. J., Bastianoni, S., & Caldeira, K. (2014). CH4 and N2O emissions embodied in international trade of meat. Environmental Research Letters, 9, 114005.
-
- Gastelen, S., Dijkstra, J., & Bannink, J. (2019). Are dietary strategies to mitigate enteric methane emission equally effective across dairy cattle, beef cattle, and sheep? Journal of Dairy Science, 102, 6019-6130. https://doi.org/10.3168/jds.2018-15785
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Grants and funding
- 2018YFD0502300/National Key Research and Development Program of China
- 2016YFD0500504/National Key Research and Development Program of China
- 2019QHSKXRCTJ01/Qinghai Provincial Science and Technology Association Young and Middle-aged Technological Talent Support Project
- 31660673/National Natural Science Foundation of China
- 1_7/CAS "Light of West China" Program
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