Genetic Analysis of Methane Emission Traits in Holstein Dairy Cattle

Author:

Kamalanathan Stephanie1,Houlahan Kerry1ORCID,Miglior Filippo12,Chud Tatiane C. S.1,Seymour Dave J.13ORCID,Hailemariam Dagnachew4ORCID,Plastow Graham4ORCID,de Oliveira Hinayah R.12,Baes Christine F.15ORCID,Schenkel Flavio S.1ORCID

Affiliation:

1. Centre for Genetic Improvement of Livestock, Department of Animal Biosciences, University of Guelph, Guelph, ON N1G 2W1, Canada

2. Lactanet Canada, Guelph, ON N1K 1E5, Canada

3. Centre for Nutrition Modelling, Department of Animal Biosciences, University of Guelph, Guelph, ON N1G 2W1, Canada

4. Department of Agricultural, Food & Nutritional Science, University of Alberta, Edmonton, AB T6G 2P5, Canada

5. Institute of Genetics, Vetsuisse Faculty, University of Bern, Bremgartenstr. 109a, 3012 Bern, Switzerland

Abstract

Genetic selection can be a feasible method to help mitigate enteric methane emissions from dairy cattle, as methane emission-related traits are heritable and genetic gains are persistent and cumulative over time. The objective of this study was to estimate heritability of methane emission phenotypes and the genetic and phenotypic correlations between them in Holstein cattle. We used 1765 individual records of methane emission obtained from 330 Holstein cattle from two Canadian herds. Methane emissions were measured using the GreenFeed system, and three methane traits were analyzed: the amount of daily methane produced (g/d), methane yield (g methane/kg dry matter intake), and methane intensity (g methane/kg milk). Genetic parameters were estimated using univariate and bivariate repeatability animal models. Heritability estimates (±SE) of 0.16 (±0.10), 0.27 (±0.12), and 0.21 (±0.14) were obtained for daily methane production, methane yield, and methane intensity, respectively. A high genetic correlation (rg = 0.94 ± 0.23) between daily methane production and methane intensity indicates that selecting for daily methane production would result in lower methane per unit of milk produced. This study provides preliminary estimates of genetic parameters for methane emission traits, suggesting that there is potential to mitigate methane emission in Holstein cattle through genetic selection.

Funder

Agriculture and Agri-Food Canada

Dairy Farmers of Canada

NSERC

Alberta Agricultural Funding Consortium, Alberta Milk

Publisher

MDPI AG

Subject

General Veterinary,Animal Science and Zoology

Reference46 articles.

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4. Mitigation of greenhouse gases in dairy cattle via genetic selection: 2. Incorporating methane emissions into the breeding goal;Ouatahar;J. Dairy Sci.,2020

5. Mitigation of greenhouse gases in dairy cattle via genetic selection: 1. Genetic parameters of direct methane using noninvasive methods and proxies of methane;Goiri;J. Dairy Sci.,2020

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