Abstract
Abstract
Background
The natural abundance of nitrogen (δ15N) and carbon (δ13C) isotopes in animal tissues are used to estimate an animal’s efficiency in nitrogen utilization, and their feed conversion efficiency, especially in tropical grazing systems with prolonged protein restriction. It is postulated that selection for improving these two characteristics (δ15N and δ13C) would assist the optimisation of the adaptation in ever-changing environments, particularly in response to climate change. The aim of this study was to determine the heritability of δ15N and δ13C in the tail hair of tropically adapted beef cattle to validate their inclusion in genetic breeding programs.
Methods
In total, 492 steers from two breeds, Brahman (n = 268) and Droughtmaster (n = 224) were used in this study. These steers were managed in two mixed breed contemporary groups across two years (year of weaning): steers weaned in 2019 (n = 250) and 2020 (n = 242). Samples of tail switch hair representing hair segments grown during the dry season were collected and analysed for δ15N and δ13C with isotope-ratio mass spectrometry. Heritability and variance components were estimated in a univariate multibreed (and single breed) animal model in WOMBAT and ASReml using three generations of full pedigree.
Results
The estimated heritability of both traits was significantly different from 0, i.e. 0.43 ± 0.14 and 0.41 ± 0.15 for δ15N and δ13C, respectively. These traits had favourable moderate to high genetic and phenotypic correlations (− 0.78 ± 0.16 and − 0.40 ± 0.04, respectively). The study also provides informative single-breed results in spite of the limited sample size, with estimated heritability values of 0.37 ± 0.19 and 0.19 ± 0.17 for δ15N and δ13C in Brahman, and 0.36 ± 0.21 and 0.46 ± 0.22 for δ15N and δ13C in Droughtmaster, respectively.
Conclusions
The findings of this study show, for the first time, that the natural abundances of both nitrogen and carbon isotopes in the tail hair in cattle may be moderately heritable. With further research and validation, tail hair isotopes can become a practical tool for the large-scale selection of more efficient cattle.
Funder
Meat and Livestock Australia
Publisher
Springer Science and Business Media LLC
Reference39 articles.
1. Cooke RF, Daigle CL, Moriel P, Smith SB, Tedeschi LO, Vendramini JM. Cattle adapted to tropical and subtropical environments: social, nutritional, and carcass quality considerations. J Anim Sci. 2020;98: kaa014.
2. Hernandez A, Galina CS, Geffroy M, Jung J, Westin R, Berg C. Cattle welfare aspects of production systems in the tropics. Anim Prod Sci. 2022;62:1203–18.
3. FAO. How to feed the world in 2050. Rome: Food and Agriculture Organization; 2009.
4. OECD/FAO. OECD-FAO Agricultural. Outlook 2020–2029. Paris: OECD Publishing and Rome: Food and Agriculture Organization. 2020.
5. Machado L, Kinley RD, Magnusson M, de Nys R, Tomkins NW. The potential of macroalgae for beef production systems in Northern Australia. J Appl Phycol. 2015;27:2001–5.