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Published on: January 30, 2017
Integrative population genomics and tissue-specific expression profiling in cattle using whole-genome sequence
Mohammed Saeed-Zidane1, Iulia Blaj2, Amira Yousif2
1Molecular Genetics Group, Institute of Animal Breeding and Husbandry, Christian-Albrechts-University Kiel, Kiel, Germany. mzidane@tierzucht.uni-kiel.de.
BMC Genomics
|July 25, 2026
Summary
Genomic differentiation in cattle's NF-κB pathway genes correlates with tissue-specific gene expression. This study integrates whole-genome data and transcriptional profiling to reveal immune gene regulation in cattle.
Area of Science:
- Genomics
- Immunology
- Livestock Science
Background:
- Large-scale genomic data facilitates the study of genetic variation and immune gene expression in livestock.
- The NF-κB signaling pathway is crucial for immune responses.
Purpose of the Study:
- To characterize genomic differentiation and gene expression patterns of NF-κB pathway genes in cattle.
- To integrate population genomics with tissue-specific transcriptomics.
Main Methods:
- Whole-genome sequence data from the 1000 Bull Genomes Project was analyzed.
- Transcriptional profiling of NF-κB pathway genes was performed across four tissues in cattle.
- Histological assessment of spleen and in silico structural annotation were utilized.
Main Results:
- Prioritized differentiated variants in NF-κB pathway genes (CD14, NF-κB1, IL-1β, BAFFR) were identified.
- Significant tissue-dependent regulation of gene expression was observed, with distinct organ-specific patterns.
- CD14 expression was higher in liver, while intestinal tissues showed lower innate immune gene expression.
Conclusions:
- Population-level genomic differentiation in cattle's NF-κB pathway genes is associated with tissue-specific transcriptional differences.
- Findings highlight functional specialization within the NF-κB signaling network across tissues.
- Breed and sex effects on gene expression were gene-dependent.
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