Please use this identifier to cite or link to this item: https://hdl.handle.net/1959.11/4920
Title: Cattle selected for lower residual feed intake have reduced daily methane production
Contributor(s): Hegarty, Roger  (author); Goopy, John Patrick  (author); Herd, RM (author); McCorkell, B (author)
Publication Date: 2007
DOI: 10.2527/jas.2006-236
Handle Link: https://hdl.handle.net/1959.11/4920
Abstract: Seventy-six Angus steers chosen from breeding lines divergently selected for residual feed intake (RFI) were studied to quantify the relationship between RFI and the daily rate of methane production (MPR). A 70-d feeding test using a barley-based ration was conducted in which the voluntary DMI, feeding characteristics, and BW of steers were monitored. The estimated breeding value (EBV) for RFI (RFI'EBV') for each steer had been calculated from 70-d RFI tests conducted on its parents. Methane production rate ('g'/ d) was measured on each steer using SF⁶ as a tracer gas in a series of 10-d measurement periods. Daily DMI of steers was lower during the methane measurement period than when methane was not being measured (11.18 vs. 11.88 kg; P = 0.001).Asignificant relationship existed between MPR and RFI when RFI (RFI₁₅'d') was estimated over the 15 d when steers were harnessed for methane collection (MPR = 13.3 × RFI₁₅'d' + 179; r² = 0.12; P = 0.01). Animals expressing lower RFI had lower daily MPR. The relationship established between MPR and RFI₁₅'d' was used to calculate a reduction in daily methane emission of 13.38 g accompanied a 1 kg/d reduction in RFI'EBV' in cattle consuming ad libitum a diet of 12.1 MJ of ME/kg. The magnitude of this emission reduction was between that predicted on the basis of intake reduction alone (18 g.d⁻¹kg of DMI⁻¹) and that predicted by a model incorporating steer midtest BW and level of intake relative to maintenance (5 g.d⁻¹.kg of DMI⁻¹). Comparison of data from steers exhibiting the greatest (n = 10) and lowest (n = 10) RFI₁₅'d' showed the low RFI₁₅'d' group to not only have lower MPR (P = 0.017) but also reduced methane cost of growth (by 41.2g of CH₄/kg of ADG; P = 0.09). Although the opportunity to abate livestock MPR by selection against RFI seems great, RFI explained only a small proportion of the observed variation in MPR. A genotype × nutrition interaction can be anticipated, and the MPR:RFI'EBV' relationship will need to be defined over a range of diet types to account for this.
Publication Type: Journal Article
Source of Publication: Journal of Animal Science, v.85, p. 1479-1486
Publisher: American Society of Animal Science
Place of Publication: United States of America
ISSN: 1525-3163
0021-8812
1525-3165
1525-3136
Fields of Research (FoR) 2008: 070204 Animal Nutrition
Socio-Economic Objective (SEO) 2008: 839802 Management of Greenhouse Gas Emissions from Animal Production
Peer Reviewed: Yes
HERDC Category Description: C1 Refereed Article in a Scholarly Journal
Appears in Collections:Journal Article
School of Environmental and Rural Science

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