Genome-Wide Association Study of Morphological Defects in Nellore Cattle Using a Binary Trait Framework
Milena A. F. Campos, Hinayah Rojas de Oliveira, Henrique A. Mulim, Eduarda da Silva Oliveira, Pablo Augusto de Souza Fonseca, Gregorio M. F. de Camargo, Raphael Bermal Costa

TL;DR
This study identifies genetic markers linked to morphological defects in Nellore cattle, offering insights for breeding improvements.
Contribution
The study applies a binary trait GWAS to identify novel candidate genes for morphological defects in Nellore cattle.
Findings
Significant associations were found for four morphological traits: feet and legs, chamfer, hump, and loin.
Candidate genes were enriched in functions like bone remodeling, muscle development, and lipid metabolism.
Overlaps with QTL for conformation, feed intake, and carcass quality were observed.
Abstract
Background/Objectives: Morphological defects such as limb malformations, cranial asymmetries, loin deviations, jaw misalignments, and navel irregularities are associated with early culling and reduced productivity in beef cattle. In Bos taurus indicus such as Nellore, the genetic basis of these traits remains poorly characterized. This study aimed to investigate the genetic architecture of six morphological defects in Nellore cattle, namely feet and legs malformation, chamfer asymmetry, fallen hump, loin deviation, jaw misalignment, and navel irregularities, via a genome-wide association study (GWAS) approach tailored for binary traits. Methods: Depending on the trait, the number of genotyped animals analyzed ranged from 3369 to 23,206, using 385,079 SNPs (after quality control). Analyses were conducted using a linear mixed model framework adapted for binary outcomes. Results:…
Genes, proteins, chemicals, diseases, species, mutations and cell lines named across the full text — each resolved to its canonical identifier and authoritative record.
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Taxonomy
TopicsGenetic and phenotypic traits in livestock · Genetic Mapping and Diversity in Plants and Animals · Cancer-related molecular mechanisms research
