| Literature DB >> 32654373 |
Ludmilla C Brunes1,2, Fernando Baldi3, Fernando B Lopes4, Raysildo B Lôbo5, Rafael Espigolan6, Marcos F O Costa2, Nedenia B Stafuzza7, Cláudio U Magnabosco8.
Abstract
The aim was to conduct a weighted single-step genome-wide association study to detect genomic regions and putative candidate genes related to residual feed intake, dry matter intake, feed efficiency (FE), feed conversion ratio, residual body weight gain, residual intake and weight gain in Nellore cattle. Several protein-coding genes were identified within the genomic regions that explain more than 0.5% of the additive genetic variance for these traits. These genes were associated with insulin, leptin, glucose, protein and lipid metabolisms; energy balance; heat and oxidative stress; bile secretion; satiety; feed behaviour; salivation; digestion; and nutrient absorption. Enrichment analysis revealed functional pathways (p-value < .05) such as neuropeptide signalling (GO:0007218), negative regulation of canonical Wingless/Int-1 (Wnt) signalling (GO:0090090), bitter taste receptor activity (GO:0033038), neuropeptide hormone activity (GO:0005184), bile secretion (bta04976), taste transduction (bta0742) and glucagon signalling pathway (bta04922). The identification of these genes, pathways and their respective functions should contribute to a better understanding of the genetic and physiological mechanisms regulating Nellore FE-related traits.Entities:
Keywords: zzm321990Bos indicuszzm321990; GBLUP; residual body weight gain; residual feed intake; weighted single-step
Year: 2020 PMID: 32654373 DOI: 10.1111/jbg.12496
Source DB: PubMed Journal: J Anim Breed Genet ISSN: 0931-2668 Impact factor: 2.380